Toshiba Mitsubishi-Electric Industrial Systems Corporation

Japon

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Type PI
        Brevet 939
        Marque 11
Juridiction
        International 920
        États-Unis 25
        Canada 5
Date
Nouveautés (dernières 4 semaines) 1
2025 octobre 1
2025 août 3
2025 juillet 1
2025 (AACJ) 19
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Classe IPC
H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande 207
H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique 97
G05B 23/02 - Test ou contrôle électrique 57
H02J 3/38 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs 43
H02M 7/12 - Transformation d'une puissance d'entrée en courant alternatif en une puissance de sortie en courant continu sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande 43
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Classe NICE
09 - Appareils et instruments scientifiques et électriques 8
07 - Machines et machines-outils 7
11 - Appareils de contrôle de l'environnement 2
35 - Publicité; Affaires commerciales 1
37 - Services de construction; extraction minière; installation et réparation 1
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Statut
En Instance 18
Enregistré / En vigueur 932
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1.

ACTIVE GAS GENERATION APPARATUS

      
Numéro d'application 18868181
Statut En instance
Date de dépôt 2023-05-01
Date de la première publication 2025-10-23
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Arita, Ren

Abrégé

An electrode unit in an active gas generation apparatus according to the present disclosure includes a ground conductor provided to a lower side of a ground side electrode constituting part. A chassis bottom part of a chassis includes a chassis opening part, and the chassis opening part includes a lower side tapered region having a larger opening area with decreasing distance to a lower side and an upper side region. A plurality of gas ejection ports provided in the ground conductor are provided to get closer to each other with decreasing distance to the lower side so that plural pieces of partial active gas collide with each other in a collision region, and the collision region is located in the lower side tapered region or in the upper side region on an upper side of the lower side tapered region.

Classes IPC  ?

2.

PHASE ANGLE DETECTION SYSTEM, CONTROL DEVICE, AND PHASE ANGLE DETECTION METHOD

      
Numéro d'application 18703778
Statut En instance
Date de dépôt 2022-10-13
Date de la première publication 2025-08-28
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Kojima Makimura, Ayame
  • Ishimaru, Yusuke
  • Tobayashi, Shunsuke

Abrégé

A phase angle detection system according to one aspect of the embodiment detects a phase angle of an electric motor in a drive system provided with a transmission unit that changes a rotation speed of the electric motor. The phase angle detection system includes a first sensor, a second sensor, and an arithmetic processing unit. The first sensor outputs a first signal for detecting at least a specific phase angle of a rotor of the electric motor. The second sensor outputs a second signal capable of detecting an amount of rotation of an output axis of the transmission unit. The arithmetic processing unit calculates, with an amount of deviation included in a result of the detection of a specific phase angle by the first signal defined for each rotational direction of the electric motor in advance, an estimated value of an absolute angle of the rotor of the electric motor using the amount of deviation of the first signal determined by a rotational direction of the electric motor, a result of the detection of the first signal, and the second signal.

Classes IPC  ?

  • H02P 6/16 - Dispositions de circuits pour détecter la position

3.

PAPER WINDER AND PAPER WINDING METHOD

      
Numéro d'application 18857244
Statut En instance
Date de dépôt 2023-03-16
Date de la première publication 2025-08-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Hayashi, Yasuhiro

Abrégé

A paper winder includes a first winding core that is provided in a first arm turning centering on a rotating shaft and on which the paper should be wound, a first motor that drives the first winding core, a second winding core that is provided in a second arm turning centering on the rotating shaft and on which the paper should be wound next to the first winding core, and a controller that performs rotation control for the first motor and a second motor. In the rotation control, after, according to the turning of the second arm, completion of the winding of the paper by the first winding core and after a position of the second winding core has reached a position where the paper should be wound, during an operation of a traverse cutter that cuts the paper near the second winding core, when a torque value of the second motor is equal to or larger than a torque reference value, the controller switches a control mode of the second motor from speed control to torque control and perform tension correction control for adjusting the torque value of the second motor such that tension of the paper falls within a target range.

Classes IPC  ?

  • B65H 19/22 - Changement de la bobine dans les mécanismes d'enroulage ou en liaison avec les opérations d'enroulage
  • B65H 19/26 - Coupure de la bande sur son trajet vers la bobine à garnir
  • B65H 23/198 - Positionnement, tension, suppression des à-coups ou guidage des bandes longitudinal en commandant ou régulant le mécanisme d'avance de la bande, p. ex. le mécanisme agissant sur la bande courante dans les mécanismes d'enroulage ou en liaison avec les opérations d'enroulement avec commande à moteur

4.

SCADA WEB HMI SYSTEM

      
Numéro d'application 18856658
Statut En instance
Date de dépôt 2023-03-14
Date de la première publication 2025-08-14
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

Each of PLCs transmits block data relating to a field device group constituting an industrial plant, to a SCADA server device at a fixed period. The SCADA server device includes a communication driver configured to receive the block data, and a client management circuitry connected to a plurality of HMI client devices in one-to-one relationship and configured to perform WebSocket communication with each of the HMI client devices. Each of the HMI client devices executes a web browser displaying an HMI screen on which parts indicating states of the industrial plant are arranged, and updates states of the parts based on signal data received from the client management circuitry. Each of the HMI client devices includes a client installer for installing a SCADA web program loaded at startup of the web browser.

Classes IPC  ?

  • G05B 19/05 - Automates à logique programmables, p. ex. simulant les interconnexions logiques de signaux d'après des diagrammes en échelle ou des organigrammes

5.

STRIP WIDTH CONTROLLER FOR REVERSIBLE ROLLING MILL

      
Numéro d'application 18690434
Statut En instance
Date de dépôt 2022-08-09
Date de la première publication 2025-07-31
Propriétaire Toshiba Mitsubishi-Electric Industrial Systems Corporation (Japon)
Inventeur(s) Manabe, Tsubasa

Abrégé

A strip width controller for a reversible rolling mill includes a rolling controller, a rolling position detector, a tracker, and a calculator. The rolling controller operates an edger so that a pair of edger rolls comes into contact with a strip to be rolled during reverse pass rolling. The rolling position detector detects a rolling position of the edger when the pair of edger rolls are in contact with the strip to be rolled during the reverse pass rolling. The tracker tracks a longitudinal position of the strip to be rolled during the reverse pass rolling. The calculator calculates strip width result values at a plurality of positions in the longitudinal direction of the strip to be rolled based on an output of the rolling position detector and an output of the tracker.

Classes IPC  ?

  • B21B 37/16 - Commande de l'épaisseur, de la largeur, du diamètre ou d'autres dimensions transversales

6.

Control device and power conversion system

      
Numéro d'application 18700365
Numéro de brevet 12416935
Statut Délivré - en vigueur
Date de dépôt 2022-10-05
Date de la première publication 2025-07-10
Date d'octroi 2025-09-16
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Katsukura, Tomoya
  • Tawada, Yoshihiro
  • Fukasawa, Issei
  • Kinoshita, Masahiro

Abrégé

A control device includes a modulation rate calculator configured to calculate a modulation rate based on a DC voltage on a DC side an, a limiter configured to update a DC voltage command lower bound limiter based on the lower bound limiter operation value; a maximum power point tracking controller configured to calculate a first DC voltage command value and determine a second DC voltage command value based on the calculated first DC voltage command value and the DC voltage command lower bound limiter set to the limiter, and an inverter controller configured to control an inverter of the power conversion system based on the second DC voltage command value.

Classes IPC  ?

  • G05F 1/67 - Régulation de la puissance électrique à la puissance maximale que peut fournir un générateur, p. ex. une cellule solaire
  • H02J 3/38 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs
  • H02M 7/5395 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande utilisant uniquement des dispositifs à semi-conducteurs, p. ex. onduleurs à impulsions à un seul commutateur avec commande automatique de la forme d'onde ou de la fréquence de sortie par modulation de largeur d'impulsions

7.

HMI SCREEN DESIGNING DEVICE AND SCADA WEB HMI SYSTEM

      
Numéro d'application 18845889
Statut En instance
Date de dépôt 2023-02-13
Date de la première publication 2025-06-05
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

There is provided an HMI screen creation device that enables creation of an HMI screen in which a plurality of operation elements are exclusively arrangeable with high flexibility, without deteriorating quality of the HMI screen. An HMI screen designing device according to the present disclosure includes: a drafting processing unit including a stencil area where a plurality of operation elements to be arranged in the HMI screen are arranged to be selectable, and a drafting area where a drawing is drawn by arranging the operation elements selected in the stencil area; and a drawing data generation processing unit configured to generate drawing data as data of the drawing in which the plurality of operation elements are arranged. The drafting processing unit includes exclusive grouping means for mutually exclusively grouping the plurality of operation elements arranged on the drawing.

Classes IPC  ?

  • G05B 19/4155 - Commande numérique [CN], c.-à-d. machines fonctionnant automatiquement, en particulier machines-outils, p. ex. dans un milieu de fabrication industriel, afin d'effectuer un positionnement, un mouvement ou des actions coordonnées au moyen de données d'un programme sous forme numérique caractérisée par le déroulement du programme, c.-à-d. le déroulement d'un programme de pièce ou le déroulement d'une fonction machine, p. ex. choix d'un programme

8.

ULTRASONIC ATOMIZATION APPARATUS

      
Numéro d'application 18730314
Statut En instance
Date de dépôt 2022-12-20
Date de la première publication 2025-05-22
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hiramatsu, Takahiro
  • Orita, Hiroyuki

Abrégé

An ultrasonic atomization apparatus according to the present disclosure includes a non-contact mist supply pipe that is provided above an atomization container without being in contact with the atomization container including a mist output pipe. A pipe overlapping space is formed between a connection pipe portion of the non-contact mist supply pipe and an upper region of the mist output pipe. A leakproof gas supply pipe is provided in the pipe overlapping space without being in contact with the mist output pipe and the non-contact mist supply pipe. The leakproof gas supply pipe outputs a mist leakproof gas from a gas output port provided in the top thereof.

Classes IPC  ?

  • B05B 17/06 - Appareils de pulvérisation ou d'atomisation de liquides ou d'autres matériaux fluides, non couverts par les autres groupes de la présente sous-classe opérant suivant des procédés particuliers utilisant des vibrations ultrasonores
  • B05B 12/00 - Aménagements de commande de la distributionAménagements de réglage de l’aire de pulvérisation

9.

TEMPERATURE CONTROL SYSTEM AND TEMPERATURE CONTROL METHOD FOR HOT ROLLING LINE

      
Numéro d'application 18836838
Statut En instance
Date de dépôt 2023-01-26
Date de la première publication 2025-05-08
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Kitagoh, Kazutoshi

Abrégé

A hot rolling line includes a rougher mill, a finisher mill, an intermediate equipment group, a rougher delivery-side pyrometer, a finisher entry-side pyrometer, and a control device. The intermediate equipment group includes a cooling equipment. The control device includes a set-up calculation device configured to determine a flow amount set-up value of the coolant water in the cooling equipment, a feedforward control device configured to perform feedforward control of a flow amount of the coolant water in the cooling equipment based on the flow amount set-up value, and a learning device configured to calculate a learning value based on a flow amount measured value of the coolant water in the cooling equipment and a finisher entry-side temperature measured value indicating a measured value of the material to be rolled measured by the finisher entry-side pyrometer.

Classes IPC  ?

  • B21B 37/74 - Commande de la température, p. ex. en refroidissant ou en chauffant les cylindres ou le produit

10.

DRIVE DEVICE, DIAGNOSTIC DEVICE, AND DIAGNOSTIC METHOD

      
Numéro d'application JP2023039085
Numéro de publication 2025/094235
Statut Délivré - en vigueur
Date de dépôt 2023-10-30
Date de publication 2025-05-08
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Shiraishi Hajime

Abrégé

This drive device drives a load by means of an electric motor. The drive device comprises an inverter, a controller, and a status identification unit. The inverter drives the electric motor. The controller controls the inverter on the basis of a command value, and outputs information indicating the operation status of the electric motor due to the control. The status identification unit detects an abnormality in the electric motor and a machine portion of the load of the electric motor on the basis of a machine learning model learned in advance by learning processing in which information on the vibration of the electric motor is included in learning data, the information on the vibration of the electric motor, and the operation status.

Classes IPC  ?

  • H02P 29/024 - Détection d’un défaut, p. ex. court circuit, rotor bloqué, circuit ouvert ou perte de charge

11.

THICKNESS CONTROLLING METHOD AND RIGIDITY MONITORING METHOD FOR ROLLING MILL

      
Numéro d'application 18690531
Statut En instance
Date de dépôt 2022-08-08
Date de la première publication 2025-04-24
Propriétaire Toshiba Mitsubishi-Electric Industrial Systems Corporation (Japon)
Inventeur(s) Shimotani, Toshihito

Abrégé

The present disclosure provides a thickness controlling method for a rolling mill that makes it possible to calculate an appropriate rolling mill gap correction amount on the basis of a roll force change amount between a preceding material and a present material, and to thus improve the precision level for thicknesses. The thickness controlling method for the rolling mill includes a step of using a regression model to recursively approximate a relationship between the roll force change amount between the preceding material and the present material and a gap error change amount of the rolling mill, and predicting a gap error in a rolling of the present material on the basis of the regression model, the preceding material being a rolled coil rolled by the rolling mill immediately prior, and the present material being another rolled coil to be rolled following the preceding material, a step of correcting a gap setting amount in the rolling of the present material, on a basis of a value of the predicted gap error, and a step of updating a regression coefficient of the regression model, on a basis of an actual roll force and an actual gap error change amount obtained from the rolling of the present material.

Classes IPC  ?

  • B21B 37/16 - Commande de l'épaisseur, de la largeur, du diamètre ou d'autres dimensions transversales

12.

ULTRASONIC ATOMIZATION APPARATUS

      
Numéro d'application 18730337
Statut En instance
Date de dépôt 2022-12-20
Date de la première publication 2025-03-27
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hiramatsu, Takahiro
  • Orita, Hiroyuki

Abrégé

An ultrasonic atomization apparatus according to the present disclosure includes a non-contact mist supply pipe that is provided above an atomization container without being in contact with the atomization container including a mist output pipe and a leakproof tank that is connected to the mist output pipe without being in contact with the non-contact mist supply pipe. The leakproof tank contains a sealing proper liquid. In this case, the sealing proper liquid is contained in a liquid containing space formed between the leakproof tank and the mist output pipe.

Classes IPC  ?

  • B05B 17/06 - Appareils de pulvérisation ou d'atomisation de liquides ou d'autres matériaux fluides, non couverts par les autres groupes de la présente sous-classe opérant suivant des procédés particuliers utilisant des vibrations ultrasonores
  • B05B 12/08 - Aménagements de commande de la distributionAménagements de réglage de l’aire de pulvérisation sensibles à l'état du liquide ou d'un autre matériau fluide expulsé, du milieu ambiant ou de la cible

13.

CONTROL DEVICE FOR STEEL PLATE TEMPERATURE

      
Numéro d'application 18730355
Statut En instance
Date de dépôt 2022-12-28
Date de la première publication 2025-03-27
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Takagi, Sanga
  • Shimotani, Toshihito

Abrégé

A target value and a detailed prediction value of the first control index (T1CTref, T1CTprd) are used to calculate an FF water injection amount. Target values of first and second control indexes (T1CTref, T2CTref) and measured values of first and second control indexes (T1CTact, T2CTact) are used to calculate an FB water injection amount. Coolant injection amounts in an FF bank group (B1 to Bj) is controlled based on respective positions of segments constituting the steel plate, an initial water injection amount, and the FF water injection amount. Coolant injection amounts in an FB bank group (Bj+1 to BN) is controlled based on the respective positions of the segments, the initial water injection amount, and the FB water injection amount.

Classes IPC  ?

  • B21B 37/74 - Commande de la température, p. ex. en refroidissant ou en chauffant les cylindres ou le produit

14.

ROLLING EMULATION DEVICE, ROLLING EMULATION PROGRAM, AND ROLLING CONTROL SYSTEM

      
Numéro d'application JP2023032229
Numéro de publication 2025/052513
Statut Délivré - en vigueur
Date de dépôt 2023-09-04
Date de publication 2025-03-13
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Nagao, Hidenori

Abrégé

This rolling emulation device executes: processing for acquiring a control signal used for control of a plurality of rolling machines from a controller for controlling the plurality of rolling machines via a communication interface; processing for emulating conveyance of a material subject to rolling by inputting the control signal to a rolling conveyance model simulating conveyance of a material subject to rolling in a rolling line; processing for generating simulation sensor signals simulating sensor signals output from a plurality of sensors provided on the rolling line on the basis of the result of the emulation by the rolling conveyance model; processing for acquiring actual sensor signals output from the plurality of sensors; learning processing for causing the rolling conveyance model to reflect a model correction value for reducing the difference between a simulation sensor signal and an actual sensor signal; and abnormality determination processing for determining, if the difference is equal to or greater than a first threshold value, that an abnormality has occurred in one of the plurality of rolling machines.

Classes IPC  ?

  • B21C 51/00 - Dispositifs de mesure, de calibrage, d'indication, de comptage ou de marquage, spécialement conçus pour être utilisés dans la production ou la manipulation des matériaux concernés par les sous-classes
  • B21B 37/00 - Dispositifs ou procédés de commande spécialement adaptés aux laminoirs ou aux produits laminés
  • B21B 38/00 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit

15.

ROLLING RECORDING DEVICE, ROLLING RECORDING METHOD, AND ROLLING RECORDING PROGRAM

      
Numéro d'application JP2023031938
Numéro de publication 2025/046867
Statut Délivré - en vigueur
Date de dépôt 2023-08-31
Date de publication 2025-03-06
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Nagao, Hidenori

Abrégé

This rolling recording device stores: a plurality of camera images acquired by a plurality of cameras for imaging a plurality of rolling mills; control signals to be inputted to the respective rolling mills; actual measurement values of rolling states acquired by a plurality of sensors provided on a rolling line; HMI screen information for creating an HMI screen in which the rolling line is exemplified; and time point information including an acquisition time point for each of the plurality of camera images, an input time point for each of the control signals, and an update time point for the HMI screen information. In addition, the rolling recording device executes: update processing for updating the HMI screen information on the basis of at least the actual measurement values regarding the rolling states; generation processing for generating an output display screen including a display screen for a target camera image, a display screen for a control signal, and the HMI screen which are synchronized on the basis of the time point information; display processing for displaying the output display screen on a monitor; saving processing for saving the output display screen; and reproduction processing for reproducing the history of the output display screens in response to a request.

Classes IPC  ?

  • B21C 51/00 - Dispositifs de mesure, de calibrage, d'indication, de comptage ou de marquage, spécialement conçus pour être utilisés dans la production ou la manipulation des matériaux concernés par les sous-classes
  • B21B 37/00 - Dispositifs ou procédés de commande spécialement adaptés aux laminoirs ou aux produits laminés

16.

ROTATING ELECTRIC MACHINE

      
Numéro d'application JP2023027602
Numéro de publication 2025/022660
Statut Délivré - en vigueur
Date de dépôt 2023-07-27
Date de publication 2025-01-30
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Misoka, Ryo
  • Saitoh, Isamu

Abrégé

This rotating electric machine includes a stator, a rotor, a shaft, and a housing. The housing has a frame, a bracket, and a terminal member. The frame has a first inner peripheral surface, a second inner peripheral surface, a first joint surface, and a support part. The first inner peripheral surface forms a first through-hole in which the stator and the rotor are accommodated. The second inner peripheral surface forms a second through-hole in which the terminal member is accommodated. The first joint surface is connected to an end of the first inner peripheral surface in a first direction and is oriented in the first direction. The support part protrudes from the second inner peripheral surface and supports the terminal member. The bracket has a second joint surface facing the first joint surface and a protrusion, and closes an end of the frame in the first direction. The protrusion protrudes from the second joint surface in a second direction opposite to the first direction, and is fitted into the first through-hole. Further, the protrusion has an outer peripheral surface facing the first inner peripheral surface, and overlaps the support part in a direction intersecting with the first direction.

Classes IPC  ?

17.

POWER CONVERSION DEVICE

      
Numéro d'application 18709086
Statut En instance
Date de dépôt 2022-10-31
Date de la première publication 2025-01-30
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hagiwara, Takumi
  • Tawada, Yoshihiro

Abrégé

A power conversion device includes: a first alternating current terminal, a second alternating current terminal, and a third alternating current terminal are arranged facing each other inside the housing, the first three-phase in one enclosure semiconductor unit is configured so that a signal distribution board of the power conversion device transmits a U-phase signal to the first alternating current terminal, a V-phase signal to the second alternating current terminal, and a W-phase signal to the third alternating current terminal, and the second three-phase in one enclosure semiconductor unit is configured so that the signal distribution board of the power conversion device replaces wiring so that the U-phase and W-phase are reversed, and transmits a W-phase signal to the first alternating current terminal, a V-phase signal to the second alternating current terminal, and a U-phase signal to the third alternating current terminal.

Classes IPC  ?

  • H02M 7/00 - Transformation d'une puissance d'entrée en courant alternatif en une puissance de sortie en courant continuTransformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif
  • H05K 7/14 - Montage de la structure de support dans l'enveloppe, sur cadre ou sur bâti
  • H05K 7/20 - Modifications en vue de faciliter la réfrigération, l'aération ou le chauffage

18.

POWER SUPPLY DEVICE

      
Numéro d'application 18708510
Statut En instance
Date de dépôt 2022-10-06
Date de la première publication 2025-01-16
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Zhang, Xiaochen

Abrégé

A first communication line transmits a control signal from an I/F circuit to an n-th drive circuit. A second communication line transmits a state detection signal of semiconductor switches from the n-th drive circuit to the I/F circuit. An i-th drive circuit includes a driver for an i-th semiconductor switch, an abnormality detection circuit for detecting an abnormality of the i-th semiconductor switch, and first and second notification members. The abnormality detection circuit detects the abnormality of the i-th semiconductor switch and an operation state of the i-th semiconductor switch, and notifies a detection result using the first notification member. The abnormality detection circuit generates the state detection signal indicating an operation state of the i-th to n-th semiconductor switches, detects a mismatch between the control signal and the operation state of the i-th to n-th semiconductor switches, and notifies a detection result using the second notification member.

Classes IPC  ?

  • H02M 1/32 - Moyens pour protéger les convertisseurs autrement que par mise hors circuit automatique
  • H02H 3/05 - Circuits de protection de sécurité pour déconnexion automatique due directement à un changement indésirable des conditions électriques normales de travail avec ou sans reconnexion Détails avec des moyens pour accroître la fiabilité, p. ex. dispositifs redondants
  • H02H 7/12 - Circuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour convertisseursCircuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour redresseurs pour convertisseurs ou redresseurs statiques
  • H02M 1/092 - Circuits spécialement adaptés à la production d'une tension de commande pour les dispositifs à semi-conducteurs incorporés dans des convertisseurs statiques pour la commande simultanée de dispositifs à semi-conducteurs connectés en série ou en parallèle les signaux de commande étant transmis optiquement
  • H02M 7/797 - Transformation d'une puissance d'entrée en courant alternatif en une puissance de sortie en courant continuTransformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif avec possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande utilisant uniquement des dispositifs à semi-conducteurs

19.

ACTIVE GAS GENERATION APPARATUS

      
Numéro d'application 18711758
Statut En instance
Date de dépôt 2022-10-20
Date de la première publication 2025-01-09
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Arita, Ren

Abrégé

In an electrode unit of an active gas generation apparatus according to the present disclosure, a dielectric film support member includes a support surface supporting a high voltage side dielectric film from a lower side. A lower surface of the dielectric film suppression member provided on an upper side of a ground side dielectric film includes a dielectric contact region overlapped with a peripheral region of the high voltage side dielectric film and the support surface of the dielectric film support member in a plan view and a dielectric non-contact region overlapped with an intermediate region of the high voltage side dielectric film in a plan view. The high voltage side dielectric film is suppressed from the dielectric contact region on an upper side by the dielectric film suppression member receiving suppress strength of a plurality of suppression auxiliary members.

Classes IPC  ?

20.

POWER CONVERSION SYSTEM

      
Numéro d'application 18689945
Statut En instance
Date de dépôt 2022-09-01
Date de la première publication 2024-12-26
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Morisaki, Kouki
  • Fukasawa, Issei
  • Kinoshita, Masahiro

Abrégé

According to the present disclosure, there is provided an inexpensive power conversion system that can achieve loss reduction and space saving. The power conversion system includes: a power converter configured to convert direct-current power input from a direct-current power supply, into alternating-current power or direct-current power; a capacitor provided between a positive electrode direct-current line and a negative electrode direct-current line connected to input terminals of the power converter; a ground line provided with a first ground resistor and configured to connect the negative electrode direct-current line and a ground potential; a discharge line configured to connect the positive electrode direct-current line and the ground line on the ground potential side of the first ground resistor; and a discharge switch provided in the discharge line and configured to be turned on to discharge residual charges of the capacitor.

Classes IPC  ?

  • H02M 7/537 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande utilisant uniquement des dispositifs à semi-conducteurs, p. ex. onduleurs à impulsions à un seul commutateur
  • H02M 1/00 - Détails d'appareils pour transformation

21.

ACTIVE GAS GENERATION APPARATUS

      
Numéro d'application 18700848
Statut En instance
Date de dépôt 2022-09-14
Date de la première publication 2024-12-26
Propriétaire Toshiba Mitsubishi-Electric Industrial Systems Corporation (Japon)
Inventeur(s)
  • Watanabe, Kensuke
  • Arita, Ren

Abrégé

In an active gas generation apparatus according to the present disclosure, a first number of high voltage electrode structures are held in a holding space in corresponding grooves in the first number of grooves, respectively, and the second number of ground electrode structures are held in the holding space in corresponding grooves in the second number of grooves, respectively. The first number of high voltage electrode structures and the second number of ground electrode structures are alternately disposed along a Y direction, and a first planar region of each of the first number of high voltage electrode structures and a second planar region of each of the second number of ground electrode structures face each other with a separation space therebetween.

Classes IPC  ?

  • H01J 37/32 - Tubes à décharge en atmosphère gazeuse

22.

DC POWER CONVERSION DEVICE AND CONTROL METHOD

      
Numéro d'application JP2023021159
Numéro de publication 2024/252558
Statut Délivré - en vigueur
Date de dépôt 2023-06-07
Date de publication 2024-12-12
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Okada Yuji

Abrégé

This DC power conversion device of one embodiment is configured so that a first bridge circuit is driven by a first drive signal and converts first DC power to first AC power. A second bridge circuit is driven using a second drive signal and converts second DC power of second DC voltage to second AC power. An inductance element is provided between the first bridge circuit and the second bridge circuit. A control device determines a phase difference between the first drive signal and the second drive signal that are used for dual active bridge (DAB) phase-shift control, respectively generates the first drive signal and the second drive signal in accordance with the phase difference, and drives the first bridge circuit and the second bridge circuit. In the case where an allowable range for the phase difference is determined using the first DC voltage and the second DC voltage and the magnitude of a current flowing in the inductance element is limited, the control device generates the first drive signal and the second drive signal such that the phase difference is limited within the allowable range.

Classes IPC  ?

  • H02M 3/28 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant continu avec transformation intermédiaire en courant alternatif par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrodes de commande pour produire le courant alternatif intermédiaire

23.

STRIP THICKNESS CONTROL DEVICE FOR HOT ROLLING MILL

      
Numéro d'application 18688803
Statut En instance
Date de dépôt 2022-08-23
Date de la première publication 2024-12-05
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Tachibana, Minoru

Abrégé

The present disclosure provides a strip thickness control device for a hot rolling mill that can reliably pass a leading end of a material-to-be-rolled without raising equipment cost even in a case of rolling the material-to-be-rolled extremely thinly. The strip thickness control device for a hot rolling mill includes a strip thickness meter installed at a delivery side of a last one of rolling stands in a series direction, a gap calculating unit that calculates a gap between rolls in each of the rolling stands, the gap being larger than a product target strip thickness of the material-to-be-rolled and corresponding to a passable strip thickness that enables a leading end of the material-to-be-rolled to be passed stably, a gap setting unit that sets the gap calculated by the gap calculating unit for each of the rolling stands, an automatic strip thickness control unit that executes automatic strip thickness control of minimizing a strip thickness deviation between a strip thickness measured value of the strip thickness meter and the passable strip thickness, and a target strip thickness changing unit that changes the passable strip thickness to the product target strip thickness by adding a strip thickness bias to the strip thickness deviation at a predetermined ramp rate after the leading end of the material-to-be-rolled is passed through the last one of the rolling stands.

Classes IPC  ?

  • B21B 37/20 - Commande automatique du calibrage dans des laminoirs en tandem
  • B21B 38/04 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit pour mesurer l'épaisseur, la largeur, le diamètre ou d'autres dimensions transversales du produit

24.

CONTROL APPARATUS AND POWER CONVERSION APPARATUS IN PHOTOVOLTAIC SYSTEM

      
Numéro d'application 18688428
Statut En instance
Date de dépôt 2022-08-23
Date de la première publication 2024-11-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Colak, Alperen Mustafa
  • Tawada, Yoshihiro

Abrégé

A control apparatus including a first operation control circuit configured to open a direct-current switch when a power conversion apparatus is in a waiting state and a first direct-current voltage value is greater than a predetermined first threshold, a clocking circuit configured to, when the direct-current switch is opened, clock an elapsed time after the direct-current switch is opened, and a soundness determination circuit configured to calculate a first difference voltage value that is a difference between the first direct-current voltage value and a second direct-current voltage value when the power conversion apparatus is in the waiting state and the direct-current switch is opened, and the elapsed time is greater than or equal to a predetermined first time, to determine that the direct-current switch is abnormal when the first difference voltage value is less than or equal to the predetermined second threshold.

Classes IPC  ?

  • H02H 3/26 - Circuits de protection de sécurité pour déconnexion automatique due directement à un changement indésirable des conditions électriques normales de travail avec ou sans reconnexion sensibles à la différence de tensions ou de courantsCircuits de protection de sécurité pour déconnexion automatique due directement à un changement indésirable des conditions électriques normales de travail avec ou sans reconnexion sensibles à un angle de déphasage entre tensions ou courants
  • H02H 7/122 - Circuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour convertisseursCircuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour redresseurs pour convertisseurs ou redresseurs statiques pour onduleurs, c.-à-d. convertisseurs de courant continu en courant alternatif
  • H02H 7/20 - Circuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour équipement électronique

25.

ACTIVE GAS GENERATION DEVICE

      
Numéro d'application JP2023017030
Numéro de publication 2024/228233
Statut Délivré - en vigueur
Date de dépôt 2023-05-01
Date de publication 2024-11-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Arita Ren

Abrégé

The purpose of the present disclosure is to provide a structure for an active gas generation device capable of supplying a uniform active gas to a treatment space. An electrode unit (55) in an active gas generation device (75) according to the present disclosure comprises a ground conductor (60) provided below a ground-side electrode constituting unit (E2). A housing bottom (1a) of a housing (1) has a housing opening (41), where the housing opening (41) includes an upper region (41a) and a lower tapered region (41t) of which the opening area increases the further downward. A plurality of gas ejection ports (70) provided to the ground conductor (60) are provided so as to approach each other the further downward such that a plurality of partial active gases collide in a collision region (80), where the collision region (80) is present within the lower tapered region (41t) or within the upper region (41a) which is above the lower tapered region (41t).

Classes IPC  ?

26.

CONTROLLER AND CONTROL METHOD

      
Numéro d'application JP2023012105
Numéro de publication 2024/201638
Statut Délivré - en vigueur
Date de dépôt 2023-03-27
Date de publication 2024-10-03
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Matsumoto Kei

Abrégé

A controller according to one embodiment of the present invention is for a power conversion device comprising: a semiconductor switching element that generates heat by power conversion; a heat sink of the semiconductor switching element; and a cooling mechanism that cools the heat sink. The controller includes an element temperature estimation unit and a control unit. The element temperature estimation unit derives an estimated value of the temperature of the semiconductor switching element by using either the drive amount of the semiconductor switching element or the temperature at a predetermined position within a prescribed range from the position of the semiconductor switching element. The control unit identifies an abnormal state of the cooling mechanism when the temperature difference between the estimated value of the temperature of the semiconductor switching element and the temperature at the prescribed position in the power conversion device has exceeded a predetermined threshold temperature. The threshold temperature is set to be lower than the upper limit temperature of an allowable range for the temperature difference and higher than a reference temperature predetermined in association with the calorific value of the semiconductor switching element.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • H02M 1/00 - Détails d'appareils pour transformation

27.

QUALITY DEFECT ANALYSIS ASSISTANCE SYSTEM FOR ROLLED PRODUCT

      
Numéro d'application JP2023013237
Numéro de publication 2024/201912
Statut Délivré - en vigueur
Date de dépôt 2023-03-30
Date de publication 2024-10-03
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Nagao, Hidenori

Abrégé

This quality defect analysis assistance system for a rolled product is provided with a plurality of recording devices, a conversion device, and a search device. A first recording device records steel sheet time-unit information, rolling facility time-unit information, and manual operation time-unit information in a time-axis performance database in association with a product ID of the steel sheet. The conversion device converts each of the steel sheet time-unit information, the rolling facility time-unit information, and the manual operation time-unit information into length-unit information. A second recording device records each information converted by the conversion device in a product-unit database in association with the product ID. A third recording device records a rolling plan of the rolling plant and an error occurrence record of the rolling facility in the product-unit database. The search device uses the product ID of the steel sheet determined to be a defective product as a search key to extract information on the defective product from the time-axis performance database, the product-unit database, a machine-unit database, and an electricity-unit database.

Classes IPC  ?

  • B21B 38/00 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit

28.

SCADA WEB HMI SYSTEM

      
Numéro d'application JP2023009923
Numéro de publication 2024/189793
Statut Délivré - en vigueur
Date de dépôt 2023-03-14
Date de publication 2024-09-19
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

This SCADA web HMI system comprises a PLC, an HMI client machine, and a SCADA server machine connected via a computer network. The PLC transmits block data relating to a field apparatus group that constitutes an industrial plant to the SCADA server machine at prescribed periods. The SCADA server machine comprises a communication driver that receives the block data, and a client management unit that is connected one-to-one with a plurality of HMI client machines, and performs WebSocket communication with each HMI client machine. The HMI client machines each execute a web browser that displays an HMI screen on which parts showing the status of the industrial plant are disposed, and update the status of the parts according to the signal data received from the client management unit. The HMI client machine comprises a client installer for installing SCADA web programs loaded during startup of the web browser.

Classes IPC  ?

  • G05B 19/05 - Automates à logique programmables, p. ex. simulant les interconnexions logiques de signaux d'après des diagrammes en échelle ou des organigrammes

29.

PAPER WIND-UP DEVICE AND PAPER WIND-UP METHOD

      
Numéro d'application JP2023010427
Numéro de publication 2024/189922
Statut Délivré - en vigueur
Date de dépôt 2023-03-16
Date de publication 2024-09-19
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Hayashi, Yasuhiro

Abrégé

This paper wind-up device comprises: a first wind core which is provided on a first arm and on which paper is to be wound up, the first arm turning around a rotation axis; a first motor that drives the first wind core; a second wind core which is provided on a second arm and on which the paper is to be wound up after the first wind core, the second arm turning around the rotation axis; and a control device that performs rotation control of the first motor and the second motor. In the rotation control, after the wind-up of the paper by the first wind core is completed, and during operation of a traverse cutter that cuts the paper near the second wind core after the second wind core, due to the turning of the second arm, came to a position at which to wind up the paper, if the torque value of the second motor is equal to or greater than a torque reference value, the control device switches the control mode of the second motor from speed control to torque control, and performs tension correction control for adjusting the torque value of the second motor such that the tension of the paper falls within a target range.

Classes IPC  ?

  • B65H 19/22 - Changement de la bobine dans les mécanismes d'enroulage ou en liaison avec les opérations d'enroulage
  • B65H 18/10 - Mécanismes d'enroulage des bandes dans lesquels l'énergie est appliquée à la broche de la bobine
  • B65H 19/26 - Coupure de la bande sur son trajet vers la bobine à garnir
  • B65H 23/198 - Positionnement, tension, suppression des à-coups ou guidage des bandes longitudinal en commandant ou régulant le mécanisme d'avance de la bande, p. ex. le mécanisme agissant sur la bande courante dans les mécanismes d'enroulage ou en liaison avec les opérations d'enroulement avec commande à moteur

30.

DC POWER SUPPLY DEVICE

      
Numéro d'application JP2023005959
Numéro de publication 2024/176294
Statut Délivré - en vigueur
Date de dépôt 2023-02-20
Date de publication 2024-08-29
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Tomita, Takashi
  • Watanabe, Takumi
  • Yamaguchi, Haruyuki
  • Hasegawa, Chihiro

Abrégé

Provided is a DC power supply device that is connected to a load that can become a DC power supply, the DC power supply device comprising: a main circuit unit that has a high potential output terminal connected to a high potential input terminal of the load, and a low potential output terminal connected to a low potential input terminal of the load, and that is connected to a power supply, converts the power supplied from the power supply to DC power according to the load, and that supplies the converted DC power to the load; and a first rectifying element that is provided at one of between the high potential input terminal and the high potential output terminal, and between the low potential input terminal and the low potential output terminal, and suppresses the inflow of energy from the load to the main circuit unit. As a result, provided is a DC power supply device that can suppress the inflow of energy from the load.

Classes IPC  ?

  • H02M 7/12 - Transformation d'une puissance d'entrée en courant alternatif en une puissance de sortie en courant continu sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • H02J 7/00 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries
  • H02M 3/155 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant continu sans transformation intermédiaire en courant alternatif par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande utilisant uniquement des dispositifs à semi-conducteurs

31.

ELECTRIC POWER CONVERSION UNIT

      
Numéro d'application JP2023006390
Numéro de publication 2024/176373
Statut Délivré - en vigueur
Date de dépôt 2023-02-22
Date de publication 2024-08-29
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Hano Mitsuru

Abrégé

An electric power conversion unit comprising a casing, a first element, a second element, and an anti-explosion plate. The first element is disposed inside the casing. The second element is disposed adjacent to the first element in a horizontal direction inside the casing. The anti-explosion plate covers the first element and the second element in a top view of the casing. The anti-explosion plate is a laminate conductor connected to the first element and the second element.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

32.

HMI SCREEN DESIGN DEVICE AND SCADA WEB HMI SYSTEM

      
Numéro d'application JP2023004838
Numéro de publication 2024/171267
Statut Délivré - en vigueur
Date de dépôt 2023-02-13
Date de publication 2024-08-22
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

Provided is an HMI screen creation device capable of creating an HMI screen in which a plurality of operation elements can be exclusively placed with a high degree of freedom without degrading the quality of the HMI screen. An HMI screen design device according to the present disclosure comprises a drawing unit having a stencil area in which the plurality of operation elements to be placed on the HMI screen are arranged so as to be selectable and a drawing area in which a drawing is prepared by placing the operation elements selected on the stencil area, and a drawing data generating unit that generates drawing data, which is data about the drawing, in which the plurality of operation elements are placed. The drawing unit includes an exclusive grouping means that mutually exclusively groups the plurality of operation elements placed on the drawing.

Classes IPC  ?

  • G06F 3/04817 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] fondées sur des propriétés spécifiques de l’objet d’interaction affiché ou sur un environnement basé sur les métaphores, p. ex. interaction avec des éléments du bureau telles les fenêtres ou les icônes, ou avec l’aide d’un curseur changeant de comportement ou d’aspect utilisant des icônes
  • G05B 23/02 - Test ou contrôle électrique
  • G06F 3/14 - Sortie numérique vers un dispositif de visualisation
  • G06F 8/34 - Programmation graphique ou visuelle

33.

TEMPERATURE CONTROL SYSTEM AND TEMPERATURE CONTROL METHOD FOR HOT ROLLING LINE

      
Numéro d'application JP2023002456
Numéro de publication 2024/157420
Statut Délivré - en vigueur
Date de dépôt 2023-01-26
Date de publication 2024-08-02
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Kitagoh, Kazutoshi

Abrégé

This hot rolling line comprises: a rough rolling mill; a finishing rolling mill; an intermediate device group provided between the rough rolling mill and the finishing rolling mill; a rough outlet side thermometer provided between the rough rolling mill and the intermediate device group; a finishing inlet-side thermometer provided between the finishing rolling mill and the intermediate device group; and a control device. The intermediate device group includes a cooling device which uses cooling water to cool a material-to-be-rolled. The control device includes: a setting calculation device which determines a flow rate setting value of the cooling water in the cooling device; a feed forward control device which executes, on the basis of the flow rate setting value, a feed forward control of the flow rate of the cooling water in the cooling device; and a learning device which calculates learning values on the basis of actual flow rate values of the cooling water in the cooling device and finishing inlet-side temperature values indicating actual temperature values of the material-to-be-rolled measured by the finishing inlet-side thermometer.

Classes IPC  ?

  • B21B 45/02 - Dispositifs pour le traitement de surface des pièces spécialement combinés aux laminoirs, disposés dans les laminoirs, ou adaptés pour être utilisés avec les laminoirs pour lubrifier, refroidir ou nettoyer

34.

STEEL SHEET TEMPERATURE CONTROLLER

      
Numéro d'application JP2022048464
Numéro de publication 2024/142347
Statut Délivré - en vigueur
Date de dépôt 2022-12-28
Date de publication 2024-07-04
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Takagi, Sanga
  • Shimotani, Toshihito

Abrégé

In the present invention, regarding first control indexes for steel-sheet winding temperature, four values, i.e., target, simple prediction, detailed prediction, and measured values, are calculated. Additionally, regarding second control indexes for steel-sheet winding temperature, three values, i.e., target, simple prediction, and measured values, are calculated. The target value and the detailed prediction value corresponding to the first control indexes are used for calculating a water spray amount (FF water spray amount) in FF banks. The target values corresponding to the first and second control indexes and the measured values corresponding to the first and second control indexes are used for calculating a water spray amount (FB water spray amount) in FB banks. The water spray amount in the FF banks is controlled on the basis of the positions of segments constituting the steel sheet, an initial water spray amount, and the FF water spray amount. The water spray amount in the FB banks is controlled on the basis of the positions of the segments constituting the steel sheet, an initial water spray amount, and the FB water spray amount.

Classes IPC  ?

  • B21B 45/02 - Dispositifs pour le traitement de surface des pièces spécialement combinés aux laminoirs, disposés dans les laminoirs, ou adaptés pour être utilisés avec les laminoirs pour lubrifier, refroidir ou nettoyer
  • B21B 37/76 - Commande du refroidissement sur la table de sortie

35.

PLATE THICKNESS CONTROL DEVICE OF ROLLING MILL

      
Numéro d'application JP2022048196
Numéro de publication 2024/142253
Statut Délivré - en vigueur
Date de dépôt 2022-12-27
Date de publication 2024-07-04
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Okano, Yuki
  • Yamasaki, Yukihiro
  • Kiyofuji, Ryota
  • Shimotani, Toshihito

Abrégé

This plate thickness control device of a rolling mill, which rolls a material-to-be-rolled to obtain a target plate thickness of a product, comprises a thickness deviation learning unit and a gap correction amount calculation unit. The plate thickness deviation learning unit learns a tendency of a plate thickness deviation that is the difference between the plate thickness of a product and the actual plate thickness of a material-to-be-rolled, which is measured in the outlet side of the rolling mill. In addition, the plate thickness deviation learning unit adopts, as the material-to-be-rolled, a material-to-be-rolled intended to be rolled by means of the rolling mill, and predicts, before rolling the material-to-be-rolled, the plate thickness deviation of the material-to-be-rolled on the basis of product information including the kind of steel and the plate thickness of a product of the material-to-be-rolled, and a value of the material-to-be-rolled measured at the upstream side of the rolling mill. The gap correction amount calculation unit calculates a gap correction amount for correcting a roll gap of the rolling mill so as to negate the plate thickness deviation predicted by the plate thickness deviation learning unit. The plate thickness control device of the rolling mill adjusts the roll gap of the rolling mill on the basis of the gap correction amount calculated by the gap correction amount calculation unit before rolling the material-to-be-rolled.

Classes IPC  ?

  • B21B 37/20 - Commande automatique du calibrage dans des laminoirs en tandem

36.

ULTRASONIC ATOMIZATION DEVICE

      
Numéro d'application JP2022046825
Numéro de publication 2024/134753
Statut Délivré - en vigueur
Date de dépôt 2022-12-20
Date de publication 2024-06-27
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hiramatsu Takahiro
  • Orita Hiroyuki

Abrégé

The purpose of the present disclosure is to provide an ultrasonic atomization device capable of obtaining a mist supply amount of raw material solution mist with good responsiveness and accuracy. The ultrasonic atomization device (201) according to the present disclosure comprises: a non-contact type mist supply pipe (40) which is disposed above an atomization vessel (1), including a mist output pipe (1t), without contact with the atomization vessel (1); and a leakage prevention tank (45) which is connected to the mist output pipe (1t) without contact with the non-contact type mist supply pipe (40). The leakage prevention tank (45) accommodates an appropriate sealing liquid (16). At this time, the appropriate sealing liquid (16) is also accommodated inside a liquid accommodation space (SP14) disposed between the leakage prevention tank (45) and the mist output pipe (1t).

Classes IPC  ?

  • B05B 17/06 - Appareils de pulvérisation ou d'atomisation de liquides ou d'autres matériaux fluides, non couverts par les autres groupes de la présente sous-classe opérant suivant des procédés particuliers utilisant des vibrations ultrasonores

37.

ULTRASONIC ATOMIZATION DEVICE

      
Numéro d'application JP2022046883
Numéro de publication 2024/134766
Statut Délivré - en vigueur
Date de dépôt 2022-12-20
Date de publication 2024-06-27
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hiramatsu Takahiro
  • Orita Hiroyuki

Abrégé

The purpose of the present disclosure is to provide an ultrasonic atomization device that can precisely obtain the mist supply amount of raw material solution mist with good responsivity. An ultrasonic atomization device (101) according to the present disclosure has a non-contact type mist supply pipe (20) above an atomization vessel (1) such that the non-contact type mist supply pipe (20) is not in contact with the atomization vessel (1) including a mist output pipe (1t). A pipe overlapping space (SP12) is provided between a coupling pipe part (23) of the non-contact type mist supply pipe (20) and an upper region (A1t) of the mist output pipe (1t). A leakage prevention gas supply pipe (25) is provided inside the pipe overlapping space (SP12) such that the leakage prevention gas supply pipe (25) is in contact with neither the mist output pipe (1t) nor the non-contact type mist supply pipe (20). The leakage prevention gas supply pipe (25) outputs mist leakage prevention gas (G2) from a gas output port (28) provided in an upper part of the leakage prevention gas supply pipe (25).

Classes IPC  ?

  • B05B 17/06 - Appareils de pulvérisation ou d'atomisation de liquides ou d'autres matériaux fluides, non couverts par les autres groupes de la présente sous-classe opérant suivant des procédés particuliers utilisant des vibrations ultrasonores

38.

UNINTERRUPTIBLE POWER SUPPLY SYSTEM

      
Numéro d'application JP2022046179
Numéro de publication 2024/127578
Statut Délivré - en vigueur
Date de dépôt 2022-12-15
Date de publication 2024-06-20
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Imanishi, Ryogo

Abrégé

In this uninterruptible power supply system (1), each uninterruptible power supply device (U) includes a reactor (21) and a semiconductor switch (23) which are connected in series between a bypass AC power supply (6) and a load (8). When turning on each semiconductor switch, load current (IL) is shunted to the series connection bodies of the N reactors and semiconductor switches. Accordingly, in comparison with a case without the reactors, it is possible to suppress and reduce variation in the magnitudes of currents (I1 to IN) flowing through the N semiconductor switches, thereby enabling reduction in the size of the semiconductor switch and reduction in cost.

Classes IPC  ?

  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

39.

TENSION CONTROL DEVICE

      
Numéro d'application JP2022042740
Numéro de publication 2024/105858
Statut Délivré - en vigueur
Date de dépôt 2022-11-17
Date de publication 2024-05-23
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Ogawa, Ryo

Abrégé

Provided is a tension control device capable of suppressing a speed overshoot of rolling stock after exiting a final rolling stand of a finishing mill, to improve the accuracy of a stopping position of a tail end of the rewound rolling stock. The tension control device controls the tension of the rolling stock when the rolling stock that has exited the final rolling stand of the finishing mill is being wound onto a mandrel via a pinch roll. The tension control device is configured to be capable of switching a rotational drive of the mandrel between speed control and current control. The tension control device comprises a selecting means for comparing a torque required for speed control and a torque required for current control and selecting the smaller torque as a final torque, and an integrator for integrating an output of the speed control, and is additionally provided with a limit setting unit for setting a limit corresponding to a tension reference for the integrator, the configuration being such that the output of the integrator does not become saturated.

Classes IPC  ?

40.

UNINTERRUPTIBLE POWER SUPPLY DEVICE

      
Numéro d'application JP2022042534
Numéro de publication 2024/105806
Statut Délivré - en vigueur
Date de dépôt 2022-11-16
Date de publication 2024-05-23
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Matsumoto, Jun

Abrégé

A bidirectional chopper (2) selectively performs a charging operation for storing DC power received from DC bus lines (L1, L2) into an electricity storage device (7) and a discharging operation for outputting the DC power of the electricity storage device (7) to the DC bus lines (L1, L2). An inverter (3) converts the DC power received from the DC bus lines (L1, L2) into AC power to supply the AC power to a load (8) and converts a regenerative power generated by the load (8) into DC power to output the DC power to the DC bus lines (L1, L2). In the electricity storage device (7), a SOC reference value is set that is smaller than the upper limit value of an SOC usable range and larger than the lower limit value of the usable range. When an AC power supply (6) is healthy, a control device (5) controls the bidirectional chopper (2) so that the SOC of the electricity storage device (7) becomes the SOC reference value. When the AC power supply (6) is failed, the control device (5) controls, on the basis of the usable range, the discharging operation corresponding to the powering operation of the load (8) and the charging operation corresponding to the regenerative operation of the load (8).

Classes IPC  ?

  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique
  • B66B 1/34 - Systèmes de commande des ascenseurs en général Détails
  • B66B 5/02 - Utilisation de dispositifs de vérification, de rectification, de mauvais fonctionnement ou de sécurité des ascenseurs réagissant à des conditions de fonctionnement anormales

41.

DRIVE DEVICE, POWER CONVERTER, AND DRIVE METHOD

      
Numéro d'application JP2022042852
Numéro de publication 2024/105880
Statut Délivré - en vigueur
Date de dépôt 2022-11-18
Date de publication 2024-05-23
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Kuwabara Kento

Abrégé

A drive device according to a first aspect of an embodiment comprises an impedance adjusting unit. The impedance adjusting unit uses a current value flowing through elements of a power converter and adjusts the impedance of a path for sending a control signal from a drive unit of the elements to a semiconductor switching element among the elements.

Classes IPC  ?

  • H02M 1/08 - Circuits spécialement adaptés à la production d'une tension de commande pour les dispositifs à semi-conducteurs incorporés dans des convertisseurs statiques

42.

ELECTRIC POWER CONVERTER

      
Numéro d'application JP2022040817
Numéro de publication 2024/095348
Statut Délivré - en vigueur
Date de dépôt 2022-10-31
Date de publication 2024-05-10
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hagiwara, Takumi
  • Tawada, Yoshihiro

Abrégé

In the present invention, an electric power converter comprises a housing, and first and second three-phase block semiconductor units of identical structure within the housing, wherein: each of the first and second three-phase block semiconductor units has a cooler, a semiconductor, a gate driver substrate, a first AC terminal, a second AC terminal, and a third AC terminal; the first AC terminals, the second AC terminals, and the third AC terminals are positioned facing each other within the housing so that the coolers are arranged on the outer side within the housing and so that the semiconductors, the gate driver substrates, the first AC terminals, the second AC terminals, and the third AC terminals are arranged on the inner side within the housing; the first three-phase block semiconductor unit is configured so that, due to a signal distribution substrate provided to the electric power converter, a U-phase signal is transmitted to the first AC terminal, a V-phase signal is transmitted to the second AC terminal, and a W-phase signal is transmitted to the third AC terminal; and the second three-phase block semiconductor unit is configured so that, due to the signal distribution substrate provided to the electric power converter, wiring is switched so that a U phase and a W phase are reversed, a W-phase signal being transmitted to the first AC terminal, a V-phase signal being transmitted to the second AC terminal, and a U-phase signal being transmitted to the third AC terminal.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • H02M 7/493 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande les convertisseurs statiques étant agencés pour le fonctionnement en parallèle

43.

ULTRASONIC ATOMIZATION DEVICE

      
Numéro d'application JP2022038553
Numéro de publication 2024/084545
Statut Délivré - en vigueur
Date de dépôt 2022-10-17
Date de publication 2024-04-25
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hiramatsu Takahiro
  • Orita Hiroyuki

Abrégé

The purpose of the present disclosure is to provide an ultrasonic atomization device that can precisely detect the liquid surface level of a raw material solution. In an ultrasonic atomization device (100) of the present disclosure, a raw material solution separation pipe (20) is provided to a side surface of an atomization container (1). The raw material solution separation pipe (20) has a raw material solution accommodation space (22) that is for accommodating a raw material solution (15) and a raw material solution passage port (20B) that is for performing supply and discharge of the raw material solution (15) between a raw material solution container and the raw material solution separation pipe (20). A liquid surface detector (40) is provided in proximity to the raw material solution separation pipe (20). The liquid surface detector (40) detects the level of the liquid surface (15A) of the raw material solution (15) in the raw material solution accommodation space (22) and outputs a liquid surface detection signal (S40) indicating the detected level of the liquid surface (15A).

Classes IPC  ?

  • B05B 17/06 - Appareils de pulvérisation ou d'atomisation de liquides ou d'autres matériaux fluides, non couverts par les autres groupes de la présente sous-classe opérant suivant des procédés particuliers utilisant des vibrations ultrasonores

44.

ACTIVE GAS GENERATION DEVICE

      
Numéro d'application JP2022039029
Numéro de publication 2024/084640
Statut Délivré - en vigueur
Date de dépôt 2022-10-20
Date de publication 2024-04-25
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Arita Ren

Abrégé

The purpose of the present disclosure is to provide an active gas generation device having a structure for preventing dielectric breakdown of a dielectric film. In an electrode unit (51) of an active gas generation device (71) according to the present disclosure, a dielectric film support member (10) has a support surface (10F) that supports a high voltage–side dielectric film (2) from below. The lower surface of a dielectric film suppression member (11) provided above a ground-side dielectric film (3) has: a dielectric substance contact area (112) that overlaps a peripheral area of the high voltage–side dielectric film (2) and the support surface (10F) of the dielectric film support member (10) in a plan view; and a dielectric substance non-contact area (111) that overlaps an intermediate area of the high voltage–side dielectric film (2) in a plan view. The high voltage–side dielectric film (2) is suppressed from the dielectric substance contact area (112) thereabove by the dielectric film suppression member (11) that receives the pressing force of a plurality of suppression assist members (32).

Classes IPC  ?

45.

PHASE ANGLE DETECTION SYSTEM, CONTROL DEVICE, AND PHASE ANGLE DETECTION METHOD

      
Numéro d'application JP2022038281
Numéro de publication 2024/079861
Statut Délivré - en vigueur
Date de dépôt 2022-10-13
Date de publication 2024-04-18
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Kojima Makimura Ayame
  • Ishimaru Yusuke
  • Tobayashi Shunsuke

Abrégé

A phase angle detection system according to one aspect of an embodiment of the present invention detects the phase angle of an electric motor in a drive system equipped with a transmission unit that changes the rotation speed of the electric motor. This phase angle detection system comprises: a first sensor; a second sensor; and an arithmetic processing unit. The first sensor outputs a first signal for detecting at least a specific phase angle of a rotor of the electric motor. The second sensor outputs a second signal that enables the detection of the amount of rotation of an output shaft of the transmission unit. In the arithmetic processing unit, the amount of deviation included in a detection result of the specific phase angle from the first signal is predefined for each rotational direction of the electric motor, and the deviation amount of the first signal determined by the rotational direction of the electric motor, the detection result of the first signal, and the second signal are used to calculate an estimated value of the absolute angle of the rotor of the electric motor.

Classes IPC  ?

  • H02P 6/16 - Dispositions de circuits pour détecter la position

46.

CONTROL DEVICE AND POWER CONVERSION DEVICE

      
Numéro d'application JP2022037267
Numéro de publication 2024/075212
Statut Délivré - en vigueur
Date de dépôt 2022-10-05
Date de publication 2024-04-11
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Katsukura, Tomoya
  • Tawada, Yoshihiro
  • Fukasawa, Issei
  • Kinoshita, Masahiro

Abrégé

Provided is a control device in a power conversion device for photovoltaic power generation connected with solar panels at a DC side, wherein the control device comprises: a modulation rate calculation unit which calculates a modulation rate on the basis of a DC voltage of the DC side of the power conversion device and a system voltage RMS value of an AC side of the power conversion device; a limiter adjustment unit which calculates a lower limit limiter operation value on the basis of a prescribed lower limiter setting value, the system voltage RMS value, and a prescribed rated value in response to the modulation rate calculated by the modulation rate calculation unit; a limiter which updates a DC voltage command lower limit limiter on the basis of the lower limit limiter operation value calculated by the limiter adjustment unit; a maximum power point follow-up control unit which performs a maximum power point follow-up control on the basis of DC power generated by the solar panels to calculate a first DC voltage command value, and determines a second DC voltage command value on the basis of the calculated first DC voltage command value and the DC voltage command lower limit limiter set in the limiter; and an inverter control unit which controls an inverter in the power conversion device on the basis of the second DC voltage command value determined by the maximum power point follow-up control unit.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • G05F 1/67 - Régulation de la puissance électrique à la puissance maximale que peut fournir un générateur, p. ex. une cellule solaire

47.

ROLLING RISK PRESENTATION DEVICE

      
Numéro d'application JP2022037301
Numéro de publication 2024/075220
Statut Délivré - en vigueur
Date de dépôt 2022-10-05
Date de publication 2024-04-11
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Zhao, Lele

Abrégé

Provided is a rolling risk presentation device that can present a rolling risk to an operator in a rolling plant such that countermeasures for suppressing and preventing the occurrence of an alarm are taken prior to rolling. The rolling risk presentation device comprises a system database, an alarm history information classification unit, an occurrence probability calculation unit, and a rolling risk presentation unit. The system database stores alarm history information including alarms generated in the past during rolling. The alarm history information classification unit classifies and organizes the alarm history information, that is stored in the system database, by each type of material to be rolled and product size. The occurrence probability calculation unit statistically calculates the number of occurrences of each alarm classified and organized by the alarm history information classification unit for each type of material to be rolled and product size, and calculates the probability of occurrence of each alarm. The rolling risk presentation unit displays the occurrence probability calculated by the occurrence probability calculation unit for each alarm, and thereby presents, to the operator in the rolling plant and before rolling of the material to be rolled, the rolling risks that may occur during rolling of the material to be rolled.

Classes IPC  ?

  • B21B 38/00 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit
  • B21B 33/00 - Dispositifs de sécurité non prévus ailleursDisjoncteursDispositifs pour libérer les cylindres coincés
  • G05B 23/02 - Test ou contrôle électrique

48.

POWER SUPPLY DEVICE

      
Numéro d'application JP2022037404
Numéro de publication 2024/075236
Statut Délivré - en vigueur
Date de dépôt 2022-10-06
Date de publication 2024-04-11
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Zhang, Xiaochen

Abrégé

In the present invention, a first communication line (F1) transmits a control signal (S) from an interface circuit (34) to an n-th drive circuit (GDn) in sequence via a first drive circuit (GD1). A second communication line (F2) transmits a semiconductor switch state detection signal (DS) from the n-th drive circuit (GDn) to the interface circuit (34) in sequence via the first drive circuit (GD1). An i-th drive circuit (GDi) includes a driver for driving an i-th semiconductor switch (SWi) in response to the control signal (S), an abnormality detection circuit for detecting an abnormality of the i-th semiconductor switch (SWi), and first and second notification members (A1, A2). The abnormality detection circuit detects an abnormality of the i-th semiconductor switch (SWi) on the basis of the control signal (S) and an operating state of the i-th semiconductor switch (SWi) and notifies of the detection result by using the first notification member (A1). The abnormality detection circuit generates state detection signals indicating operating states of the i-th to the n-th semiconductor switches (SWi to SWn), detects mismatch between the control signal (S) and the operating states of the i-th to the n-th semiconductor switches (SWi to SWn) on the basis of the control signal (S) and the state detection signals, and notifies of the detection result by using the second notification member (A2).

Classes IPC  ?

  • H02H 7/00 - Circuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail
  • H02H 3/05 - Circuits de protection de sécurité pour déconnexion automatique due directement à un changement indésirable des conditions électriques normales de travail avec ou sans reconnexion Détails avec des moyens pour accroître la fiabilité, p. ex. dispositifs redondants
  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

49.

POWER SUPPLY DEVICE

      
Numéro d'application JP2022037416
Numéro de publication 2024/075239
Statut Délivré - en vigueur
Date de dépôt 2022-10-06
Date de publication 2024-04-11
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Tomita, Takashi
  • Hasegawa, Chihiro
  • Usuki, Kazuhiro

Abrégé

A power supply device according to the embodiment supplies DC power to an electrolytic cell that generates hydrogen through electrolysis. This power supply device comprises: a self-excited power converter including a first output terminal and a second output terminal that outputs a positive voltage with respect to the first output terminal; a reactor serially connected to at least one of the first output terminal and the second output terminal; and a filter circuit connected between an anode and a cathode of the electrolytic cell. The filter circuit is a low-pass filter. The cutoff frequency of the filter circuit is set to be lower than the switching frequency of the power converter.

Classes IPC  ?

  • C25B 9/65 - Dispositifs pour l'alimentation en courantConnexions d'électrodesConnexions électriques intercellulaires
  • H02M 7/02 - Transformation d'une puissance d'entrée en courant alternatif en une puissance de sortie en courant continu sans possibilité de réversibilité

50.

ACTIVE GAS GENERATION DEVICE

      
Numéro d'application JP2022034306
Numéro de publication 2024/057424
Statut Délivré - en vigueur
Date de dépôt 2022-09-14
Date de publication 2024-03-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Watanabe Kensuke
  • Arita Ren

Abrégé

The purpose of the present disclosure is to provide an active gas generation device capable of supplying a high-concentration active gas. In an active gas generation device (5) according to the present disclosure, a first number of high-voltage electrode structures (13) are each held inside a holding space (S54) of a corresponding groove (54) among a first number of grooves (54), and a second number of grounding electrode structures (14, 3, 4) are each held inside a holding space (S54) of a corresponding groove (54) among a second number of grooves (54). The first number of high-voltage electrode structures (13) and the second number of grounding electrode structures (14, 3, 4) are alternately disposed in a Y-direction. A first planar region of each of the first number of high-voltage electrode structures (13) and a second planar region of each of the second number of grounding electrode structures (14, 3, 4) face each other with a separation space (S56) therebetween.

Classes IPC  ?

51.

CAMBER CONTROL DEVICE FOR CONTINUOUS ROLLING MILL

      
Numéro d'application JP2022034450
Numéro de publication 2024/057454
Statut Délivré - en vigueur
Date de dépôt 2022-09-14
Date de publication 2024-03-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Ueno, Satoshi

Abrégé

Provided is a camber control device for a continuous rolling mill, capable of reducing a camber in a tip part of a rolling material and suppressing the occurrence of telescoping of a steel strip coil. In this invention, a tip camber measurement unit calculates a tip camber measurement value at a rolling material tip part on the basis of a meandering amount of the rolling material detected by a meandering amount detector. A camber rectification leveling computation unit calculates a camber rectification leveling amount on the basis of the tip camber measurement value. A tip leveling setting unit sets a tip leveling control length and a tip leveling correction amount for reducing the tip camber for a reduction leveling device of each rolling stand. A reduction leveling control unit adjusts the reduction leveling device to a tip-leveling-correction-amount-added position before the rolling material enters the each rolling stand and adjusts the position of the reduction leveling device in such a manner that the tip leveling correction amount gradually decreases after the rolling length at the each rolling stand has reached the tip leveling control length.

Classes IPC  ?

  • B21B 37/58 - Commande de la force de laminageCommande de l'écartement des cylindres
  • B21B 37/68 - Commande de la cambrure ou de la direction des bandes, des feuilles ou des tôles, p. ex. prévention des méandres
  • B21B 38/04 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit pour mesurer l'épaisseur, la largeur, le diamètre ou d'autres dimensions transversales du produit
  • B21C 51/00 - Dispositifs de mesure, de calibrage, d'indication, de comptage ou de marquage, spécialement conçus pour être utilisés dans la production ou la manipulation des matériaux concernés par les sous-classes

52.

ASSEMBLY JIG FOR POWER CONVERSION APPARATUS AND METHOD FOR MANUFACTURING POWER CONVERSION APPARATUS

      
Numéro d'application JP2022034774
Numéro de publication 2024/057535
Statut Délivré - en vigueur
Date de dépôt 2022-09-16
Date de publication 2024-03-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Motobayashi, Hirotaka
  • Udagawa, Ikuto
  • Nakabayashi, Shigeyuki

Abrégé

An assembly jig for a power conversion apparatus, comprising: a pair of fixing portions (11, 15) arranged so as to oppose each other in a first direction orthogonal to an up-down direction; and a supporting member (21) which is provided so as to be attachable from below to a pair of insulating frames (121, 122) fixed to the pair of fixing portions (11, 15) so as to oppose each other in a second direction orthogonal to the up-down direction and first direction and which is for supporting, in the state of being attached to the pair of insulating frames (121, 122), heat dissipation plates and power semiconductor elements that are alternately arranged to be stacked in the first direction between the pair of insulating frames (121, 122), wherein the supporting member (21) comprises a guide portion that, when the heat dissipation plates and power semiconductor elements having been stacked are pressure-welded to each other in the first direction, guides the movements of the heat dissipation plates and power semiconductor elements in the first direction.

Classes IPC  ?

  • H01L 23/40 - Supports ou moyens de fixation pour les dispositifs de refroidissement ou de chauffage amovibles
  • H01L 25/10 - Ensembles consistant en une pluralité de dispositifs à semi-conducteurs ou d'autres dispositifs à l'état solide les dispositifs étant tous d'un type prévu dans une seule des sous-classes , , , , ou , p. ex. ensembles de diodes redresseuses les dispositifs ayant des conteneurs séparés
  • H01L 25/11 - Ensembles consistant en une pluralité de dispositifs à semi-conducteurs ou d'autres dispositifs à l'état solide les dispositifs étant tous d'un type prévu dans une seule des sous-classes , , , , ou , p. ex. ensembles de diodes redresseuses les dispositifs ayant des conteneurs séparés les dispositifs étant d'un type prévu dans la sous-classe
  • H01L 25/18 - Ensembles consistant en une pluralité de dispositifs à semi-conducteurs ou d'autres dispositifs à l'état solide les dispositifs étant de types prévus dans plusieurs différents groupes principaux de la même sous-classe , , , , ou

53.

DESIGN ASSISTANCE DEVICE AND DESIGN ASSISTANCE METHOD

      
Numéro d'application JP2022032900
Numéro de publication 2024/047828
Statut Délivré - en vigueur
Date de dépôt 2022-09-01
Date de publication 2024-03-07
Propriétaire
  • MITSUBISHI ELECTRIC CORPORATION (Japon)
  • TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Onishi, Tadashi
  • Sakamoto, Yusuke
  • Mariyama, Toshisada
  • Oyamada, Masatsugu

Abrégé

A design assistance device (2) is configured to comprise: a data acquisition unit (11) for acquiring, as candidate design data for an electric motor, a plurality of pieces of candidate design data that include a plurality of design parameters, and acquiring a first evaluation value for each of the plurality of pieces of candidate design data; and a data generation unit (13) that selects, from among the plurality of pieces of candidate design data acquired by the data acquisition unit (11), some pieces of candidate design data from the first place in the descending order of the first evaluation value as a plurality of pieces of first candidate design data and generates, from the plurality of pieces of first candidate design data, a plurality of pieces of second candidate design data including the plurality of design parameters. In addition, the design assistance device (2) comprises: an evaluation value calculation unit (14) that calculates a second evaluation value for each piece of the first candidate design data on the basis of the plurality of design parameters contained in this piece of the first candidate design data and calculates the second evaluation value for each piece of the second candidate design data on the basis of the plurality of design parameters contained in this piece of the second candidate design data; and a design data selection unit (15) for using the second evaluation values calculated by the evaluation value calculation unit (14) to select, from among the plurality of pieces of first candidate design data and the plurality of pieces of second candidate design data, candidate design data to be used as the design data for the electric motor.

Classes IPC  ?

  • G06F 30/20 - Optimisation, vérification ou simulation de l’objet conçu
  • G06F 111/06 - Optimisation multi-objectif, p. ex. optimisation de Pareto utilisant le recuit simulé, les algorithmes de colonies de fourmis ou les algorithmes génétiques

54.

POWER CONVERSION SYSTEM

      
Numéro d'application JP2022032946
Numéro de publication 2024/047841
Statut Délivré - en vigueur
Date de dépôt 2022-09-01
Date de publication 2024-03-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Morisaki, Kouki
  • Fukasawa, Issei
  • Kinoshita, Masahiro

Abrégé

The present disclosure provides a low-cost power conversion system that allows for lower loss and less space to be required. The power conversion system comprises: a power converter that converts DC power inputted from a DC power supply to AC power or DC power; a capacitor provided between a positive pole DC line and a negative pole DC line connected to an input terminal of the power converter; a ground line that connects the negative pole DC line and a ground potential and that is provided with a first grounding resistor; a discharge line that connects the positive pole DC line and the ground line on the ground potential side of the first grounding resistor; and a discharge switch that is provided in the discharge line and is turned ON when discharging the residual charge in the capacitor.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

55.

ELECTRIC POWER CONVERSION CONTROL DEVICE, ELECTRIC POWER CONVERSION DEVICE, AND PROTECTION METHOD

      
Numéro d'application JP2022032446
Numéro de publication 2024/047710
Statut Délivré - en vigueur
Date de dépôt 2022-08-29
Date de publication 2024-03-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Tezuka Hisataka
  • Ishida Yusuke

Abrégé

This electric power conversion control device comprises: an optical fiber; an optical detection part; and a protection control part. The optical fiber is formed to guide light taken in through the side surface of an extending light guide part in the extension direction and to output the light from an end of the light guide part. The optical detection part detects the light guided to the end of the light guide part. When the optical detection part has detected light resulting from an accident accompanied by arc flash, the protection control part halts electric power conversion carried out by an electric power converter relating to the optical fiber.

Classes IPC  ?

  • G01R 31/00 - Dispositions pour tester les propriétés électriquesDispositions pour la localisation des pannes électriquesDispositions pour tests électriques caractérisées par ce qui est testé, non prévues ailleurs

56.

EV CHARGING FACILITY AND OPERATION METHOD

      
Numéro d'application JP2022032786
Numéro de publication 2024/047799
Statut Délivré - en vigueur
Date de dépôt 2022-08-31
Date de publication 2024-03-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Wang, Xiangguo

Abrégé

Provided is an EV charging facility comprising: a plurality of charging stands that, by being attachably/detachably connected to EVs, charge power storage devices mounted to the connected EVs; a plurality of power supply circuits that convert power fed from a power system side into DC power corresponding to the EVs and feed the converted DC power to any of the charging stands; a charging and discharging stand that, by being attachably/detachably connected to an EV, charges and discharges a power storage device mounted to the connected EV; and a bidirectional converter that performs bidirectional power conversion in a direction in which the power storage device of the EV connected to the charging and discharging stand is charged and a direction in which the power storage device of the EV connected to the charging and discharging stand is discharged. Accordingly, it is possible to provide an EV charging facility which comprises a plurality of charging stands and which can reduce contracted power with a simpler configuration, and an operation method therefor.

Classes IPC  ?

  • H02J 3/46 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs contrôlant la répartition de puissance entre les générateurs, convertisseurs ou transformateurs

57.

INVERTER APPARATUS

      
Numéro d'application JP2022032951
Numéro de publication 2024/047843
Statut Délivré - en vigueur
Date de dépôt 2022-09-01
Date de publication 2024-03-07
Propriétaire
  • TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION (Japon)
  • TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Takeuchi Katsutoku
  • Matsushita Makoto
  • Tsuboi Yuichi
  • Kosugi Yusuke

Abrégé

According to one embodiment of the present invention, an inverter apparatus (100) comprises: a power converter (101) for an armature winding; a power converter (102) for a field winding; a velocity control unit (110) which controls three-phase current on dq-axes; a field current control unit (120) which controls field winding current; a simulator (130); and a damper winding failure detection device (200). The damper winding failure detection unit (200) has: a switching unit (210) which switches between a normal operation mode and a failure inspection mode; an inspection current command value generation unit (220) which outputs an AC as a q-axis current command and outputs a DC equivalent value as a d-axis current command in the failure inspection mode; and an inspection time measurement/determination unit (230) which measures a response in a field winding (13) and determines, from a response signal, the presence or absence of anomaly in the damper winding.

Classes IPC  ?

  • H02P 23/00 - Dispositions ou procédés pour la commande de moteurs à courant alternatif caractérisés par un procédé de commande autre que la commande par vecteur
  • H02P 6/32 - Dispositions pour la commande de moteurs à champ enroulé, p. ex. de moteurs avec bobines d’excitation
  • H02P 25/022 - Moteurs synchrones

58.

ELECTROMAGNETIC WAVE DETECTION DEVICE

      
Numéro d'application JP2022032304
Numéro de publication 2024/047681
Statut Délivré - en vigueur
Date de dépôt 2022-08-29
Date de publication 2024-03-07
Propriétaire
  • MITSUBISHI ELECTRIC CORPORATION (Japon)
  • TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Yamakaji, Yusuke
  • Mizuguchi, Takahiro
  • Kitano, Moe

Abrégé

This electromagnetic wave detection device detects electromagnetic waves from an electromagnetic wave generation source (100) in a first space A in which the electromagnetic wave generation source (100) is disposed and a second space B that is divided by a partitioning plate (200) which attenuates the propagation of electromagnetic waves. The electromagnetic wave detection device comprises an electromagnetic wave observation part (10) comprising a metal wire including: a penetration section (11) that penetrates through a through hole (200A) formed in the partitioning plate (200) while being spaced apart from a peripheral wall of the through hole; a protrusion section (12) that protrudes from the penetration section (11) toward the first space A, and receives electromagnetic waves from the electromagnetic wave generation source (100); and an extension section (13) that extends from the penetration section (11) into the second space B. One end of the electromagnetic wave observation part that is positioned on the second space B side is connected to a ground contact point (300) positioned on the second space B side.

Classes IPC  ?

  • G01R 29/08 - Mesure des caractéristiques du champ électromagnétique
  • G01R 31/12 - Test de la rigidité diélectrique ou de la tension disruptive

59.

HOT ROLLING MILL PLATE THICKNESS CONTROL DEVICE

      
Numéro d'application JP2022031680
Numéro de publication 2024/042601
Statut Délivré - en vigueur
Date de dépôt 2022-08-23
Date de publication 2024-02-29
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Tachibana, Minoru

Abrégé

The present disclosure provides a hot rolling mill plate thickness control device capable of reliably threading a tip end portion of material being rolled, without increasing equipment costs, even if the material being rolled is being rolled to be extremely thin. The hot rolling mill plate thickness control device comprises: a plate thickness gauge installed on an exit side of a final rolling stand in a row-arrangement direction; a gap calculating unit for calculating a gap between rolls of each rolling stand, said gap being greater than a product target plate thickness of the material being rolled and corresponding to a threadable plate thickness with which the tip end portion of the material being rolled can be stably threaded; a gap setting unit for setting the gap calculated by the gap calculating unit for each rolling stand; an automatic plate thickness control unit for executing automatic plate thickness control to minimize a plate-thickness deviation between a plate thickness measured value from the plate thickness gauge and the threadable plate thickness; and a target plate thickness changing unit for changing the threadable plate thickness to the product target plate thickness by adding a plate-thickness bias to the plate-thickness deviation with a predetermined ramp rate, after the tip end portion of the material being rolled has been threaded through the final rolling stand.

Classes IPC  ?

  • B21B 37/20 - Commande automatique du calibrage dans des laminoirs en tandem

60.

CONTROL DEVICE AND POWER CONVERSION DEVICE IN SOLAR POWER GENERATING SYSTEM

      
Numéro d'application JP2022031698
Numéro de publication 2024/042608
Statut Délivré - en vigueur
Date de dépôt 2022-08-23
Date de publication 2024-02-29
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Colak, Alperen Mustafa
  • Tawada, Yoshihiro

Abrégé

This control device comprises: a first action control unit that causes a DC switch to open when a power conversion device is in a standby state and when a first DC voltage value acquired by a voltage acquiring unit has become greater than a predetermined first threshold; a clock unit that, when the DC switch is opened by the first action control unit, clocks the elapsed time after the DC switch has been opened; and a soundness determining unit that when the DC switch is opened while the power conversion device is in the standby mode and when the elapsed time period clocked by the clock unit has reached or exceeded a predetermined first time period, calculates a first differential voltage value that is the difference between the first DC voltage value acquired by the voltage acquiring unit and a second DC voltage value, determines that the DC switch is normal when the first differential voltage value is greater than a predetermined second threshold, and determines that the DC switch is abnormal when the first differential voltage value is equal to or less than the predetermined second threshold.

Classes IPC  ?

  • H02H 7/122 - Circuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour convertisseursCircuits de protection de sécurité spécialement adaptés aux machines ou aux appareils électriques de types particuliers ou pour la protection sectionnelle de systèmes de câble ou de ligne, et effectuant une commutation automatique dans le cas d'un changement indésirable des conditions normales de travail pour redresseurs pour convertisseurs ou redresseurs statiques pour onduleurs, c.-à-d. convertisseurs de courant continu en courant alternatif
  • G01R 31/327 - Tests d'interrupteurs de circuit, d'interrupteurs ou de disjoncteurs
  • H02J 3/38 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs

61.

POWER CONVERSION SYSTEM AND CONTROL METHOD

      
Numéro d'application JP2022031887
Numéro de publication 2024/042639
Statut Délivré - en vigueur
Date de dépôt 2022-08-24
Date de publication 2024-02-29
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shimizu Yoshifumi
  • Niimura Naoto

Abrégé

The daisy chain communication path of this power conversion system connects a master station that controls a plurality of slave stations each including a power conversion device and the plurality of slave stations to each other. The plurality of slave stations are configured so as to supply power from the power conversion device within each slave station to each load device. The plurality of slave stations switch between "operation" for supplying power from the power conversion devices and "stop" for interrupting the supply of the power to supply the power to the respective load devices. The daisy chain communication path forms a set of a first communication path for sending a control signal α and a second communication path for sending an operation permission signal β. When detecting a communication failure, each of the plurality of slave stations "stops" the supply of power to the power conversion device of a relevant slave station that has detected the communication failure and controls the other slave stations among the plurality of slave stations using the control signal α and the operation permission signal β to "stop" the supply of the power to the power conversion devices of the other slave stations. After that, in a state in which the power supply from each power conversion device is "stopped", the whole or a part of the plurality of slave stations notify, using the control signal α, the master station of information about a failure location in which the failure location is identifiably specified.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • H02M 7/49 - Combinaison des formes de tension de sortie d'une pluralité de convertisseurs

62.

DC POWER DISTRIBUTION SYSTEM AND VOLTAGE STABILIZING DEVICE

      
Numéro d'application JP2022032153
Numéro de publication 2024/042696
Statut Délivré - en vigueur
Date de dépôt 2022-08-26
Date de publication 2024-02-29
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Yamamoto, Yushin
  • Ogasawara, Satoshi
  • Orikawa, Koji
  • Suzuki, Sosuke

Abrégé

This DC power distribution system comprises a DC bus line (100) distributing DC power, a first power converter (CPL), and a voltage stabilizing device (10). The first power converter (CPL) is connected between the DC bus line (100) and a load and converts the DC power from the DC bus line (100) to the power required by the load. The voltage stabilizing device (10) is connected to the DC bus line (100) in parallel with the first power converter (CPL). The voltage stabilizing device (10) supplies power to the DC bus line (100) in accordance with the variation of an input voltage input from the DC bus line (100) to the first power converter (CPL) and the DC power supplied from the DC bus line (100) to the first power converter (CPL).

Classes IPC  ?

  • H02J 1/00 - Circuits pour réseaux principaux ou de distribution, à courant continu

63.

SHEET WIDTH CONTROL DEVICE FOR REVERSING ROLLING MILL

      
Numéro d'application JP2022030474
Numéro de publication 2024/034020
Statut Délivré - en vigueur
Date de dépôt 2022-08-09
Date de publication 2024-02-15
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Manabe, Tsubasa

Abrégé

This sheet width control device is applicable to a reversing rolling mill that comprises: an edger that has a pair of edger rolls that perform edge rolling on a material being rolled; and a horizontal rolling mill that is disposed downstream of the edger and has a pair of horizontal rolls that perform horizontal rolling on the material being rolled. The sheet width control device comprises a reduction control device, a reduction position detector, a tracking device, and a sheet width actual value calculation device. The reduction control device is configured to cause the edger to operate such that the pair of edger rolls make contact with the material being rolled during reverse pass rolling. The reduction position detector is configured to detect the reduction position of the edger when the pair of edger rolls are in contact with the material being rolled during reverse pass rolling. The tracking device is configured to track the position in the longitudinal direction of the material being rolled during reverse pass rolling. The sheet width actual value calculation device is configured to calculate a sheet width actual value for the material being rolled at a plurality of positions in the longitudinal direction on the basis of the output of the reduction position detector and the output of the tracking device.

Classes IPC  ?

  • B21B 38/04 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit pour mesurer l'épaisseur, la largeur, le diamètre ou d'autres dimensions transversales du produit
  • B21B 37/00 - Dispositifs ou procédés de commande spécialement adaptés aux laminoirs ou aux produits laminés
  • B21B 37/22 - Commande de l'écoulement latéralCommande de largeur, p. ex. par refoulement

64.

OPERATION ASSISTANCE METHOD FOR ROLLING LINE, OPERATION ASSISTANCE DEVICE, AND OPERATION ASSISTANCE PROGRAM

      
Numéro d'application JP2022030275
Numéro de publication 2024/033970
Statut Délivré - en vigueur
Date de dépôt 2022-08-08
Date de publication 2024-02-15
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Sasaki, Satomi

Abrégé

This method for assisting operation in a rolling line comprises a step for acquiring various data related to a rolled product manufactured on the rolling line. The method comprises: a step for calculating, for each product specification and on the basis of the various data, an occurrence rate of errors occurring in at least one of the quality of a rolled product, the operating status of a rolling line, and operator operations on actuators of the rolling line; and a step for setting, for each product specification and in accordance with how high the occurrence rate is, the manufacturing difficulty of the rolled product. The method further comprises a step for outputting assistance data from an operator terminal to assist an operator who is involved in a manufacturing process of an object to be manufactured on the rolling line, the assistance data comprising, as data on the manufacturing difficulty of the object to be manufactured, data on the manufacturing difficulty of a rolled product having the same product specifications as the product specifications of the object to be manufactured.

Classes IPC  ?

  • B21B 37/00 - Dispositifs ou procédés de commande spécialement adaptés aux laminoirs ou aux produits laminés

65.

PLATE THICKNESS CONTROL METHOD FOR ROLLING MILL AND RIGIDITY MONITORING METHOD

      
Numéro d'application JP2022030309
Numéro de publication 2024/033983
Statut Délivré - en vigueur
Date de dépôt 2022-08-08
Date de publication 2024-02-15
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Shimotani, Toshihito

Abrégé

The present disclosure provides a plate thickness control method for a rolling mill whereby it is possible to calculate an appropriate gap correction amount for the rolling mill on the basis of the amount of change in a rolling load between a previous material and a material in question, and to thus improve plate thickness precision. The plate thickness control method for a rolling mill includes: a step in which a rolled coil rolled immediately beforehand by a rolling mill is designated as a previous material, a rolled coil rolled after the previous material is designated as a material in question, the relationship between the amount of change in a rolling load between the previous material and the material in question and the amount of change in a gap error regarding the rolling mill is approximated sequentially by means of a regression model, and a gap error in the rolling of the material in question is predicted on the basis of the regression model; a step in which a gap setting amount in rolling of the material in question is corrected on the basis of the predicted value of the gap error; and a step in which a regression coefficient of the regression model is updated on the basis of the actual rolling load obtained by rolling the material in question and the amount of change in the actual gap error.

Classes IPC  ?

  • B21B 37/58 - Commande de la force de laminageCommande de l'écartement des cylindres
  • B21B 37/20 - Commande automatique du calibrage dans des laminoirs en tandem
  • B21B 37/64 - Systèmes de compensation du cédage de la cage ou des cylindres, p. ex. commande des laminoirs précontraints

66.

WINDING CONTROL SYSTEM

      
Numéro d'application JP2022030365
Numéro de publication 2024/033996
Statut Délivré - en vigueur
Date de dépôt 2022-08-09
Date de publication 2024-02-15
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Maruyama, Masato
  • Tsukamoto,tatsuya

Abrégé

A winding control system according to one embodiment comprises: a motor drive control device that controls the driving of a motor which rotationally drives a mandrel for winding a rolled material around a coil; a tail end sensor that detects one point of the rolled material to thereby output a detection signal indicating that the rolled material passes through a tail end; a winding control device that tracks the position of the tail end; a first camera that is provided between the finishing roll mill and the mandrel and captures images for first image data including information about the shape of the tail end; and an image analysis device that performs image analysis on the first image data at a timing at which the detection signal is emitted, generates a correction value for correcting the position of the tail end on the basis of a result of the image analysis of the image data, and outputs the correction value to the winding control device. The winding control device corrects the position of the tail end by using the correction value.

Classes IPC  ?

  • B21C 47/02 - Enroulement ou bobinage
  • B21C 51/00 - Dispositifs de mesure, de calibrage, d'indication, de comptage ou de marquage, spécialement conçus pour être utilisés dans la production ou la manipulation des matériaux concernés par les sous-classes

67.

POWER SUPPLY DEVICE

      
Numéro d'application JP2022029107
Numéro de publication 2024/024023
Statut Délivré - en vigueur
Date de dépôt 2022-07-28
Date de publication 2024-02-01
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Tomita, Takashi
  • Hasegawa, Chihiro

Abrégé

The power supply device according to an embodiment comprises: a power conversion unit including first input terminals, a first capacitor connected between the first input terminals, a first output terminal that supplies output current to an electromagnet, a first power conversion circuit connected between the capacitor and the output terminal, and first wiring that electrically connects the capacitor and the power conversion circuit to each other; and a control device that controls the power conversion unit on the basis of current command values sequentially supplied from the outside. The control device detects the sequential two maximal current values or sequential two minimal current values of the current command values to estimate the frequency of the output current.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

68.

THICKNESS SCHEDULE COMPUTING METHOD FOR TANDEM ROLLING MILL, AND ROLLING PLANT

      
Numéro d'application JP2022028727
Numéro de publication 2024/023910
Statut Délivré - en vigueur
Date de dépôt 2022-07-26
Date de publication 2024-02-01
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Yamasaki, Yukihiro

Abrégé

The present disclosure provides a thickness schedule calculation method and a rolling plant that make it possible to calculate and set a limit value for a limit check that is preferable for maintaining a stable rolling and operating state with reduced rolling troubles. The thickness schedule computing method comprises a computing step of computing a thickness schedule by using a rolling model formula including a forward slip model and a rolling load model, on the basis of a rolling load or motor power. The computing step includes a calculating step of calculating at least one of an upper limit value and a lower limit value of the rolling reduction ratio in each rolling stand on the basis of past rolling data, for each product specifications including a steel type category for rolling and a thickness category, and a setting step of setting at least one of the upper limit value and the lower limit value calculated in the calculating step as a limit value for a limit check with respect to the rolling reduction ratio.

Classes IPC  ?

  • B21B 37/20 - Commande automatique du calibrage dans des laminoirs en tandem
  • B21B 37/00 - Dispositifs ou procédés de commande spécialement adaptés aux laminoirs ou aux produits laminés

69.

POWER CONDITIONER AND POWER CONVERSION SYSTEM

      
Numéro d'application JP2022029138
Numéro de publication 2024/024040
Statut Délivré - en vigueur
Date de dépôt 2022-07-28
Date de publication 2024-02-01
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Okayasu, Masakazu
  • Li, Haiqing

Abrégé

In the present invention, a command value limiter applies limits to command values which are issued by a host device and which are for charging power and discharging power. A drive signal generator generates a drive signal for an inverter circuit in accordance with a command value for charging power limited by the command value limiter or a command value for discharging power limited by the command value limiter. A PI controller, in response to a direct-current voltage that is applied to the inverter circuit being higher than the working voltage of a charging limiter, calculates a PI control value (a PI control value for limiting charging) for the deviation between the direct-current voltage and the working voltage of the charging limiter and, in response to the direct-current voltage being lower than the working voltage of a discharging limiter, calculates a PI control value (a PI control value for limiting discharging) for the deviation between the direct-current voltage and the working voltage of the discharging limiter. A limiter regulator strengthens limitation of the command value for charging power from the command value limiter in accordance with the PI control value for limiting charging and strengthens limitation of the command value for discharging power from the command value limiter in accordance with the PI control value for limiting discharging.

Classes IPC  ?

  • H02J 3/32 - Dispositions pour l'équilibrage de charge dans un réseau par emmagasinage d'énergie utilisant des batteries avec moyens de conversion
  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

70.

INSULATION DIAGNOSIS DEVICE AND INSULATION DIAGNOSIS METHOD

      
Numéro d'application JP2022027278
Numéro de publication 2024/013809
Statut Délivré - en vigueur
Date de dépôt 2022-07-11
Date de publication 2024-01-18
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hirao, Kazuhei
  • Hada, Yasuhiro
  • Miyazaki, Masaki

Abrégé

An insulation diagnosis device according to an embodiment performs insulation diagnosis for a three-phase alternate-current motor on the basis of a U-phase current, a V-phase current, and a W-phase current supplied to the three-phase alternate-current motor, the insulation diagnosis device comprising: a current vector calculation unit (23, 24) that calculates at least one of a zero-phase current vector or a negative-phase current vector on the basis of the U-phase current, the V-phase current, and the W-phase current; a reference current vector storage unit (25) that pre-stores a reference current vector; a current difference vector calculation unit (26) that calculates a current difference vector, which is the difference between the current vector calculated by the current vector calculation unit (23, 24) and the reference current vector; and a determination unit (28) that determines the insulation state of the three-phase alternate-current motor on the basis of the current difference vector.

Classes IPC  ?

  • G01R 31/34 - Tests de machines dynamoélectriques
  • G01R 31/12 - Test de la rigidité diélectrique ou de la tension disruptive
  • G01R 31/52 - Test pour déceler la présence de courts-circuits, de fuites de courant ou de défauts à la terre

71.

SYSTEM FOR CONTROLLING CUTTING BY CROP SHEAR

      
Numéro d'application JP2022027843
Numéro de publication 2024/013976
Statut Délivré - en vigueur
Date de dépôt 2022-07-15
Date de publication 2024-01-18
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Kuwamura, Noriyuki

Abrégé

The present disclosure provides a system for controlling cutting by a crop shear, the system being capable of suppressing cutting errors in a cut material at a set cutting point to the extent possible even if the speed of the cut material varies. This system for controlling cutting by a crop shear, which cuts a cut material being transported on a hot-rolling line, comprises an image detector that detects an image of the cut material being transported, the image detector being disposed on the input side of the crop shear. A tip end position or tail end position of the cut material and the movement amount of the cut material are established from the image data detected by the image detector, and the drive speed of cutting blades of the crop shear is adjusted on the basis of the established tip end position or tail end position and movement amount of the cut material.

Classes IPC  ?

  • B23D 36/00 - Agencements de commande spécialement adaptés aux machines de cisaillage ou machines de coupe analogues, ou aux machines à scier, pour produits bruts se déplaçant autrement que dans la direction de la coupe

72.

UNINTERRUPTIBLE POWER SUPPLY DEVICE

      
Numéro d'application JP2022025595
Numéro de publication 2024/003991
Statut Délivré - en vigueur
Date de dépôt 2022-06-27
Date de publication 2024-01-04
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Murata, Ryo

Abrégé

In the event of power interruption of a commercial AC power source (6), this uninterruptible power supply device: controls a bidirectional chopper (2) such that a DC voltage (VD) between DC lines (L1, L3) becomes a second reference voltage (VDR 2) higher than a first reference voltage (VDR 1) for a prescribed time (Tc); and then controls the bidirectional chopper (2) such that the DC voltage becomes the first reference voltage. Accordingly, during power interruption, a battery current (IB) can be temporarily increased above usual, and even when a small-sized capacitor (C1 to C4) is used, it is possible to prevent the DC voltage from dropping below a lower limit voltage (VDL).

Classes IPC  ?

  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

73.

CONTROL DEVICE AND POWER CONVERSION DEVICE

      
Numéro d'application JP2022026318
Numéro de publication 2024/004154
Statut Délivré - en vigueur
Date de dépôt 2022-06-30
Date de publication 2024-01-04
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Terashima, Daiki
  • Fukasawa, Issei

Abrégé

Provided is a control device of a power conversion device, said power conversion device comprising: at least one alternating-current capacitor that is disposed in a capacitor circuit which branches from an alternating-current circuit on an output side of an inverter, and that is disconnected from the circuit during a failure; and an electric current sensor that is disposed in the capacitor circuit, and that acquires an electric current value of an alternating-current electric current of each phase flowing to the alternating-current capacitor. The control device comprises: an amplitude calculation unit that acquires, from the electric current sensor, the electric current value of the alternating-current electric current of each phase flowing to the alternating-current capacitor, and that calculates, on the basis of the acquired electric current value of the alternating-current electric current of each phase, a value of an amplitude of a fundamental wave component of the alternating-current electric current of each phase; and a failure determination unit that compares the sizes of a prescribed determination value and the value of the amplitude of the fundamental wave component of the alternating-current electric current of each phase calculated by the amplitude calculation unit, and that determines that there is a failure of the alternating-current capacitor if the value of the amplitude of at least one phase among the values of the amplitude of the fundamental wave component of the alternating-current electric current of the phases is less than the prescribed determination value.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

74.

SCADA WEB HMI SYSTEM

      
Numéro d'application JP2022024703
Numéro de publication 2023/248339
Statut Délivré - en vigueur
Date de dépôt 2022-06-21
Date de publication 2023-12-28
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hashizume, Takaharu
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

The present invention provides a SCADA web HMI system that can prevent delay in updates of display on screens of HMI client machines and stoppage of a server machine even when a processing load on the server machine is large. A SCADA server machine comprises a communication driver and a client management unit that is connected one-to-one with HMI client machines. The client management unit comprises: a reception thread that receives signal data from the communication driver; first and second signal data buffers that can store the signal data, which is received by the reception thread, in association with a signal data identifier for each data type; and a transmission thread that reads signal data stored in the first or second signal data buffer, and transmits the read signal data to an HMI client machine. While the transmission thread is reading signal data from one of the first and second signal data buffers and transmitting the read signal data to an HMI client machine, signal data stored in the other one of the first and second signal data buffers is overwritten.

Classes IPC  ?

  • H04L 67/5651 - Conversion ou adaptation du format ou du contenu d'applications en réduisant la quantité ou la taille des données d'application échangées
  • H04Q 9/00 - Dispositions dans les systèmes de commande à distance ou de télémétrie pour appeler sélectivement une sous-station à partir d'une station principale, sous-station dans laquelle un appareil recherché est choisi pour appliquer un signal de commande ou pour obtenir des valeurs mesurées

75.

CONTROL PANEL

      
Numéro d'application JP2022023946
Numéro de publication 2023/242992
Statut Délivré - en vigueur
Date de dépôt 2022-06-15
Date de publication 2023-12-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Hano Mitsuru

Abrégé

A control panel according to an embodiment comprises a housing, an article placement board, and a pull-out mechanism. The front surface of the housing is open. The article placement board is disposed along the front-back direction inside the housing, and has articles attached thereto. The pull-out mechanism pulls out the article placement board in the forward direction while maintaining the orientation thereof when housed inside the housing. The present invention provides a control panel with which it is possible to effectively use the space inside the housing, improve ease of use, and support flexible article placement.

Classes IPC  ?

  • H05K 7/18 - Structure des bâtis ou des cadres
  • H02B 1/36 - Baies avec des unités débrochables

76.

ELECTRIC POWER CONVERSION UNIT

      
Numéro d'application JP2022024341
Numéro de publication 2023/243082
Statut Délivré - en vigueur
Date de dépôt 2022-06-17
Date de publication 2023-12-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Nagumo Kenshi

Abrégé

This electric power conversion unit is provided with a housing, a plurality of fans, a heat sink, and a plurality of semiconductor elements. The fans cause an air flow inside the housing. The heat sink forms an air flow passageway upstream of an air circulation path inside the housing. The plurality of semiconductor elements are arranged side-by-side along a direction transverse to the air circulation direction of the heat sink on an element arrangement surface of the heat sink.

Classes IPC  ?

  • H05K 7/20 - Modifications en vue de faciliter la réfrigération, l'aération ou le chauffage
  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

77.

PHASE SYNCHRONIZATION CONTROL CIRCUIT AND ELECTRIC POWER CONVERSION DEVICE USING SAME

      
Numéro d'application JP2022024374
Numéro de publication 2023/243091
Statut Délivré - en vigueur
Date de dépôt 2022-06-17
Date de publication 2023-12-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Mori, Daiki
  • Kano, Masamichi
  • Sanada, Kazunori

Abrégé

This phase synchronization control circuit (12) comprises: a phase difference detector (20) that detects a phase difference (Δθ) between an AC voltage (VI) and an AC signal (vac); a frequency control unit (21) that generates a first frequency control value (Fc1) such that the phase difference disappears; a frequency limiter (25) that limits the first frequency control value (Fc1) within a variable limit range and generates a second frequency control value (Fc2); a limiter control unit (26) that sets the variable limit range on the basis of the phase difference, and reduces the width of the variable limit range in accordance with a reduction of the phase difference; and an oscillator (28) that generates an AC signal of a frequency that takes a value that corresponds to the second frequency control value. Accordingly, overshoot of the frequency of the AC signal can be kept low.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique
  • H03L 7/08 - Détails de la boucle verrouillée en phase

78.

ROTATING ELECTRIC MACHINE

      
Numéro d'application JP2022023532
Numéro de publication 2023/238409
Statut Délivré - en vigueur
Date de dépôt 2022-06-10
Date de publication 2023-12-14
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Mochizuki, Konosuke

Abrégé

A rotating electric machine (10) according to an embodiment comprises a housing (13), a bearing (15), and a cylindrical member (17). The bearing (15) rotatably supports a shaft (14) around a rotating central axis (Ax). The cylindrical member (17) has an oil thrower portion (17m) and a seal portion (17n) which are integrally formed. The oil thrower portion (17m) is cylindrically formed around the rotating central axis (Ax), and the shaft (14) is inserted into the inside thereof. The oil thrower portion (17m) is separated from the outer circumferential surface (14a) of the shaft (14) with a first space. The seal portion (17n) is positioned opposite the bearing (15) with respect to the oil thrower portion (17m) and is cylindrically formed around the rotating central axis (Ax). The seal portion (17n) is separated from the outer circumferential surface (14a) with a second space smaller than the first space.

Classes IPC  ?

  • H02K 5/173 - Moyens de support des paliers, p. ex. supports isolants ou moyens pour ajuster les paliers dans leurs flasques utilisant des roulements à rouleaux, p. ex. des roulements à billes
  • F16C 33/66 - Pièces ou détails particuliers pour la lubrification
  • F16C 33/78 - Dispositifs d'étanchéité pour roulements à billes ou à rouleaux avec diaphragme, disque ou bague, avec ou sans parties élastiques

79.

UNINTERRUPTIBLE POWER SUPPLY DEVICE

      
Numéro d'application JP2022022191
Numéro de publication 2023/233540
Statut Délivré - en vigueur
Date de dépôt 2022-05-31
Date de publication 2023-12-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Momochi, Nobuyuki

Abrégé

An uninterruptible power supply device (100) comprises a compensation power supply circuit (1) and a bypass circuit (20). The bypass circuit is provided electrically in parallel to the compensation power supply circuit. The bypass circuit includes first to third switches (15U-15W) and first to third circuits (17-19). The first to third switches are respectively connected to first to third phases of a three-phase alternating current load. The first to third circuits are respectively provided electrically in parallel to the first to third switches. The first circuit includes a first snubber circuit (17A), a second snubber circuit (17B), and a power line (PL11). The second circuit includes a first snubber circuit (18A), a second snubber circuit (18B), and a power line (PL12). The third circuit includes a first snubber circuit (19A), a second snubber circuit (19B), and a power line (PL13). The respective power lines (PL11, PL12, and PL13) of the first to third circuits are electrically connected to each other.

Classes IPC  ?

  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique
  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

80.

CONNECTION DEVICE FOR ELECTRIC APPARATUS AND ELECTRIC DEVICE

      
Numéro d'application JP2022022194
Numéro de publication 2023/233542
Statut Délivré - en vigueur
Date de dépôt 2022-05-31
Date de publication 2023-12-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Sasaki, Tsubasa
  • Ishitobi, Hidetaka

Abrégé

A plurality of connection members (10, 20) are connected to an electric apparatus and extend in a first direction perpendicular to a vertical direction. A plurality of terminal members (30, 40) are respectively attached to the plurality of connection members (10, 20) and have a plurality of electric wires respectively connected thereto. The plurality of terminal members (30, 40) respectively include fixing portions (31, 41) and connection portions (32, 42). The fixing portions (31, 41) are attached to the connection members (10, 20) and extend in the first direction. The connection portions (32, 42) are connected to one end portions of the fixing portions (31, 41) in a longitudinal direction and have the electric wires connected thereto. The connection portions (32, 42) extend in a direction orthogonal to the direction in which the fixing portions (31, 41) extend. The plurality of terminal members (30, 40) are respectively attached to the connection members (10, 20) in either a first posture in which the connection portions (32, 42) extend upward in the vertical direction or a second posture in which the connection portions (32, 42) extend downward in the vertical direction.

Classes IPC  ?

  • H02B 1/20 - Schémas de barres omnibus ou d'autres fileries, p. ex. dans des armoires, dans les stations de commutation
  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

81.

ELECTRIC APPARATUS AND ELECTRIC DEVICE

      
Numéro d'application JP2022021258
Numéro de publication 2023/228278
Statut Délivré - en vigueur
Date de dépôt 2022-05-24
Date de publication 2023-11-30
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Nakamura, Koki

Abrégé

A rack (110) comprises a first to a fourth column members (11 to 14), and a first and a second guide members (15A, 15B). A casing of an electric device (20) has a first and a second side surfaces in the width direction that are respectively supported by the first and second guide members (15A, 15B). A first and a second regulation members (30A, 30B) are respectively attached to the inner surfaces of the first and second side surfaces of the casing to regulate movement of the casing toward the front of the rack (110). The second regulation member (30B) is opposed and attached to the first regulation member (30A) in the width direction. In a state in which the electric device (20) is housed in the rack (110), the first regulation member (30A) is positioned between the first and third column members (11, 13) in a fore-aft direction. The second regulation member (30B) is positioned between the second and fourth column members (12, 14) in the fore-aft direction.

Classes IPC  ?

  • H05K 7/18 - Structure des bâtis ou des cadres

82.

ACTIVE-GAS-GENERATING APPARATUS

      
Numéro d'application JP2022020652
Numéro de publication 2023/223454
Statut Délivré - en vigueur
Date de dépôt 2022-05-18
Date de publication 2023-11-23
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Arita Ren
  • Watanabe Kensuke

Abrégé

The purpose of the present invention is to obtain an active-gas-generating apparatus that can supply high-concentration active gas from a gas jetting port to a downstream process space. In the active-gas-generating apparatus (51) of the present disclosure, a region in which electrically conductive films for electrodes (31, 41) overlap as seen in plan view within a main dielectric space, which is the space in which a dielectric film for electrodes (30) and a dielectric film for electrodes (40) face each other, is defined as a main discharge space (50). A region including a dielectric through-port (14) and a cover through-port (15) within an auxiliary dielectric space, which is the space in which the dielectric film for electrodes 30 and a shield dielectric film 8 face each other, is defined as an auxiliary discharge space (58). The auxiliary discharge space (58) includes a portion of a buffer space (9) above the shield dielectric film (8), and a path that reaches from the auxiliary discharge space (58) to gas jetting ports (61, 62) is defined as the active gas flow path.

Classes IPC  ?

83.

POWER CONVERSION SYSTEM CONTROL DEVICE AND POWER CONVERSION SYSTEM

      
Numéro d'application JP2022020055
Numéro de publication 2023/218599
Statut Délivré - en vigueur
Date de dépôt 2022-05-12
Date de publication 2023-11-16
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Fukasawa, Issei

Abrégé

This power conversion system control device comprises: a power converter connected to a power source or to a capacitor via wiring; a coil disposed in a position which is around the wiring and at which, when a short circuit failure has occurred because of voltage in the capacitor or in the power source being short-circuited, magnetic fluxes generated by the short circuit failure are interlinked; and a voltage detection circuit for detecting the voltage value of voltage between both ends of the coil. The power conversion system control device further comprises: a voltage acquisition unit for acquiring the voltage value of voltage between both ends of the coil detected by the voltage detection circuit; and a failure detection unit for detecting a short circuit failure of the power converter on the basis of the voltage value acquired by the voltage acquisition unit.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande

84.

ROLLING PRODUCTIVITY IMPROVEMENT ASSISTANCE DEVICE

      
Numéro d'application JP2022020125
Numéro de publication 2023/218619
Statut Délivré - en vigueur
Date de dépôt 2022-05-12
Date de publication 2023-11-16
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Higashiya, Ryosuke

Abrégé

According to the present invention, a rolling productivity improvement assistance device for a plant that rolls an iron/non-iron material comprises a data collection unit that collects plant data that includes a production plan, production results, and an operating state from the plant, an indicator calculation unit that, for the plant data acquired by the data collection unit, calculates a productivity, factors for the productivity, and a value for an indicator for each of the factors, a data storage unit that stores the plant data acquired by the data collection unit and indicator data that is data for the values of the indicators calculated by the indicator calculation unit, a productivity evaluation unit that, each time plant data has been gathered, compares the indicators for a productivity to be evaluated with results for the indicators for past productivities to evaluate productivity decline, and a display unit that displays the results of the productivity decline evaluation by the productivity evaluation unit, the productivity that was the basis for the evaluation results, the factors for the productivity, and the value of the indicator for each of the factors.

Classes IPC  ?

  • B21B 37/00 - Dispositifs ou procédés de commande spécialement adaptés aux laminoirs ou aux produits laminés
  • B21B 38/00 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit
  • G05B 19/418 - Commande totale d'usine, c.-à-d. commande centralisée de plusieurs machines, p. ex. commande numérique directe ou distribuée [DNC], systèmes d'ateliers flexibles [FMS], systèmes de fabrication intégrés [IMS], productique [CIM]

85.

PLANT OPERATION SUPPORT SYSTEM

      
Numéro d'application JP2022019117
Numéro de publication 2023/209879
Statut Délivré - en vigueur
Date de dépôt 2022-04-27
Date de publication 2023-11-02
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Maeda, Takafumi

Abrégé

The purpose of the present invention is to: when a sensor failure occurs during plant operations, provide support by comparing amounts of decrease in production quantity for various possible operational actions and performing guidance display of operation actions which are optimal from the perspective of productivity; and minimize the amount of decrease in production quantity. To accomplish this, this plant operation support system performs a guidance display of provisional action information in a case in which, in a state in which a sensor has failed, the post-provisional action production quantity, for when a provisional action is implemented on the plant and operations are continued in accordance with provisional action information for continuing operations of the plant, is greater than or equal to the post-replacement production quantity, for when restarting operations after work for replacing the failed sensor with a normal sensor is performed.

Classes IPC  ?

86.

PLATE CROWN CONTROL DEVICE

      
Numéro d'application JP2022018313
Numéro de publication 2023/203691
Statut Délivré - en vigueur
Date de dépôt 2022-04-20
Date de publication 2023-10-26
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Sano, Mitsuhiko
  • Suzuki, Atsushi

Abrégé

This plate crown control device controls tandem rolling equipment on the basis of an outlet plate crown setting calculation value of each stand as calculated by setting calculation, a mechanical plate crown setting calculation value of each stand, and a bending force and shift position setting value of each stand. A processor calculates a first current learning value on the basis of the difference between a mechanical plate crown observation value and a mechanical plate crown result calculation value. The processor proportionally divides a first learning value by the first current learning value and a smoothing gain and updates the first learning value. The processor, in the next setting calculation and thereafter, calculates the bending force and shift position setting value of each stand by using a corrected mechanical plate crown setting calculation value obtained by adding the first learning value to the mechanical plate crown setting calculation value.

Classes IPC  ?

  • B21B 37/38 - Commande de la planéité ou du profil pendant le laminage de bandes, de feuilles ou de tôles utilisant la flexion du cylindre
  • B21B 37/28 - Commande de la planéité ou du profil pendant le laminage de bandes, de feuilles ou de tôles

87.

LOAD CURRENT DISTRIBUTION ADJUSTING DEVICE FOR STORAGE BATTERY POWER CONVERSION DEVICE, LOAD CURRENT DISTRIBUTION ADJUSTING METHOD, AND LOAD CURRENT DISTRIBUTION ADJUSTING PROGRAM

      
Numéro d'application JP2022018335
Numéro de publication 2023/203699
Statut Délivré - en vigueur
Date de dépôt 2022-04-20
Date de publication 2023-10-26
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Li, Haiqing

Abrégé

This load current distribution adjusting device for a storage battery power conversion device comprises: a cross current calculation unit for calculating the cross current of a relevant power conversion device on the basis of an average current of the output currents of a plurality of storage battery power conversion devices performing an autonomous parallel operation and the output current of the relevant power conversion device; a first correction amount calculation unit for calculating a first correction amount of a voltage command value on the basis of the cross current calculated by the cross current calculation unit and the output voltage of the relevant power conversion device; a gain calculation unit for calculating a weighted gain of the relevant power conversion device on the basis of an average voltage of the respective DC voltages of the plurality of storage battery power conversion devices and the DC voltage of the relevant power conversion device; a second correction amount calculation unit for calculating a second correction amount of the voltage command value on the basis of the first correction amount calculated by the first correction amount calculation unit and the weighted gain calculated by the gain calculation unit; and an output current control unit for controlling the output current of the relevant power conversion device on the basis of a predetermined voltage command value and the second correction amount calculated by the second correction amount calculation unit.

Classes IPC  ?

  • H02J 7/00 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries
  • H02J 7/02 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries pour la charge des batteries par réseaux à courant alternatif au moyen de convertisseurs
  • H02J 7/34 - Fonctionnement en parallèle, dans des réseaux, de batteries avec d'autres sources à courant continu, p. ex. batterie tampon
  • H02J 3/46 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs contrôlant la répartition de puissance entre les générateurs, convertisseurs ou transformateurs
  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

88.

UNINTERRUPTIBLE POWER SUPPLY APPARATUS

      
Numéro d'application JP2022017259
Numéro de publication 2023/195127
Statut Délivré - en vigueur
Date de dépôt 2022-04-07
Date de publication 2023-10-12
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Matsumoto, Jun

Abrégé

This uninterruptible power supply apparatus 1 comprises an operation unit (11) for setting a second reference voltage (VBR), a computation unit (21) for establishing a first reference voltage (VDR) that is higher than the set second reference voltage and lower than a maximum value (VDRmax) for the first reference voltage, a first reference voltage generation unit (22) for generating the first reference voltage established by the computation unit, and a second reference voltage generation unit (32) for generating the second reference voltage set by the operation unit. Therefore, the voltage (VD) of a DC line (4) can be reduced below the maximum value for the first reference voltage, and the efficiency of the uninterruptible power supply apparatus 1 can be improved.

Classes IPC  ?

  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

89.

DETECTION DEVICE AND DETECTION SYSTEM

      
Numéro d'application JP2022016122
Numéro de publication 2023/188150
Statut Délivré - en vigueur
Date de dépôt 2022-03-30
Date de publication 2023-10-05
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Ikeda, Shuzo

Abrégé

A detection device according to an embodiment of the present application detects the presence or absence of a workpiece adhered to the inner wall of a drum of a mill for crushing minerals. This detection device stores an initial torque detected at a preset initial rotation angle, calculates a maximum torque on the basis of the initial torque, the initial rotation angle, and a rotation angle greater than the initial rotation angle, calculates the ratio of the torque at the rotation angle divided by the maximum torque, compares the ratio to a preset threshold, and determines that there is a workpiece adhered to the inner wall of the drum if the ratio is equal to or greater than the threshold.

Classes IPC  ?

  • B02C 17/18 - Désagrégation au tonneau, c.-à-d. par des appareils constitués par une cuve où les produits à désagréger sont chargés, avec ou sans éléments particuliers de désagrégation tels que billes ou boulets Parties constitutives

90.

SCADA WEB HMI CLIENT DEVICE AND SCADA WEB HMI SYSTEM

      
Numéro d'application JP2022016156
Numéro de publication 2023/188162
Statut Délivré - en vigueur
Date de dépôt 2022-03-30
Date de publication 2023-10-05
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

This SCADA web HMI client device comprises a processor and a memory. The memory stores a user access level, image data of an HMI screen, and screen access right information that are received from a web server. The screen access right information includes an operation access level of the HMI screen and operation possibility of the HMI screen through a web browser. The processor draws the HMI screen on the web browser in an operation possible state when the user access level is equal to or higher than the operation access level and an operation on the HMI screen through the web browser is allowed. The processor draws the HMI screen on the web browser in an operation impossible state when the user access level is lower than the operation access level or the operation on the HMI screen through the web browser is not allowed.

Classes IPC  ?

91.

POWER CONVERTER

      
Numéro d'application JP2022014496
Numéro de publication 2023/181368
Statut Délivré - en vigueur
Date de dépôt 2022-03-25
Date de publication 2023-09-28
Propriétaire
  • MITSUBISHI ELECTRIC CORPORATION (Japon)
  • TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Tada, Keiko
  • Nakamura, Masashi

Abrégé

In the present invention, a power converter comprises: an inverter that includes a plurality of switching elements, receives DC voltage from a DC voltage source as an input, converts the received DC voltage to variable-voltage, variable-frequency AC voltage, and outputs the converted AC voltage to a load; a control unit that performs PWM control for driving the plurality of switching elements on or off; and a serial arrangement of a positive-electrode-side capacitor and a negative-electrode-side capacitor connected between a positive electrode and a negative electrode of a DC voltage on the input side of the inverter. The output potential of the inverter has at least: the potential of the positive electrode of the DC voltage source; the potential of the negative electrode; and the potential of the neutral point, which is the connection point between the positive-electrode-side capacitor and the negative-electrode-side capacitor. The control unit includes: a modulation factor calculator that calculates the modulation factor of the inverter on the basis of the DC voltage and an output voltage command value; a gate signal generator that compares the calculated modulation factor and a carrier signal and generates a gate signal necessary for on/off-driving of the switching element for generating a pulse train; and a gate signal allocation unit that adjusts the allocation of the gate signals so that the voltage of the positive-electrode-side capacitor and the voltage of the negative-electrode-side capacitor are balanced.

Classes IPC  ?

92.

PRODUCT QUALITY ANALYSIS ASSISTANCE SYSTEM

      
Numéro d'application JP2022013235
Numéro de publication 2023/181127
Statut Délivré - en vigueur
Date de dépôt 2022-03-22
Date de publication 2023-09-28
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Inami, Haruki

Abrégé

This product quality analysis assistance system is applied to a steel plant. In a first process, a plurality of defective waveform patterns determined to be defective in quality are classified into at least one defective waveform pattern group on the basis of similarity. In a second process, a score of correlation with a condition based on product specifications and a process data waveform pattern is calculated for the defective waveform pattern group. In a third process, when the score of correlation indicating characteristics of the defective waveform pattern group is greater than a condition threshold, an input screen including a representative waveform pattern representing the defective waveform pattern group, information according to the score of correlation, and a factor and countermeasure input area is displayed on a monitor.

Classes IPC  ?

93.

SCADA WEB HMI SYSTEM

      
Numéro d'application JP2022014678
Numéro de publication 2023/181409
Statut Délivré - en vigueur
Date de dépôt 2022-03-25
Date de publication 2023-09-28
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hashizume, Takaharu
  • Fujieda, Hiroyuki
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

This SCADA web HMI system draws an HMI screen including a first strip part disposed in a first zone and an extendable second strip part disposed in a second zone. The first strip part and the second strip part are drawn each drawing cycle shorter than the reception cycle of PLC signals. The tip position of the first strip part is calculated each drawing cycle from the time when a first PLC signal is received, on the basis of a transfer speed and an elapsed time included in the first PLC signal. The drawing size of the first strip part is set to the length from the entry side of the first zone to the tip position of the first strip part. Further, if the tip position of the first strip part has not reached the second zone when a second PLC signal is received, the drawing size of the first strip part is set to the zone length of the first zone.

Classes IPC  ?

  • G05B 23/02 - Test ou contrôle électrique
  • B21B 38/00 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit

94.

SCADA WEB HMI SYSTEM

      
Numéro d'application JP2023011286
Numéro de publication 2023/182373
Statut Délivré - en vigueur
Date de dépôt 2023-03-22
Date de publication 2023-09-28
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Hashizume, Takaharu
  • Fujieda, Hiroyuki
  • Shimizu, Ryo
  • Nojima, Akira
  • Shimizu, Nobuo

Abrégé

In the present invention, a SCADA web HMI system draws an HMI screen including a first rolled part disposed in a first zone and an extensible second rolled part disposed in a second zone. The first rolled part and the second material part are drawn in each drawing period, which is shorter than the PLC signal receiving period. The first rolled part tip position is calculated on the basis of the conveying speed and elapsed time included in the first PLC signal in each drawing period from the time the first PLC signal is received. The size of the drawn first rolled part is set to the length from the entry side of the first zone to the first rolled part tip position. If the first rolled part tip position has not reached the second zone when the second PLC signal has been received, the size of the drawn first rolled part is set to the length of the first zone.

Classes IPC  ?

  • G05B 23/02 - Test ou contrôle électrique
  • B21B 38/00 - Procédés ou dispositifs de mesure spécialement adaptés aux laminoirs, p. ex. détection de la position, inspection du produit

95.

ELECTRIC MOTOR CONTROL DEVICE AND ELECTRIC MOTOR CONTROL METHOD

      
Numéro d'application JP2022012568
Numéro de publication 2023/175885
Statut Délivré - en vigueur
Date de dépôt 2022-03-18
Date de publication 2023-09-21
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Takao Kenshi
  • Tobayashi Shunsuke

Abrégé

This electric motor control device comprises a signal identification unit and an overvoltage detection unit. The signal identification unit includes an optical isolator for converting electric signals supplied through a terminal to which an external device is connected, and furthermore includes a switch for opening a connection circuit connected to the terminal. The overvoltage detection unit is formed so as to open the switch when the voltage applied to the connection circuit exceeds a threshold voltage.

Classes IPC  ?

  • H02P 29/024 - Détection d’un défaut, p. ex. court circuit, rotor bloqué, circuit ouvert ou perte de charge

96.

ROTATING ELECTRIC MACHINE AND INSULATION TAPE

      
Numéro d'application JP2022010036
Numéro de publication 2023/170794
Statut Délivré - en vigueur
Date de dépôt 2022-03-08
Date de publication 2023-09-14
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Yamashita, Yu
  • Okamoto, Tetsushi
  • Xie, Jinxia
  • Imai, Takahiro
  • Hirai, Hiromitsu

Abrégé

Provided is an insulation tape comprising a base layer, two adhesive layers, and two reinforcement layers. The base layer includes a first surface and a second surface on the opposite side of the first surface. The two adhesive layers contain nano-sized silica particles and are overlaid on the first surface and the second surface, respectively. The two reinforcement layers are provided for the first surface and the second surface, respectively, and are adhered to the base layer by the adhesive layers.

Classes IPC  ?

  • H02K 3/30 - Enroulements caractérisés par leur matériau d'isolement

97.

UNINTERRUPTIBLE POWER SUPPLY DEVICE

      
Numéro d'application JP2022010763
Numéro de publication 2023/170898
Statut Délivré - en vigueur
Date de dépôt 2022-03-11
Date de publication 2023-09-14
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Imanishi, Ryogo
  • Murata, Ryo

Abrégé

In the present invention, first and second communication lines (L1, L2) connect, with daisy chains, a plurality of control circuits respectively corresponding to a plurality of UPS modules (U1-U5). The transmission direction of data in the second communication line (L2) is reverse of the transmission direction of data in the first communication line (L1). First communication terminals (Tin1, Tout1) of each of the UPS modules receive, via the first communication line (L1), detection values of AC output currents of the other USP modules and transmit a detection value of an own AC output current to respective other control circuits. Second communication terminals (Tin2, Tout2) of each of the UPS modules receive, via the second communication line (L2), detection values of AC output currents of the other USP modules and transmit a detection value of an own AC output current to the respective other control circuits. The control circuits each generate a current command value on the basis of the detection values of the own AC output currents and the detection values of the AC output currents of the other UPS modules received by the first and/or second communication terminals.

Classes IPC  ?

  • H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique

98.

ELECTRIC POWER CONVERSION APPARATUS, CONTROL DEVICE, AND DISTRIBUTED POWER SUPPLY SYSTEM

      
Numéro d'application JP2022009200
Numéro de publication 2023/166676
Statut Délivré - en vigueur
Date de dépôt 2022-03-03
Date de publication 2023-09-07
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s)
  • Shigemasa, Takashi
  • Koura, Hiroyuki

Abrégé

Provided is an electric power conversion apparatus comprising: a main circuit unit that converts electric power of a distributed power supply into AC power corresponding to an electric power system; and a control unit that controls an operation of the main circuit unit. The control unit has: an estimated value computation unit that computes an estimated value of a resistance component of system impedance of the electric power system, an estimated value of a reactance component of the system impedance, and an estimated value of a voltage value of an infinite busbar power system, on the basis of an active power value at a connection point to the electric power system, a reactive power value at the connection point, and a voltage value at the connection point; and a reactive power computation unit that computes a reactive power command value of reactive power that is supplied to the electric power system, on the basis of the respective estimated values. The estimated value computation unit has a first estimation unit that computes the respective estimated values using a Kalman filter corresponding to a nonlinear system, and a second estimation unit that computes the respective estimated values using Newton's method. Thus, an electric power conversion apparatus, a control device, and a distributed power supply system that can more appropriately reduce voltage fluctuations at a connection point of a distributed power supply are provided.

Classes IPC  ?

  • H02M 7/48 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant alternatif sans possibilité de réversibilité par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande
  • H02J 3/18 - Dispositions pour réglage, élimination ou compensation de puissance réactive dans les réseaux
  • H02J 3/38 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs

99.

PHOTOVOLTAIC POWER GENERATING SYSTEM AND CONTROL DEVICE

      
Numéro d'application JP2022008289
Numéro de publication 2023/162222
Statut Délivré - en vigueur
Date de dépôt 2022-02-28
Date de publication 2023-08-31
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Koike, Hirokazu

Abrégé

Provided is a photovoltaic power generating system comprising: a plurality of solar cell panels; a plurality of power conversion devices which convert DC power supplied from the plurality of solar cell panels into AC power and supply the AC power to electric power systems; and a control device for controlling the operation of the plurality of power conversion devices. The control device has a total output value calculation unit for calculating a total effective power value representing the magnitude of effective power that can be outputted currently from all of the plurality of power conversion devices; a difference calculation unit for calculating a difference between a total upper limit command value and the total effective power value and dividing the difference by the number of the plurality of power conversion devices, thereby calculating a difference for each of the plurality of power conversion devices; and an upper limit command value calculation unit for adding the difference per power conversion device to an effective power value, thereby calculating an individual upper limit command value for each of the plurality of power conversion devices. Accordingly, it is possible to provide a photovoltaic power generating system and a control device which can inhibit excessive lowering of the total value of effective power to be supplied to electric power systems from a plurality of power conversion devices.

Classes IPC  ?

  • H02J 3/38 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs

100.

SWITCHING DEVICE FOR CHARGING EQUIPMENT

      
Numéro d'application JP2022007839
Numéro de publication 2023/162123
Statut Délivré - en vigueur
Date de dépôt 2022-02-25
Date de publication 2023-08-31
Propriétaire TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION (Japon)
Inventeur(s) Wang, Xiangguo

Abrégé

Provided is a switching device for charging equipment, the switching device comprising: a switching unit that switches connections between each of a plurality of power sources and each of a plurality of charging stations; and a control unit that controls the switching of connections by the switching unit. The switching unit has a plurality of first switching elements provided to correspond to the plurality of power sources, respectively, and a plurality of second switching elements that are provided between each of the plurality of first switching elements and each of the plurality of charging stations, and allow direct-current power, which is supplied from the plurality of power sources through the plurality of first switching elements, to be selectively supplied to each of the plurality of charging stations. The control unit controls switching of each of the plurality of first switching elements and the plurality of second switching elements, thereby controlling the switching of connections by the switching unit. Thus, provided is the switching device for charging equipment that can appropriately switch output locations while curbing increases in the cost of equipment.

Classes IPC  ?

  • H02J 7/00 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries
  • H02J 7/02 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries pour la charge des batteries par réseaux à courant alternatif au moyen de convertisseurs
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