Embodiments of the present disclosure relate to multicast transmissions and receptions. According to some embodiments of the disclosure, a UE may: receive, from a base station (BS) in a first search space, a first downlink control information (DCI) for scheduling a first physical downlink shared channel (PDSCH) using a hybrid automatic repeat request (HARQ) process number, wherein a cyclic redundancy check (CRC) of the first DCI is scrambled by a first radio network temporary identifier (RNTI) specific to the UE and the first search space is configured specifically for multicast services; and determine that the first PDSCH carries a transport block (TB) associated with a multicast service.
H04L 1/1822 - Systèmes de répétition automatique, p. ex. systèmes Van Duuren comprenant la configuration d’une demande de retransmission automatique [ARQ] avec des procédés opérant en parallèle
H04L 1/1829 - Dispositions spécialement adaptées au point de réception
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
According to some embodiments of the disclosure, a user equipment (UE) may: determine a first physical uplink control channel (PUCCH) resource for a first PUCCH transmission in a first time unit, wherein the first PUCCH transmission carries hybrid automatic repeat request acknowledgement (HARQ-ACK) information bits for at least one semi-persistent scheduling (SPS) physical downlink shared channel (PDSCH) reception, and the first PUCCH resource is on a first frequency domain part; and in the event that the first PUCCH resource overlaps a symbol not intended for an uplink transmission on a second frequency domain part, defer the first PUCCH transmission.
H04L 1/1812 - Protocoles hybridesDemande de retransmission automatique hybride [HARQ]
H04L 1/1829 - Dispositions spécialement adaptées au point de réception
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
H04W 72/1273 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison descendante
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
3.
METHOD AND APPARATUS FOR MULTICAST HARQ-ACK FEEDBACK DETERMINATION
Embodiments of the present disclosure relate to HARQ-ACK feedback determination. According to some embodiments of the disclosure, a UE may: receive a first plurality of group-common DCI formats for scheduling a first plurality of PDSCHs for a multicast service, wherein each of the first plurality of group-common DCI formats includes a DAI; determine whether HARQ-ACK feedback for the first plurality of PDSCHs is disabled or enabled; generate a HARQ-ACK codebook for the multicast service based on the DAIs in the first plurality of group-common DCI formats; and transmit the HARQ-ACK codebook.
H04L 1/1829 - Dispositions spécialement adaptées au point de réception
H04L 1/1812 - Protocoles hybridesDemande de retransmission automatique hybride [HARQ]
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
H04W 72/30 - Gestion des ressources des services de diffusion
4.
CHARGING THIRD PARTIES FOR ACCESS TO MANAGEMENT SERVICES
Various aspects of the present disclosure relate to charging third parties for access to management services. An apparatus is configured to receive a first event notification for generating a charging data record (“CDR”). The apparatus is configured to generates the CDR in response to the first event notification, the CDR comprising information associated with access to a management service. The apparatus is configured to transmits a second event notification comprising the generated CDR.
A system receives an image that includes a person executing a sign. The system determines whether the sign is a sign of a sign language, the sign points to an object in the image, the sign indicates that the person wants to assign an alias to the sign of the sign language or the object in the image, and/or whether the sign uses the alias. After this determination, the system executes an action based on whether the sign comprises the sign of the sign language, the sign identifying the object in the image, the sign assigning the alias, or the sign using the alias.
G06V 40/20 - Mouvements ou comportement, p. ex. reconnaissance des gestes
G06V 10/44 - Extraction de caractéristiques locales par analyse des parties du motif, p. ex. par détection d’arêtes, de contours, de boucles, d’angles, de barres ou d’intersectionsAnalyse de connectivité, p. ex. de composantes connectées
G06V 10/764 - Dispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique utilisant la classification, p. ex. des objets vidéo
A microfluidic system for performing nucleic acid synthesis includes a microfluidic reactor site. A first reactor site valve is coupled upstream of the reactor site. A second reactor site valve is coupled downstream of the reactor site. The system includes a plurality of microfluidic inlets to couple to multiple pressurized reagent containing chambers. A plurality of reagent valves are coupled to individually control a size of droplets of reagent provided by respective pressurized reagent containing chambers. A pressurized gas source is coupled to propel droplets downstream to the microfluidic reactor site.
Apparatuses, methods, and systems are disclosed for mapping applications and location service profiles. One method includes configuring location service profiles. Each location service profile includes at least one positioning method, at least one quality of service parameter, at least one mapping to at least one location service producer, at least one application service type, and/or at least one service area type. The method includes receiving a location request from a location service consumer. The method includes determining a first mapping of at least one application to a first location service profile of the location service profiles based on the location request. The method includes transmitting the first mapping and the first location service profile to the at least one location service producer. The method includes determining a fused location estimate for the first location service profile.
Apparatuses, methods, and systems are disclosed for improving confidence of network analytics using a digital twin. An apparatus (800) includes a transceiver (825) that receives a request for analytics that includes a threshold minimum confidence level for the analytics and a specified time period for delivering the analytics and a processor (805) that determines a set of additional data to use for satisfying the threshold minimum confidence level available from a set of physical network resources associated with at least one digital twin instance. The transceiver (825) receives the set of additional data from the at least one digital twin instance and delivers the analytics at the specified time period in response to the analytics, derived based on the set of additional data from the at least one digital twin instance, satisfying the threshold minimum confidence level.
Various aspects of the present disclosure relate to a user equipment (UE) that acquires, from a base station, a sidelink (SL) grant that includes a channel occupancy time (COT) for part of an unlicensed spectrum allowing the acquiring UE to transmit SL control and data information to a secondary UE. The acquiring UE can also share the COT with the secondary UE, allowing the secondary UE to transmit SL control and data to the acquiring UE or another UE. The acquiring UE performs clear channel assessment (CCA) on one or more SL resources associated with the SL grant. The UE returns an SL hybrid automatic repeat request (HARQ) feedback to the base station based at least in part on a status of the CCA.
Various aspects of the disclosure relate to sidelink positioning reference signal (PRS) processing. A configuring device transmits a request message requesting sidelink PRS processing capability of a responding device, and receive a response message indicating the sidelink PRS processing capability. The configuring device can configure a sidelink PRS configuration indicating a duration and priority associated with processing a sidelink PRS with respect to an additional sidelink signal received by the responding device, and transmit the sidelink PRS configuration to the responding device. The responding device can receive the request message to indicate the sidelink PRS processing capability of the device, and transmit the response message indicating the sidelink PRS processing capability. The responding device can receive the sidelink PRS configuration indicating the duration and priority associated with processing the sidelink PRS with respect to the additional sidelink signal, and process the sidelink PRS based on the received sidelink PRS configuration.
H04W 64/00 - Localisation d'utilisateurs ou de terminaux pour la gestion du réseau, p. ex. gestion de la mobilité
H04W 72/25 - Canaux de commande ou signalisation pour la gestion des ressources entre terminaux au moyen d’une liaison sans fil, p. ex. liaison secondaire
Various aspects of the present disclosure relate to uplink repetitions in random access procedures. In an aspect, a UE receives at least one random access channel (RACH) configuration from a base station. The UE determines a first set of RACH occasions (ROs) in a first type of symbols and a second set of ROs in a second type of symbols based on the at least one RACH configuration. The UE transmits a preamble to the base station in at least one RO among the first set of ROs and the second set of ROs. The preamble is associated with a feature or a feature combination comprising the feature for the at least one RO. The feature includes a message 1 (msg1) repetition feature or a message 3 (msg3) repetition feature.
Various aspects of the present disclosure relate to a UE, a network entity, a processor for wireless communication, methods, and a computer readable medium for transmit power control (TPC) indication for sounding reference signal (SRS) transmission. The UE receives a configuration indicating two separate closed loop power control adjustment states for SRS transmission in a serving cell. The UE further receives a UE- specific downlink control information (DCI) format triggering at least one SRS resource set, wherein the UE-specific DCI format includes at least one SRS TPC command field used for indicating TPC command values for both of the two separate closed loop power control adjustment states. The UE further performs SRS transmission based on the at least one triggered SRS resource set associated with at least one of the two separate closed loop power control adjustment state. In this way, TPC commands can be flexibly indicated for the triggered SRS resource sets.
H04W 52/08 - Commande de puissance en boucle fermée
13.
METHODS AND APPARATUSES OF A MOBILITY ROBUSTNESS OPTIMIZATION (MRO) MECHANISM FOR AN L1/L2-TRIGGERED MOBILITY (LTM) PROCEDURE OR A SUBSEQUENT LTM PROCEDURE
Various aspects of the present disclosure relate to methods and apparatuses of a mobility robustness optimization (MRO) mechanism for an L1/L2 -Triggered Mobility (LTM) procedure or a subsequent LTM procedure. According to an embodiment of the present disclosure, a unit of a base station (BS) includes at least one memory and at least one processor coupled to the at least one memory and configured to cause the unit to: obtain information regarding whether an LTM cell switch to wrong or sub-optimal beam occurs.
Various aspects of the present disclosure relate to support of at least one AI task associated with an RRC_INACTIVE state. In one aspect, a UE receives configuration information for at least one AI task associated with an RRC_INACTIVE state from a network entity. In turn, the UE performs an operation related to the at least one AI task based on the configuration information.
Embodiments of the present disclosure relate to methods and apparatuses of resource selection for sidelink (SL) communication. According to an embodiment of the present disclosure, a user equipment (UE) can include: a processor configured to: obtain a position characteristic configuration associated with a resource pool based on configuration or pre-configuration, wherein the position characteristic configuration includes a set of position characteristics, and each position characteristic indicates an availability level of a position in an SL slot for simultaneous sub-slot level transmission and slot level transmission; and perform a sensing-based resource selection or re-selection based at least in part on the position characteristic configuration; a transmitter coupled to the processor; and a receiver coupled to the processor.
A control apparatus includes an acquisition unit and a controller. The acquisition unit is configured to obtain a first power supply parameter of a first output interface connected to a first conversion module of an output device. The controller is configured to control a second conversion module of the output device to operate according to the first power supply parameter to cause a target power supply parameter output by the second conversion module to satisfy a matching condition with the first power supply parameter. The first conversion module is configured to convert power output by the second conversion module with the target power supply parameter into power with the first power supply parameter and output the power with the first power supply parameter via the first output interface.
Apparatuses, methods, and systems are disclosed for data exposure to an authorized entity and data exposure notification. One apparatus includes a transceiver that receives a data access request from an authorized entity and a processor that provides the authorized entity with access to requested data. Via the transceiver, the processor sends an event notification for the data access request to a first entity function, where the event notification indicates an amount of data provided and/or a type of data provided.
Various aspects of the present disclosure relate to a user equipment (UE) that detects, while in a radio resource control inactive state and optionally while in a small data transmission session, that beam information is to be reported to a base station. This detection is performed based on some criteria, such as the current (serving) downlink beam quality dropping below a threshold amount. In response to detecting that beam information is to be reported to the base station, the UE initiates a random access procedure in order to provide the beam information (e.g., one or more candidate beams to switch to) to the base station. This beam information notifies the base station to change to a new serving beam due to, for example, the quality of the current serving beam dropping because of movement of the UE, blockages between the UE and the base station, and so forth.
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
Various aspects of the present disclosure relate to a user equipment (UE) that performs beam management while in a radio resource control inactive (RRC_INACTIVE) state. In one or more implementations, while in the RRC_INACTIVE state, the UE triggers generation of beam information for a base station. This beam information indicates a new serving beam on which, for example, a paging message is to be received from the base station. The UE generates and transmits the beam information to the base station.
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
Various aspects of the present disclosure relate to a user equipment (UE) that maintains a set of skipping durations that includes multiple subsets of skipping durations. The base station transmits to the UE a first control signaling indicating to activate one of the subsets of skipping durations. At a subsequent time, the base station transmits to the UE a second control signaling indicating that the UE can skip physical downlink control channel (PDCCH) monitoring in some time resources (e.g., slots). The second control signaling includes an identifier of a skipping duration and the UE selects the identified skipping duration in the active subset of skipping duration values. The UE then skips or terminates monitoring of the PDCCH for the selected skipping duration.
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
The present disclosure relates to methods, apparatuses, and systems that support reconfigurable intelligent surface (RIS) management in wireless systems. For instance, aspects of the disclosure enable operational aspects of an RIS to be controlled to reduce signal interference caused by operation of the RIS. Aspects of the disclosure also enable RIS control to be allocated between different base stations, such as to enable base stations to access an RIS for providing signal communication for UEs served by the base stations.
H04B 7/04 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées
22.
DISPLAY CONFIGURATION DETERMINATION FOR CONNECTED DISPLAY DEVICES
A method provides techniques for display configuration determination for connected display devices. The method includes connecting, by a processor of an electronic device, to an external display. The method further includes determining a display size for the external display, and determining a display category for the external display, based at least in part, on the display size. The method further includes configuring, based on the display category, content presented for consumption via the display, where at least one display characteristic of the content can be modified for optimal presentation on the display.
Various aspects of the present disclosure relate to physical random access channel (PRACH) or physical uplink control channel (PUCCH) transmission. In an aspect, a user equipment receives, from a base station, a transmission configuration. The transmission configuration comprises a first parameter configuration associated with a PRACH transmission or a PUCCH transmission on a first format of time units and a second parameter configuration associated with a PRACH transmission or a PUCCH transmission on a second format of time units. The user equipment determines at least one parameter for a PRACH procedure or PUCCH repetitions based on the transmission configuration, wherein repetitions of a PRACH transmission in the PRACH procedure or PUCCH repetitions are supported to be transmitted across the first format of time units and the second format of time units.
Various aspects of the present disclosure relate to a UE comprising: a first communications interface for communication via a first access network; a second communications interface for communication via a second access network; at least one processor coupled with a memory and configured to cause the UE to: transmit HTTP requests via the first communications interface, wherein each HTTP request transmitted via the first communications interface requests a respective first data chunk of a content stored on a communication network; transmit HTTP requests via the second communications interface, wherein each HTTP request transmitted via the second communications interface requests a respective second data chunk of the content; estimate a throughput of each of the first and second access network; and dynamically adjust a size of the data chunks requested in the HTTP requests transmitted via at least one of the first and second communications interface, based on the throughput.
Various aspects of the present disclosure relate to a user equipment (UE) for wireless communication. The UE includes a transceiver including a main radio and a low power wake-up radio, at least one memory, and at least one processor coupled to the transceiver and the at least one memory. The at least one processor is configured to cause the UE to, in response to configuring use of the low-power wake-up radio of the transceiver, initiate monitoring of a downlink from a network equipment for a low-power wake-up signal using the low power radio. The UE receives a wake-up indication within the LP-WUS. The UE is configured to identify from the wake-up indication whether the main radio (MR) needs to be woken up, and to identify from the LP-WUS whether channel state information needs to be reported, based at least on one or more channel state information reporting conditions and/or configurations.
Disclosed are methods and apparatuses for uplink transmission power control. An embodiment of the subject application provides a user equipment (UE). The UE includes: a processor and a wireless transceiver coupled to the processor, wherein the processor is configured to: receive, with the wireless transceiver, a uplink (UL) grant scheduling at least one Physical Uplink Shared Channel (PUSCH) transmission occupying a first set of resource blocks (RBs) consisting of a first number of RBs; determine whether there is at least one RB of the first set of RBs belongs to a second set of RBs; select at least one power-control parameter set from at least two power-control parameter sets for each of the at least one PUSCH transmission based on the determination; and calculate one or more transmission powers for each of the at least one PUSCH transmission based on the at least one selected power-control parameter set.
Methods and apparatuses for handover with new cell being involved are disclosed. A base unit comprises a processor; and a transceiver coupled to the processor, wherein, the processor is configured to receive, via the transceiver, a preference of handover of a UE for target base unit; and perform handover of the UE according to the preference of handover of the UE.
Methods and apparatuses for are NTN IoT HARQ disabling disclosed. A UE comprises a processor; and a receiver coupled to the processor, wherein the processor is configured to receive, via the receiver, HARQ configuration and a control signal scheduling transport block(s), where each of the scheduled transport block(s) is associated with an HARQ process number; and receive, via the receiver, the scheduled transport block(s) based on the control signal.
Embodiments of the present application are directed to a method and apparatus for broadcast remote ID transmissions of an unmanned aerial vehicle (UAV). In an embodiment of the present application, a first user equipment comprise: a receiver; a processor coupled to the receiver; and a transmitter coupled to the receiver and the processor. The receiver is configured to receive a first system information block (SIB) from a first cell. The processor is configured to determine a first resource pool for transmitting a broadcast remote identification based on the first SIB. The transmitter is configured to transmit the broadcast remote identification with the first resource pool.
An electronic device includes a first display component and a second display component. The first display component and the second display component are arranged on different bodies of the electronic device. When the electronic device is switched from a first state and a second state, the first display component remains in a visible mode.
Various aspects of the present disclosure relate to receiving, from a network entity, a cell discontinuous transmission and/or reception (DTX/DRX) configuration for a plurality of serving cells. Aspects of the present disclosure may relate to receiving a downlink control information (DCI) signal for a serving cell corresponding to at least the cell DTX/DRX configuration, wherein the DCI further comprises an indication of a cell turn-off. Aspects of the present disclosure may further relate to performing a cell search based at least in part on the cell turn-off and the cell DTX/DRX configuration.
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
32.
PERFORMING A TRUST EVALUATION SERVICE AT A NETWORK FUNCTION
Apparatuses, methods, and systems are disclosed for performing a trust evaluation service at a network function (“NF”). One method includes receiving, at a first NF, a first request message from a second NF. The first request message includes a trust service subscription request message corresponding to a trust service subscription. The method includes performing inference data collection. The method includes performing a trust evaluation service corresponding to the trust service subscription to produce trust evaluation data. The trust evaluation service is performed based at least in part on the inference data collected. The method includes transmitting a first response message to the second NF. The first response message includes information corresponding to the trust evaluation data.
Various aspects of the present disclosure relate to a device that receives a request by a location server to query for positioning measurements which are labelled or unlabelled, which is dependent on whether a supervised or unsupervised learning model is used. The requested positioning measurements, each associated with a label, are provided to a training system that trains one or more artificial intelligence (AI) inference models. The one or more AI inference models are deployed to a location management function (LMF), which makes predictions based on subsequent positioning measurements received from the device.
An information processing apparatus includes: a computer system; and a power supply circuit. The power supply circuit is configured to supply power supplied from an external power source or a battery to the computer system. The computer system is configured to switch a system state among a normal state, a first low power state, and a second low power state. The first low power state is a state in which power consumption is lower than power consumption in the normal state. The second low power state is a state in which power consumption is lower than the power consumption in the first low power state. The computer system is configured to change the system state to the second low power state when the system state is the first low power state and an actual measurement value of power consumption is greater than a predetermined reference value.
G06F 1/3234 - Économie d’énergie caractérisée par l'action entreprise
G06F 1/3212 - Surveillance du niveau de charge de la batterie, p. ex. un mode d’économie d’énergie étant activé lorsque la tension de la batterie descend sous un certain niveau
Various aspects of the present disclosure relate to predictive application context relocation. One apparatus is configured to receive a predicted route for a user equipment (“UE”), receive one or more data analytics parameters for at least one of a radio access network, a core network, or an edge data network associated with the predicted route of the UE, determine at least one predictive trigger action for remapping an application client from a first edge application server of a first edge data network to a second edge application server of a second edge data network based on the predicted route for the UE and the one or more data analytics parameters, and determine an application context relocation for the application client based on the at least one trigger action.
Apparatuses, methods, and systems are disclosed for configuring an AI based framework. One method includes receiving, an indication indicating an artificial intelligence based framework. The method includes receiving configuration information corresponding to the artificial intelligence based framework. The configuration information comprises at least one parameter of the artificial intelligence based framework. The method includes communicating an artificial intelligence report corresponding to the artificial intelligence based framework based on the configuration information. The artificial intelligence report includes: a set of values corresponding to the configuration information; an indication of a subset of a set of channel resources; or a combination thereof. The artificial intelligence report corresponds to a usage value that describes an artificial intelligence based application.
Various aspects of the present disclosure relate to a UE that receives an indication of one or more system information transmission repetition periodicity values corresponding to a respective subset of synchronization signal blocks (SSBs) within a burst of SSBs. The UE selects at least one SSB from the burst of SSBs, and receives a system information message via one or more physical downlink control channel (PDCCH) monitoring occasions in a search space set for the system information message. The one or more PDCCH monitoring occasions, for instance, are determined based on a system information transmission repetition periodicity value of the one or more system information transmission repetition periodicity values, and the system information transmission repetition periodicity value corresponds to the selected SSB. The UE can implement wireless communication using system information determined from the received system information message.
Various aspects of the present disclosure relate to selection of apparatus for sidelink positioning. A user equipment (UE) (e.g., a sidelink positioning target UE) receives from a first apparatus a first sidelink positioning protocol message including information for selecting a first set of one or more second apparatus for sidelink positioning. The UE can select from the first set of one or more second apparatus, a subset of the one or more second apparatus for sidelink positioning. The UE can transmit, to the first apparatus, a second sidelink positioning protocol message comprising information pertaining to the subset of the one or more second apparatus that can be used for determining a position of the UE.
Various aspects of the present disclosure relate to interfacing services of an application data analytics enabler server (ADAES). An apparatus, such as a network equipment (NE), receives, from an analytics consumer, a request for analytics data via an application program interface (API). The API can be configured as a single API via which multiple events are accessible, where each of the multiple events are distinguishable by an event-specific identifier. Alternatively, the API can be configured as multiple APIs by which one event of the multiple events is accessible via one of the multiple APIs, and the one event is distinguishable by an API-specific identifier and the event-specific identifier. The NE transmits a response to the request for the analytics data to the analytics consumer.
Various aspects of the present disclosure relate to a user equipment (UE) for wireless communication. The UE includes a transceiver including a main radio and a low power wake-up radio, at least one memory, and at least one processor coupled to the transceiver and the at least one memory. The at least one processor is configured to cause the UE to, in response to configuring use of the low-power wake-up radio of the transceiver, initiate monitoring of a downlink from a network equipment for a low-power wake-up signal using the low power radio. The UE receives a wake-up indication within the LP-WUS. The UE is configured to identify from the wake-up indication whether the main radio (MR) needs to be woken up, and to identify from the LP-WUS whether channel state information needs to be reported, based at least on one or more channel state information reporting conditions and/or configurations.
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
H04W 72/1268 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison ascendante
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
41.
SOUND LEAK MITIGATION FOR A PERSONAL LISTENING DEVICE
In aspects of sound leak mitigation for a personal listening device, an audio source device, such as a mobile device, can include a device interface to connect the audio source device to a personal listening device for audio playback. The audio source device implements a sound leak mitigation module that detects the personal listening device connected to the audio source device via the device interface and can determine that the personal listening device exhibits sound leakage during the audio playback. The sound leak mitigation module can mitigate the sound leakage from the personal listening device during the audio playback.
G10L 15/26 - Systèmes de synthèse de texte à partir de la parole
H04R 1/32 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement
An electronic device, a method and a computer program product for managing alarms. The method includes detecting, via a processor of an electronic device configured with alarm functionality, activation of a first alarm. The first alarm set to trigger at a first time. The method includes monitoring for receipt of incoming communications that are not attended to by a user of the electronic device and identifying that an incoming communication contains information that warrants performing an alarm modification corresponding to the first alarm. In response to identifying that the incoming communication contains the information that warrants performing an alarm modification, the method includes determining a time adjustment period based on the at least one information message. The method includes adjusting the first time, by the time adjustment period, to generate a second time and updating the first alarm to be triggered at the second time.
H04M 1/72451 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles avec des moyens permettant d’adapter la fonctionnalité du dispositif dans des circonstances spécifiques basés sur des horaires, p. ex. utilisant des applications de calendrier
G04G 13/02 - Production de signaux horaires acoustiques à des moments choisis à l'avance, p. ex. pour les réveils
Various aspects of the present disclosure relate to methods and apparatuses for a cell change mechanism of an L1/L2-Triggered Mobility (LTM) procedure, especially a cell change mechanism of an inter-base station (BS) LTM and/or an inter-central unit (CU) LTM. LTM may also be named as lower layer-Triggered Mobility or the like. According to an embodiment of the present disclosure, a candidate base station (BS) includes at least one memory and at least one processor coupled to the at least one memory and configured to cause the candidate BS to: transmit, to a source BS of a user equipment (UE), an L1/L2-Triggered Mobility (LTM) configuration related to one or more LTM candidate cells of the candidate BS; and after the UE successfully accesses a cell within the one or more LTM candidate cells via an LTM cell switch or a subsequent LTM cell switch, transmit, to at least one of the source BS or another candidate BS, information indicating successful access of the UE towards the cell.
Various aspects of the present disclosure relate to methods and apparatuses for channel state information (CSI) reporting. According to an embodiment of the present disclosure, a user equipment (UE) can include: at least one memory; and at least one processor coupled with the at least one memory and configured to cause the UE to: receive configuration information indicating a CSI reference signal (CSI-RS) resource set for channel measurement for CSI reporting based on an enhanced Type II codebook for predicted precoding matrix indicator (PMI) using a first number of CSI-RS ports, wherein the first number is more than 32, and wherein the CSI-RS resource set is an aperiodic CSI-RS resource set including a second number of CSI-RS resource groups, and each CSI-RS resource group includes a third number of CSI-RS resources, or the CSI-RS resource set is a periodic or semi-persistent CSI-RS resource set including a fourth number of CSI-RS resources; and determine a number of CSI processing units (CPUs) for processing of a CSI report based on a calculated CPU number which is determined based on the configuration information and at least one of a scaling factor or a product of a first parameter indicated by capability information reported by the UE and one of the first number, the third number or the fourth number.
Various aspects of the present disclosure relate to indicating global navigation satellite system availability. Generally, a user equipment (UE) global navigation satellite system (GNSS) outage or GNSS location inaccuracy indication is determined when in connected or idle state. This information may be used for the network to determine what solutions may be applied for time and frequency compensation when GNSS is not available. For instance, the techniques discussed herein provide a network based or UE based signaling procedure with one or both of implicit or explicit indication methods in order to know about the GNSS unavailability for a connected UE. For example, this indication may be initiated based on some explicit request configuration message by the network or based on an implicit indication by the network (e.g., a preconfigured criteria set by the network to initiate the indication) or UE autonomously decide to initiate a signaling message.
G01S 19/05 - Éléments coopérantsInteraction ou communication entre les différents éléments coopérants ou entre les éléments coopérants et les récepteurs fournissant des données d'assistance
Various aspects of the present disclosure relate to selection of apparatus for sidelink positioning. A user equipment (UE) (e.g., a sidelink positioning target UE) receives from a first apparatus a first sidelink positioning protocol message including information for selecting a first set of one or more second apparatus for sidelink positioning. The UE can select from the first set of one or more second apparatus, a subset of the one or more second apparatus for sidelink positioning. The UE can transmit, to the first apparatus, a second sidelink positioning protocol message comprising information pertaining to the subset of the one or more second apparatus that can be used for determining a position of the UE.
Method and apparatus for 5GS assisted adaptive AI or ML operation are disclosed. In one embodiment, an SMF comprises a processor; and a transceiver coupled to the processor, wherein the processor is configured to: receive, via the transceiver, app assistant information from a NG-RAN node, wherein the app assistant information includes at least one of predicted UL data rate of UE and predicted DL data rate of UE; and transmit, via the transceiver, the app assistant information to an AF.
Embodiments of the present disclosure relate to methods and apparatuses for sidelink (SL) transmission on unlicensed spectrum. According to an embodiment of the present disclosure, a user equipment (UE) can include: a processor configured to: determine a listen before talk (LBT) type of a first LBT operation for an SL transmission on an unlicensed spectrum; and perform the first LBT operation; a transmitter coupled to the processor and configured to: transmit first information associated with the first LBT operation in sidelink control information (SCI) when the first LBT operation is successful; and a receiver coupled to the processor.
H04W 72/25 - Canaux de commande ou signalisation pour la gestion des ressources entre terminaux au moyen d’une liaison sans fil, p. ex. liaison secondaire
H04W 24/10 - Planification des comptes-rendus de mesures
49.
SINGLE-DCI MULTI-TRP BASED PDSCH RECEPTION WITH UNIFIED TCI FRAMEWORK
Methods and apparatuses for PDSCH reception in single-DCI multi-TRP scenario with unified TCI framework are disclosed. In one embodiment, a UE comprises a transceiver; and a processor coupled to the transceiver, wherein the processor is configured to receive, via the transceiver, a medium access control (MAC) control element (CE) activating at least one Transmission Configuration Indication (TCI) codepoint with two downlink (DL) or joint TCI states; receive, via the transceiver, a downlink control information (DCI) indicating one TCI codepoint being activated with two DL or joint TCI states if multiple TCI codepoints are activated with DL or joint TCI states; and determine one or two DL TCI states for reception of PDSCH scheduled by a scheduling DCI.
H04W 72/1273 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison descendante
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
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
The present disclosure discloses an image generation method. The method includes: obtaining density information by a target model corresponding to a target scene space; determining a first constraint condition based on the density information; determining a target viewpoint from the target scene space based on the first constraint condition; and rendering the viewpoint image corresponding to the target viewpoint by the target model. Where the target model is trained to output a viewpoint image corresponding to any viewpoint after inputting the any viewpoint in the target scene space, the density information is a rendering parameter required for image rendering by the target model, and the density information represents transparency of a point in the target scene space.
An auxiliary apparatus for an electronic device includes a first body and a second body. The second body includes a first support member and a second support member that are rotatably connected. The first support member is rotatably connected to the first body. The second support member is able to rotate in a direction facing the first body to abut against the first body to allow the first support member and the second support member to be in a first attitude snapping toward the first body to support the electronic device carried by the second support member.
A functional assembly includes a main body, a first functional member, a second functional member, and a connection member. The first functional member is movably connected to the main body. The second functional member moves relative to the first functional member along a first direction and is movably connected to the main body. The connection member is connected to the first functional member and the second functional member to cause the second functional member to switch between a first state and a second state relative to the first functional member.
Embodiments of the present disclosure relate to methods and apparatuses for mapping from virtual resource block (VRB) to physical resource block (PRB) of a physical downlink shared channel (PDSCH) transmission. According to an embodiment of the present disclosure, a user equipment can include: a receiver that receives a downlink control information (DCI) format 1_0 in two or more linked common search spaces (CSSs) associated with two or more control resource sets (CORESETs), wherein each CSS of the two or more linked CSSs is associated with a CORESET of the two or more CORESETs; and a processor that is coupled to the receiver and determines a lowest-numbered PRB in the two or more CORESETs for mapping from VRB to PRB of a PDSCH transmission scheduled by the DCI format 1_0.
Methods and apparatus of indicating states of availability of Tracking Reference Signal (TRS) resources are disclosed. The method includes: receiving, by a receiver, a first signaling indicating states of availability of Tracking Reference Signal (TRS) resource groups in a first set of TRS resource groups, a second signaling indicating states of availability of TRS resource groups in a second set of TRS resource groups; and determining, by a processor, availability of TRS resources based on the first signaling and the second signaling; wherein each of the first signaling and the second signaling is one of: a paging Physical Downlink Control Channel (PDCCH) based signaling and a Paging Early Indication (PEI) based signaling.
An information processing apparatus includes: a computer system; and a power supply circuit. The power supply circuit is configured to supply power supplied from an external power source or a battery to the computer system. The computer system is configured to switch a system state among a normal state, a first low power state, and a second low power state. The first low power state is a state in which power consumption is lower than power consumption in the normal state. The second low power state is a state in which power consumption is lower than the power consumption in the first low power state.
G06F 1/3212 - Surveillance du niveau de charge de la batterie, p. ex. un mode d’économie d’énergie étant activé lorsque la tension de la batterie descend sous un certain niveau
56.
INDICATING SIDELINK CHANNEL OCCUPANCY TIME SHARING BETWEEN USER EQUIPMENT
Various aspects of the present disclosure relate to a user equipment (UE) that acquires a channel occupancy time (COT) for part of an unlicensed spectrum, allowing the acquiring UE to transmit sidelink (SL) control and data information to a secondary UE, and furthermore share the COT with the secondary UE. Sharing the COT with the secondary UE allows the secondary UE to transmit SL control and data to the acquiring UE or another UE. To initiate COT sharing, the UE that acquires the COT transmits a COT sharing indicator to one or more destination identifiers (IDs), notifying one or more secondary UEs of the COT sharing. The COT sharing indicator may include any of various information, such as remaining channel occupancy duration, priority, one or more destination IDs, offset indicating when the COT sharing may be transmitted, one or more resource pool IDs, and so forth.
H04W 72/25 - Canaux de commande ou signalisation pour la gestion des ressources entre terminaux au moyen d’une liaison sans fil, p. ex. liaison secondaire
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
57.
USER EQUIPMENT HANDOVER FROM A NETWORK ENERGY SAVING CELL
Various aspects of the present disclosure relate to user equipment (UE) handover from a network energy saving cell. A timeline of different events allows the UE to make a reliable decision on executing a handover to a target cell, e.g., by providing the UE with the knowledge that there is a finite time before the source cell sleeps and therefore measurement or evaluation to find a target cell for handover may continue. For example, a remaining time to sleep (RTS) value may be defined that indicates an amount of time that the source cell remains active after sending a cell switch off indication to the UE. The source cell enters sleep only after the RTS time indicated in the cell switch off indication elapses. The UE remains active in the source cell until the RTS time elapses and performs measurement and measurement evaluation of candidates.
An electronic device includes at least one external surface comprised of a material whose texture can be dynamically changed by a device-generated trigger. The device includes: at least one sensor that detects a support condition of the device; and a controller communicatively coupled to the sensor and to a component that provides the device-generated trigger. The controller: receives, from the sensor, sensor input corresponding to the support condition; and evaluates the received sensor input to determine whether a current support condition is one that triggers the controller to cause a change in the texture of the external surface material. In response to the current support condition being one that triggers the change in the texture of the external surface material, the controller transmits a signal to the component, which activates the component to provide the device-generated trigger, causing the change in the texture of the external surface material.
An electronic device includes an external panel material having an exterior visual characteristic that can be dynamically changed by a device-generated trigger. A controller of the device is communicatively coupled to at least one orientation sensor. The controller receives an input corresponding to a first context pre-identified as a condition that triggers a change in the exterior visual characteristic of the material. The controller identifies from sensor input received from the at least one orientation sensor whether the electronic device is in a first orientation that enables the external panel to be visible to a device user. In response to the electronic device being in the first orientation concurrently with receiving the input corresponding to the first context, the controller generates and transmits a change activation signal that changes the exterior visual characteristic of the external panel material from a first visible state to a second visible state.
H04M 1/72454 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles avec des moyens permettant d’adapter la fonctionnalité du dispositif dans des circonstances spécifiques en tenant compte des contraintes imposées par le contexte ou par l’environnement
H04M 1/72484 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles où les fonctions sont activées par la réception d’une démarche de communication
60.
METHODS AND DEVICES TO MANAGE SHARING OF CONTACT INFORMATION
An electronic device, computer program product, and method are provided that present or share contact details of a contact. At least one processor executes code to (i) identify, for a first contact maintained within a contact directory utilized by the electronic device, first contact details that is publicly sharable; (ii) identify, for the first contact, second contact details that comprises information that is contextually limited from being publicly shared or presented; and (iii) in response to detecting an operation to share or present the first contact, selectively share or present only the first contact details and withhold sharing or presenting of the second contact details.
A computing system includes a sensing system and a processor. The sensing system includes a touch sensor configured to detect touch of an input object in a dedicated sensing region; and a force sensor configured to detect force applied to the sensing system. The processor is configured to determine abnormality based on detection results from the touch sensor and the force sensor.
G06F 11/22 - Détection ou localisation du matériel d'ordinateur défectueux en effectuant des tests pendant les opérations d'attente ou pendant les temps morts, p. ex. essais de mise en route
Various aspects of the present disclosure relate to logging layer 3 (L3) measurement results in a radio resource control (RRC) connected state. In an aspect, a user equipment (UE) receives, from a first base station (BS), a first configuration for logging at least one L3 measurement result in the RRC connected state. The UE logs the at least one L3 measurement result based on the first configuration. The UE receives, from the first BS or a second BS, a second configuration for reporting the logged at least one L3 measurement result in the RRC connected state, and reports the at least one L3 measurement result logged at the UE to the first BS or the second BS. In this way, relaxed latency requirement for measurement data collection may be met, and the measurement results may be reported unfrequently to collect large amount of measurement result.
Embodiments of the present disclosure relate to methods and apparatuses for resource allocation for ambient IoT communication. A UE may: transmit, to a BS, a SR for requesting resources based on an SR configuration; receive, from the BS, a DCI scheduling a PUSCH; transmit, to the base station on the PUSCH, assistant information for assigning resources for ambient IoT communication between the UE and a plurality of devices; and receive, from the BS, an indication of resources assigned for the ambient IoT communication.
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
Various aspects of the present disclosure relate to radio link monitoring or for beam failure recovery. In an aspect, a user equipment receives, from a base station, at least one set of resource indexes for radio link monitoring or for beam failure recovery. The user equipment assesses at least one radio link quality of at least one resource index among the at least one set of resource indexes according to at least one symbol type associated with the at least one resource index.
Various aspects of the present disclosure relate to transmission pattern configuration for low power synchronization signals. A device with a low power processor and/or a user equipment (UE) with a main radio and a low power radio may receive first signaling including a low power synchronization signal and a portion of a cell identifier (ID) for a serving cell. The first signaling may be transmitted using a transmission pattern associated with an index modulation scheme (e.g., an on-off keying (OOK) waveform). The device may receive second signaling including an indication of a remaining portion of the cell ID. The device may use the cell ID to establish a wireless connection with a network equipment (NE), such as a base station.
Various aspects of the present disclosure relate to a method (1000) performed by a first network function, comprising: determining (1002) a requirement for transfer learning for a learning model task; and discovering (1004) one or more second network functions for supporting transfer learning for the learning model task, based at least in part on one or more transfer learning capabilities of the one or more second network functions.
H04L 41/16 - Dispositions pour la maintenance, l’administration ou la gestion des réseaux de commutation de données, p. ex. des réseaux de commutation de paquets en utilisant l'apprentissage automatique ou l'intelligence artificielle
H04W 24/00 - Dispositions de supervision, de contrôle ou de test
67.
MODEL INFERENCE IN A WIRELESS COMMUNICATION NETWORK
Various aspects of the present disclosure relate to a first federated learning client for wireless communication, comprising: at least one memory; and at least one processor coupled with the at least one memory and configured to cause the first federated learning client to: receive, from a first federated learning server, a first request message indicating a requirement for the first federated learning client to support a federated learning inference process for an analytic, the federated learning inference process using a local model trained by a second federated learning client according to a federated learning training process, wherein the first request message comprises an identifier of the federated learning training process; and send, to the first federated learning server, a first response message indicating whether the first federated learning client can support the federated learning inference process for the analytic.
G06F 9/50 - Allocation de ressources, p. ex. de l'unité centrale de traitement [UCT]
H04L 41/16 - Dispositions pour la maintenance, l’administration ou la gestion des réseaux de commutation de données, p. ex. des réseaux de commutation de paquets en utilisant l'apprentissage automatique ou l'intelligence artificielle
This application provides a display method, an electronic device. The display method applied to an electronic device, comprising: acquiring activity information of a user; and determining display parameters of an object within at least one three-dimensional space body in a three-dimensional space, based on the activity information, wherein the three-dimensional space includes multiple three-dimensional space bodies; and displaying the object within at least one three-dimensional space body, based on the display parameters of the object within at least one three-dimensional space body.
Methods and apparatuses for RIS capability reporting are disclosed. A method at an RIS device comprises transmitting RIS capability including at least the number of elements in a vertical direction (Nx) and the number of elements in a horizontal direction (Ny), and whether the phase states of all elements in each column can be controlled together; and receiving a reflection coefficients matrix derived based on the RIS capability.
H04B 7/04 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
70.
RECEIVING SYSTEM INFORMATION FROM A RELAY VIA A SIDELINK CHANNEL
Apparatuses, methods, and systems are disclosed for system information delivery over sidelink radio interface using a UE-to-Network relay UE. One method includes transmitting information for SIBs provided by a serving cell in a mobile wireless communication network and receiving, from a remote device, a request for a particular SIB. The method includes acquiring a set of SIBs from the serving cell and transmitting, using a sidelink channel, a valid version of the particular SIB to the remote device.
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 88/04 - Dispositifs terminaux adapté à la retransmission à destination ou en provenance d'un autre terminal ou utilisateur
H04W 92/18 - Interfaces entre des dispositifs hiérarchiquement similaires entre des dispositifs terminaux
71.
CONFIGURING A CODEBOOK CORRESPONDING TO TRANSMIT PRECODING MATRIX INFORMATION
Apparatuses, methods, and systems are disclosed for configuring a codebook corresponding to TPMI. One method includes receiving a codebook configuration from a network. The codebook configuration corresponds to an enhanced UL codebook-based transmission, the codebook corresponds to a TPMI, the TPMI corresponds to uplink transmission, and the TPMI corresponds to at least one layer. The method includes transmitting a set of SRSs. The method includes receiving the TPMI via a DCI for scheduling a PUSCH transmission. The DCI is received on a PDCCH, a PDSCH, or a combination thereof, and the DCI is decomposed into a first stage DCI and a second stage DCI. The method includes receiving a subset of codebook parameters corresponding to the TPMI in a second stage DCI. The second stage DCI is received in the PDCCH, the PDSCH, or a combination thereof.
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
H04W 72/1268 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison ascendante
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
72.
Deformable Electronic Devices and Corresponding Methods and Systems for Determining Deformation States
A deformable electronic device includes a flexible display supported by a deformable housing comprising a plurality of linkage members and one or more magnet magnetometer pairs. Each magnet magnetometer pair includes a magnetometer situated in a linkage member of the plurality of linkage members and at least one corresponding magnet situated in another linkage member of the plurality of linkage members that is adjacent to the linkage member among the plurality of linkage members. One or more processors operable with one or more magnetometers of the one or more magnet magnetometer pairs are configured to identify a deformed shape of the deformable electronic device from signals received from the one or more magnetometers.
A method in an electronic device includes processing, with one or more processors of the electronic device using a communication device of the electronic device, an electronic financial transaction. The method generates, with the one or more processors using signals from one or more sensors of the electronic device, a digital footprint defining locational surroundings and environs of the electronic device during the processing of the electronic financial transaction. The method monitors, by one or more sensors of the electronic device, the surroundings and environs of the electronic device and presents, by the one or more processors on a user interface, an alert when the surroundings and environs again match the digital footprint defining locational surroundings and environs of the electronic device during the processing of the electronic financial transaction.
Various aspects of the present disclosure relate to: receiving (1402) a paging request from a core network element; transmitting (1404) paging to a user equipment (UE) according to the received paging request in a standard paging occasion; determining (1406) whether a paging response is received from the UE; in response to determining that the paging response is not received from the UE, transmitting (1408) information to the core network element indicating unsuccessful paging; and receiving (1410) an enhanced paging request from the core network element.
An information processing method includes obtaining an input request of a user; based on a relationship between the input request and user information of the user, determining, from a target data source, at least first data in which the input request satisfies a relevant condition with the user information in a direction of the requested result, the target data source including data related to the user information; generating first prompt information based on the first data; and sending the input request and model prompt information to a target model for performing language processing on the input request based on the model prompt information and obtaining a feedback result corresponding to the input request in the direction of the requested result, the model prompt information including the first prompt information.
A method for determining a response message includes: determining a target instruction indicated by a query information from a user and a target content to be responded to, the target instruction being configured to indicate a processing requirement for the target content; determining a target historical instruction similar to the target instruction from a historical instruction set, the historical instruction set including at least one historical instruction determined based on historical query information input by the user; determining an instruction intent corresponding to the target historical instruction as a target instruction intent of the target instruction; and determining a first response message for the query information using a first language processing model based on the target content and the target instruction intent of the target instruction.
Embodiments of the present application relate to methods and apparatuses for configuring a ranging period for a user equipment (UE) in a wireless network under a 3rd Generation Partnership Project (3GPP) 5G system or the like. According to an embodiment of the present application, a network node includes a processor and a wireless transceiver coupled to the processor; and the processor is configured to transmit, via the wireless transceiver to a UE, configuration information regarding a time period related to a ranging measurement operation between the UE and one or more further UEs, wherein the time period includes at least one of a ranging time window and a ranging time gap, wherein the ranging measurement operation is executed by the UE to the one or more further UEs during the ranging time window, and wherein a radio frequency (RF) switch procedure for the ranging measurement operation is executed by the UE during the ranging time gap.
Embodiments of the present disclosure relate to methods and apparatuses for sidelink (SL) positioning. According to an embodiment of the present disclosure, a first user equipment (UE) can include: a transmitter configured to transmit first assistance information to a network, wherein the first assistance information includes UE information associated with at least one second UE, and wherein the at least one second UE helps the first UE to acquire its position; a receiver configured to receive first SL positioning related information from the network; and a processor coupled to the transmitter and the receiver.
H04W 72/25 - Canaux de commande ou signalisation pour la gestion des ressources entre terminaux au moyen d’une liaison sans fil, p. ex. liaison secondaire
H04W 64/00 - Localisation d'utilisateurs ou de terminaux pour la gestion du réseau, p. ex. gestion de la mobilité
79.
MODULE MOUNTING STRUCTURE AND ELECTRONIC APPARATUS
A module mounting structure includes: a cover that covers a front surface of a memory module on which a memory chip is mounted; a relay connector board that is located between a rear side of a part of the memory module where the memory chip is mounted and a substrate, and brings a large number of contact portions of the memory module and a large number of contact portions of the substrate into contact with each other by a large number of elastic pins; and a screw that fastens the cover, a module board of the memory module, the relay connector board, and the substrate in a Z direction. The cover includes a board support protruding portion that protrudes toward the substrate and abuts on the module board along the memory chip.
Various aspects of the present disclosure relate to receiving a configuration that indicates a plurality of carriers for sidelink (SL) communication and tracking a number of consecutive discontinuous transmission (DTX) instances for each SL carrier of the plurality of carriers. Aspects of the present disclosure may relate to determining a carrier failure condition for a respective SL carrier based at least in part on a tracked number of consecutive DTX instances satisfying a threshold and transmitting a notification to a base station, the notification indicating the carrier failure condition for the respective SL carrier.
The present disclosure relates to methods, apparatuses, and systems that support API access management in wireless systems. For instance, an API invoker (e.g., a user or UE) can be authenticated and authorized to access or register with a common API framework (CAPIF) function to enable real-time user consent driven API invocation authorization and secured user service data exposure by a network. Further, a comprehensive set of procedures are provided that ensure that networks are protected from unpermitted and/or potentially malicious access to APIs exposed by the network.
H04W 8/18 - Traitement de données utilisateur ou abonné, p. ex. services faisant l'objet d'un abonnement, préférences utilisateur ou profils utilisateurTransfert de données utilisateur ou abonné
In aspects of location based transaction authentication, a mobile device includes a location service to determine a device location of the mobile device. The mobile device also implements a transaction authentication manager that can receive a transaction location of a transaction associated with an account of a user of the mobile device, and compare the device location of the mobile device to the transaction location of the transaction. The transaction authentication manager can also receive a one time password that is masked in response to determining that the device location does not match the transaction location, and reveal the one time password in response to receiving an input on the mobile device to authenticate the transaction.
G06Q 20/40 - Autorisation, p. ex. identification du payeur ou du bénéficiaire, vérification des références du client ou du magasinExamen et approbation des payeurs, p. ex. contrôle des lignes de crédit ou des listes négatives
G06Q 20/38 - Protocoles de paiementArchitectures, schémas ou protocoles de paiement leurs détails
83.
METHODS AND APPARATUSES FOR TIME DOMAIN RESOURCE ALLOCATION FOR AMBIENT INTERNET OF THINGS COMMUNICATION
Embodiments of the present disclosure relate to methods and apparatuses for time domain resource allocation for ambient IoT communication. A UE may: receive, from a BS, DCI assigning a set of resources for ambient IoT communication with a plurality of devices; transmit a first channel to the plurality of devices within the set of resources; receive one or more second channels each carrying a response to the first channel from one or more of the plurality of devices within the set of resources; and transmit, to the BS, a status indicator of the ambient IoT communication in a PUCCH resource in a slot based on the received response to the first channel.
Various aspects of the present disclosure relate to a method (1800) performed by a first network function (NF), comprising: receiving (1802) a first request for training a machine learning (ML) model for deriving analytics; determining (1804) a requirement for ML model training using federated learning; selecting (1806) a first ML model and one or more second NFs for performing the federated learning; transmitting (1808), to each of the one or more second NFs, a second request for performing the federated learning using respective second ML models; receiving (1810) first accuracy metrics associated with the federated learning performed by the respective second NFs, wherein the first accuracy metric is received from the respective second NFs and/or from a third NF monitoring the respective second NFs; and determining (1812) an overall accuracy of the respective second ML models.
G06N 3/084 - Rétropropagation, p. ex. suivant l’algorithme du gradient
G06N 3/098 - Apprentissage distribué, p. ex. apprentissage fédéré
H04L 41/16 - Dispositions pour la maintenance, l’administration ou la gestion des réseaux de commutation de données, p. ex. des réseaux de commutation de paquets en utilisant l'apprentissage automatique ou l'intelligence artificielle
A control method includes: establishing a connection channel with a second electronic device; first condition is met, sending display data representing a first content to the second electronic device through the connection channel to cause the second electronic device to display the first content, and obtaining operation information on the first content obtained by the second electronic device through the connection channel; and if a second condition is met, displaying a second content and obtaining, through the connection channel, first coordinate information sent by the second electronic device and used to represent movement of a first target object, and displaying the first target object based on the first coordinate information, the first target object being used to operate the second content.
A display device having a rear surface includes: a first polarizer having a first main surface; a second polarizer disposed closer to the rear surface than the first polarizer, the second polarizer to be opposed to the first main surface of the first polarizer; a liquid crystal cell between the first polarizer and the second polarizer; and a touch function layer between the first polarizer and the liquid crystal cell, the touch function layer having an electrode that detects a touch input, the touch function layer being disposed on the first main surface of the first polarizer.
Electronic communications and a keyword are provided to a machine learning algorithm. Similarity measures are received from the machine learning algorithm. The similarity measures indicate a similarity between the communications and the keyword. The communications are clustered as a function of the similarity measures. False positive communications are removed from a first cluster as a function of a sum of distances between the false positive communication and communications in the first cluster that include the keyword and a sum of distances between the false positive communication and communications in the first cluster that do not include the keyword. False negatives are added to the first cluster as a function of a sum of distances between the false negative and communications in the first cluster that include the keyword and the sum of distances between the false negative and communications in the cluster that do not include the keyword.
G06F 18/2413 - Techniques de classification relatives au modèle de classification, p. ex. approches paramétriques ou non paramétriques basées sur les distances des motifs d'entraînement ou de référence
Various aspects of the present disclosure relate to receiving a sensing configuration for performing a sensing signal transmission and at least one sensing measurement; performing at least one sensing measurement based on a first sensing signal; transmitting a second sensing signal in accordance with the sensing configuration, wherein the sensing configuration indicates a time difference between a reception of the first sensing signal and a time of transmission of the second sensing signal or a time reference, or a frequency difference between the reception of the first sensing signal and a transmission frequency of the second sensing signal or a frequency reference, or both; and transmitting a measurement report based at least in part on the at least one sensing measurement.
G01S 13/76 - Systèmes utilisant la reradiation d'ondes radio, p. ex. du type radar secondaireSystèmes analogues dans lesquels des signaux de type pulsé sont transmis
H04W 24/10 - Planification des comptes-rendus de mesures
Apparatuses, methods, and systems are disclosed for paging multi-SIM devices in the same network. One apparatus includes a processor coupled with a memory and configured to cause the UE to: perform a first registration with a first network using a first Subscriber Identity Module (SIM) of the UE, wherein the first SIM is associated with a first identifier based on the first registration; perform a second registration with a second network using a second SIM of the UE; and indicate the first identifier to the second network during the second registration and based on the first network and the second network being associated with a Mobile Network Operator (MNO).
H04W 60/00 - Rattachement à un réseau, p. ex. enregistrementSuppression du rattachement à un réseau, p. ex. annulation de l'enregistrement
H04W 8/18 - Traitement de données utilisateur ou abonné, p. ex. services faisant l'objet d'un abonnement, préférences utilisateur ou profils utilisateurTransfert de données utilisateur ou abonné
H04W 68/12 - Avertissement aux utilisateurs, p. ex. alerte ou messagerie, sur l'arrivée d'une communication, un changement de service ou similaires avertissement inter-réseaux
Various aspects of the present disclosure relate to a resource owner (e.g., a user or UE) that is authenticated and authorized to access or register with a common application programming interface (API) framework (CAPIF) function. Security credentials (e.g., a CAPIF key KCAPIF) are generated and a temporary user identity is used to preserve confidentiality of identity of the resource owner. The KCAPIF is subsequently used to provide a secure session when registering with the CAPIF function. Furthermore, the KCAPIF is used to provide a secure session when providing consent data from the resource owner to the CAPIF.
Various aspects of the present disclosure relate to network-assisted cell selection. In some embodiments, a network employs a cell within a location to coordinate access between the UE and other cells (e.g., neighbor cells) that are candidates to be a serving cell for the UE within the location but may be in an energy saving state of operation when a UE initiates an access procedure.
A method in an electronic device detects, by one or more processors from user input received by a user interface of the electronic device, shopping cart interaction events to an electronic shopping cart within an electronic shopping interactive computing environment. The one or more processors map attempts within the electronic shopping interactive computing environment to meet one or more promotional data structures based upon minimum purchase quantities and/or minimum purchase amounts and cause the user interface to present one or more product notification data structures meeting the one or more promotional data structures as a function of a user persona and behavior data structure retrieved from memory.
G06Q 20/40 - Autorisation, p. ex. identification du payeur ou du bénéficiaire, vérification des références du client ou du magasinExamen et approbation des payeurs, p. ex. contrôle des lignes de crédit ou des listes négatives
G06Q 30/0207 - Remises ou incitations, p. ex. coupons ou rabais
In aspects of audio manipulation of emulated content, a media device includes a memory for storing original audio content. The media device also implements an audio manipulation manager that can receive input audio content that emulates the original audio content. The audio manipulation manager also receives metadata associated with the original audio content that includes a content creator voice category associated with the original audio content. The audio manipulation manager can also determine a user voice category from the input audio content, and then transform the input audio content to manipulated audio content by changing the user voice category to the content creator voice category. To change the user voice category to the content creator voice category, the audio manipulation manager changes a user tone and a user pitch to a content creator tone and a content creator pitch.
An electronic device enables techniques for user style adaptation of different portions of an adaptive display device in a wearable configuration. The device includes a flexible electronic display, that is mounted in a flexible enclosure that enables the display to be bent into a configuration for use as a wearable device. The device further includes a processor communicatively coupled to the electronic display, and which identifies a context associated with a user of the electronic device, while the electronic device is being worn by the user. Based on the context, the electronic device loads and presents a customization display theme on at least an outward facing portion of the display.
G06F 3/04886 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] utilisant des caractéristiques spécifiques fournies par le périphérique d’entrée, p. ex. des fonctions commandées par la rotation d’une souris à deux capteurs, ou par la nature du périphérique d’entrée, p. ex. des gestes en fonction de la pression exercée enregistrée par une tablette numérique utilisant un écran tactile ou une tablette numérique, p. ex. entrée de commandes par des tracés gestuels par partition en zones à commande indépendante de la surface d’affichage de l’écran tactile ou de la tablette numérique, p. ex. claviers virtuels ou menus
G06T 7/70 - Détermination de la position ou de l'orientation des objets ou des caméras
H04M 1/02 - Caractéristiques de structure des appareils téléphoniques
95.
AMBIANCE STYLE ADAPTATION OF DIFFERENT PORTIONS OF AN ADAPTIVE DISPLAY DEVICE IN A SURFACE DISPLAY CONFIGURATION
An electronic device enables techniques for ambience style adaptation of different portions of an adaptive display device in a surface support configuration. The device includes a flexible electronic display, that is mounted in a flexible enclosure that enables the display to be bent into a configuration for use in a surface support configuration, such as standing on a desk or table. The device further includes a processor communicatively coupled to the electronic display, and which obtains context data from one or more data sources, wherein the context data is associated with one or more of a user and an environment surrounding the electronic device, and determines a device context. Based on the device context, a customization display theme for the electronic device is loaded, and the customization display theme is presented on the display of the electronic device.
G09G 3/00 - Dispositions ou circuits de commande présentant un intérêt uniquement pour l'affichage utilisant des moyens de visualisation autres que les tubes à rayons cathodiques
G06F 3/01 - Dispositions d'entrée ou dispositions d'entrée et de sortie combinées pour l'interaction entre l'utilisateur et le calculateur
G06F 3/03 - Dispositions pour convertir sous forme codée la position ou le déplacement d'un élément
G09G 3/3225 - 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] organiques, p. ex. utilisant des diodes électroluminescentes organiques [OLED] utilisant une matrice active
H04M 1/02 - Caractéristiques de structure des appareils téléphoniques
H04M 1/72451 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles avec des moyens permettant d’adapter la fonctionnalité du dispositif dans des circonstances spécifiques basés sur des horaires, p. ex. utilisant des applications de calendrier
A method of fabricating an electronic assembly (100,400) includes: forming a supporting member (130,430) by applying a first adhesive layer (133,433) to an interior surface of a supporting frame (131,431) and a second adhesive layer (134,434) to a bottom surface of the supporting frame (131,431) (S501); attaching, through the first adhesive layer (133,433), the supporting member (130,430) to a component (110,410) comprising a ball grid array of solder balls (111,411) (S502), such that the interior surface of the supporting frame (131,431) covers a portion of a first side surface of the component (110,410) and a portion of the bottom surface of the component (110,410); mounting, through the second adhesive layer (134,434), the supporting member (130,430) to a substrate (120,420) comprising an array of contact pads (121,421) whose pattern matches the ball grid array (S503); and curing the first adhesive layer (133,433) and the second adhesive layer (134,434) and connecting the solder balls (111,411) to the contact pads (121,421) by reflow soldering at a temperature higher than a melting point of the solder balls (111,411) (S504).
Various aspects of the present disclosure relate to a method and apparatus of supporting beam reporting. An exemplary method performed by a UE may include: transmitting a PUCCH in a first slot to request a resource for a UL transmission for a UE-initiated beam report or notify that there will be a UL transmission for a UE-initiated beam report, wherein the UE-initiated beam report is at least according to measurements of a RS associated with an indicated joint or DL TCI state applied in a second slot, and wherein the second slot is determined based on the first slot.
Various aspects of the present disclosure relate to methods and apparatuses for channel state information (CSI) reporting. According to an embodiment of the present disclosure, a user equipment (UE) can include: at least one memory; and at least one processor coupled with the at least one memory and configured to cause the UE to: receive configuration information indicating a CSI reference signal (CSI-RS) resource set for channel measurement for CSI reporting based on an enhanced Type II codebook for predicted PMI using a first number of CSI-RS ports, wherein the first number is more than 32, and wherein the CSI-RS resource set is an aperiodic CSI-RS resource set including a second number of CSI-RS resource groups, and each CSI-RS resource group includes a third number of CSI-RS resources, or the CSI-RS resource set is a periodic or semi-persistent CSI-RS resource set including a fourth number of CSI-RS resources; determine a required time Z for CSI reporting, wherein in the case that the CSI-RS resource set is the aperiodic CSI-RS resource set, the required time Z is determined based on the second number, or in the case that the CSI-RS resource set is the periodic or semi-persistent CSI-RS resource set, the required time Z is determined based on a time window for receiving CSI-RS transmission; and transmit a CSI report based on the required time Z.
Various aspects of the present disclosure relate to scheduling data radio bearer (DRB) in network energy saving (NES) mode. An apparatus, such as a network equipment (NE), transmits, to a user equipment (UE), a mapping of NES flows to a DRB. The NE configures the DRB based at least in part on an NES class, and configures one or more bandwidth parts (BWPs) according to at least one NES configuration of the NES class. The NE configures scheduling restrictions on mapping uplink logical channels according to an NES DRB configuration, and associates the DRB to a BWP of the one or more BWPs. The NE transmits, to the UE, mapping information for the NES DRB configuration to the one or more BWPs. The UE receives, from the NE, the mapping of the NES flows to the DRB, and receives the mapping information for the NES DRB configuration to the BWPs.
The present disclosure relates to methods and apparatuses. According to some embodiments of the disclosure, a method comprises: transmitting, at a communication device, a signaling message indicating a failure in a backhaul link.