A user equipment (UE), receives, from a base station (BS), a message for scheduling a physical uplink (UL) shared channel (PUSCH) transmission, the message indicating a first UL bandwidth comprising a first group of resource blocks (RBs). The UE determines a second UL bandwidth that includes a second group of RBs that is derived from an intersection of the first group of RBs and a group of RBs associated with a UL subband full duplex (SBFD). The second groups of RBs includes fewer RBs than the first group of RBs. The UE maps several phase-tracking reference signals (PT-RSs), associated with the PUSCH, to the second group of RBs. The UE transmits, to the BS, the PUSCH that includes the mapped PT-RSs.
A light-emitting element (30) includes: an anode (4); a cathode (8); a light-emitting layer (6) provided between the anode (4) and the cathode (8); a hole transport layer (5) provided between the anode (4) and the light-emitting layer (6); and a control electrode (9) provided inside the hole transport layer (5) so as to be separated from the anode (4) and having an opening (9K).
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
Provided is a water drain tank and the like that allows water to be drained easily, while preventing leakage of water from a water drain port. The water drain tank is detachably attached to a device body. When detached from the device body, the orientation of the water drain tank can be changed between a conveying orientation for conveying the drain tank with water stored in a tank body thereof, and a water draining orientation for draining the water from the tank body. The water drain tank comprises: a water drain port for draining water from the tank body when the water drain tank is in the water draining orientation; and a water drain cover that is movable between a first position for closing the water drain port and a second position for opening the water drain port. The water drain cover is configured to move from the first position to the second position as the orientation of the water drain tank changes from the conveyance orientation to the water drain orientation.
A method performed by a User Equipment (UE) for performing a Conditional Layer1/Layer2 Triggered Mobility (CLTM) operation is provided. The method receives, from a serving cell, a CLTM configuration indicating a CLTM candidate cell. The method determines whether at least one condition is satisfied. The method starts a first timer in response to determining that the at least one condition is satisfied. The method triggers a CLTM switch to the CLTM candidate cell after the first timer expires.
Methods and apparatus for Artificial Intelligence (AI)/Machine Learning (ML) data collection in wireless communication are provided. The method includes receiving, from a base station (BS), a first configuration for data collection, the first configuration including a measurement resource configuration, a threshold value, and a timer value, performing measurements based on the measurement resource configuration, and in response to a condition, which is determined based on the threshold value and the timer value, being met, storing a measurement result for AI/ML model training.
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
6.
METHOD AND APPARATUS FOR CONDITIONAL LAYER 1/LAYER 2 TRIGGERED MOBILITY
A method performed by a UE for conditional L1/L2 Triggered Mobility (LTM) is provided. The method receives, from a source cell, an RRC configuration including a CSI report configuration and CSI measurement configuration for candidate cells. The method transmits, to the source cell, a first CSI report including an L1-RSRP value based on the CSI measurement configuration. The method receives, from the source cell, a MAC CE including information for a second CSI report. The method transmits, to a target cell, the second CSI report based on the MAC CE. The target cell is one of the candidate cells, the CSI report configuration includes a CSI report quantity including combinations of CSI-RS resource indicator (CRI), rank indicator (RI), precoding matrix indicator (PMI), channel quality indicator (CQI), first PMI (i1), and layer indicator (LI).
A method performed by a UE for L1 measurement reporting is provided. The method receives, from a BS, an L1 measurement configuration that configures at least one LTM event. The method measures multiple candidate beams to obtain multiple L1 measurement results. The method determines, based on the at least one LTM event, a priority of each of the multiple candidate beams. The method generates an L1 measurement report (L1-MR) MAC CE by assembling the multiple L1 measurement results associated with the multiple candidate beams in the L1-MR MAC CE based on the priority of each of the multiple candidate beams. The method transmits, to the BS, the L1-MR MAC CE, where each of the multiple candidate beams is associated with a reference signal index of an LTM candidate cell, and the L1-MR MAC CE is generated by a MAC entity of the UE.
A light-emitting element (1) is provided with: an anode (11) and a cathode (16); a light-emitting layer (14) positioned between the anode (11) and the cathode (16); and a hole transport layer (13) positioned between the light-emitting layer (14) and the anode (11). The maximum value of the thickness of the hole transport layer (13) is 1.15 times or less the average value of the thickness of the hole transport layer (13). The minimum value of the thickness of the hole transport layer (13) is 0.85 times or more the average value of the thickness of the hole transport layer (13).
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/17 - Couches d'injection des porteurs de charge
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 59/122 - Structures ou couches définissant le pixel, p. ex. bords
H10K 77/10 - Substrats, p. ex. substrats flexibles
A User Equipment (UE) for performing a Beam Failure Recovery (BFR) procedure is provided. The UE includes at least one processor and at least one non-transitory computer-readable medium storing instructions that, when executed, cause the UE to receive a first Beam Failure Detection Reference Signal (BFD-RS) set associated with a first Synchronization Signal Block (SSB) and a second BFD-RS set associated with a second SSB for a serving cell. The UE receives a BFR configuration, including a first BFR-related parameter associated with the first SSB, for the serving cell. In response to a second BFR-related parameter associated with the second SSB is configured in the BFR configuration, the UE determines that the second BFR-related parameter is associated with the second SSB; otherwise, the UE determines that the first BFR-related parameter is associated with both the first and second SSBs. In addition, a method and a BS are also provided.
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method comprises the following steps: receiving first configuration information and second configuration information, which are sent by a base station, wherein the first configuration information is channel state indicator (CSI) report configuration information, and the second configuration information is configuration information for reporting artificial intelligence/machine learning (AI/ML) model monitoring information; executing a CSI report at least on the basis of the first configuration information; and executing AI/ML model monitoring at least on the basis of the second configuration information.
Provided in the present disclosure are a method executed by means of a user equipment, and a user equipment. The method comprises: acquiring an RLF prediction result from an RLF prediction model; and when the RLF prediction result is acquired and at least one of the following is satisfied, declaring that an RLF has occurred: a first condition, in which RLF prediction configuration information comprises an information element representing enabling of an RLF prediction-based RLF declaration process, an RLF prediction-based RRC re-establishment process or an RLF prediction-based MCG failure information process; a second condition, in which a time difference between an RLF occurrence moment indicated by the RLF prediction result and the current moment is not greater than a first threshold value; a third condition, in which the current moment is within a prediction time window; a fourth condition, in which a probability value is not less than a second threshold value; a fifth condition, in which there is currently a running timer T310 or timer T312; a sixth condition, in which there are currently one or more triggered measurement events; and a seventh condition, in which a UE, after sending the RLF prediction result to a network side, has not received a handover command or an RRC release message from the network side within a given period of time.
This method for manufacturing a light-emitting element includes: a step (S1) for forming an anode; a step (S6) for forming a cathode; a step (S4) for forming a light-emitting layer performed between the step (S1) for forming an anode and the step (S6) for forming a cathode; a step (S2) for forming a hole transport layer that contains an organic hole transport material; and a step (S3) for aging the hole transport layer by at least one of heat and light. The step (S2) for forming a hole transport layer is performed between the step (S1) for forming an anode and the step (S4) for forming a light-emitting layer. The step (S3) for aging is performed before one of the step (S1) for forming an anode and the step (S6) for forming a cathode, which is performed later.
H10K 71/00 - Fabrication ou traitement spécialement adaptés aux dispositifs organiques couverts par la présente sous-classe
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
A light-emitting element (30) includes: a substrate (2); a cathode (3) that is a lower electrode provided at a position near the substrate (2); an anode (8) that is an upper electrode provided sandwiching the cathode (3) on the opposite side from the substrate (2); a light-emitting layer (6) that is provided between the cathode (3) and the anode (8); an electron hole transport layer (7) that is provided between the light-emitting layer (6) and the anode (8); and one or more conductors (9) that are in contact with the electron hole transport layer (7).
H05B 33/10 - Appareils ou procédés spécialement adaptés à la fabrication des sources lumineuses électroluminescentes
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A device may be configured to decode video data based on information included in a photosensitive content information message. In one example, a photosensitive content information message includes syntax elements indicating information regarding photosensitive content characteristics. In one example, a syntax element specifies whether photosensitive content in pictures in a persistence scope of the photosensitive content information message exceed photosensitivity content guidelines specified by a standard. In one example, a syntax element specifies whether photosensitive content in pictures in the persistence scope of the photosensitive content information message exceed a particular photosensitivity content guideline specified by the standard. In one example, a syntax element specifies text information about characteristics and description of photosensitive content in decoded pictures associated with the photosensitive content information message
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
Provided are: a means for specifying various kinds of information which are required to establish a communication channel for multi-hop communication and to provide a UE policy for ProSe multi-hop communication, and further for transmitting and receiving a control message including the information between UEs; and a method for implementing processing and behavior by each UE on the basis of the message.
An access point apparatus according to an aspect of the present invention is an access point apparatus for communicating with multiple station apparatuses, the access point apparatus comprising: a transmitter circuitry configured to transmit a trigger frame, wherein the trigger frame includes a User Info field, wherein the User Info field comprises a Resource Unit (RU) Allocation field and a Distributed Bandwidth (Distributed BW) field, wherein the Distributed BW field indicates a Distributed Bandwidth corresponding to 20 MHz, 40 MHz, 60 MHz or 80 MHz over which subcarriers of a distributed resource unit (DRU) are allocated, wherein the DRU is defined as a resource unit in which subcarriers are allocated in a distributed manner across the bandwidth.
The present disclosure provides a method performed by a device, and a device. The method performed by a device comprises: receiving a reader-to-device (R2D) transmission, wherein the R2D transmission occupies one or more orthogonal frequency division multiplexing (OFDM) symbols, and for each OFDM symbol, a transmission bandwidth of the R2D transmission is greater than or equal to a maximum value among minimum transmission bandwidths respectively corresponding to all R2D chips in the OFDM symbol; and sending a device-to-reader (D2R) transmission in response to the R2D transmission.
The present disclosure provides a method executed by a device, and a device. The method executed by a device comprises: receiving a reader-to-device (R2D) transmission to the device; and executing a device-to-reader (D2R) transmission triggered by the R2D transmission, wherein a value set Equation (i) of a small frequency shift (SFS) factor value used by the D2R transmission is a set predefined for a bit duration Equation (ii) of the D2R transmission, wherein when Equation (ii)=4·106/15·103μs, the set Equation (i) comprises 1, 4, 8, 16, 32, 64, and 128; when Equation (ii)=4·106/30·103μs, the set Equation (i) comprises 1, 4, 8, 16, 32, and 64; when Equation (ii)=4·106/60·103μs, the set Equation (i) comprises 1, 4, 8, 16, and 32; when Equation (ii)=4·106/120·103μs, the set Equation (i) comprises 1, 4, 8, and 16; when Equation (ii)=4·106/240·103μs, the set Equation (i) comprises 1, 4, and 8; when Equation (ii)=4·106/480·103μs, the set Equation (i) comprises 1 and 4; and when Equation (ii)=4·106/960·103 μs, the set Equation (i) comprises 1.
The present disclosure provides a method executed by a user equipment (UE) and a UE. The method comprises: on the basis of a configuration parameter of a low-power wake-up signal (LP-WUS) in a system information block (SIB), determining the number of groups for LP-WUS monitoring occasions (LMOs) in an LP-WUS occasion (LO); and on the basis of the number of groups, determining the length of cyclic redundancy check (CRC) used by the LP-WUS or the number of encoded bits.
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method executed by a user equipment comprises: receiving, from a base station, a configuration of a delay status report for a logical channel group (LCG); when a delay status report (DSR) trigger condition is met and/or one or more reporting time thresholds are configured for at least one LCG in the configuration, determining an uplink data volume corresponding to each reporting time threshold of each LCG; and sending a delay state report medium access control control element (DSR MAC CE) to the base station, wherein the DSR MAC CE carries the uplink data volume corresponding to each reporting time threshold of each LCG, and the uplink data volume comprises a data volume calculated by means of a packet data convergence protocol (PDCP) second data volume operation and/or a radio link control (RLC) second data volume operation.
A light-emitting element (30) includes: a substrate (2); an anode (3) that is a lower electrode provided at a position near the substrate (2); a cathode (8) that is an upper electrode provided sandwiching the anode (3) on the opposite side from the substrate (2); a light-emitting layer (6) that is provided between the anode (3) and the cathode (8); an electron hole transport layer (5) that is provided between the anode (3) and the light-emitting layer (6); and one or more conductors (9) that are in contact with the electron hole transport layer (5).
The present invention comprises: a light-emitting element layer (40a) which is provided above a TFT layer (20) and in which a plurality of first electrodes (31a), a plurality of light-emitting functional layers (33), and a common second electrode (34a) are laminated in that order so as to correspond to a plurality of sub-pixels constituting a display region (D); and a sealing film (45) which is provided above the light-emitting element layer (40a) and in which an inorganic sealing film (41) and an organic sealing film (42) are laminated in that order. In a frame region (F) around the display region (D), an electrode pattern (34b) is provided so as to be separated from the second electrode (34a), and the electrode pattern (34b) is provided so as to overlap the peripheral edge of the organic sealing film (42) with the inorganic sealing film (41) interposed therebetween.
H10K 59/131 - Interconnexions, p. ex. lignes de câblage ou bornes
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
Provided is a technique for a UE capable of communicating via satellite to execute appropriate processing of the management of a store and forward (S&F) mode and/or UE behavior during the S&F mode in order for devices to appropriately support an S&F satellite operation provided by a satellite that has lost connectivity to the ground and/or a device mounted on the satellite.
This base station device comprises: a transmission unit that transmits a TRIGGER frame for requesting transmission of a TB PPDU; and a MAC layer processing unit that issues, to a PHY layer processing unit, PHY-TRIGGER.request primitive including TRIGVECTOR parameter(s) in order to receive the TB PPDU, wherein the TRIGVECTOR parameter(s) include(s) per-STA information indicating whether the TB PPDU from each STA uses a DRU.
According to the present invention, a base station device that has one or more APs includes a processing unit that executes a first procedure. The one or more APs belong to a current AP MLD. The current AP MLD transmits an AID assigned to a non-AP STA in a Response frame. The Response frame includes a portion of the fields included in a Link Reconfiguration Response frame. The first procedure is a procedure that establishes a link to a target AP MLD and is included in a transition preparation procedure.
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
H04W 36/28 - La resélection étant déclenchée par des paramètres spécifiques par des paramètres de communication agréés ou négociés impliquant une pluralité de liaisons, p. ex. des liaisons multi-appels ou multi-porteuses
H04W 48/18 - Sélection d'un réseau ou d'un service de télécommunications
H04W 72/0457 - Affectation de bande ou de débit variable
Conventional TIMD prediction mode derivation has the problem wherein a large amount of computation is required to derive a template image and calculate costs. In the present invention, a TIMD prediction mode derivation unit that, in intra prediction, receives the input of a plurality of prediction mode candidates and selects a prediction mode has a template prediction image derivation unit for generating a prediction image, a template cost derivation unit, and a candidate selection unit. The candidate selection unit narrows down the number of prediction mode candidates on the basis of a cost derived by the template cost derivation unit. A candidate update unit updates the prediction mode candidate list narrowed down by the candidate selection unit and increases the width of a template region. In the TIMD prediction mode derivation unit, multiple iterations of a prediction mode derivation process are performed, and a final prediction mode is selected.
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale
28.
METHOD AND APPARATUS FOR REQUESTING ON-DEMAND SYSTEM INFORMATION IN WIRELESS NETWORKS
A User Equipment (UE) for requesting on-demand system information is provided. The UE includes at least one processor and at least one non-transitory computer-readable medium storing instructions that, when executed, cause the UE to transmit a Random Access (RA) preamble to a first cell and determine whether an RA search space for monitoring a Random Access Response (RAR) is configured by a second cell. In response to determining that the RA search space is not configured by the second cell, the UE monitors a Physical Downlink Control Channel (PDCCH) for the RAR based on a search space zero and a Control Resource Set (CORESET) zero, and decode the PDCCH by a System Information Radio Network Temporary Identifier (SI-RNTI); and determine an on-demand system information block 1 (OD-SIB1) request procedure is completed when the PDCCH is successfully decoded. In addition, a method and a BS are also provided.
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
H04W 48/14 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant une requête de l’utilisateur
Methods and apparatus for coordinating on-demand system information block type 1 cell operation are provided. The method includes: configuring one or more first cells managed by a first base station (BS) to operate in an on-demand system information block type 1 (OD-SIB1) cell operation mode; and transmitting an OD-SIB1 activation/de-activation indication message to a second BS via an inter-node interface, where the OD-SIB1 activation/de-activation indication message requests the second BS to configure one or more second cells to operate as supporting cells (Cell A) that broadcast OD-SIB1 configurations associated with the first cells.
H04W 48/14 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant une requête de l’utilisateur
The present invention provides, for example, a novel dishwasher having a simple configuration. The dishwasher comprises: a body that has a washing chamber; nozzles that are disposed inside the washing chamber and rotate about a central axis; and a supply mechanism that supplies water to the nozzles. The nozzles have a first portion, a second portion, a third portion, and a fourth portion. The first portion, the second portion, the third portion, and the fourth portion each have a plurality of jetting ports that jet the water supplied from the supply mechanism. The plurality of jetting ports provided to each of the first portion and the fourth portion are provided such that water can be jetted toward one side in a second direction, whereas the plurality of jetting ports provided to each of the second portion and the third portion are provided such that water can be jetted toward the other side in the second direction. The plurality of jetting ports provided to the first portion include three jetting ports configured so as to jet water in a direction such that the water jetted from each of the jetting ports converges toward the water jetted from the other jetting ports.
A47L 15/18 - Machines à laver ou à rincer la vaisselle ou les ustensiles de table à panier à vaisselle fixe et système de pulvérisation à l'intérieur de la cuve de nettoyage à système de pulvérisation à montage mobile
A47L 15/23 - Systèmes de pulvérisation tournants mus au moyen des jets
31.
COMMUNICATION APPARATUSES, COMMUNICATION SERVERS, AND COMMUNICATION METHODS
A communication apparatus is described. The communication apparatus may send a request message to a communication server, where the request message is used by the communication apparatus to request assistance data from the communication server for AI/ML positioning. The request message includes first information related to at least whether an associated identifier (ID) is requested or not.
Provided in the present invention are a method executed by a user equipment (UE), and a user equipment. The method comprises: when there is a triggered first beam measurement report (BMR), determining whether there is a specific uplink grant coinciding with an uplink transmission resource used for transmitting the first BMR to a base station; and when there is a specific uplink grant coinciding with the uplink transmission resource and the specific uplink grant satisfies a given condition, determining the specific uplink grant to be a preferred uplink grant, wherein the given condition comprises at least one of the following: a first condition, in which the specific uplink grant is an uplink grant in a random access response, a second condition, in which the specific uplink grant is a pre-configured uplink grant used for transmitting a second BMR, a third condition, in which the specific uplink grant is an uplink grant using a C-RNTI of a user equipment as an address, and the specific uplink grant is set with a priority higher than a first predetermined priority, and a fourth condition, in which the specific uplink grant is used for transmitting a BFR MAC CE.
In the present invention, a 5G ProSe intermediate U2N relay UE receives, from a 5G ProSe multi-hop U2N relay UE, a PROSE PC5 discovery message for multi-hop U2N relay discovery response including the number of hops, the number of hops indicates the number of PC5 hops necessary for a 5G ProSe multi-hop remote UE to reach a network, and the UE creates and stores a discovery entry including the received number of hops.
Provided is a technique for a UE capable of communicating via a satellite to execute management of a store and forward (S&F) mode and/or appropriate processing for UE behavior during the S&F mode in order for each device to appropriately support an S&F satellite operation provided by a satellite that has lost connectivity to the ground and/or a device mounted on the satellite.
H04W 48/12 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant un canal de commande descendant
The purpose of the present invention is to enable efficient deriving of a number of nominal frames of atlas attributes by optimizing the number of nominal frames of the atlas attributes, and to encode and decode 3D data at high efficiency. Provided is a 3D data decoding device that decodes mesh data or point group data, said device being characterized by comprising an atlas information decoding unit that decodes atlas information from encoded data obtained by encoding mesh data or point group data, wherein: the atlas information decoding unit comprises an extension information decoding unit that decodes extension information from an atlas information encoded stream; and the extension information decoding unit decodes a syntax element indicating the number of nominal frames of atlas attributes from the atlas information encoded data minus 2, and derives the number of nominal frames of the atlas attributes by adding 2 to the syntax element.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
Provided is a novel dishwasher having, for example, a simple configuration. This dishwasher comprises: a body having a washing chamber; a nozzle that is disposed in the washing chamber and rotates about a central axis; and a supply mechanism that supplies water to the nozzle. The nozzle has a first portion, a second portion, a third portion, and a fourth portion. Each of the first portion, the second portion, the third portion, and the fourth portion has a plurality of ejection ports for ejecting water supplied from the supply mechanism. The plurality of ejection ports provided in each of the first portion and the fourth portion are provided so as to be capable of ejecting water toward one side in a second direction, while the plurality of ejection ports provided in each of the second portion and the third portion are provided so as to be capable of ejecting water toward the other side in the second direction. The total opening area of the plurality of ejection ports provided in the first portion and the total opening area of the plurality of ejection ports provided in the fourth portion are different from each other.
A device may be configured to decode video data based on information included in a photosensitive content information message. In one example, a photosensitive content information message includes syntax elements indicating information regarding photosensitive content characteristics. In one example, a syntax element specifies whether photosensitive content in pictures in a persistence scope of the photosensitive content information message exceed photosensitivity content guidelines specified by a standard. In one example, a syntax element specifies whether photosensitive content in pictures in the persistence scope of the photosensitive content information message satisfy or exceed conditions specified in a clause specified by the standard.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
38.
SYSTEMS AND METHODS FOR SELECTING AND SIGNALING A NON-LINEAR TRANSFORM NORMALIZATION TECHNIQUE IN VIDEO CODING
In one embodiment, a method of encoding video data may comprises: determining a relationship between a picture resolution and a set value; selecting a slope adjustment coefficient based on the relationship between the picture resolution and the set value; performing a logit transform normalization technique according to the selected slope adjustment coefficient; and signaling the selected slope adjustment coefficient. In another embodiment, a decoding device may comprises: decoding a bitstream according to a video coding technique; reconstructing feature data from the decoded bitstream; determining a slope adjustment coefficient based on a picture resolution of decoded video; and performing a sigmoid transform normalization technique on the reconstructed feature data using the slope adjustment coefficient to generate feature data for input into a neural network.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
H04N 19/85 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le pré-traitement ou le post-traitement spécialement adaptés pour la compression vidéo
39.
SYSTEMS AND METHODS FOR SIGNALING PHOTOSENSITIVE CONTENT INDICATOR AND LEVEL INFORMATION IN VIDEO CODING
A device may be configured to decode video data based on information included in a photosensitive content information message. In one example, a photosensitive content information message includes syntax elements indicating information regarding photosensitive content characteristics. In one example, a syntax element specifies whether photosensitive content in pictures in a persistence scope of the photosensitive content information message exceed photosensitivity content guidelines specified by a standard. In one example, a syntax element specifies whether photosensitive content in pictures in the persistence scope of the photosensitive content information message violate a clause specified by the standard.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
40.
METHOD AND APPARATUS FOR PERFORMING CHANNEL STATE INFORMATION REPORTING IN WIRELESS NETWORKS
A User Equipment (UE) for performing Channel State Information (CSI) reporting is provided. The UE includes at least one processor and at least one non-transitory computer-readable medium storing instructions that, when executed, cause the UE to receive a cell configuration and a CSI report configuration from a Base Station (BS) for a first cell. The UE determines, based on the cell configuration, whether the first cell is configured with a first Synchronization Signal Block (SSB) configuration. In response to determining that the first cell is configured with the first SSB configuration, the UE determines whether the CSI report configuration is associated with a first SSB or both of the first SSB and a second SSB. The first SSB is configured by the first SSB configuration, and the second SSB is configured by a second SSB configuration. In addition, a method and a BS are also provided.
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method comprises: receiving system information and/or RRC dedicated signaling sent by means of a network, wherein the system information and/or the RRC dedicated signaling include(s) a carrier frequency for inter-frequency cell re-selection, a first cell re-selection priority and a low-power receiver (LR) cell re-selection priority; and on the basis of whether the first cell re-selection priority and/or the LR cell re-selection priority are/is configured, and on the basis of whether a UE supports an LR at the carrier frequency, determining a cell re-selection priority at the carrier frequency.
A device may be configured to perform spatial extrapolation and temporal extrapolation based on information included in a neural-network post-filter characteristics message. In one example, the neural-network post-filter characteristics message includes a syntax element indicating a number of alternative temporal extrapolations generated by a neural network post-filter. In one example, the neural-network post-filter characteristics message includes a syntax element indicating a number of alternative spatial extrapolations generated by the neural network post-filter. The device may be configured to perform temporal extrapolation and spatial extrapolation according to the neural network post-filter.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
H04N 19/117 - Filtres, p. ex. pour le pré-traitement ou le post-traitement
43.
METHOD AND APPARATUS FOR LAYER1/LAYER2 TRIGGERED MOBILITY (LTM) OPERATION
A method performed by a User Equipment (UE) for performing a Layer1/Layer2 Triggered Mobility (LTM) operation is provided. The method receives, from a serving cell, at least one LTM candidate configuration. The method receives, from the serving cell, an LTM Cell Switch Command (CSC) that identifies a first LTM candidate configuration selected from the at least one LTM candidate configuration, the first LTM candidate configuration including an identifier (ID) associated with an LTM candidate cell and an LTM Channel State Information (CSI) report configuration associated with the LTM candidate cell. The method transmits, to the LTM candidate cell, a CSI report on an uplink resource based on the LTM CSI report configuration in response to receiving the LTM CSC.
H04W 36/30 - La resélection étant déclenchée par des paramètres spécifiques par des données de mesure ou d’estimation de la qualité des liaisons
H04W 48/12 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant un canal de commande descendant
The present invention comprises: a base substrate (10); a TFT layer (20) which is provided on the base substrate (10); a light-emitting element layer (40a) which is provided on the TFT layer (20), and in which a plurality of first electrodes (30), a common edge cover (31a), a plurality of light-emitting functional layers (32), and a common second electrode (33) are laminated in this order in correspondence with a plurality of subpixels that constitute a display region (D); and a sealing film (45) which is provided on the light-emitting element layer (40a), wherein a light-shielding layer (44a) that is formed from a black resin so as to overlap with the edge cover (31a) is provided to a first inorganic sealing film (41) that constitutes the sealing film (45), on the opposite side from the base substrate (10).
H10K 50/86 - Dispositions pour améliorer le contraste, p. ex. en empêchant la réflexion de la lumière ambiante
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H05B 33/22 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition des couches auxiliaires diélectriques ou réfléchissantes
H10K 50/10 - OLED ou diodes électroluminescentes polymères [PLED]
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A device may be configured to decode video data based on information included in a photosensitive content information message. In one example, a photosensitive content information message includes syntax elements indicating information regarding photosensitive content characteristics. In one example, a syntax element specifies whether photosensitive content in pictures in a persistence scope of the photosensitive content information message exceed photosensitivity content guidelines specified by a standard. In one example, a syntax element specifies whether photosensitive content in pictures in the persistence scope of the photosensitive content information message exceed a particular photosensitivity content guideline specified by the standard.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
Provided is a terminal device that communicates with a base station device, the terminal device comprising a reception unit, a processing unit, and a transmission unit, wherein: the reception unit receives, from the base station device, a setting relating to one measurement; the processing unit measures a measurement item for a certain beam one or more times on the basis of the setting, and, on the basis of a determination that a condition is satisfied for a measured quantity for a certain beam of a certain cell, includes measured quantities for one or more beams in a MAC CE in an order starting from a beam having the highest measured quantity among the one or more measured beams; and the transmission unit transmits the MAC CE to the base station device.
A method performed by a User Equipment (UE) for performing a System Information Block Type 1 (SIB1) request operation is provided. The method receives, from a first cell, a Wake-Up Signal (WUS) configuration. The method transmits, to a Network Energy Saving (NES) cell, an Uplink (UL) WUS based on the WUS configuration to request an On-Demand (OD)-SIB1. Upon determining that a Physical Downlink Control Channel (PDCCH) has been successfully decoded with a first Radio Network Temporary Identifier (RNTI), the method receives the OD-SIB1 based on the PDCCH scrambled by the first RNTI. Upon determining that the PDCCH has been unsuccessfully decoded with the first RNTI, the method attempts to decode the PDCCH with a second RNTI. Upon determining that the PDCCH has been successfully decoded with the second RNTI, the method receives a Random Access Response (RAR) based on the PDCCH scrambled by the second RNTI.
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method comprises the following steps: updating a channel state indicator (CSI) report; performing an L1-RSRP measurement on a CSI-RS in a CSI-RS resource set or an SSB in an SSB resource set; and determining content and a mapping order which are included in the CSI report.
Provided are a method executed by a user equipment, and a user equipment. The method comprises: on the basis of a conditional layer 1/layer 2 triggered mobility (CLTM) configuration, executing CLTM condition evaluation on the basis of a CLTM execution condition comprised in the CLTM configuration; and on the basis of whether the CLTM execution condition is a condition associated with layer 1 or a condition associated with layer 3, causing an RRC layer or a MAC layer in the user equipment to stop the CLTM condition evaluation.
A method executed by a relay user equipment, i.e., a relay UE, and a UE. The method comprises: a relay UE triggering or starting a radio resource control (RRC) connection re-establishment procedure; and in the RRC connection re-establishment procedure, when the relay UE determines that the relay UE is executing an operation of an intermediate relay UE, the relay UE executing relay selection and not executing cell selection, and when the relay UE determines that the relay UE is executing an operation of a last relay UE, the relay UE executing cell selection and not executing relay selection.
H04W 40/22 - Sélection d'itinéraire ou de voie de communication, p. ex. routage basé sur l'énergie disponible ou le chemin le plus court utilisant la retransmission sélective en vue d'atteindre une station émettrice-réceptrice de base [BTS Base Transceiver Station] ou un point d'accès
51.
METHOD EXECUTED BY USER EQUIPMENT, USER EQUIPMENT, METHOD EXECUTED BY BASE STATION, AND BASE STATION
Provided in the present invention are a method executed by a user equipment, a user equipment, a method executed by a base station, and a base station. The method executed by a user equipment comprises: receiving a radio resource control (RRC) message from a base station, wherein the RRC message includes a remaining time threshold and/or one or more reporting time thresholds for a logical channel group (LCG); and on the basis of the remaining time threshold and the reporting time threshold, executing an operation related to delay status reporting (DSR), wherein the remaining time threshold is a remaining time threshold for triggering DSR for a logical channel (LCH) that belongs to the LCG.
The present invention provides a method executed by a user equipment (UE), and a UE. The method executed by the UE comprises: the UE receives channel state indicator (CSI) report configuration information CSI-ReportConfig sent by a base station; and the UE determines a duration for which the CSI report occupies a CSI processing unit.
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method executed by a user equipment (UE) comprises: the UE receives system information and/or an RRC dedicated message sent by a network, the system information and/or the RRC dedicated message comprising an SIB1 request configuration; the UE initiates a random access procedure on the basis of the SIB1 request configuration, and determines a cause of triggering the random access procedure; and the UE executes the random access procedure, wherein if the cause of triggering the random access procedure is to initiate an SIB1 request, the UE does not execute a BWP operation, or except when the cause of triggering the random access procedure is to initiate the SIB1 request, the UE executes the BWP operation.
A display device (1) comprises a display unit (3) and a power supply unit (2). The display unit (3) has a light-emitting element group that includes a common electrode (4), an auxiliary wiring group (10) that is connected to the power supply unit (2), and a contact hole group (15) that electrically connects the common electrode (4) and the auxiliary wiring group (10). The display unit (3) includes a first portion (13) that includes a part of the contact hole group (15), and a second portion (14) that includes another part of the contact hole group (15) and has the same area as the first portion (13) in a plan view. As compared with the first portion (13), the second portion (14) has a greater distance from the power supply unit (2), and a larger number of contact holes (24) included therein.
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
55.
REDUCING REFERENCE SIGNAL MEASUREMENTS IN WIRELESS NETWORKS
A user equipment (UE) receives, from a network, a first bitmap that identifies a first group of measurement timing configuration (SMTC) occasions during which to perform synchronization signal block (SSB) measurements The UE performs several SSB measurements in the SMTC occasions based on the first bitmap. The UE, based on the SSB measurements, predicts a second group of SMTC occasions during which to perform future SSB measurements. The second group of SMTC occasions is different than the first group of SMTC occasions. The UE transmits, to the network, a second bitmap that identifies the second group of SMTC occasions.
Provided is a terminal device comprising a reception unit that receives a frame including a first element, wherein the first element transmits the maximum transmission power within the bandwidth of a BSS, and the first element notifies the maximum transmit power in NPCA operation.
H04W 52/54 - Aspects de signalisation des instructions TPC, p. ex. structure de trame
H04W 28/06 - Optimisation, p. ex. compression de l'en-tête, calibrage des informations
H04W 72/0457 - Affectation de bande ou de débit variable
H04W 74/0816 - Accès non planifié, p. ex. ALOHA utilisant une détection de porteuse, p. ex. accès multiple par détection de porteuse [CSMA] avec évitement de collision
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
57.
BASE STATION DEVICE, TERMINAL DEVICE, AND COMMUNICATION METHOD
This Trigger frame includes a User Info field, and the User Info field includes an RU Allocation subfield. A predetermined value is set to a predetermined bit of the RU Allocation subfield to indicate that RU or MRU allocation is applied to a channel including an NPCA primary channel or a primary 80 MHz channel.
H04W 72/23 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal
H04W 16/14 - Dispositions de partage du spectre de fréquence
H04W 28/06 - Optimisation, p. ex. compression de l'en-tête, calibrage des informations
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
58.
TERMINAL DEVICE, BASE STATION DEVICE, AND COMMUNICATION METHOD
In this terminal device: a frequency subblock index for a DBW is obtained from N and M; the DBW is a bandwidth in which subcarriers of a DRU are arranged over the bandwidth; the value of N is obtained from a Bandwidth, a PS160 subfield, B0 of an RU Allocation subfield, a Primary 80 MHz channel, a Secondary 80 MHz channel, and a Configuration indicating the frequency sequence of Secondary 160 MHz channel; the PS160 subfield indicates whether the arrangement of RUs is applied to a primary 160 MHz channel or a secondary 160 MHz channel; B0 of the RU Allocation subfield indicates an 80 MHz frequency subblock in which the RUs are arranged; the value of M is determined on the basis of values that are set in B7-B1 of the RU Allocation subfield; and the values that are set in B7-B1 indicate a DRU size and a DRU index.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/136 - Caractéristiques ou propriétés du signal vidéo entrant
Provided is a terminal device that communicates with a base station device, the terminal device comprising a reception unit, a processing unit, and a transmission unit. The reception unit receives, from the base station device, a setting related to one or a plurality of measurements. The processing unit measures a measurement item of a certain beam once or a plurality of times on the basis of the setting, and on the basis of a determination that the measurement item satisfies one condition, includes, in a MAC CE, the one or a plurality of beam measurement results and an information element for indicating whether the beam satisfies the condition. The transmission unit transmits the MAC CE to the base station device.
The present invention receives information indicating whether each of a plurality of SSBs is transmitted and information indicating the value of an RNTI, determines that an RNTI of which the value is incremented in order from a value indicated by the information indicating the value of the RNTI from the SSB having the smallest SSB index corresponds to one or more of the SSBs that are indicated to be transmitted, selects one of the SSBs, transmits a wake-up signal corresponding to the selected SSB, and monitors a response to the wake-up signal using the RNTI corresponding to the selected SSB.
H04W 16/28 - Structures des cellules utilisant l'orientation du faisceau
H04W 48/10 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant des informations radiodiffusées
H04W 48/14 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant une requête de l’utilisateur
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
This terminal device that communicates with a base station device receives RRC signaling from the base station device, receives, from the base station device, Medium Access Control (MAC) signaling including information for identifying one LTM candidate information element and information for identifying a Timing Advance (TA) value associated with the one LTM candidate information element, and starts a synchronization timer associated with the one LTM candidate information element on the basis of the fact that the MAC signaling has been received. Further, on the basis of a determination that the condition associated with the one LTM candidate information element has been satisfied, the terminal device: (a) applies the TA value associated with the one LTM candidate information element as the TA value of a PTAG; (b) applies the synchronization timer value associated with the one LTM candidate information element as the value of the TA timer; and (c) starts the TA timer.
The present disclosure provides a method executed by a user equipment (UE) and a UE. The method comprises: receiving first system information block (SIB) information on an associated cell, the first SIB information comprising indication information for indicating whether a low power synchronization signal (LP-SS)/low power-consumption wake-up signal (LP-WUS) is configured on the same carrier as or a different carrier from a carrier used by the associated cell, and a signaling parameter; and on the basis of the indication information and the signaling parameter comprised in the received first SIB information, determining an SCS parameter used by the LP-SS/LP-WUS.
Provided in the present invention are a method executed by a user equipment (UE), a UE, a method executed by a base station, and a base station. The method executed by a UE comprises: a UE receiving from a network a radio resource control (RRC) message that includes a first indication identifier, wherein the first indication identifier is used for indicating a priority-related operation of the UE in logical channel prioritization (LCP); and the UE executing the priority-related operation on the basis of the first indication identifier, wherein priorities include a first priority and a second priority, the first priority is a priority when a corresponding logical channel (LCH) does not have LCH priority adjustment data, and the second priority is a priority when the LCH has LCH priority adjustment data.
This display system is provided with an image data transmitter for transmitting image data, and a plurality of display units that each display, on a display section, partial image data of a preset area corresponding to the own display unit among the image data transmitted by the image data transmitter. Each of the plurality of display units sets two of input/output ports of the own display unit as a main-path input port and a main-path output port for connecting to display units positioned in the preceding and subsequent stages of the own display unit, sets an input/output port other than the main-path input port and the main-path output port as a sub-path input port or a sub-path output port for connecting to a display unit different from the display units positioned in the preceding and subsequent stages of the own display unit, and receives the image data by switching to the sub-path input port when the image data cannot be received through the main-path input port.
G09G 3/32 - Dispositions ou circuits de commande présentant un intérêt uniquement pour l'affichage utilisant des moyens de visualisation autres que les tubes à rayons cathodiques pour la présentation d'un ensemble de plusieurs caractères, p. ex. d'une page, en composant l'ensemble par combinaison d'éléments individuels disposés en matrice utilisant des sources lumineuses commandées utilisant des panneaux électroluminescents semi-conducteurs, p. ex. utilisant des diodes électroluminescentes [LED]
G09G 3/20 - Dispositions ou circuits de commande présentant un intérêt uniquement pour l'affichage utilisant des moyens de visualisation autres que les tubes à rayons cathodiques pour la présentation d'un ensemble de plusieurs caractères, p. ex. d'une page, en composant l'ensemble par combinaison d'éléments individuels disposés en matrice
66.
ELECTROLUMINESCENT PANEL, METHOD FOR MANUFACTURING SAME, AND SUBSTRATE FOR ELECTROLUMINESCENT PANEL
The present disclosure provides a novel technology capable of suppressing reductions in yield and light-emission efficiency in an electroluminescent panel. In an electroluminescent panel (1), a ridge portion (22) that defines a light-emitting region (2) comprises a tip portion (222), a light-emitting layer (12) overlaps the tip portion (222) from above, and the thickness of the light-emitting layer (12) at the top of the tip portion (222) is zero or thinner than the thickness of the light-emitting region (2) at the center thereof.
A user equipment (UE) receives, from a network, a synchronization signal block (SSB) measurement timing configuration (SMTC) that includes several SMTC occasions and several SSB indices. The SSB indices indicate which SSBs to measure during the SMTC occasions. The UE performs several SSB measurements in each SMTC occasion based on the received SMTC. After performing the SSB measurements, the UE predicts one or more future changes to the SMTC occasions or to the SSB indices. The UE generates a report of the predicted one or more future changes and transmits the generated report to the network.
A network node transmits, to a user equipment (UE), first and second synchronization signal block (SSB) measurement timing configurations (SMTCs) and several SSB indices Each of the first or second SMTCs includes several SMTC occasions. The SSB indices indicate for which SSBs to perform measurements during each SMTC occasion. The first SMTC includes a first group of SMTC occasions. The second SMTC includes a subset of the first group SMTC occasions. The network node transmits, to the UE, a set of one or more key performance indicators (KPIs) based on which the UE determines which of the first or second SMTCs to apply.
A device may be configured to perform spatial extrapolation based on information included in a neural-network post-filter characteristics message. In one example, a neural-network post-filter characteristics message includes a purpose syntax element indicating a purpose of a neural-network post-filter includes spatial extrapolation. The device may be configured to calculate a output patch height and a output patch width based on a purpose of the neural-network post-filter including spatial extrapolation. In a case where an input patch is on or near a border, a calculated output patch size is adjusted based on a spatial extrapolation offset.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
H04N 19/82 - Détails des opérations de filtrage spécialement adaptées à la compression vidéo, p. ex. pour l'interpolation de pixels mettant en œuvre le filtrage dans une boucle de prédiction
H04N 19/85 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le pré-traitement ou le post-traitement spécialement adaptés pour la compression vidéo
The present invention addresses the problem of the non-definition of the random number seed information required to always obtain the same results when neural network image processing that uses generative AI is applied to post-processing for moving image encoding. This moving image decoding device is characterized by including an image decoding device that decodes encoded data from an image signal, a generation information decoding device that decodes an SEI message, and an image generation device that generates an image from image information decoded by the image decoding device and generation information decoded by the generation information decoding device, the SEI message including random number seed information or a way to determine whether to use random number seed information provided from the outside or preset random number seed information.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
H04N 19/117 - Filtres, p. ex. pour le pré-traitement ou le post-traitement
This RF front-end module comprises: an RF integrated circuit including a plurality of elements each having an amplifier; a power supply circuit for supplying a power supply voltage to the plurality of elements; and a plurality of electrical paths for electrically connecting the plurality of elements and the power supply circuit, wherein the difference between electrical resistance values of any two of the plurality of electrical paths is also a value within a range of -5% - +5%.
H01Q 23/00 - Antennes comportant des circuits ou des éléments de circuit actifs qui leur sont intégrés ou liés
H01P 5/12 - Dispositifs de couplage présentant au moins trois accès
H01Q 3/36 - Dispositifs pour changer ou faire varier l'orientation ou la forme du diagramme de directivité des ondes rayonnées par une antenne ou un système d'antenne faisant varier la phase relative ou l’amplitude relative et l’énergie d’excitation entre plusieurs éléments rayonnants actifsDispositifs pour changer ou faire varier l'orientation ou la forme du diagramme de directivité des ondes rayonnées par une antenne ou un système d'antenne faisant varier la distribution de l’énergie à travers une ouverture rayonnante faisant varier la phase par des moyens électriques avec des déphaseurs variables
A terminal device according to the present invention communicates with a base station device and transmits a first message to the base station device, the first message including an information element indicating that the terminal device serves as an intermediate relay UE on the basis of a determination that the terminal device serves as the intermediate relay UE.
H04W 88/04 - Dispositifs terminaux adapté à la retransmission à destination ou en provenance d'un autre terminal ou utilisateur
H04W 72/21 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens ascendant de la liaison sans fil, c.-à-d. en direction du réseau
H04W 92/18 - Interfaces entre des dispositifs hiérarchiquement similaires entre des dispositifs terminaux
73.
3D DATA DECODING DEVICE AND 3D DATA ENCODING DEVICE
The purpose of the present invention is to enable, in order to decode a specific tile, codec tiles necessary for decoding the specific tile to be decoded in parallel, by decoding an index of each codec tile associated with the tile, thereby shortening a time for decoding the specific tile, and efficiently encoding and decoding 3D data without redundancy. A 3D data decoding device that decodes mesh data or point cloud data is characterized in that an atlas information decoding unit that decodes atlas information from encoded data includes a tile information decoding unit that decodes tile information, and an additional information decoding unit that decodes an index indicating a type of a tile and codec tile information included in the tile, wherein the additional information decoding unit decodes index information of a codec tile necessary for decoding the tile according to the index indicating the type of the tile.
The present disclosure provides a method executed by a user equipment (UE), a handover preparation method in a communication system, and a UE. The method executed by a UE comprises: a UE for which RRM measurement based on a first RRM configuration is configured detects whether a condition for switching to performing RRM measurement on the basis of a second RRM configuration is satisfied, the first RRM configuration being an RRM measurement configuration in which a model is used, and the second RRM configuration being an RRM measurement configuration in which no model is used; upon detecting that the condition is satisfied, the UE performs an operation of switching to performing the RRM measurement on the basis of the second RRM configuration; and the UE performs the RRM measurement based on the second RRM configuration.
The present invention provides a method executed by a user equipment (UE) and a UE. The method executed by the UE comprises: the UE receives system information and/or RRC dedicated signaling sent by a network, wherein the system information and/or RRC dedicated signaling comprises an SCell configuration, and/or a serving cell configuration, and/or an NR measurement object configuration; the UE determines, on the basis of the SCell configuration, whether an SCell is an SSB-less SCell; and the UE selects, for the SSB-less SCell, at least one reference cell satisfying a first condition, to acquire a timing reference and an AGC resource for the SSB-less SCell, and determine an activation delay of the SSB-less Scell.
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
76.
EARLY UPLINK SYNCHRONIZATION METHOD IN USER EQUIPMENT, AND USER EQUIPMENT
The present invention provides an early uplink synchronization method in a user equipment (UE), and a UE. The early uplink synchronization method in a UE comprises: the UE receives a PDCCH order for triggering early uplink synchronization of an LTM target candidate cell; the UE initiates a random access procedure triggered by the PDCCH order, and sends a random access preamble to the LTM target candidate cell; and when receiving a CLTM early synchronization TA command comprising at least a TA value from a network side, the UE performs at least one operation among the following operations: operation 1: applying the CLTM early synchronization TA command to an associated CLTM target candidate cell; operation 2: starting or restarting a time alignment timer (TAT) associated with the CLTM early synchronization TA command; operation 3: a MAC layer of the UE indicating to the upper layer the reception of the CLTM early synchronization TA command; and operation 4: an RRC layer of the UE applying a configuration of one TAT.
Provided in the present invention are a method executed by a user equipment (UE), and a UE. The method comprises: when a UE in an RRC inactive state determining that an RRC connection reestablishment procedure needs to be initiated, the UE sending an RRC connection reestablishment request to a base station, and executing at least one of first operations; and for A-IoT transmission that is not discarded and/or A-IoT resources that are not released, executing processing on the basis of a response message from the base station for the RRC connection resume request, wherein the first operation comprises: stopping or discarding A-IoT transmission that is being executed or is to be executed; considering the running state of a resource validity timer as expired; indicating that a MAC entity stops running the resource validity timer; and releasing the configured A-IoT resources.
A quantum dot layer (30) contains first quantum dots (QD1), second quantum dots (QD2) positioned between the first quantum dots (QD1) and a cathode (CA), and third quantum dots (QD3) at least partially positioned between the first and second quantum dots (QD1, QD2). Each of the first to third quantum dots (QD1-QD3) has a core (CR1-CR3) composed of the same material and a shell (SH1-SH3) containing a metal element. The shell of the third quantum dots (QD3) contains at least a first chalcogen element. When x is the composition ratio of the first chalcogen element with respect to the metal element in the shell (SH1) of the first quantum dots (QD1), y is the composition ratio of the first chalcogen element with respect to the metal element in the shell (SH2) of the second quantum dots (QD2), and z is the composition ratio of the first chalcogen element with respect to the metal element in the shell (SH3) of the third quantum dots (QD3), x, y, and z satisfy the relationships of 0 ≤ x < z and 0 ≤ y < z.
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/12 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des dopants
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 50/125 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] spécialement adaptées à l'émission de lumière multicolore, p. ex. à l'émission de lumière blanche
H10K 85/00 - Matériaux organiques utilisés dans le corps ou les électrodes des dispositifs couverts par la présente sous-classe
H10K 101/40 - Interrelation des paramètres entre plusieurs couches ou sous-couches actives constitutives, p. ex. valeurs HOMO dans des couches adjacentes
79.
METHOD AND APPARATUS FOR MEASUREMENT REPORTING FOR ARTIFICIAL INTELLIGENCE/MACHINE LEARNING ENABLED MOBILITY
A method performed by a UE for artificial intelligence (AI)/machine learning (ML) enabled mobility is provided. The method receives, from a base station (BS), a configuration for at least one of a Radio Resource Management (RRM) prediction and a measurement event prediction. The method in response to receiving the configuration for the RRM prediction, reports, via a measurement report message, one or more first predicted measurement results to the BS. The method in response to receiving the configuration for the measurement event prediction, reports, via the measurement report message, second predicted measurement results, a predicted measurement event, and timing information to the BS, where the timing information is associated with the predicted measurement event.
A light emitting element (11) includes an anode (2), a cathode (5), a light emitting layer (EM) provided between the anode (2) and the cathode (5), a hole functional layer (3) provided between the anode (2) and the light emitting layer (EM), and an electron functional layer (4a) provided between the cathode (5) and the light emitting layer (EM). The hole functional layer (3) contains first metal oxide nanoparticles, and the electron functional layer (4a) contains second metal oxide nanoparticles. The first metal oxide nanoparticles are composed of a plurality of Ni atoms, a plurality of oxygen atoms, and a plurality of Fe atoms, the number of which is smaller than the number of the Ni atoms. The second metal oxide nanoparticles contain a first metal element and a second metal element different from the first metal element.
H10K 71/00 - Fabrication ou traitement spécialement adaptés aux dispositifs organiques couverts par la présente sous-classe
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H05B 33/10 - Appareils ou procédés spécialement adaptés à la fabrication des sources lumineuses électroluminescentes
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H05B 33/22 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition des couches auxiliaires diélectriques ou réfléchissantes
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
Methods and apparatus for uplink wake-up signal based on-demand system information acquisition in wireless communication are provided. The method includes receiving an UL WUS configuration with RNTI values, timers, preamble identifier, and RSRP threshold from a first cell; receiving SSBs from a second cell; selecting an SSB above the RSRP threshold; starting a first timer and monitoring for a first PDCCH with beam-specific RNTI. If detected, the method monitors for a second PDCCH with SI-RNTI to receive OD-SIB1. If the first timer expires without detection, the method transmits an UL WUS using the preamble identifier and monitors for network response with a second timer.
The present invention provides a user equipment (UE), a base station and a method therefor. A method executed by a UE comprises: when at least one of the following A1 to A4 is satisfied, the UE considering that logical channel (LCH) priority adjustment data of LCHs belonging to one logical channel group (LCG) is available to a MAC entity, or the UE considering that the LCHs have uplink data available to the MAC entity; when at least one of trigger conditions is satisfied, triggering a buffer status report (BSR).
The present invention cuts the deterioration in reliability of a light-emitting element (2) caused by excessive electrons transferred from a light-emitting layer (23) to a hole transport layer (22). In the light-emitting element (2), an anode (21), the hole transport layer (22), the light-emitting layer (23), and a cathode (25) are laminated in the stated order. The light-emitting layer (23) includes quantum dots. The hole transport layer (22) has p-type metal oxide semiconductor particles. The p-type metal oxide semiconductor particles each include: zinc magnesium oxide or zinc oxide; and a p-type dopant.
H05B 33/22 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition des couches auxiliaires diélectriques ou réfléchissantes
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H05B 33/20 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau dans lequel le matériau électroluminescent est enrobé
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 50/155 - Couches de transport de trous comprenant des dopants
A blue light-emitting element (5B) includes an anode (22), a cathode (25), and a blue light-emitting layer (24BEM) provided between the anode (22) and the cathode (25). The blue light-emitting layer (24BEM) includes blue light-emitting quantum dots (BQD) including a core (BQDC). The core (BQDC) has GaP containing a nitrogen element or GaP containing a zinc element and an oxygen element.
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A projection display apparatus (50) irradiates an image modulation device with a light flux from a light source, and enlarges and projects an image formed on the image modulation device by a projection lens. The projection display apparatus (50) comprises: a lens control unit (51) that detects the focal length of the projection lens; and a protection operation unit (52) that limits light emission of the light source by a plurality of protection operations when power supplied to the light source exceeds a protection operation value corresponding to the detected focal length.
A projection display device (50) irradiates an image modulation device with a light flux from a light source, and enlarges and projects an image formed on the image modulation device by a projection lens. The projection display device (50) comprises: a detection unit (51) that detects the focal length of the projection lens; and a light source drive control unit (52) that sets a set value of the light flux to a reference value when the detected focal length is shorter than a threshold, sets the set value to a limit value smaller than the reference value when the detected focal length is longer than the threshold, and performs control so that the light flux is equal to or less than the set value.
A device may be configured to decode video data based on information included in a photosensitive content information message. In one example, a photosensitive content information message includes a syntax element indicating information regarding photosensitive content characteristics. In one example, a syntax element specifies whether photosensitive content in pictures in a persistence scope of the photosensitive content information message exceed photosensitivity content guidelines specified by a standard.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
Provided is a display device capable of improving the uniformity of the temperature distribution of a display panel. This display device comprises: an inner plate; a display panel disposed on a front surface side of the inner plate; a heat generation source that is disposed on a back surface side of the inner plate and that generates heat; and a heat diffusion member that is disposed on the back surface side of the inner plate and that includes a first portion sandwiched between the inner plate and the heat generation source and a second portion which is contiguous from the first portion and not sandwiched between the inner plate and the heat generation source. The heat diffusion member diffuses the heat from the first portion to the second portion.
G09F 9/00 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels
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
H10K 50/87 - Dispositions pour le chauffage ou le refroidissement
Methods and apparatus for managing cell (re)selection based Artificial Intelligence (AI)/Machine Learning (ML) feature support are provided. The method includes acquiring system information from a first cell, the system information including first information; determining whether the first cell supports the AI/ML feature based on the first information; and preventing the first cell from being considered as a first candidate cell for cell (re)selection in response to determining that the first information indicates that the first cell does not support the AI/ML feature.
H04W 48/10 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant des informations radiodiffusées
90.
PROJECTION DISPLAY APPARATUS AND PROJECTION DISPLAY METHOD
A projection display apparatus (50) irradiates an image modulation device with a luminous flux from a light source, and enlarges and projects an image formed on the image modulation device by using a projection lens. The projection display apparatus comprises: a detection unit (51) that detects the focal length of the projection lens; and a video processing unit (52) that sets the maximum display gradation of a display in the image modulation device to a reference value when the detected focal length is shorter than a threshold value, and sets the maximum display gradation of the display in the image modulation device to a limit value smaller than the reference value when the detected focal length is longer than the threshold value.
G09G 5/00 - Dispositions ou circuits de commande de l'affichage communs à l'affichage utilisant des tubes à rayons cathodiques et à l'affichage utilisant d'autres moyens de visualisation
G03B 21/14 - Projecteurs ou visionneuses du type par projectionLeurs accessoires Détails
H04N 5/74 - Dispositifs de projection pour reproduction d'image, p. ex. eidophor
91.
SYSTEMS AND METHODS FOR UPDATING PATCH SIZE FOR SPATIAL EXTRAPOLATION AND CHROMA UPSAMPLING IN VIDEO CODING
A device may be configured to perform spatial extrapolation based on information included in a neural-network post-filter characteristics message. In one example, a neural-network post-filter characteristics message includes spatial extrapolation offset syntax elements specifying a spatial extrapolation area. In one example, a neural-network post-filter characteristics message includes an output chroma format syntax element specifying a chroma output format for chroma upsampling. The device may be configured to calculate a patch height and a patch width based on the spatial extrapolation offset syntax elements and the output chroma format syntax element.
H04N 19/80 - Détails des opérations de filtrage spécialement adaptées à la compression vidéo, p. ex. pour l'interpolation de pixels
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
Provided is a sleep induction system capable of satisfactorily inducing a user to a sleep state. The sleep induction system includes: a main body on which at least a part of the body of a user can be placed; a stimulation unit that imparts biological stimulation to the user; and a control unit that causes the stimulation unit to execute a sleep induction operation for repeatedly imparting periodic biological stimulation to the user. The control unit causes the stimulation unit to start the sleep induction operation when a first time has elapsed since at least the part of the body of the user was placed on the main body.
A61M 21/02 - Autres dispositifs ou méthodes pour amener un changement dans l'état de conscienceDispositifs pour provoquer ou arrêter le sommeil par des moyens mécaniques, optiques ou acoustiques, p. ex. pour mettre en état d'hypnose pour provoquer le sommeil ou la relaxation, p. ex. par stimulation directe des nerfs, par hypnose ou par analgésie
A transmitter node of a telecommunications system comprises processor circuitry and interface circuitry. The processor circuitry is configured to generate a delay status report (DSR) medium access control (MAC) control element (CE) which comprises an indication of non-delay-critical data in a buffer which precedes in transmission order delay-critical data reported by the DSR MAC CE. The interface circuitry is configured to transmit the DSR MAC CE over a radio interface to a receiver node of the telecommunications system.
H04W 72/566 - Critères d’affectation ou de planification des ressources sans fil sur la base de critères de priorité de l’information, de la source d’information ou du destinataire
A transmitter node of a telecommunications system comprises processor circuitry and interface circuitry. The processor circuitry is configured to generate a delay status report (DSR) medium access control (MAC) control element (CE). The DSR MAC CE comprises an indication for which of plural zones of a logical channel group the DSR MAC CE comprises a set of information fields. The interface circuitry is configured to transmit the DSR MAC CE over a radio interface to a receiver node of the telecommunications system.
A UE determines a UE side associated ID for each of the UE that corresponds to a network side associated ID. The UE side associated ID is determined based on a first set of aspects of the UE. The UE determines, based on a second set of aspects of the UE, a stability index for each functionality of the UE that corresponds to the network side associated ID. The UE determines the applicability of a particular functionality of the UE based on the network side associated ID and a UE side associated ID determined for the particular functionality. The UE determines, based on a stability index determined for the particular functionality and its associated network side associated ID, a duration of time before activating the particular functionality when the particular functionality is not activated, and a duration of time before deactivating the particular functionality when the particular functionality is activated.
A transmitter node of a telecommunications system comprises processor circuitry and interface circuitry. The processor circuitry is configured to generate a truncated delay status report (DSR) medium access control (MAC) control element (CE). The truncated DSR MAC CE is configured to comprise only a subset of contents of a full DSR MAC CE. The interface circuitry is configured to transmit the truncated DSR MAC CE over a radio interface to a receiver node of the telecommunications system.
Provided is a terminal device having a non-AP MLD, wherein: at least a first non-AP STA belongs to the non-AP MLD; at least a first AP belongs to a first AP MLD connected to the non-AP MLD; at least a second AP belongs to a second AP MLD not connected to the non-AP MLD; the terminal device includes a transmission unit that transmits a first frame, a reception unit that receives a second frame, and a processing unit; if the terminal device supports continuing to transmit data frames to the first AP until the second frame is received, upon transmitting the first frame, transmission of data frames to the first AP is not stopped until the second frame is received upon transmitting the first frame, and transmission of data frames to the second AP is started when the second frame is received; the first frame is a frame for executing SMD-based BSS transition; and the second frame is a response frame to the first frame.
This terminal device comprises a receiving unit that receives a downlink reference signal and a PDCCH in which DCI is arranged, and a transmitting unit that transmits CSI, wherein: the CSI is calculated on the basis of the downlink reference signal; one CSI report configuration is configured for the CSI; one trigger state is related to at least the one CSI report configuration; a first list is a trigger state list for aperiodic CSI; a second list is a trigger state list for semi-persistent CSI; when a transmitting means A in the one CSI report configuration is configured, the DCI indicates the one trigger state from the first list; when the transmitting means A is configured, the DCI is not expected to indicate the one trigger state from the second list; and when the transmitting means A is not configured, the DCI indicates the one trigger state from the first list or the second list.
A method performed by a UE for determining random access channel (RACH) occasions for a random access (RA) procedure is provided. The method receives, from a base station (BS), downlink control information (DCI) including a first field that indicates a first RACH occasion type or a second RACH occasion type. The method determines, based on the DCI, a RACH occasion type including the first RACH occasion type or the second RACH occasion type. The method determines one or more RACH occasions based on a selected synchronization signal block (SSB) and the determined RACH occasion type.
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
100.
METHOD AND APPARATUS FOR ACTIVATION OF AI/ML-ENABLED CSI REPORTING
A method performed by a UE for activation of artificial intelligence (AI)/machine learning (ML)-enabled channel state information (CSI) reporting is provided. The method receives, from a base station (BS), a CSI report configuration including one or more prediction related parameters. The method in response to determining that the CSI report configuration is applicable: in response to determining that a type of the CSI report configuration is periodic, determine that the CSI report configuration is activated; and in response to determining that the type of the CSI report configuration is semi-persistent: receive, from the BS, a medium access control (MAC) control element (CE); and in response to determining that an indication is included in the MAC CE, determine that the CSI report configuration is activated.