Method and Apparatus for Beam Failure Recovery and Transmission Configuration Indication (TCI) State Indication for Multiple Transmission/Reception Points (mTRP) in Wireless Communication
Methods and Apparatus for the efficiency of multi-beam, multi-Transmission Reception Point (mTRP) reception and transmission operations using a Transmission Configuration Indicator (TCI) state framework. Implicit mappings for mTRP communication in the light-weight TCI framework is used to enhance Beam Failure Detection (BFD) and Beam Failure Recovery (BFR) operations. The TCI framework is further used in decoding a Coherent Joint Transmission (CJT)-Physical Downlink Shared Channel (PDSCH) that is joint precoded and transmitted across a plurality of TRPs. The TCI framework is further used in aperiodic Channel State Information (CSI) reporting in single Downlink Control Information (sDCI) and multiple Downlink Control Information (mDCI) communication with multiple mTRPs.
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
H04W 72/51 - Critères d’affectation ou de planification des ressources sans fil sur la base des propriétés du terminal ou du dispositif
Systems and processes are for transmitting, from a first user equipment to a second user equipment, a beam failure recovery request (BFRQ) message to recover from a beam failure for a sidelink beam pair for unidirectional sidelink communication, the request identifying a new sidelink beam pair; receiving, at the first user equipment from the second user equipment, a response message confirming that the second user equipment is configured for communicating using the new sidelink beam pair that is identified in the BFRQ message; and activating, at the first user equipment based on the response message, a beam specified in the new sidelink beam pair.
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
3.
Contiguous Resource Block-Based Resource Pool for Sidelink
A user equipment (UE) is configured to receive configuration information for a resource pool of a sidelink connection in an unlicensed frequency band, wherein the resource pool comprises a plurality of contiguous Physical Resource Blocks (PRBs), a first Resource Block (RB) set comprising a first subset of the PRBs, a second RB set comprising a second subset of the PRBs, and a guard band comprising a third subset of the PRBs and transmit a Physical Sidelink Control Channel (PSCCH) transmission or a Physical Sidelink Shared Channel (PSSCH) transmission using the resource pool.
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
The present disclosure generally relates to methods and interfaces for interacting with a physical environment using a computer system. In some examples, symbolic representations of detected objects are displayed without displaying a representation of the physical environment. In some examples, a prompt to change an optical sensor position is provided based on a detected object in the physical environment. In some examples, different types of feedback are provided while scanning depending on an active scan mode. In some examples, in response to detecting a spatial event, different alerts are provided based on different detected optical sensor information.
G06T 19/00 - Transformation de modèles ou d'images tridimensionnels [3D] pour infographie
G06F 3/04815 - Interaction s’effectuant dans un environnement basé sur des métaphores ou des objets avec un affichage tridimensionnel, p. ex. modification du point de vue de l’utilisateur par rapport à l’environnement ou l’objet
Systems and method are configured for operations comprising receiving, from an access node, an indication of store and forward capability; sending, to a satellite, an attach request message indicating a capability to support store and forward operation and an attach request; and receiving, from the satellite, a response message indicating that the attach request is accepted or that the attach request is rejected.
H04W 60/04 - Rattachement à un réseau, p. ex. enregistrementSuppression du rattachement à un réseau, p. ex. annulation de l'enregistrement utilisant des événements déclenchés
H04W 8/04 - Enregistrement dans un registre de localisation nominal ou un serveur d'abonnés locaux [HSS Home Subscriber Server]
H04W 8/22 - Traitement ou transfert des données du terminal, p. ex. statut ou capacités physiques
H04W 64/00 - Localisation d'utilisateurs ou de terminaux pour la gestion du réseau, p. ex. gestion de la mobilité
An apparatus includes a memory and a processor. The memory includes multi-level cell (MLC) memory cells, the memory configured to store in the memory cells (i) first bits having a first readout latency, and (ii) second bits having a second readout latency that is larger than the first readout latency. The processor is configured to determine, for data to be stored in the memory, whether the data is to be read with the first or second readout latency. In response to determining that the data is to be read with the first readout latency, the processor is configured to store one or more of the first bits in accordance with the data. In response to determining that the data is to be read with the second readout latency, the processor is configured to store one or more of the second bits in accordance with the data.
Wireless circuitry may include a radio-frequency mixer. The mixer can include an input terminal configured to receive a radio-frequency signal, an output terminal on which a corresponding downconverted signal is produced, and multiple subsampling circuits coupled in parallel between the input terminal and the output terminal. An associated clock generator can be configured to output multiple clock signals for controlling the subsampling circuits. The radio-frequency signal can have a first frequency, and the clock signals can each have a second frequency that is a fraction of the first frequency. Each of the subsampling circuits can include a storage capacitor and associated switches.
H03L 7/099 - Détails de la boucle verrouillée en phase concernant principalement l'oscillateur commandé de la boucle
H04B 1/00 - Détails des systèmes de transmission, non couverts par l'un des groupes Détails des systèmes de transmission non caractérisés par le milieu utilisé pour la transmission
8.
COMMUNICATION DEVICES AND METHODS FOR CONCATENATING SERVICE DATA UNITS
The present application relates to devices and components including apparatus, systems, and methods for concatenating in the packet data convergence protocol sublayer or the service data adaptation sublayer in wireless networks.
C22F 1/047 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid de l'aluminium ou de ses alliages d'alliages avec le magnésium comme second constituant majeur
C22C 21/10 - Alliages à base d'aluminium avec le zinc comme second constituant majeur
C22F 1/04 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid de l'aluminium ou de ses alliages
10.
Multiplexing Uplink Control Information Indicating Unused Configured Grant Resources
A user equipment (UE) is configured to receive configured grant (CG) configuration information for a CG cycle comprising multiple Physical Uplink Shared Channel (multi-PUSCH) occasions for transmission of data, determine, by a Medium Access Control (MAC) entity of the UE, at least one unused PUSCH occasion of the multiple CG PUSCH occasions of the CG cycle, wherein an unused PUSCH occasion indicates the UE does not have any data to transmit in the unused PUSCH occasion, generate, by the MAC entity of the UE, information identifying the at least one of the unused CG PUSCH occasions, provide, by the MAC entity, the information to a physical layer or the UE and initiate a PUSCH transmission in one of the CG PUSCH occasions, wherein the PUSCH transmission comprises the information.
H04W 72/1268 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison ascendante
H04L 1/1812 - Protocoles hybridesDemande de retransmission automatique hybride [HARQ]
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
11.
Devices, Methods, and Graphical User Interfaces for Providing Information on a Wake Screen
A computer system displays a first user interface. Displaying the first user interface includes concurrently displaying: first content; and an indication of a current time of day that is updated as the current time of day changes. While displaying the first user interface, the computer system detects a first event. In response to detecting the first event, the computer system: displays, via the one or more display generation components, a change in a spatial arrangement of the first content in the first user interface; and, displays, via the one or more display generation components, a change to the indication of the current time of day, including changing an aspect ratio of the indication of the current time of day while maintaining display of the indication of the current time of day in the first user interface, based on the change in the spatial arrangement of the first content.
G06F 3/0481 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] fondées sur des propriétés spécifiques de l’objet d’interaction affiché ou sur un environnement basé sur les métaphores, p. ex. interaction avec des éléments du bureau telles les fenêtres ou les icônes, ou avec l’aide d’un curseur changeant de comportement ou d’aspect
G06F 3/0485 - Défilement ou défilement panoramique
12.
RESOURCE ALLOCATION IN TIME/FREQUENCY DOMAINS FOR SBFD OPERATION
Methods and systems are disclosed to enhance allocation and use of frequency and time domain resources to support uplink (UL) transmissions and downlink (DL) receptions by UE across sub-band frequency duplex (SBFD) symbols and non-SBFD symbols when the base station dynamically switches between half-duplex TDD and full-duplex FDD operations. UE may align the frequency resources configured for receiving DL referenced signals carried on non-SBFD symbols to the DL frequency sub-bands of SBFD symbols. Frequency domain resource allocation (FDRA) may group frequency resources used for transmitting DL user data based on the size of the concatenation of the two DL sub-bands of SBFD symbols. The nominal size of precoding resource block group (PRG) may also be based on the size of the concatenation of the two DL sub-bands of SBFD symbols. UE may implement capabilities to respond to time-domain resources scheduled for UL and DL transmissions across SBFD and non-SBFD symbols.
A user equipment (UE) includes a first and second receiving (RX) panel and is configured to determine the UE is to perform Layer-1 (L1) measurements on beams transmitted by a first and second transmission and reception point (TRP), wherein the UE tests a minimum number of beams using beam sweeping operations prior to selecting the beams for L1 measurements, wherein the minimum number corresponds to a number of beam sweeping rounds. In a first beam sweeping round, the UE simultaneously activates the first and second RX panels to generate one RX beam for a beam sweeping operation. In subsequent beam sweeping rounds, the UE performs beam sweeping operations until the minimum number of beams are tested, selects a first beam of the first TRP and a second beam of the second TRP for the L1 measurements and performs the L1 measurements.
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 8/22 - Traitement ou transfert des données du terminal, p. ex. statut ou capacités physiques
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
Power control enhancements for cases using a single downlink control information (DCI) to schedule simultaneous physical uplink shared channels (PUSCHs) sent on separate antenna panels of a user equipment (UE) are discussed herein. In some embodiments, a DCI includes one or more sounding reference signal (SRS) resource indicators (SRIs) that are applied with respect to one or more SRI-indexed power control lists for the antenna panels to determine an open loop transmit power factor for each of two simultaneous PUSCHs. In some embodiments, a DCI includes one or more transmit power control (TPC) commands that are applied with respect to stored closed loop transmit power factors for the antenna panels to determine a closed loop transmit power factor for each of two simultaneous PUSCHs. Dynamic point selection (DPS) use in these contexts is also discussed. Power scaling for simultaneous PUSCHs is also discussed.
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
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
H04W 80/02 - Protocoles de couche liaison de données
The present application relates to techniques for UE-based TA estimations. For example, a UE can be connected to a base station via a first cell and can be configured with information for a UE-based TA estimation. This information can be included in a cell configuration of a second cell, a group configuration of a group of cells, or a measurement configuration. The UE can perform a first timing measurement on a first reference signal sent by the first cell and a second timing measurement on a second reference signal sent by the second cell. Upon a command to connect to the second cell (e.g., for a first cell to second cell handover), the UE can determine a timing difference between the two timing measurements and determine, based on a first TA of the first cell and the timing difference, a second TA to use for the second cell.
The present application relates to devices and components including apparatus, systems, and methods to provide adaptive physical downlink control channel (PDCCH) monitoring. In particular, a unified signaling technique for adaptive PDCCH search space monitoring is descried. This signaling can indicate either one or a combination of the switching and skipping. In an example, the signaling includes multiple parts. In a first part, radio resource control (RRC) signaling is sent from the network to the device to configure the device for switching only, skipping only, or switching and skipping. In a second part, first DCI is sent from the network to the device to indicate the particular PDCCH monitoring configuration to use for the PDCCH search space monitoring. Thereafter, network sends second DCI in the relevant PDCCH search space, where this second DCI schedules traffic. The device performs blind decoding to determine the second DCI in order to exchange the traffic.
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
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
18.
SYSTEMS, METHODS, AND DEVICES FOR SSB OFFSET TRANSITION OF SATELLITE SWITCHING
The techniques described herein can include solutions for user equipment (UE) behavior) for synchronization signal block (SSB) offset transition of satellite switching. In some examples, during satellite switching, SSBs from the source satellite and target satellite can have the same periodicity while being transmitted at the same time according to a tie offset during a coverage overlap. Satellite switching can include cell searching and fine time tracking. The UE may complete cell searching, fine time tracking, or both, prior to expiration of the coverage overlap by beginning cell searching and fine time tracking earlier. After satellite switching, the time offset can be adjusted to re-synchronize the SSBs of the target satellite. In some examples, the UE may not complete cell searching, fine time tracking, or both, prior to expiration of the coverage overlap. The UE can determine the location of the target satellite based on redefined synchronization parameters.
A user equipment (UE) is configured to enter a radio resource control (RRC) state with a base station wherein network operations are performed using a main radio (MR), receive a first set of parameters from the base station for wakeup radio (WUR) state operation wherein the UE enables a WUR and powers down the MR to an off or deep sleep state, the first set of parameters including a parameter enabling the WUR state operation and a configuration of WUR reference signaling (WUR-RS), receive a second set of parameters from the base station for WUR setup and a WUR signal (WUR-S) configuration and enter the WUR state from the RRC state, wherein, while in the WUR state, the UE performs uses the WUR including at least one of monitoring for the WUR-S, measuring the WUR-RS, or implementing a WUR discontinuous reception (DRX) cycle for WUR-S and WUR-RS signal monitoring.
Disclosed are methods, systems, and computer-readable medium to perform operations including transmitting, by a base station of a network, discontinuous reception (DRX) configuration data to a user equipment (UE) of the network, where the DRX configuration data specifies one or more parameters for performing DRX by the UE; receiving, by the base station from a location management function (LMF) of the network, a request for the DRX configuration data; and transmitting, by the base station, the DRX configuration data to the LMF.
Aspects are described for a user equipment (UE) comprising one or more transceivers configured to enable wireless communication with a base station, a first antenna and a second antenna coupled to the one or more transceivers, and a processor communicatively coupled to the one or more transceivers. The first and the second antennas are associated with a first and a second frequency bands respectively. The processor is configured to transmit a first signal on the first frequency band and a second signal on the second frequency band to the base station. The processor is further configured to switch, based on a fourth frequency band of second subsequent transmission or a comparison between the first and the second frequency bands, the first antenna to be associated with a third frequency band of first subsequent transmission and transmit the first subsequent signal on the third frequency band to the base station.
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
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 72/51 - Critères d’affectation ou de planification des ressources sans fil sur la base des propriétés du terminal ou du dispositif
Methods and systems for performing actions comprising transmitting, from a first user equipment to a second user equipment, a request to establish a sidelink beam pair for unidirectional sidelink communication, the request specifying a sidelink beam reporting format and a sidelink Channel State Information Reference Signal (CSI-RS) configuration; transmitting, from the first user equipment to the second user equipment and based on a measurement of beams at the first user equipment, a message specifying a selected beam, the message including a beam indicator; and activating, at each of the first user equipment and at the second user equipment, the selected beam.
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
In accordance with some embodiments, an exemplary process for controlling representations of virtual objects based on respective user contexts that each correspond to different respective locations in a computer-generated reality (CGR) environment is described.
Methods and systems include receiving, at network entity, capability data describing carrier phase (CP) measurement parameters for a target user equipment (UE); receiving, at the network entity, position reference unit (PRU) capability data; sending, to the target UE, first configuration data specifying a first timing for performing position measurements; sending, to a PRU UE, second configuration data specifying a second timing for performing the position measurements; receiving, from the target UE, first feedback data specifying a first position measurement including carrier phase data; receiving, from the PRU UE, second feedback data specifying a second position measurement including carrier phase data; and determining, based on the first feedback data and the second feedback data, a position estimate for the target UE.
An apparatus configured to receive Downlink Control Information (DCI) on a Physical Downlink Control Channel (PDCCH) with a PDCCH order that initiates a Contention Free Random Access (CFRA) procedure comprising a Physical Random Access Channel (PRACH) transmission, wherein the DCI comprises an identification of a first transmission and reception point (TRP) or a second TRP to which the PRACH transmission is to be directed and configure transceiver circuitry to transmit the PRACH transmission to the first TRP or second TRP based on at least in part the DCI.
The present application relates to devices and components including apparatus, systems, and methods for managing artificial intelligence models and datasets.
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 8/22 - Traitement ou transfert des données du terminal, p. ex. statut ou capacités physiques
Hybrid bonded structures and methods of manufacture are described. In an embodiment, a hybrid bonded structure includes a first plurality of first conductive bonding regions of a first substrate stack bonded directly to a second plurality of second conductive bonding regions of a second substrate stack, and a first dielectric layer of the first substrate stack bonded to a second dielectric layer of the second substrate stack with an intermediate organic adhesive layer.
H10F 39/00 - Dispositifs intégrés, ou ensembles de plusieurs dispositifs, comprenant au moins un élément couvert par le groupe , p. ex. détecteurs de rayonnement comportant une matrice de photodiodes
H10F 39/18 - Capteurs d’images à semi-conducteurs d’oxyde de métal complémentaire [CMOS]Capteurs d’images à matrice de photodiodes
Techniques are described for a digital pre-distortion (DPD) and self-interference cancelation (SIC) actuator. The method can include generating, in association with a transceiver, an input to a neural network, the input common to a DPD modeling and a SIC modeling. The method further includes inputting the input common to the DPD modeling and the SIC modeling. The method further includes outputting a first output indicating an inverse transfer characteristic of a power amplifier (PA) of the transceiver and a second output indicating a forward transfer characteristic of the transceiver, the first output corresponding to the DPD modeling by the neural network, and the second output corresponding to the SIC modeling by the neural network. The method further includes causing the wireless communication by the transceiver to a network device based on the first output and the second output.
Techniques are disclosed relating to maintaining a data cache for ray test circuitry using re-use prediction. The cache may be set associative. Circuitry may maintain, for cache lines of the data cache, respective prediction values that predict likelihood of future re-use, including modifying prediction values of other cache lines in a first set in response to the allocation of a cache line in the set and modify the prediction value of the cache line based on a hit to the cache line. The prediction values may be used to determine victim cache line(s). Control circuitry may assign an initial prediction value to the cache line based on characteristics of data stored by the cache line (e.g., level in a bounding volume hierarchy, size of a bounding volume, characteristics of primitives inside a bounding volume, ray characteristics, tracking ray traversal paths, etc.).
Aspects of the subject technology provide improved techniques for human-computer interactions including disambiguation of a human user’s linguistic command. The improved techniques may include integrating linguistic input from a user with additional input from sensors relating to the user and the user’s environment. In an aspect, imagery of a user’s environment may be first analyzed to identify objects in the environment. Input regarding the user, such as a user’s gaze location, may trigger a second analysis of a subset of the identified objects in the environment. The results of these analyses may then be used to resolve an ambiguity in linguistic user input from the user.
A method is provided. The method includes receiving, by a user equipment (UE) from a base station, a signal that configures the UE to perform a measurement. The method includes indicating, to the base station, that the UE has a scheduling restriction capability. The method includes determining one or more first beams corresponding to one or more measurement occasions, the one or more first beams associated with at least one of a plurality of antenna panels of the UE. The method includes determining a second beam for reception of a data signal or a control signal, the second beam associated with a first antenna panel of the plurality. The method includes determining, based on the second beam, whether the one or more first beams include one or more conflicting beams. The method includes applying a scheduling restriction according to a TCI in response to the determination of conflicting beams.
A user equipment (UE) includes a set of transceivers and a processor. The processor may be configured to receive a sounding reference signal (SRS) configuration that includes an SRS hopping indicator. The processor may also be configured to generate a first pseudo-random sequence. The first pseudo-random sequence may be based at least in part on the SRS hopping indicator. Additionally, the processor may be configured to transmit, via the one or more transceivers, a first SRS transmission in a first symbol. In some examples, the first SRS transmission is transmitted in accordance with at least one of a first transmission comb offset, or a first cyclic shift, that is based at least in part on the generated first pseudo-random sequence.
H04W 72/541 - Critères d’affectation ou de planification des ressources sans fil sur la base de critères de qualité en utilisant le niveau d’interférence
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
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
33.
FOLDABLE COVER AND DISPLAY FOR AN ELECTRONIC DEVICE
Electronic devices including a display layer and a cover layer including a foldable region are disclosed herein. The display layer and the cover layer are configured to be moved between a folded configuration and an unfolded configuration by bending the cover layer along the foldable region. Methods of making a cover layer for an electronic device are also disclosed.
C03C 21/00 - Traitement du verre, autre que sous forme de fibres ou de filaments, par diffusion d'ions ou de métaux en surface
G02F 1/1333 - Dispositions relatives à la structure
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
While displaying a virtual object with a first spatial location in a three-dimensional environment, a computer system detects a first hand movement performed by a user. In accordance with a determination that the first hand movement meets first gesture criteria, the computer system performs a first operation in accordance with the first hand movement, without moving the virtual object away from the first spatial location; and in accordance with a determination that the first hand movement meets second gesture criteria, the computer system displays a first visual indication that the virtual object has transitioned into a reconfiguration mode, and further detects a second hand movement performed by the user. In accordance with a determination that the second hand movement meets the first gesture criteria, the computer system moves the virtual object from the first spatial location to a second spatial location in accordance with the second hand movement.
G06F 3/04883 - 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 pour l’entrée de données par calligraphie, p. ex. sous forme de gestes ou de texte
G06F 3/0482 - Interaction avec des listes d’éléments sélectionnables, p. ex. des menus
G06F 3/0485 - Défilement ou défilement panoramique
35.
Frequency Basis Selection for Type-II Codebook Refinement for mTRP Coherent Joint Transmission
An apparatus configured to decode, based on signaling received from a base station, configuration information for reporting Type-II based channel state information (CSI) feedback for Type-II codebook refinement for multi-transmission reception point (TRP) coherent joint transmission (CJT), decode, based on signaling received from the base station, CSI measurement resources and configure transceiver circuitry to transmit the Type-II based CSI feedback for Type-II codebook 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
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
36.
USER EQUIPMENT LOCATION VERIFICATION IN NON-TERRESTRIAL NETWORKS
A device such as a location management function (LMF) may receive assistance data including uplink (UL)-angle of arrival (AoA) information. In some examples, the UL-AoA information may be associated with one or more UL transmissions from a user equipment (UE) to a non-terrestrial network (NTN) device. The device may perform a positioning procedure using the UL-AoA information. In some examples, a UE may transmit, to an LMF, assistance data information including a number of satellites in view and satellite ephemeris data for one or more satellites of the number of satellites in view. In some examples, a UE may receive, from an NTN device, a downlink control information (DCI) message. The DCI message may include a physical uplink control channel (PUCCH) repetition number for Msg4 hybrid automatic repeat request (HARQ) acknowledgement (ACK).
G01S 5/02 - Localisation par coordination de plusieurs déterminations de direction ou de ligne de positionLocalisation par coordination de plusieurs déterminations de distance utilisant les ondes radioélectriques
H04L 1/1812 - Protocoles hybridesDemande de retransmission automatique hybride [HARQ]
Aspects of the subject technology relate to electronic devices having speakers and input components. An electronic device may generate secure audio indicators, to be output by one or more speakers, that indicate an operating state of one or more of the input components. Secure audio indicators may be generated by a secure audio processor. A secure microphone or other secure transducer may also, or alternatively, be used to confirm whether an audio indicator has been output during an expected output time. Other aspects of the subject technology relate to electronic devices having speakers and that are capable of pairing with other electronic devices. An electronic device may pair with another electronic device using an audio pairing signal from a speaker of the electronic device. The electronic device may also detect and alter or destroy attempts to emit spoofed audio pairing signals using the speaker of the electronic device.
The subject technology provides visual search systems and methods for selectively presenting visual indicators associated with elements in digital content. An image provided for display to a user may be analyzed to identify a plurality of elements. For each identified element, the system determines whether information associated with that element is obtainable. A visual indicator is displayed for at least one element for which associated information is obtainable, while display of a visual indicator is foregone for at least one other element for which associated information is not obtainable. The visual indicators enable a user to access information related to corresponding elements within the image efficiently.
G06V 20/20 - ScènesÉléments spécifiques à la scène dans les scènes de réalité augmentée
G06F 18/40 - Dispositions logicielles spécialement adaptées à la reconnaissance des formes, p. ex. interfaces utilisateur ou boîtes à outils à cet effet
Systems, methods, and circuitries are provided for enhance multiple-input multiple-output (MIMO) configuration and capability signaling. In one example, a method incudes receiving downlink control information (DCI) that configures a number of additional demodulation reference signal (DM-RS) positions; and receiving a physical downlink shared channel (PDSCH) transmission based on the number of additional DM-RS positions.
The present disclosure describes systems, methods, and devices for optimizing Low-Power Wake-Up Signal (LP-WUS) mechanisms in wireless communication networks utilizing Carrier Aggregation (CA) with multiple Discontinuous Reception (DRX) groups. These techniques enhance power efficiency and network signaling efficiency while maintaining robust connectivity for user equipment (UEs).
Described herein are techniques for enabling enhanced control channel coverage for user equipment (UE) in a non-terrestrial network (NTN). A UE can engage in monitoring occasions for an initial type0-PDCCH CSS and physical downlink shared channel (PDSCH) with system information block 1 (SIB1) as well as for type0-PDCCH CSS repetitions and PDSCH with SIB1 repetitions. Solutions are also provided for linking search spaces indicated in an SIB1 and search space monitoring, uplink management, and periodicity adjustment during satellite beam hopping. These and many other features and examples are described herein.
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
H04L 1/08 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue par émission répétée, p. ex. système Verdan
42.
ARTIFICIAL INTELLIGENCE (AI) /MACHINE LEARNING (ML) BASED ALIGNMENT OF BEAM PREDICTION BASED ON CODEBOOK IMPLEMENTATIONS IN WIRELESS COMMUNICATION NETWORKS
Apparatuses, systems, and methods for performing alignment of beam predictions based on codebook implementations using artificial intelligence (AI) /machine learning (ML) models are described. Systems may receive a subset of reference signal received power (RSRP) measurements for transmission beams in a first set, receive predicted reference signal received power (RSRP) values for transmission beams in a second set, and equalizing the predicted reference signal received power (RSRP) values using an artificial intelligence (AI)/machine learning (ML) model.
A user equipment (UE) configured to: receive, from a network, configuration information for LP-WUS monitoring; monitor LP-WUS according to the configuration information; detect a fallback trigger condition; transition to one of a plurality of fallback monitoring operations based on the configuration information; and monitor Physical Downlink Control Channel (PDCCH) according to a timer duration defined by an LP-WUS triggered timer.
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
Systems, methods, processors, and circuitries are provided for cross-carrier random access channel (RACH) transmission in low power wake-up receiver (LP-WUR) user equipment (UE). In one example, a UE includes a low power wake-up radio receiver, a main radio receiver, and a baseband processor coupled to the low power wake-up radio receiver and the main radio receiver. The baseband processor is configured to, when executing instructions stored in a memory, cause the UE to receive configuration of a first carrier for receiving paging messages and one or more second carriers for transmitting a RACH related message and, in response to receiving a paging message on the first carrier, transmitting a RACH related message on one of the one or more second carriers, wherein the second carrier meets one or more cross-carrier criteria with respect to the first carrier.
An apparatus configured to receive a reader to device (R2D) communication, determine, based at least on information included in the R2D communication, a frequency shift to be applied to a device to reader (D2R) communication in response to the R2D communication, wherein the frequency shift is applied to a carrier frequency to determine a D2R frequency resource and generate, for transmission to the reader using the D2R frequency resource, a D2R communication in response to the R2D communication.
An apparatus of a user equipment comprises processors to receive a Synchronization Signal Physical Broadcast Channel (PBCH) Block (SSB) from a network energy savings cell (NES Cell) with at least a portion of a subcarrier offset (K_SSB). The processors receive an uplink wake-up signal (UL WUS) configuration of the NES Cell from a cell (Cell A) that is periodically transmitting a system information block type 1 (SIB1) associated with the Cell A. The processors determine when an on-demand SIB1 (OD-SIB1) is being provided from the NES Cell. Determining that the OD-SIB1 is being provided from the NES Cell is based on the subcarrier offset K_SSB having a value of K_SSB = 30 for FR1 or K_SSB = 14 for FR2.The processors receive, at the UE, an OD-SIB1 from the NES Cell.
Described herein are techniques for enhanced Msg3 and Msg4 signaling for early data transmission (EDT). A user equipment (UE) can receive Msg3 resource configuration information from a Mobility Management Entity (MME) via a base station or satellite. The UE can initiate an EDT procedure by generating and communicating a contention communicating a contention based (CB) Msg3 based on the Msg3 resource configuration information. The MME can receive the CB Msg3, assign a UE contention resolution identity to the UE, and communicate the UE contention resolution identity to the UE. The UE contention resolution identity can be communicated via a Msg4 signal. These and many other features and examples are described herein.
The present disclosure generally relates to performing operations based on an environment. Some techniques are for providing a portion of accessory information to a background process in accordance with some embodiments. Other techniques are for enabling a service based on a detected subject in accordance with some embodiments. Other techniques are for altering a state of a set of external devices based on an emergency condition in accordance with some embodiments. Other techniques are for outputting audio based on activity within an area in accordance with some embodiments.
H04L 12/28 - Réseaux de données à commutation caractérisés par la configuration des liaisons, p. ex. réseaux locaux [LAN Local Area Networks] ou réseaux étendus [WAN Wide Area Networks]
H04L 67/12 - Protocoles spécialement adaptés aux environnements propriétaires ou de mise en réseau pour un usage spécial, p. ex. les réseaux médicaux, les réseaux de capteurs, les réseaux dans les véhicules ou les réseaux de mesure à distance
H04L 67/125 - Protocoles spécialement adaptés aux environnements propriétaires ou de mise en réseau pour un usage spécial, p. ex. les réseaux médicaux, les réseaux de capteurs, les réseaux dans les véhicules ou les réseaux de mesure à distance en impliquant la commande des applications des terminaux par un réseau
An apparatus configured to process, based on signaling received from a source cell, a System Information Block (SIB) comprising area-based wake-up signal (WUS) configuration information and validity information, process, based on signaling received from a target cell, a Master Information Block (MIB) comprising validation information of a WUS configuration of the target cell, determine, while in an idle or inactive state, to camp on the target cell, generate, for transmission to the target cell, a request for on-demand SIB1 (OD-SIB1) information for the target cell, process, based on signaling received from a target cell, the OD-SIB1 information from the target cell and enter into an RRC_CONNECTED state.
A user equipment (UE), baseband processor, and network device are described. The UE and/or baseband processor may receive configuration signaling identifying a set of uplink channel resources that are configured for the transmission of both scheduling request (SR) information and hybrid automatic repeat request acknowledgment (HARQ-ACK) information on a physical uplink channel (physical uplink control channel (PUCCH) and/or physical uplink shared channel (PUSCH)). The first SR indication may be multiplexed together with a second SR indication or a HARQ-ACK indication to generate uplink control bits, which are then coded and modulated to a set of modulation symbols. The set of modulation symbols are then mapped to resource elements of the set of uplink channel resources identified for SR and/or HARQ-ACK information.
An apparatus configured to process, based on non-terrestrial network (NTN) signaling, synchronization signal block (SSB) -based measurement timing configuration (SMTC) configuration information comprising at least a first SMTC occasion and a second SMTC occasion and, when there is a collision between the first SMTC occasion and the second SMTC occasion based on a proximity distance associated with a reduced capability (redcap) user equipment (UE), select one of the first SMTC occasion and the second SMTC occasion to use for mobility measurements.
Described herein are solutions directed to systems, methods, and devices for time division duplexing (TDD) in a non-terrestrial network (NTN). The NTN can implement a cycle (e.g., a paging cycle, a hyper system frame) configured to include an integer quantity of repetitions of a periodic pattern. Implementing an integer quantity of repetitions of the periodic pattern aligns operations defined by the cycle with appropriate radio frames of the periodic pattern. Alternatively, a user equipment (UE) of the NTN can identify an offset between a cycle (e.g., a paging cycle, a hyper system frame) implemented by the NTN and the periodic pattern. The UE can apply the offset to the cycle to align radio frames of the cycle with appropriate radio frames of the periodic pattern.
Described herein are techniques for data collection design for artificial intelligence /machine learning (AI/ML) based positioning. A user equipment (UE) can provide a location management function (LMF) of a core network with capability information relating to long-term evolution (LTE) positioning protocol (LPP). The LMF can configure the UE to take measurements and generate positioning information according to a periodicity, schedule, and/or one or more trigger events. The UE can report measurements and positioning information on-demand and/or in response to one or more trigger events. Communications between the UE and LMF can involve new and repurposed LPP signaling. These and many other features and examples are described herein.
G01S 5/00 - Localisation par coordination de plusieurs déterminations de direction ou de ligne de positionLocalisation par coordination de plusieurs déterminations de distance
H04W 64/00 - Localisation d'utilisateurs ou de terminaux pour la gestion du réseau, p. ex. gestion de la mobilité
54.
TECHNOLOGIES FOR LAYER 1 /LAYER 2 TRIGGERED MOBILITY
The present application relates to devices and components including apparatuses, systems, and methodsfor layer 1 (L1) /layer 2 (L2) triggered mobility (LTM)operations.
The present application relates to devices and components including apparatuses, systems, and methods for user equipment (UE)-initiated beam reporting for multiple events.
The present application relates to devices and components including apparatus, systems, and methods for performing paging and initial access operations.
The techniques described herein can include solutions for user equipment (UE) capability for multiple searcher based radio resource management (RRM). To perform RRM, network devices can use measurements of carriers performed by UEs. A UE can indicate a searcher capability, which indicates the number of carriers the UE can measure simultaneously. The searcher capability can be based on conditions and can be updated when conditions change. For example, the searcher capability can be based on band combinations, frequency ranges, or both. In some examples, the UE can update the searcher capability when a configuration changes. Configurations can include serving cell configurations and measurement object configurations. The UE can indicate the searcher capability to a network device.
An apparatus of a user equipment (UE) comprises processors to receive a System Information Block (SIB) comprising a set of channel state information-reference signal (CSI-RS) resource set configurations. The processors receive a signaling command from the base station, before performing a Random Access Channel (RACH) procedure, to trigger one or more CSI-RS resource sets (triggered CSI-RS resource sets) configured from the set of CSI-RS resource set configurations. The processors perform a CSI measurement on the one or more triggered CSI-RS resource sets before performing the RACH procedure. The processors generate for transmission one or more of a CSI report or a beam report. The one or more of the CSI report or the beam report enables the base station to determine a downlink (DL) link adaptation before a Radio Resource Control (RRC) connection setup is completed between the UE and the base station.
An electronic device may include wireless circuitry. The wireless circuitry may include a first chipset that implements a first communications protocol and a second chipset that implements a second communications protocol. The first and second chipsets may perform cross-protocol object detection operations to detect an external object in the vicinity of the wireless circuitry. This may involve the transmission of a radio-frequency signal by the first chipset over the first antenna using the first communications protocol. The second chipset may receive the radio-frequency signal over the second antenna using the second communications protocol. The second chipset may generate baseband samples based on the received radio-frequency signal using the second protocol. Processing circuitry may modify the baseband samples to obtain radio-frequency channel impulse response samples using at least a partial version of the first communication protocol and may detect the object based on the channel impulse response.
H04B 1/50 - Circuits utilisant des fréquences différentes pour les deux directions de la communication
G01S 13/524 - Discrimination entre objets fixes et mobiles ou entre objets se déplaçant à différentes vitesses utilisant la transmission de trains discontinus d'ondes modulées par impulsions basée sur le décalage de phase ou de fréquence résultant du mouvement des objets, avec référence aux signaux transmis, p. ex. MTI cohérent
The present application relates to devices and components including apparatuses, systems, and methods for user equipment (UE) -initiated beam reporting for efficient transmission configuration indicator (TCI) state updates in wireless communication networks.
An apparatus configured to process a transport block for a reader-to-device (R2D) or device-to-reader (D2R) communication, determine a size of the transport block or a payload size of the transport block and determine a Cyclic Redundancy Check (CRC) length for the transport block based on the size of the transport block or the payload size, wherein the CRC length is determined to be a first length when the of the transport block or the payload size is greater than a threshold, and a second length when the of the transport block or the payload size is equal to or less than the threshold.
H04L 1/00 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue
H03M 13/09 - Détection d'erreurs uniquement, p. ex. utilisant des codes de contrôle à redondance cyclique [CRC] ou un seul bit de parité
H03M 13/00 - Codage, décodage ou conversion de code pour détecter ou corriger des erreursHypothèses de base sur la théorie du codageLimites de codageMéthodes d'évaluation de la probabilité d'erreurModèles de canauxSimulation ou test des codes
H04W 4/80 - Services utilisant la communication de courte portée, p. ex. la communication en champ proche, l'identification par radiofréquence ou la communication à faible consommation d’énergie
Some techniques are for outputting an indication that the content is in another area in accordance with some embodiments. Other techniques are for causing output of content at different locations in accordance with some embodiments. Other techniques are for causing output of complimentary content in accordance with some embodiments. Other techniques are for outputting content related to other content in accordance with some embodiments.
H04M 1/72403 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles avec des moyens de soutien local des applications accroissant la fonctionnalité
G06F 3/14 - Sortie numérique vers un dispositif de visualisation
G06F 3/00 - Dispositions d'entrée pour le transfert de données destinées à être traitées sous une forme maniable par le calculateurDispositions de sortie pour le transfert de données de l'unité de traitement à l'unité de sortie, p. ex. dispositions d'interface
63.
AI/ML PERFORMANCE MONITORING REPORTING VIA ENHANCED MDT WITH LOGGING
A method of an artificial intelligence/machine learning (AI/ML) performance monitoring reporting via Minimization of Drive Tests (MDT) with logging. The method comprises receiving a Radio Resource Control (RRC) reconfiguration message comprising a measurement configuration for AI/ML enabled features for data collection and logging of measurements. The measurement configuration comprises a logged monitoring configuration information element (IE) for each serving cell configuration. The method comprises monitoring metrics or measurements for network (NW) monitoring. The method comprises generating, at the UE, monitoring metrics or measurements (generated monitoring metrics or measurements) for NW monitoring. The method comprises logging the generated monitoring metrics or measurements (logged metrics or measurements) in an access stratum (AS) buffer of the UE. The method comprises reporting the logged metrics or measurements in one RRC measurement report message.
The present disclosure generally relates to radio resource management (RRM) techniques for user equipment (UE) -initiated beam measurement reporting delay estimation. Some aspects of the present disclosure involve determining a measurement period for reporting delay estimation based at least on a reference signal configuration of a first beam and a reference signal configuration of a second beam; receiving reference signals via the first beam and the second beam during the measurement period; and transmitting a beam measurement report in response to determining that measurements of the reference signals received during the measurement period satisfy one or more criteria.
Systems and methods are provided for activation and deactivation of fast L3 measurements. Network-initiated overriding includes receiving, at the wireless network from a UE, a UE capability report indicating support for L3 measurement delay reduction mode (i.e., fast L3 measurement). In response to the UE capability report, the network configures the UE for a conditional activation and deactivation of the L3 measurement delay reduction mode. In response to a network condition, the network overrides the conditional activation and deactivation of the L3 measurement delay reduction mode at the UE. UE-initiated overriding includes determining, at the UE, to initiate an override of the conditional activation and deactivation of the L3 measurement delay reduction mode at the UE, and signaling an indication of a preference or a request to override the conditional activation and deactivation of the L3 measurement delay reduction mode.
Systems and methods for dynamic channel state information (CSI) compression based on input CSI spectral entropy are discussed herein. For example, a user equipment receives, from a base station, a first CSI compression configuration and a reference signal. The UE generates first CSI feedback based on the reference signal received from the base station and generates a PSE value. Then, the UE determines, using the CSI compression configuration, based on the PSE value, a first compression profile for the first CSI feedback. The UE applies the first CSI feedback and the first compression profile at a first encoder of a first artificial intelligence (AI)/machine learning (ML) model to generate compressed CSI feedback, wherein the first encoder generates the first compressed CSI feedback according to the first compression profile for the first CSI feedback and sends the compressed CSI feedback and data corresponding to the compression profile to the base station.
H04L 1/00 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue
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
A user equipment (UE), a baseband processor, base station, or other network device can operate to perform carrier aggregation (CA) with a primary component carrier (PCC) of a primary cell (PCell) and a supplementary downlink (SDL) of a secondary component carrier (SDL SCC) of a secondary cell (SCell). One or more measurements of the SCell can be generated or signaled based on whether the SDL SCC is activated or deactivated for the CA, and a scheduling restriction /availability /interruption for the PCC.
The present disclosure generally relates to methods and interfaces for interacting with a physical environment using a computer system. In some examples, symbolic representations of detected objects are displayed without displaying a representation of the physical environment. In some examples, a prompt to change an optical sensor position is provided based on a detected object in the physical environment. In some examples, different types of feedback are provided while scanning depending on an active scan mode. In some examples, in response to detecting a spatial event, different alerts are provided based on different detected optical sensor information.
Systems, methods, processors, and circuitries are provided for cross-carrier random access channel (RACH) transmission in low power wake-up receiver (LP-WUR) user equipment (UE). In one example, a UE includes a low power wake-up radio receiver, a main radio receiver, and a baseband processor coupled to the low power wake-up radio receiver and the main radio receiver. The baseband processor is configured to, when executing instructions stored in a memory, cause the UE to receive configuration of a first carrier for monitoring for wake-up signals (WUSs) and paging messages and a second carrier for transmitting a random access channel (RACH) transmission. In in response to receiving a WUS on the first carrier with the low power wake-up radio receiver, the baseband process wakes up the main radio receiver, and with the main radio receiver, receives a paging message on the first carrier and transmits a RACH transmission on the second carrier.
Described herein are solutions directed to systems, methods, and devices for Channel State Information (CSI) reporting in a mobility procedure. A network can instruct user equipment (UE) to begin performing CSI measurement prior to or during cell switching of the mobility procedure. The network can introduce new or modified signaling (e.g., a Medium Access Control (MAC) Control Element (MAC-CE), a Downlink Channel Information (DCI) format) to instruct the UE. The UE can use CSI-Reference Signal (CSI-RS) resource sets associated with candidate cells for determining CSI and generating CSI reports. The UE can transmit the CSI reports to the network (e.g., a target cell) prior to or during execution of the mobility procedure. The network can use the CSI reporting to perform link adaptation.
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
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 24/10 - Planification des comptes-rendus de mesures
H04W 36/00 - Dispositions pour le transfert ou la resélection
71.
APPLICABILITY REPORTING FOR USER EQUIPMENT INFERENCE FOR INITIAL ACCESS, HANDOVER, AND CARRIER AGGREGATION
A user equipment (UE), baseband processor, and network device are described. The UE (and/or a baseband processor thereof) can receive, from a network device, a first radio resource control (RRC) reconfiguration message identifying a set of channel state information (CSI) reporting configurations for inference. The message also includes associated identifiers corresponding to a beam configuration of the network device. The UE may transmit a control message indicating CSI configurations, from the set of CSI reporting configurations, supported for inference at the UE. The UE may then receive in response, a second RRC reconfiguration message indicating the inference CSI reporting configuration for use by the UE. The UE may then obtain CSI reference signal measurements according to the configuration, determine inferred CSI values for beams of the network device's beam configuration based on the measurements, and transmit a CSI report including inferred CSI values.
H04W 24/10 - Planification des comptes-rendus de mesures
72.
DATA INPUT DISTRIBUTION METRIC FOR EVENT MONITORING AND DETECTION IN CHANNEL STATE INFORMATION COMPRESSION ARTIFICIAL INTELLIGENCE/MACHINE LEARNING MODELS
Methods and systems for data input distribution metric event monitoring and detection in channel state information (CSI) compression artificial intelligence (AI) /machine learning (ML) models are discussed herein. A user equipment (UE) generates CSI feedback based on a reference signal received from a base station and generates a first power spectral entropy (PSE) value corresponding to a distribution of power of the reference signal across a frequency domain and a spatial domain used. The UE applies the CSI feedback at a first encoder of a first AI/ML model that is at the UE to generate compressed CSI feedback. The UE sends, to the base station, the compressed CSI feedback and the first PSE value. In some cases, the base station generates the first PSE value based on recovered CSI feedback and determines an AI/ML model use instruction based on the first PSE value.
A user equipment (UE), baseband processor, and network device are described. The UE and/or baseband processor can receive control signaling configuring first and second measurement occasions (e.g., measurement gaps or scheduling restrictions) on component carriers in different frequency ranges. A first downlink control information (DCI) message may be received indicating to skip measurement of a next measurement occasion, followed by a second DCI message identifying the next measurement occasions is to be measured. Whether to skip measurement of the next measurement occasion based on the second DCI message is then determined according to one or more measure skipping applicability rules.
Embodiments herein include systems, methods, and apparatuses for UE On-Demand Synchronization Signal Block (OD-SSB) measurement behavior. In some embodiments, the UE may be allowed to cause one or two interruptions in a fast measurement mode window based on when the Secondary Cell (SCell) is activated. In some embodiments, after the UE sends a measurement report, the UE is allowed to fall back to slow mode measurement even though it is still within the fast measurement mode window.
NETWORK (NW) SIDE MONITORING OF CHANNEL STATE INFORMATION (CSI) COMPRESSION USING ARTIFICIAL INTELLIGENCE(AI)/MACHINE LEARNING (ML) MODELS IN WIRELESS COMMUNICATION NETWORKS
Apparatuses, systems, and methods for monitoring of Channel State Information (CSI) compression using AI/ML-based models are described including systems, methods, and mechanisms for performing network (NW) side monitoring of Channel State Information (CSI) compression. In one example, a Channel State Information (CSI) matrix may he augmented with redundancy elements.
H04L 1/00 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue
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
76.
RESERVATION STATION WITH PRIMARY AND SECONDARY STORAGE CIRCUITS FOR STORE OPERATIONS
A reservation station that includes primary and secondary storage circuits is disclosed. The primary storage circuit may include multiple full entries, while the secondary storage circuit includes multiple store-data entries. A given store-data entry of the multiple store-data entries stores a subset of the information stored in a given full entry of the multiple full entries. In response to a determination that a store address associated with a particular store operation, stored in particular full entry of the multiple full entries, has been available for use for a threshold number of cycles without store data associated with the particular store operation being available for use, a control circuit may transfer the particular store operation to a particular store-data entry of the multiple store-data entries.
Methods and apparatuses for presenting enhanced video-passthrough in a three-dimensional environment. In some examples, a first electronic device is in communication with one or more input devices. In some examples, the electronic device identifies a region within a three-dimensional environment, captures, via the one or more input devices, one or more first images associated with the region identified within the three-dimensional environment, identifies respective portions of the one or more first images corresponding to the identified region, and generates one or more second images based on the identified respective portions of the one or more first images, wherein the one or more second images have an enhanced visual characteristic relative to that of the one or more first images.
G06T 19/00 - Transformation de modèles ou d'images tridimensionnels [3D] pour infographie
G06F 3/0346 - Dispositifs de pointage déplacés ou positionnés par l'utilisateurLeurs accessoires avec détection de l’orientation ou du mouvement libre du dispositif dans un espace en trois dimensions [3D], p. ex. souris 3D, dispositifs de pointage à six degrés de liberté [6-DOF] utilisant des capteurs gyroscopiques, accéléromètres ou d’inclinaison
G06T 3/4053 - Changement d'échelle d’images complètes ou de parties d’image, p. ex. agrandissement ou rétrécissement basé sur la super-résolution, c.-à-d. où la résolution de l’image obtenue est plus élevée que la résolution du capteur
The present disclosure generally relates to messaging user interfaces. In some embodiments, at an electronic device having one or more processors, memory, and a display, a method is performed, including displaying a search affordance; detecting an interaction with the search affordance; in response to detecting the interaction with the search affordance, initiating a search; receiving a search result in response to the initiated search, the search result including a business entity determined in response to the search; displaying a messaging affordance associated with the business entity; detecting an interaction with the messaging affordance; and in response to detecting the interaction with the messaging affordance, initiating a messaging session with the business entity, the messaging session being initiated in a messaging user interface.
G06Q 10/107 - Gestion informatisée du courrier électronique
G06F 3/0488 - 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
G06Q 10/1093 - Ordonnancement basé sur un agenda pour des personnes ou des groupes
G06Q 10/20 - Administration de la réparation ou de la maintenance des produits
G06Q 30/016 - Fourniture d’une assistance aux clients, p. ex. pour assister un client dans un lieu commercial ou par un service d’assistance après-vente
H04L 65/1069 - Établissement ou terminaison d'une session
H04M 1/72436 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles avec des moyens de soutien local des applications accroissant la fonctionnalité avec des moyens interactifs de gestion interne des messages pour la messagerie textuelle, p. ex. services de messagerie courte [SMS] ou courriels
G06F 3/0354 - Dispositifs de pointage déplacés ou positionnés par l'utilisateurLeurs accessoires avec détection des mouvements relatifs en deux dimensions [2D] entre le dispositif de pointage ou une partie agissante dudit dispositif, et un plan ou une surface, p. ex. souris 2D, boules traçantes, crayons ou palets
G06F 3/04817 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] fondées sur des propriétés spécifiques de l’objet d’interaction affiché ou sur un environnement basé sur les métaphores, p. ex. interaction avec des éléments du bureau telles les fenêtres ou les icônes, ou avec l’aide d’un curseur changeant de comportement ou d’aspect utilisant des icônes
G06F 3/04842 - Sélection des objets affichés ou des éléments de texte affichés
G06F 3/04883 - 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 pour l’entrée de données par calligraphie, p. ex. sous forme de gestes ou de texte
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
H04M 1/72457 - 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 s’appuyant sur la localisation géographique
H04M 1/72469 - Interfaces utilisateur spécialement adaptées aux téléphones sans fil ou mobiles pour faire fonctionner le dispositif en sélectionnant des fonctions à partir de plusieurs éléments affichés, p. ex. des menus ou des icônes
80.
TRANSMITTING SCHEDULING REQUEST AND BUFFER STATUS REPORT WITH CELL DISCONTINUOUS TRANSMISSION OR RECEPTION
A method performed by a user equipment (UE) is provided. The method includes receiving configuration information from a base station, the configuration information specifying a plurality of scheduling request (SR) configurations that indicate a plurality of SR occasions for communicating with the base station. The plurality of SR occasions are scheduled to occur when the base station is in a non-active duration of a current discontinuous transmission or reception (DTX/DRX) cycle. The method includes suspending transmission from the UE to the base station during at least one SR occasion of the plurality of SR occasions. The method includes determining that a triggering condition is met. The method includes transmitting a message to the base station in response to determining that the triggering condition is met. Also provided is a method performed by a base station.
Techniques are described for a digital pre-distortion (DPD) and self-interference cancelation (SIC) actuator. The method can include receiving a digital predistortion (DPD) input by least one processor running a DPD model of a transceiver that includes a power amplifier (PA). The method can further include receiving, by the PA, a DPD output of the DPD model, the DPD output generated by the at least one processor in response to the DPD input. The method can further include measuring a performance metric of the PA based on a PA output, the PA output generated by the PA based on the DPD output. The method can further include updating, by the at least one processor, the DPD model based on the performance metric. The method can further include causing the transceiver to output the wireless communication to a network device based on the updated DPD model.
A head-mountable display device (HMD) can include a frame, a display coupled to the frame, an adjustment mechanism, and a motion transfer member. The display can include a first optical module and a second optical module. The adjustment mechanism can be coupled to the first optical module. The motion transfer member can be coupled to the adjustment mechanism and the second optical module. The motion transfer member can extend between the first optical module and the second optical module. The adjustment mechanism can be configured to simultaneously adjust a position of the first optical module and a position of the second optical module relative to each other.
Adjustable clock and power gating control is facilitated hereby. In aspects, a power management circuit is coupled to a memory controller circuit that is coupled to a memory resource circuit and to a plurality of heterogeneous client circuits configured to access the memory resource circuit via the memory controller circuit. The power management circuit is configured to receive operating parameters associated with the plurality of client circuits and to determine, based on the operating parameters, a threshold power state for the memory resource circuit. Additionally, the power management circuit is configured to initiate a clock gating operation, a power gating operation, or both for the memory resource circuit and to maintain at least the threshold power state for the memory resource circuit by limiting performance of the clock gating operation, the power gating operation, or both for the memory resource circuit. Other aspects and features are also claimed and described.
The present application relates to devices and components including apparatus, systems, and methods for identifying enhanced reduced capability user equipment in wireless networks.
Stacked circuit board structures, methods of assembly, and an alignment fixture are described. In an embodiment, a stacked circuit board structure includes bottom and top circuit boards with aligned alignment notches and alignment holes. Alignment of the stacked circuit boards may be achieved with an alignment fixture including rocking pins that mate with the alignment notches and alignment holes.
A user equipment (UE), a base station, a baseband processor or other network device can operate in a network to process a network configuration of an uplink control information (UCI) payload of an artificial intelligence (AI) based channel state information (CSI) feedback. The network configuration includes indications of a UCI configuration and an AI model in order to generate an AI based UCI report. The AI model is associated with at least one of: a layer common configuration, a layer specific configuration, or a rank indication (RI) specific configuration according to the network configuration.
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
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
87.
Synchronization Raster for Less Than 5MHz of Dedicated Spectrum
A user equipment (UE) is configured to generate a synchronization raster comprising a plurality of synchronization raster points for a channel having a bandwidth that is less than 5 MHz based on a number of subcarriers in the channel (N), a frequency value (P) and a sub-carrier spacing (SCS) of the channel, wherein P is a frequency value of less than 1200 kHz and perform a synchronization operation comprising a raster search to acquire a synchronization signal block (SSB) based on the synchronization raster.
Improved redistribution layer structures for integrated circuit or system-on-chip (SoC) packages substrate are disclosed. Via landing pads and via interconnects in the redistribution layers are self-aligning with the centers of the vias aligning with the pads. This self-alignment may allow pads that terminate non-stacked vias to have decreased widths or diameters without extra capture space. The redistribution layers have vias with vertical or near vertical sidewalls. Vias may also have various shapes, widths, or lengths. Traces in the redistribution layers may have various lengths and shapes with lengths that may extend into layers routing the vias to provide increased metal density in the traces.
The present application relates to improved user equipment (UE) behaviors in instances of buffer status reports (BSRs) or other Medium Access Control (MAC) Control Elements (CE)s being triggered by particular events, such as packet discarding or long packet queuing delay times. In some cases, a UE may avoid unnecessary scheduling request (SR) signaling, e.g., if there is already a pending SR, the UE may cancel the SR if the data in the buffer is no longer available because of packet discarding. In other cases, if there is already a pending SR, the UE may signal the pending SR as soon as possible to a base station and provide a buffer status update. When a BSR is triggered by long packet queueing delay and there is already a pending SR, the UE may also want to signal the pending SR as soon as possible to provide packet queueing delay time information.
A user equipment (UE) is configured to communicate with other UEs via a legacy sidelink (SL) connection and a non-legacy SL connection. The UE is further configured to receive legacy SL resource information associated with legacy resources in an legacy resource pool for legacy SL transmissions to be performed by the UE, wherein the legacy SL resource information comprises time location of the legacy resources and resource reservation periods and exclude non-legacy resources of a non-legacy SL resource pool for transmitting non-legacy SL transmissions based on at least the legacy resource information.
H04W 72/40 - Gestion des ressources pour la communication en mode direct, p. ex. D2D ou liaison secondaire
H04W 72/542 - Critères d’affectation ou de planification des ressources sans fil sur la base de critères de qualité en utilisant la qualité mesurée ou perçue
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
91.
SYSTEMS AND METHODS FOR ENHANCED INTER-FREQUENCY AND INTRA-FREQUENCY MEASUREMENT WITHOUT MEASUREMENT GAP
Systems and methods for performing inter-frequency and intra-frequency measurements without measurement gap use are discussed herein. A UE receives, from a network, configuration information for performing an inter-frequency or intra-frequency synchronization signal block (SSB) measurement outside of an active bandwidth part (BWP) without a measurement gap, and, in response, performs, without using the measurement gap, the inter-frequency/intra-frequency SSB measurement on an inter-frequency/intra-frequency SSB that is located outside of the active BWP and within a UE channel bandwidth (CBW) corresponding to the active BWP. Capability information detailing whether the UE supports this behavior may be provided from the UE to the network. The network may provide a threshold for a measurement object (MO) that is used by the UE to determine whether to perform such SSB measurements without a measurement gap. The UE may provide the network with assistance information indicating a UE intent or preference for such SSB measurements.
H04W 72/0457 - Affectation de bande ou de débit variable
H04W 72/51 - Critères d’affectation ou de planification des ressources sans fil sur la base des propriétés du terminal ou du dispositif
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
92.
TECHNIQUES FOR MULTI-HEAD ADAPTIVE CONTROLLER WITH SHARED PARAMETERS
Techniques are described for a digital pre-distortion (DPD) and self-interference cancelation (SIC) actuator. The method can include receiving by at least one processor running a digital predistortion (DPD) model of a transceiver, a DPD input. The method can further include outputting, from the at least one processor and in response to the DPD input, a first DPD output of the DPD model. The method can further include causing the PA to generate a PA output based on the first DPD output. The method can further include updating the DPD model based on the DPD input, the DPD output and the PA output. The method can further include receiving, after the DPD model is updated, the DPD input by the at least one processor. The method can further include outputting, by the at least one processor, a second DPD output based on the DPD input.
H03F 1/32 - Modifications des amplificateurs pour réduire la distorsion non linéaire
H04B 1/525 - Dispositions hybrides, c.-à-d. dispositions pour la transition d’une transmission bilatérale sur une voie à une transmission unidirectionnelle sur chacune des deux voies ou vice versa avec des moyens de réduction de la fuite du signal de l’émetteur vers le récepteur
A frequency multiplying circuit can include a first pull-down transistor configured to receive an input signal having a fundamental frequency, a first pull-up transistor configured to receive the input signal, and a coil having a first terminal coupled to the first pull-down transistor and having a second terminal coupled to the first pull-up transistor. The coil can be coupled to a differential output at which an output signal having an output frequency that is a multiple of the fundamental frequency is produced. The frequency multiplying circuit can include one or more additional pull-down transistors and one or more additional pull-up transistors. The coil can be part of an output transformer. One or more adjustable capacitors can be coupled to the output transformer.
H03K 5/00 - Transformation d'impulsions non couvertes par l'un des autres groupes principaux de la présente sous-classe
H03K 17/687 - Commutation ou ouverture de porte électronique, c.-à-d. par d'autres moyens que la fermeture et l'ouverture de contacts caractérisée par l'utilisation de composants spécifiés par l'utilisation, comme éléments actifs, de dispositifs à semi-conducteurs les dispositifs étant des transistors à effet de champ
94.
TCI-State Selection for Individual Channel/Signals for Unified TCI-State Framework With Multi-TRP in Wireless Communication
A user equipment (UE) configured to establish a connection to a base station in multi-transmission reception point (mTRP) mode, wherein the UE is configured to apply a first set of transmission configuration indicator (TCI) states to communicate with the base station via one or multiple TRPs, the UE is further configured that a TCI selection field is not present in a TCI state update command, receive the TCI state update command indicating a TCI codepoint mapping to one or more downlink (DL) TCI states in a second set of TCI states and apply the one or more TCI states of the second set for physical downlink shared channel (PDSCH) receptions from one or multiple TRPs that is scheduled by the Downlink Control Information (DCI) that includes TCI state update command.
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
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
95.
METHODS FOR REDUCING BEAM SWEEPING TIME FOR A USER EQUIPMENT
A user equipment (UE) including a transceiver and a processor is disclosed. The processor is configured to: receive a beam measurement configuration for performing beam measurements on a first set of beams of a first network access point and a second set of beams of a second network access point; receive ephemeris information including first ephemeris information corresponding to the first network access point and second ephemeris information corresponding to the second network access point; identify a reception (Rx) beam of the first set of beams as a reference beam in accordance with beam measurements performed for the first set of beams; based on the reference beam, and based on the first ephemeris information or the second ephemeris information, identify one or more target Rx beams; and report, to the network, the one or more target Rx beams to receive downlink information via the second network access point.
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
Method and Apparatus for Enhanced Beam Reporting and Unified TCI Indication for Simultaneous Transmission Over Multiple Panels (STXMP) in Wireless Communication
Method and Apparatus for Enhanced Beam Reporting and Unified TCI Indication for Simultaneous Transmission over Multiple Panels is disclosed. The current Unified TCI framework is expanded to include multi-TRPs and STxMP operations. Simultaneous multi-panel UL transmission for higher UL throughput/reliability focusing on multiple Transmission/Reception Point (mTRP) is provided. UL precoding indications for PUSCH transmission that do not require a new codebook for multi-panel simultaneous transmission are shown. TCI States for SRS resource sets to enable STxMP operation are established. Group Beam Reporting (GBR) for simultaneous UL multi-panel transmission (STxMP) operation, single DCI based STxMP transmission of a PUSCH, and multi-DCI based STxMP transmission of a PUCCH is disclosed.
H04W 8/22 - Traitement ou transfert des données du terminal, p. ex. statut ou capacités physiques
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
User equipment (UE) in a 5G new radio (NR) environment may be configured to perform operations. A UE may camp on a non-terrestrial network (NTN). A UE may obtain coverage information of a terrestrial network (TN) cell. A UE may perform a neighbor cell measurement of the TN cell with a cell reselection algorithm. Other aspects are described.
H04W 36/32 - La resélection étant déclenchée par des paramètres spécifiques par des données de localisation ou de mobilité, p. ex. des données de vitesse
An oscillator is provided that include a first transistor having a source-drain terminal coupled to a first tail node, a second transistor cross-coupled with the first transistor and having a source-drain terminal coupled to the first tail node, a first coil coupled to the first tail node, and a first electrically floating tank magnetically coupled to the first coil. The first electrically floating tank may include a second coil and a first capacitor coupled across the second coil. The first coil and a second coil in the first electrically floating tank may form a transformer. The oscillator may further include third and fourth cross-coupled transistors coupled to a second tail node, a third coil coupled to the second tail node, and a second electrically floating tank magnetically coupled to the third coil. An oscillator configured in this way can provide improved phase noise performance.
H03B 5/12 - Éléments déterminant la fréquence comportant des inductances ou des capacités localisées l'élément actif de l'amplificateur étant un dispositif à semi-conducteurs
The present disclosure generally relates to controlling electronic devices. In some examples, the electronic device uses gaze information to activate a digital assistant. In some examples, the electronic device uses gaze information to identify an external device on which to act. In some examples, the electronic device provides an indication that distinguishes between different speakers.
Described herein are apparatuses, systems, and methods for performing a random access channel (RACH) based L1/L2-triggered mobility (LTM) procedure. A UE may receive, from a source primary cell (S-PCell), LTM candidate configuration information for a candidate PCell (C-PCell). The UE may perform a random access channel (RACH) procedure with the S-PCell and the C-PCell and receive an LTM cell switch command. The UE may switch from the S-PCell to the C-PCell while performing the RACH procedure.
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 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes