Method and apparatus for video coding using ALF (Adaptive Loop Filter) for the chroma component. According to one method, ALF processing is applied to a target colour component of the current block. The ALF processing comprises colour-component ALF processing and cross-component ALF processing, the colour-component ALF processing is applied to the target colour component of the current block to generate the target colour component for a filtered-reconstructed current block, and the cross-component ALF processing is applied to another colour component of the current block to generate across-component adjustment for the target colour component of the filtered-reconstructed current block. Input data related to reconstructed pixels associated with at least two colour components are provided for the colour-component ALF processing and the cross-component ALF processing, and the colour-component ALF processing and the cross-component ALF processing use signalled coefficients.
H04N 19/117 - Filtres, p. ex. pour le pré-traitement ou le post-traitement
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
H04N 19/82 - Détails des opérations de filtrage spécialement adaptées à la compression vidéo, p. ex. pour l'interpolation de pixels mettant en œuvre le filtrage dans une boucle de prédiction
2.
METHOD FOR OUT-OF-SERVICE (OOS) RECOVERY ON USER EQUIPMENT (UE) HAVING MULTIPLE SUBSCRIBER IDENTITY MODULES (SIMS)
A method for out-of-service (OOS) recovery on user equipment (UE) having a first subscriber identity module (SIM) and a second SIM is provided. The second SIM intends to perform the OOS recovery. The method includes the following steps. Searches for stored frequencies, full bands, and different radio access technologies (RAT) are scheduled based on different scenarios and the service type of the first SIM. The order of the stored frequencies, the full bands, and the RATs for the searches are prioritized based on the different scenarios and the service type of the first SIM.
A wireless communication device and method for transmitting and receiving a physical layer protocol data unit (PPDU) using enhanced multi-resource unit (MRU) puncturing patterns are provided. The method includes selecting an enhanced MRU puncturing pattern that identifies punctured subchannels within a channel bandwidth, wherein the enhanced MRU puncturing pattern supports finer granularity puncturing and discrete puncturing of multiple non-contiguous subchannels. The wireless communication device generates a PPDU preamble carrying signaling information that includes one or more validate bits indicating use of the enhanced MRU puncturing pattern and puncturing pattern information identifying the selected pattern. A receiving device extracts the signaling information, identifies the puncturing pattern, and decodes the PPDU payload based on the identified puncturing pattern.
A wireless device and a method enable enhanced multi-link single radio (EMLSR) operation in a Neighbor Awareness Networking (NAN) environment by exchanging capability information and mapping information. The wireless device controls a radio-frequency (RF) transceiver module to alternate between a monitoring configuration during a listen period and an aggregated configuration during an active period. During the listen period, the device monitors a mapped link associated with a NAN map identifier (Map ID) using a 1x1 configuration employing a single RF chain. Upon detecting a trigger frame on the monitored mapped link, the device switches to the aggregated configuration during the active period. In the aggregated configuration, at least two RF chains are aggregated to operate on a target link associated with the trigger frame using a multiple-input multiple-output (MIMO) configuration to perform data communication.
A coder calculates, for a current CU, TM costs for a plurality of candidate intra prediction modes. The coder selects one or more sets of intra prediction modes from the plurality of candidate intra prediction modes, each set including at least two intra prediction modes from the plurality of candidate intra prediction modes. The coder generates one or more fusion modes, each fusion mode blending a respective one set of intra prediction modes. The coder selects, from the plurality of candidate intra prediction modes, one or more intra prediction modes according to a predetermined criterion. The coder calculates fusion TM costs of the one or more fusion modes. The coder predicts the final prediction mode by comparing costs among the TM costs of the one or more intra prediction modes and the fusion TM costs of the one or more fusion modes.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/172 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant une image, une trame ou un champ
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale
6.
Method and Apparatus of Default Model Derivation for Cross-Component Model Merge Mode in Video Coding System
A method and apparatus of deriving a default cross-component candidate for merge candidate list. According to this method, a default cross-component prediction candidate is derived, wherein the target cross-component model associated with the default cross-component prediction candidate is derived based on reconstructed first-colour samples and second-colour samples of a region corresponding to the current block. A prediction candidate list is derived, wherein the default cross-component prediction candidate is inserted into the prediction candidate list. The second-colour block is encoded or decoded using prediction data generated from the first-colour block according to the target cross-component model when the default cross-component prediction candidate is selected from the prediction candidate list.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
7.
DE-IDENTIFIED AND SIMILARITY-PRESERVED BIG DATA COLLECTION USING AI
In an aspect of the disclosure, a method, a computer-readable medium, and an apparatus are provided. The method includes a method of operations of a computing device. The computing device receives input text. The computing device identifies sensitive information within the input text. The computing device converts the identified sensitive information into semantically meaningful text. The computing device appends supporting information to the semantically meaningful text to generate modified text. The computing device generates, using an artificial intelligence embedding model, a vector representation of the modified text. The computing device replaces the sensitive information with the vector representation.
G06F 21/62 - Protection de l’accès à des données via une plate-forme, p. ex. par clés ou règles de contrôle de l’accès
8.
CURRENT MANAGEMENT CIRCUIT, SYSTEM AND METHOD WITH CURRENT CLAMPING FOR IMPROVING PERFORMANCE, REDUCING POWER DELIVERY NETWORK INVESTMENT AND PROVIDING PROTECTION
A current management method controls a circuit including a processing circuit consuming a load current and a voltage-controlled oscillator with terminals coupled to a power management integrated circuit and the processing circuit. The method includes detecting whether the load current exceeds a current threshold by the power management integrated circuit, clamping an output current substantially to a maximum output current when the threshold is exceeded, sensing an output voltage drop by the voltage-controlled oscillator, and adjusting an output signal to reduce a frequency. The current threshold is less than or equal to the maximum output current. This achieves closed-loop control preventing system instability.
H02M 3/155 - Transformation d'une puissance d'entrée en courant continu en une puissance de sortie en courant continu sans transformation intermédiaire en courant alternatif par convertisseurs statiques utilisant des tubes à décharge avec électrode de commande ou des dispositifs à semi-conducteurs avec électrode de commande utilisant des dispositifs du type triode ou transistor exigeant l'application continue d'un signal de commande utilisant uniquement des dispositifs à semi-conducteurs
9.
MONITORING FRAMEWORKS FOR TWO-SIDED ARTIFICIAL INTELLIGENCE/MACHINE LEARNING MODELS
Techniques pertaining to monitoring frameworks for two-sided artificial intelligence and machine learning (AI/ML) models in wireless communications are described. An apparatus participates in training of a two-sided AI/ML model. The apparatus also performs a wireless communication by utilizing the two-sided AI/ML model. In participating in the training of the two-sided AI/ML model, the apparatus detects a change in a setting, scenario or environment and, in response to detecting the change, deactivates, switches or activates the two-sided AI/ML model or another two-sided AI/ML model.
VIDEO CODING METHOD OF APPLYING BIT DEPTH REDUCTION TO CROSS-COMPONENT PREDICTION PARAMETERS BEFORE STORING CROSS-COMPONENT PREDICTION PARAMETERS INTO BUFFER AND ASSOCIATED APPARATUS
A method for video coding including: receiving data to be encoded or decoded as a current block of pixels of a current picture of a video, wherein the current block includes at least one chroma block; and encoding or decoding the current block by a cross-component prediction (CCP) mode for intra chroma prediction of the at least one chroma block, which includes: applying bit depth reduction to at least one CCP parameter of a CCP model used by the CCP mode, to generate at least one precision-reduced CCP parameter, and storing a CCM information of the CCP model into a buffer, wherein a bit depth of the at least one precision-reduced CCP parameter is smaller than a bit depth of the at least one CCP parameter, and the CCM information includes the at least one precision-reduced CCP parameter.
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale
H04N 19/132 - Échantillonnage, masquage ou troncature d’unités de codage, p. ex. ré-échantillonnage adaptatif, saut de trames, interpolation de trames ou masquage de coefficients haute fréquence de transformée
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
11.
REPRESENTATIVE PREDICTION MODE OF A BLOCK OF PIXELS
A method for generating and using a representative prediction mode of a currently coded pixel block is provided. A video coder receives data for a block of pixels to be encoded or decoded as a current block of a current picture of a video. The video coder generates a predictor for the current block using a first prediction mode. The video coder identifies a second prediction mode that is a representative prediction mode of the current block. The video coder encodes or decodes the current block by using the generated predictor for the current block and the representative prediction mode. The representative prediction mode maybe used to select a transform for the prediction residual. The representative prediction mode may also be used for coding a subsequent block.
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale
12.
Method And User Equipment For Supporting Automatic Gain Control Symbol For Sidelink Positioning In Mobile Communications
Various solutions for supporting automatic gain control (AGC) symbol for sidelink positioning reference signal (SL-PRS) reception in mobile communications are described. Reception user equipment (Rx UE) may receive a first configuration for an SL-PRS resource. Rx UE may receive one symbol for the SL-PRS resource. Rx UE may receive the SL-PRS resource based on the first configuration. A reference signal in the symbol and an SL-PRS in a last SL-PRS symbol of the SL-PRS resource correspond to a same set of one or more subcarriers.
H04W 52/52 - Commande de puissance d'émission [TPC Transmission power control] utilisant des circuits ou des amplificateurs de commande automatique de gain [AGC Automatic Gain Control]
H04W 52/32 - TPC des canaux de radiodiffusion ou de commande
13.
VIDEO CODING METHOD AND APPARATUS OF CHROMA PREDICTION
A method for video coding includes: receiving data to be encoded or decoded as a current block of pixels of a current picture of a video, wherein the current block includes at least one chroma block; and encoding or decoding the current block by a target inter prediction mode, which includes: obtaining a motion compensation predictor of a chroma sample included in the at least one chroma block; obtaining at least one cross-component predictor of the chroma sample; and determining inter prediction of the chroma sample by jointly considering the motion compensation predictor and the at least one cross-component predictor.
H04N 19/109 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif temporel
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
H04N 19/51 - Estimation ou compensation du mouvement
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
14.
QUANTIZATION FOR ARTIFICIAL INTELLIGENCE/MACHINE LEARNING MODELS
Techniques pertaining to quantization for artificial intelligence and machine learning (AI/ML) models in wireless communications are described. An apparatus performs quantization with respect to an AI/ML model. The apparatus then performs a wireless communication by utilizing the AI/ML model.
VIDEO CODING METHOD THAT CONSTRUCTS MOST PROBABLE MODE LIST FOR SIGNALLING OF PREDICTION MODE SELECTED BY INTRA CHROMA PREDICTION AND ASSOCIATED APPARATUS
A method for video coding includes: receiving data to be encoded or decoded as a current block of pixels of a current picture of a video, wherein the current block includes at least one chroma block; and encoding or decoding the current block by a prediction mode for intra chroma prediction of the at least one chroma block, which includes constructing a most probable mode (MPM) list, wherein the MPM list includes one or more intra chroma MPM candidates.
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
In an aspect of the disclosure, a method, a computer-readable medium, and an apparatus are provided. The apparatus may be a UE. In certain configurations, the UE receives a message having Demodulation Reference Signal (DMRS) switching bits that indicate which DMRS pattern is being used of either of a first DMRS pattern or a second DMRS pattern. The UE determines the DMRS pattern being used from the DMRS switching bits. The UE applies the determined DMRS pattern being used to processing of uplink and downlink channels.
A method and apparatus of cross-component coding using one or more cross-component palette tables. According to this method, one or more cross-component palette tables are determined, wherein each of said one or more cross-component palette tables comprising one or more entries and each entry maps one first-colour sample value to one or more second-colour sample values. Said one or more second-colour current blocks are encoded or decoded using coding information comprising a cross-component palette-based model and the cross-component palette-based model corresponds to said one or more cross-component palette tables.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
18.
Method and Apparatus of Intra Prediction Generation in Video Coding System
A method and apparatus for region-based prediction mode derivation. According to this method, a predefined target mode uses template-based histogram, gradient analysis, or template-based distortion calculation. A first flag for the current block is signalled or parsed to indicate whether to apply a region-based mode derivation process to the current block. If the first flag indicating the region-based mode derivation process being applied: the template is divide into at least two template regions; at least two intra prediction modes are derived from the at least two template regions using a predefined measurement for the at least two template regions respectively, where the predefined measurement includes deriving at least one candidate list including at least one of the at least two intra prediction modes; and at least two hypotheses of predictors are derived based on the at least two intra prediction modes to derive final predictor.
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/119 - Aspects de subdivision adaptative, p. ex. subdivision d’une image en blocs de codage rectangulaires ou non
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/46 - Inclusion d’information supplémentaire dans le signal vidéo pendant le processus de compression
19.
Method and Apparatus of Most Probable Mode List Unification in Video Coding System
A method and apparatus for generating a MPM (Most Probable Modes) list. According to this method, pixel data associated with a current block at an encoder side or coded data associated with the current block to be decoded at a decoder side are received. A target MPM list is generated for the current block, wherein the target MPM list is shared by two or more intra prediction tools, and wherein said two or more intra prediction tools comprise spatial-GPM (Geometric Partition Mode) prediction mode, GPM intra prediction mode, regular intra mode, TMRL (Template-based Multiple Reference Line intra) mode, or a combination thereof. The current block is encoded or decoded by using information comprising the target MPM list.
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
20.
Methods and Apparatus for Improvement of Transform Information Coding according to Intra Chroma Cross-Component Prediction Model in Video Coding
A method and apparatus for video coding using coding tools including one or more cross component models related modes. According to this method, a prediction candidate list comprising one or more inherited CCP (Cross-Component Prediction) candidates is determined, wherein CCM (Cross-Component Model) information associated with at least one CCP candidate is stored in addition to one or more inherited model parameters of said at least one CCP candidate. The second-colour block is encoded or decoded by using information comprising the prediction candidate list, wherein when said at least one CCP candidate is selected for the current block, prediction data for the second-colour block are generated by applying said one or more inherited model parameters of said at least one CCP candidate along with the CCM information to reconstructed first-colour block.
H04N 19/117 - Filtres, p. ex. pour le pré-traitement ou le post-traitement
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
H04N 19/86 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le pré-traitement ou le post-traitement spécialement adaptés pour la compression vidéo mettant en œuvre la diminution des artéfacts de codage, p. ex. d'artéfacts de blocs
21.
Methods and Apparatus of Motion Shift in Overlapped Blocks Motion Compensation for Video Coding
A method and apparatus for video coding using OBMC for IBC or IntraTMP coded blocks. According to the method, input data comprising a current block/subblock and a neighbouring block/subblock are received. Whether a target block/subblock is coded in IBC (Intra Block Copy) mode or IntraTMP (Intra Template Matching Prediction) mode is determined, wherein the target block/subblock corresponds to any one of the current block/subblock and the neighbouring block/subblock. In response to the target block/subblock being coded in the IBC mode or the IntraTMP mode, OBMC (Overlapped Block Motion Compensation) process is applied to a boundary region of the current block/subblock by generating samples in the boundary region using a target BV (Block Vector) of the target block/subblock coded in the IBC mode or a target motion shift of the target block/subblock coded in the IntraTMP mode.
H04N 19/583 - Compensation de mouvement par blocs se chevauchant
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
22.
Method and Apparatus of Parameters Inheritance for Overlapped Blocks Motion Compensation in Video Coding System
A method and apparatus for video coding using Overlapped Block Motion Compensation (OBMC). According to this method, one or more parameters associated with one or more coding tools applied to the neighbouring block, the neighbouring subblock, the current block, the current subblock or a combination thereof are determined, where at least one of said one or more parameters is inherited from the neighbouring block, the neighbouring subblock, the current block, the current subblock or the combination thereof. OBMC process is applied to at least one boundary of the current block, the current subblock, the neighbouring block and the neighbouring subblock according to OBMC parameters comprising said at least one of said one or more parameters.
H04N 19/583 - Compensation de mouvement par blocs se chevauchant
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/52 - Traitement de vecteurs de mouvement par encodage par encodage prédictif
23.
SEGMENT PARSER DESIGNS FOR UNEQUAL MODULATION AND UNEQUAL MCS TRANSMISSION
Various schemes pertaining to segment parser designs for unequal modulation (UEQM) and unequal modulation and coding scheme (MCS) transmission in wireless communications are described. An apparatus (e.g., station (STA)) generates a multi-resource unit (MRU) comprising an aggregate of a plurality of resource units (RUs). The apparatus then transmits the MRU with UEQM or unequal MCS.
A method for system delay scheduling performed by an access point (AP) router includes monitoring a traffic status of data packets, determining an average burst duration based on the traffic status, and comparing the average burst duration with a first time threshold and a second, smaller time threshold. A second mode is selected if the average burst duration exceeds the first time threshold, and a first mode is selected if it is less than the second time threshold. In the first mode, a transmitter transmits the data packets via a first number of physical layer protocol data units (PPDUs). In the second mode, the transmitter transmits the data packets via a second number of PPDUs after a delay time. The second number of PPDUs is smaller than the first number of PPDUs.
A semiconductor package is provided. The semiconductor package includes an exposed pad, at least one extension portion, a die, and a molding compound. The extension portion is connected to the exposed pad and extends on a plane of a bottom surface of the exposed pad. The die is mounted on a top surface of the exposed pad. The top surface is opposite the bottom surface. The molding compound encapsulates the die and surrounds the exposed pad and the extension portion. The bottom surface of the exposed pad and a bottom surface of the extension portion are exposed from the molding compound.
An imaging device and zoom method thereof are provided. The zoom method includes: obtaining a first zoom factor based on a user setting operation; acquiring a raw image; determining a zoom factor variable based on the first zoom factor and the user setting operation, to generate a second zoom factor; cropping the raw image according to the second zoom factor to generate a first image; acquiring an updated first zoom factor; in a case where an absolute value of a difference between the updated first zoom factor and the second zoom factor is greater than a preset value, cropping the first image according to the updated first zoom factor to generate a second image; and displaying the second image.
A memory management method for enhancing memory reclaim efficiency with dedicated compression units and associated apparatus are provided. The memory management method may include: utilizing the processing circuit to run a memory management module to start performing memory management with a reclaiming architecture of the memory management module, for reducing memory pressure; separately performing page scanning, by a scanning module, and page compression, by the dedicated compression units, the dedicated compression units being configured to individually compress multiple least recently used (LRU) pages and generate compressed data; and storing the compressed data into at least one swap device, and releasing memory space that is previously occupied by the multiple LRU pages.
A method for calculating memory usage of files in processes is provided. The method includes receiving an instruction, wherein the instruction indicates to obtain a proportion of a shared memory occupied by a current process. The method includes obtaining numbers of processes corresponding to files included in the current process through a lookup table. The method includes calculating the proportion of the shared memory occupied by the current process based on the numbers of the processes.
A method for performing audio offload control in multi-pipeline architecture and associated apparatus such as electronic device are provided. The method may include utilizing a first audio-processing pipeline among multiple audio-processing pipelines to perform first audio processing, for example: utilizing the first audio-processing pipeline to receive first audio data of a first audio, wherein a first playback length of the first audio data is less than a first predetermined playback length; utilizing a bitstream buffer inserted between a first program module corresponding to a first layer and a second program module corresponding to a second layer within the first audio-processing pipeline to store the first audio data, for further processing with the second program module; and utilizing at least one subsequent program module within the first audio-processing pipeline, such as the second program module, to process the first audio data, for offloading among different portions of at least one processor.
A spatial audio playback device, comprises: a transceiver unit, which communicates with the head-mounted device through wireless communication, is configured to receive information of a motion of the head-mounted device on a motion sensing signal and information or a transmission standard of the wireless communication from the head-mounted device; and a processing unit, which is coupled to the transceiver unit, is configured to predict head information after a predetermined time based on the information of the motion, adjust spatial audio based on the head information after the predetermined time to generate adjusted spatial audio and transmit the adjusted spatial audio to the transceiver unit, and transmit the adjusted spatial audio to the head-mounted device through the transceiver unit; the adjusted spatial audio is transmitted to the head-mounted device by the transceiver unit; and the predetermined time changes according to the information or the transmission standard of the wireless communication.
H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage
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
A method for implicitly deriving region-based intra-prediction is provided. The video coder derives multiple intra-prediction modes based on a reference region neighboring a current block among already-reconstructed pixels of a current picture. The current block is divided into grids that are aligned with sub-regions in the reference regions. The video coder generates a predictor for the current block using the multiple intra-prediction modes by generating an intra-prediction for each grid based on two or more intra-prediction modes that are derived based on two or more sub-regions aligned with the grid. The video coder may also identify a to-be-referenced intra prediction mode for use by subsequent coding operations of the current block and/or a subsequent block. The video coder encodes or decodes the current block by using the generated predictor to reconstruct the current block.
H04N 19/196 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par le procédé d’adaptation, l’outil d’adaptation ou le type d’adaptation utilisés pour le codage adaptatif étant spécialement adaptés au calcul de paramètres de codage, p. ex. en faisant la moyenne de paramètres de codage calculés antérieurement
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale
32.
METHOD FOR REDUCING SIGNALING OVERHEAD IN VIDEO CODING
A method for video decoding in a video decoder is provided. The method includes receiving a first syntax element from a VPS, an SPS, or a PPS in a bitstream, the first syntax element indicating whether a second syntax element is signaled in an SH or a PH of a current picture; in response to the first syntax element having a first value indicating that the second syntax element is not signaled, deriving a value of the second syntax element based on values of at least one of the first syntax element and one or more third syntax elements in an NAL unit header, the VPS, the SPS, the PPS, the SH, or the PH; and in response to the first syntax element having a second value indicating that the second syntax element is signaled, deriving the value of the second syntax element based on the signaled second syntax element.
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
33.
Methods and Apparatus of Cross-component Model Merge Mode for Video Coding
A method and apparatus for video coding using coding tools including one or more cross component models related modes. According to the method, input data associated with a current block comprising a first-colour block and a second-colour block are received, wherein the input data comprise pixel data to be encoded at an encoder side or coded data associated with the current block to be decoded at a decoder side. A candidate list comprising one or more cross-component candidates is derived, wherein said one or more cross-component candidates are from one or more specific cross-component mode types. The current block is encoded or decoded using information comprising the candidate list, wherein when a target cross-component candidate from the candidate list is selected for the current block, a predictor is generated for the second-colour block by applying a target cross-component model associated with the target cross-component candidate to the first-colour block.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
34.
EHT UHR DYNAMIC MULTI-LINK SWITCHING IN WIRELESS COMMUNICATIONS
Various techniques and schemes pertaining to ultra-high reliability (UHR) non-primary channel access in wireless communications are described. An apparatus, functioning as a station (STA) affiliated with a multi-link device (MLD), switches from listening on a primary channel to an auxiliary primary channel. The apparatus then communicates on the auxiliary primary channel.
H04W 74/0816 - Accès non planifié, p. ex. ALOHA utilisant une détection de porteuse, p. ex. accès multiple par détection de porteuse [CSMA] avec évitement de collision
H04W 28/02 - Gestion du trafic, p. ex. régulation de flux ou d'encombrement
A digitally controlled oscillator (DCO) with segmented varactor bank and multiple-voltage linearization and associated apparatus are provided. The DCO may include a varactor array, with the varactor array including a plurality of varactors positioned in the segmented varactor bank, and include a plurality of bridge biasing resistors positioned in the segmented varactor bank, a plurality of capacitors coupled between multiple varactor sets within the segmented varactor bank and a set of differential oscillation nodes of the DCO, and a negative transconductance (gm) network (−gm network) coupled to the set of differential oscillation nodes. Additionally, one set of varactor units and multiple remaining sets of varactor units respectively belonging to at least one varactor set and remaining varactor sets may be configured as active units and frozen units to receive a set of tune voltages and a set of predetermined voltages, respectively, for providing the multiple-voltage linearization at the active units.
H03B 5/24 - Élément déterminant la fréquence comportant résistance, et soit capacité, soit inductance, p. ex. oscillateur à glissement de phase l'élément actif de l'amplificateur étant un dispositif à semi-conducteurs
H03L 7/099 - Détails de la boucle verrouillée en phase concernant principalement l'oscillateur commandé de la boucle
36.
LOW LATENCY HEARING DEVICE AND LOW LATENCY HEARING METHOD
A low latency hearing device includes a first sound receiver and a processor. The processor includes a predictor. The first sound receiver is configured to receive an input sound signal. The processor is configured to execute following steps according to the plurality of commands of the memory: predicting a noise reduction (NR) filter by the predictor for a current frame of the sequence of frames based on a previous frame of the sequence of frames that precedes the current frame; filtering the current frame using the predicted NR filter to generate a filtered sound signal; and outputting the filtered sound signal.
G10K 11/178 - Procédés ou dispositifs de protection contre le bruit ou les autres ondes acoustiques ou pour amortir ceux-ci, en général utilisant des effets d'interférenceMasquage du son par régénération électro-acoustique en opposition de phase des ondes acoustiques originales
An electronic device includes a memory and an application processor. The a memory includes a plurality of addresses. The processor is electrically connected to the memory. The processor receives a plurality of audio packets. The processor determines, for each of the plurality of audio packets, whether the respective audio packet has packet loss. In response to determining that a first audio packet does not have packet loss, the processor stores the first audio packet into a first address. In response to determining that a second audio packet has packet loss, the processor stores a packet loss indicator into a second address. The application processor performs a first-stage packet loss concealment (PLC) on the second audio packet in response to the packet loss indicator.
A method of channel state information (CSI) report can include receiving a CSI report configuration at a user equipment (UE) from a base station, the CSI report configuration being associated with a set of CSI reference signal (CSI-RS) resources corresponding to multiple transmission reception points (TRPs), performing a channel measurement based on the CSI-RSs resources corresponding to the multiple TRPs, determining a precoder matrix indicator (PMI) based on measurement results of the channel measurement, the PMI corresponding to a precoder matrix, denoted W, of a Type II CSI codebook, the precoder matrix having a spatial domain (SD) basis vector matrix, denoted W1, SD basis selection of the SD basis vector matrix being TRP-specific, and transmitting a CSI report to the base station, the CSI report including the PMI.
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
H04B 7/10 - Diversité de polarisationDiversité de direction
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
39.
Method And Apparatus For Cell Reselection For Network Energy Saving In Mobile Communications
Various solutions for cell reselection for network energy saving with respect to user equipment and network apparatus in mobile communications are described. An apparatus may receive a network energy saving assistant information (NESAI) from a network node. The NESAI may comprise a cell barred field or a cell reservation field for network energy saving (NWES) configured to differentiate between non-NES user equipments (UEs) and NES-capable UEs. The apparatus may perform a cell reselection for a network energy saving (NES) cell based on the NESAI.
A method for image downscaling is provided. The method includes the following steps. An image with an original resolution is received. It is determined whether an automatic downscaling function is enabled. A power gain is calculated based on the difference between the original resolution and the target resolution in response to the automatic downscaling function being enabled. The image is downscaled from the original resolution to the target resolution in response to the power gain being higher than zero. The image with the target resolution is output.
A power bus (P-Bus) control protection method applicable to a System on a Chip (SoC) includes sending a packet by a first subsystem among the control subsystem and the plurality of functional subsystems, wherein the first subsystem is taken as a master device, other subsystems are slave devices, and the packet includes an SoC identifier (ID) and a slave ID utilized to jointly indicate a specific subsystem located in a specific SoC; receiving the packet by a second subsystem as a slave device among the control subsystem and the plurality of functional subsystems through its corresponding P-Bus circuit; decoding the packet by the second subsystem to determine whether the packet is directed to the second subsystem based on the SoC ID and the slave ID carried in the packet; and if the packet is directed to the second subsystem, executing corresponding operations by the second subsystem.
A multi-link single radio (MLSR) device, comprises a processor and a single radio module. The processor is configured for selecting an optimal link from a plurality of radio links between the MLSR device and an AP device based on a plurality of link scores of the radio links. The single radio module is configured for communicating with the AP device through the selected optimal link. Each of the radio links is associated with a respective channel and a corresponding link score, and the corresponding link score is determined based on a channel bandwidth corresponding to the respective channel and a channel load value received from the AP device.
In an aspect of the disclosure, a method, a computer-readable medium, and an apparatus are provided. The method may be executed by a computing device. The computing device receives a task to be processed. The computing device extracts an argument and an address from the task. The computing device retrieves a descriptor corresponding to the argument from a cache, based on the argument, at a runtime stage of an execution of the task. The computing device performs the task, based on the descriptor and the address.
A method and apparatus for candidate reordering. According to this method, input data associated with a current block comprising a first-colour block and a second-colour block are received, wherein the input data comprise pixel data to be encoded at an encoder side or data associated with the current block to be decoded at a decoder side. Cross-component prediction candidates are determined. The cross-component prediction candidates are reordered into reordered cross-component prediction candidates, wherein said reordering the cross-component prediction candidates is constrained depending on one or more conditions. A cross-component prediction candidate list is derived by inserting one or more target candidates from the reordered cross-component prediction candidates. The second-colour block is encoded or decoded using prediction data comprising cross-colour prediction generated by applying one of said one or more target candidates to reconstructed first-colour block.
H04N 19/103 - Sélection du mode de codage ou du mode de prédiction
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
Aspects of the disclosure provide a method, an apparatus, and a non-transitory computer-readable medium for video coding. The method can include determining an intra mode look-up table (IMLUT) for intra predicting a current block of video data, wherein the IMLUT includes a subset of all available intra prediction modes that are available for intra predicting the current block. The method can include constructing an intra prediction mode list an intra prediction mode list based on the IMLUT, and encoding or decoding the current block of the video data based on the intra prediction mode list.
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
The present invention provides a circuitry including a TIA stage. The TIA stage is configured to receive a current signal to generate an output voltage signal, wherein the TIA stage includes a first transistor, a second transistor and a high-pass filter. The first transistor has a gate electrode, a first electrode and a second electrode, wherein the gate electrode is coupled to the current signal, and the first electrode is coupled to a supply voltage. The second transistor has a gate electrode, a first electrode and a second electrode, wherein the first electrode of the second transistor is coupled to the second electrode of the first transistor, and the second electrode of the second transistor is coupled to a ground voltage. The high-pass filter is configured to filter the current signal to generate a filtered current signal to the gate electrode of the second transistor.
The present invention provides a circuitry including a regulator, a load circuit and a signal processing circuit. The regulator is configured to receive a supply voltage to generate a regulated supply voltage according to a reference voltage and a feedback signal. The load circuit is supplied by the regulated supply voltage, wherein the load circuit includes an internal sensing circuit to generate an internal sensing signal. The signal processing circuit is configured to process the internal sensing signal to generate the feedback signal to the regulator.
An audio processing method implemented by a processor includes receiving a first audio signal and a second audio signal, performing cancellation of audio components in the first audio signal using the second audio signal to reduce or remove harmonic components associated with the second audio signal, and applying a restoration process associated with a voice to the cancelled signal to generate a restored voice signal. The method addresses acoustic coupling issues by combining echo cancellation with generative artificial intelligence-based voice restoration, resulting in high-quality voice recording through built-in device components and preserving natural vocal characteristics.
An electronic device for USB transmission includes a first physical layer, a second physical layer, a switch array, a host controller, and a device controller. The first physical layer transports a first data flow. The second physical layer transports a second data flow. The switch array is electrically connected to the first physical layer and the second physical layer. The host controller is electrically connected to the switch array. The device controller is electrically connected to the switch array. The switch array enables an electrical connection between the host controller and the first physical layer and enables an electrical connection between the device controller and the second physical layer at the same time. The first physical layer is a USB 3.0 physical layer, and the second physical layer is a USB 2.0 physical layer.
A multi-panel display method is provided. The multi-panel display method may include the following steps. A processor of an apparatus may perform a plurality of applications on a plurality of display devices of the apparatus. Then, the processor may also process the data of the plurality of applications performed on different display devices according to a frame per second (FPS) that corresponds to each respective display device. Then, the processor may further display the processed data of the plurality of applications on the plurality of display devices respectively.
Aspects of the disclosure provide methods and apparatus for extending the sensing range in OFDM-based integrated communication and sensing systems. The method is applicable to both multi-level frequency-domain reference signal designs and single-level frequency-domain reference signal designs, such as the comb design. The proposed method allows for flexible adjustment of the extended range size according to sensing requirements.
Techniques pertaining to improvement of multi-access point (AP) multi-link device (MLD) network reliability in wireless communications are described. A station (STA) MLD acquires a coordinated transmission opportunity (C-TXOP) on multiple links. The STA MLD then communicates with multiple APs over the multiple links. Each of the multiple APs is affiliated with a respective AP MLD or Ultra-High Reliability (UHR) MLD and the multiple APs operate on a same channel in synchronization in a time domain.
Various solutions for performing sensing operation under various Radio Resource Control (RRC) modes with respect to an apparatus in mobile communications are described. The apparatus may enter an RRC mode including an idle mode, an inactive mode or a connected mode. The apparatus may perform a sensing operation after entering the RRC mode.
In an aspect of the disclosure, a method, a computer-readable medium, and an apparatus are provided. The apparatus may be a UE. The UE performs a procedure for emergency services fallback. The UE receives an AUTHENTICATION REJECT message from a network during the first procedure. The UE performs generic actions for authentication rejection by the network. These generic actions may involve updating the UE's internal state and clearing certain security parameters to maintain network integrity.
A primitive adaptive variable rate shading method includes generating a first absolute difference of depths in x direction, generating a second absolute difference of depths in y direction, adding the first absolute difference with the second absolute difference to generate a third absolute difference, and setting the variable shading rate according to at least the plurality of thresholds, and the third absolute difference.
In modern communication systems, the Peak-to-Average Power Ratio (PAPR) is a critical parameter that significantly impacts the efficiency and performance of signal transmission. High PAPR signals can lead to increased power consumption, reduced battery life in mobile devices, and the need for more expensive and complex power amplifiers, which must operate in a highly linear region to avoid distortion. This exacerbates power inefficiency and increases operational costs. To address these challenges, generating low PAPR waveforms has become a crucial objective. Low PAPR signals help reduce the power amplifier's linearity requirements, thereby enhancing power efficiency and extending the battery life of mobile devices. Additionally, they minimize signal distortion and improve overall system performance, making communication more reliable and cost-effective. Our proposed solution involves selecting a scrambling mask that results in the lowest PAPR waveform from a set of N masks. This scrambling can be applied to different parts of the signal, such as payload bits, CRC bits, encoded bits, or modulated symbols. By optimizing the waveform characteristics through this method, we can achieve significant improvements in power efficiency and signal quality. Furthermore, we have developed various methods for indicating the scrambling mask ID used in the low PAPR waveform generation. These methods include adding additional bits to the payload, blind de-scrambling by the user equipment (UE), using mapping rules of PSS/SSS sequences, adding additional reference signals, or indicating through DCI/UCI. These indication methods ensure flexibility and compatibility across different communication scenarios, making our solution adaptable and effective in diverse environments.
Aspects of the disclosure provide methods and apparatus for sensing signal configuration and sensing data reporting in an integrated sensing and communication network. According to some embodiments, the method can include sensing signal configuration contents and configuration ways. The method can also include sensing data reporting contents and reporting ways.
Aspects of the disclosure provide methods and apparatus for procedure of sensing operation in idle and inactive mode in an integrated sensing and communication network. The method can include procedure that UE can receive sensing signal and make further processing to calculate sensing results in Idle mode. If need, sensing results can be reported to BS after UE entering into connected mode. UE can receive sensing signal and make further processing to calculate sensing results in inactive mode. If need, sensing results can be reported to BS through SDT (small data transmission) in inactive mode. UE can transmit sensing signal to BS through SDT in inactive mode.
Aspects of the disclosure provide methods and apparatus for procedure and operations of sensing assisted communications. When sensing signal is transmitted, we can use it to assist communication operations. Besides, if configuration of sensing signal is informed to UE, UE can make some processing to reduce the impact on communication.
Aspects of the disclosure provide methods and apparatus for procedure and operations when hybrid sensing signal is used. Compared with single sensing signal, when hybrid sensing signal is used, staged sensing procedure is different. Configurations of multiple sensing signals of different stages shall be jointly adjusted according to the integration of sensing results of all sensing signals.
Aspects of the disclosure provide methods and apparatus for sensing procedure in an integrated sensing and communication network. The method can include sensing procedure on sensing node selection and updating for sensing service continuity. We define the operations of sensing function and sensing nodes, and sensing node switch operations are also proposed. The factors which may impact procedure design are provided.
Techniques pertaining to handling mobility management parameters in new-generation reject cases in mobile communications are described. An apparatus (e.g., a user equipment (UE) ) receives, from a new-generation network, a reject message with a specific reject cause. In response to receiving the reject message, the apparatus performs an operation to handle one or more current-generation or new-generation mobility management parameters.
H04W 8/02 - Traitement de données de mobilité, p. ex. enregistrement d'informations dans un registre de localisation nominal [HLR Home Location Register] ou de visiteurs [VLR Visitor Location Register]Transfert de données de mobilité, p. ex. entre HLR, VLR ou réseaux externes
63.
HANDLING OF VOICE OR EMERGENCY SERVICES IN NEW GENERATION NETWORK
In an aspect of the disclosure, a method, a computer-readable medium, and an apparatus are provided. The apparatus may be a user equipment (UE). The UE receives a network feature support information element from a core network during a procedure. The network feature support information element indicates whether an emergency services fallback to an older generation network is supported for one or more combinations of radio access technology (RAT) and core network. The UE determines whether the emergency services fallback is supported for a current combination of RAT and core network serving the UE based on the network feature support information element. The UE initiates a procedure and transmits a request message to the network for requesting emergency services when emergency services are requested and the emergency services fallback is supported for the current combination.
Solutions for setting Internet Protocol Multimedia Subsystem (IMS) calls are described. A UE may transmit an invite message for an IMS call without SDP to an IMS server. Then, the UE may receive a 180 Ringing message without the SDP from the IMS server. Next, the UE may receive a first 200 OK message for the invite message without the SDP from the IMS server. The UE may transmit an ACK message without the SDP to the IMS server. Furthermore, A UE may receive an invite message for an IMS call without SDP from an IMS server. Then, the UE may send a 180 Ringing message without the SDP to the IMS server. Next, the UE may send a first 200 OK message for the invite message without the SDP to the IMS server. The UE may receive an ACK message without the SDP from the IMS server.
A data processing method includes receiving a read request or a write request with an address of data, checking a value of a counter indicator when a miss of the address is responded by the snoop filter, and snooping at least two of the clusters when the counter indicator presents a first outcome.
G06F 12/0802 - Adressage d’un niveau de mémoire dans lequel l’accès aux données ou aux blocs de données désirés nécessite des moyens d’adressage associatif, p. ex. mémoires cache
66.
METHOD FOR PERFORMING POWER SAVING OPTIMIZATION CONTROL IN WIRELESS COMMUNICATION SYSTEM, AND ASSOCIATED APPARATUS
A method for performing power saving optimization control in a wireless communication system and associated apparatus are provided, where a non-access-point station (non-AP STA) multi-link device (MLD) may be equipped with multi-band capabilities for communicating with at least one other device. For example, the method may include: determining whether the non-AP STA MLD is in connection with the at least one other device in a multi-link operation (MLO) mode; and in response to determining that the non-AP STA MLD is in connection with the at least one other device in the MLO mode, starting executing an application-based power save (application-based PS) procedure to determine a link number of at least one link between the non-AP STA MLD and the at least one other device, for performing power saving by a current user scenario.
Methods and apparatus for video coding using inherited cross-component information propagation or innovative default cross-component candidate. According to the first method, an inherited cross-component prediction candidate is derived by inheriting one or more cross-component model parameters associated with an inheriting neighbouring block. The inherited cross-component prediction candidate is stored and used in a reconstruction process of a neighbouring block in a subsequent picture. According to the second method, a default cross-component prediction candidate is generated by using neighbouring reconstructed first-colour samples and second-colour samples of the current block to derive a cross-component model for the default cross-component prediction candidate, or by using partial model parameters or modifying model parameters associated with an earlier candidate to derive the cross-component model for the default cross-component prediction candidate.
H04N 19/109 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif temporel
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
68.
Method and Apparatus for Adaptive Loop Filter with Fixed Filters for Video Coding
A method and apparatus for video coding using ALF (Adaptive Loop Filter) for the chroma component. According to this method, a first fixed filter process is applied to the current luma block. The first fixed filter process comprises: a) performing first fixed filter classification using luma fixed filter classifiers, b) applying a first fixed filter with luma fixed filter coefficient sets to generate first fixed filter results and c) applying the first fixed filter with first signalled or parsed coefficients to generate a filtered-reconstructed luma block. A second fixed filter process is applied to the current chroma block. The second fixed filter process comprises: d) performing second fixed filter classification, e) applying a second fixed filter with second fixed filter coefficient sets to generate second fixed filter and f) applying the second fixed filter with second signalled or parsed coefficients to generate a filtered-reconstructed chroma block.
H04N 19/117 - Filtres, p. ex. pour le pré-traitement ou le post-traitement
H04N 19/14 - Complexité de l’unité de codage, p. ex. activité ou estimation de présence de contours
H04N 19/172 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant une image, une trame ou un champ
H04N 19/82 - Détails des opérations de filtrage spécialement adaptées à la compression vidéo, p. ex. pour l'interpolation de pixels mettant en œuvre le filtrage dans une boucle de prédiction
69.
PHYSICAL-AWARE DE-RATING METHOD FOR ADVANCED PROCESS LAYOUT EFFECT
The present invention provides a method of designing an integrated circuit, which includes the steps of: performing an APR stage translating the logical netlist into a physical layout on a silicon die; referring to an attacker cell list to determine at least one victim cell according to the physical layout; and performing an STA stage on a file corresponding to the physical layout to generate a timing report, wherein characteristics of the at least one victim cell is adjusted for the STA stage.
G06F 30/392 - Conception de plans ou d’agencements, p. ex. partitionnement ou positionnement
G06F 30/323 - Traduction ou migration, p. ex. logique à logique, traduction de langage descriptif de matériel ou traduction de liste d’interconnections [Netlist]
70.
METHODS AND APPARATUSES FOR SYNCHRONIZATION SIGNAL BLOCK-LESS SECONDARY CELL OPERATIONS IN MOBILE COMMUNICATIONS
Various solutions for synchronization signal block (SSB)-less secondary cell (SCell) operations in carrier aggregation (CA) are described. An apparatus may receive an SCell configuration from a primary cell (PCell). The SCell configuration may indicate an SCell operating without an SSB. The apparatus may also receive a signaling from the PCell. The signaling may indicate an activation of the first SCell. Then, the apparatus may determine a reference cell to provide a timing reference and an automatic gain control (AGC) source for the first SCell.
A variable gain low noise amplifier (LNA) and a method for controlling a gain of the variable gain LNA are provided. The variable gain LNA may include a first transistor, a first degeneration inductor, a second transistor and a second degeneration inductor, wherein the first degeneration inductor is coupled to a source terminal of the first transistor, and the second degeneration inductor is coupled to a source terminal of the second transistor. Gate terminals of the first transistor and the second transistor are configured to receive an input signal. The first transistor and the first degeneration inductor belong to a first branch of the variable gain LNA, and the second transistor and the second degeneration inductor belong to a second branch of the variable gain LNA. More particularly, a gain of the variable gain LNA is determined by controlling whether to turn off the second branch.
H03G 3/30 - Commande automatique dans des amplificateurs comportant des dispositifs semi-conducteurs
H03F 1/02 - Modifications des amplificateurs pour augmenter leur rendement, p. ex. étages classe A à pente glissante, utilisation d'une oscillation auxiliaire
H03F 1/22 - Modifications des amplificateurs pour réduire l'influence défavorable de l'impédance interne des éléments amplificateurs par utilisation de couplage dit "cascode", c.-à-d. étage avec cathode ou émetteur à la masse suivi d'un étage avec grille ou base à la masse respectivement
H03F 3/217 - Amplificateurs de puissance de classe DAmplificateurs à commutation
72.
Methods And Apparatus For Integrated Sensing And Communication Operations In Mobile Communications
Various solutions for integrated sensing and communication (ISAC) operations with respect to an apparatus in mobile communications are described. The apparatus may determine a sensing report including at least one sensing report unit. Each sensing report unit may correspond to at least part of a target. The apparatus may transmit the sensing report to a network node.
H04W 4/38 - Services spécialement adaptés à des environnements, à des situations ou à des fins spécifiques pour la collecte d’informations de capteurs
H04W 68/02 - Dispositions pour augmenter l'efficacité du canal d'avertissement ou de messagerie
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
73.
Methods And Apparatus For Sensing Node Maintenance In Mobile Communications
Various solutions for sensing node maintenance with respect to an apparatus in mobile communications are described. The apparatus may establish a first sensing node set from a second sensing node set. The apparatus may perform at least one sensing operation with the first sensing node set. The apparatus may update the first sensing node set. The apparatus may configure the first sensing node set based on result of updating.
H04L 41/082 - Réglages de configuration caractérisés par les conditions déclenchant un changement de paramètres la condition étant des mises à jour ou des mises à niveau des fonctionnalités réseau
The present invention discloses a slim call setup mechanism for the UE using GEO satellite accessing to the IMS CN. This mechanism encompasses processes for enabling the slim call mechanism, handling MO and MT calls, modifying static media configurations, and deregistering the slim call mechanism. The slim call mechanism primarily removes the redundancy introduced by the SDP offer/answer model, which is typically employed in IMS call setup but often contains repetitive media codec information.
Various solutions for enhancements on signal waveform generation for peak-to-average power ratio (PAPR) reduction are described. A transmitter apparatus may apply a plurality of scrambling masks on a transmission signal to generate a plurality of signal waveforms. The transmitter apparatus may determine a plurality of PAPRs, each corresponding to one of the plurality of signal waveforms, and then select one of the plurality of signal waveforms, that is corresponding to a lowest PAPR among the plurality of PAPRs. The transmitter apparatus may further transmit the selected signal waveform corresponding to the lowest PAPR to a receiver apparatus.
A power management method includes: receiving an input video signal, wherein the input video signal comprises multiple frames; extracting at least one video feature from each of the multiple frames; performing a prediction operation according to the at least one video feature to generate a coarse prediction result, wherein the coarse prediction result is indicative of a value of a required power of the each of the multiple frames; and for the each of the multiple frames, adjusting a frequency of a video decoder according to a refined prediction result to drive the video decoder, wherein the refined prediction result is an error calibrated version of the coarse prediction result.
H04N 19/156 - Disponibilité de ressources en matériel ou en calcul, p. ex. codage basé sur des critères d’économie d’énergie
H04N 19/115 - Sélection de la taille du code pour une unité de codage avant le codage
H04N 19/172 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant une image, une trame ou un champ
H04N 19/503 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre la prédiction temporelle
77.
METHOD FOR TUNING ISP PIPELINE AND APPARATUS THEREOF
An ISP pipeline includes at least a first image processing module and a second image processing module. The method for tuning intermediate parameters in the ISP pipeline includes extracting a first set of intermediate image quality (IQ) features from the first intermediate image, extracting a first set of IQ features from a target image, generating a second set of IQ features according to the first set of IQ features, comparing the second set of IQ features with the first set of intermediate IQ features to generate a comparison result, and tuning a set of intermediate parameters associated with the first image processing module or the second image processing module according to the comparison result.
An image quality enhancing device for a display device is disclosed. The image quality enhancing device includes a mobile chip and a video processing module. The mobile chip has a modem module and a signal receiving module. The signal receiving module is adapted to receive an incoming video stream from an external signal source. The video processing module is communicated with the mobile chip. The video processing module is adapted to perform an image enhancing task on the incoming video stream for generating an enhanced video stream and further to output the enhanced video stream to a display panel of the display device.
A method of automated image quality (IQ) assessment using a deep neural network includes detecting a region of interest (ROI) of an image pair to generate a low-quality ROI image and a high-quality ROI image accordingly. The image pair includes a low-quality image and a high-quality image. The method further includes generating a set of ranking images by applying degradation to the high-quality ROI image, extracting a first feature set from the low-quality ROI image and a feature set from each ranking image in the set of ranking images using the deep neural network, and determining a selected ranking image in the set of ranking images having the feature set corresponding to the first feature set.
G06V 10/25 - Détermination d’une région d’intérêt [ROI] ou d’un volume d’intérêt [VOI]
G06V 10/82 - Dispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique utilisant les réseaux neuronaux
80.
Method for Managing a Cache Memory and a Cache Management System
A method for managing a cache memory is provided. The method includes associating a dataset with a cache maintenance operation (CMO) mode, wherein the CMO mode is a deferred mode. The method further includes storing a deferred CMO hint in a metadata portion of a cache line within the cache memory; storing a dataset identifier in the metadata portion of the cache line to associate the cache line with the dataset; receiving a trigger command associated with the dataset identifier; and performing the deferred CMO on one or more cache lines in the cache memory associated with the dataset identifier based on the trigger command.
G06F 12/0891 - Adressage d’un niveau de mémoire dans lequel l’accès aux données ou aux blocs de données désirés nécessite des moyens d’adressage associatif, p. ex. mémoires cache utilisant des moyens d’effacement, d’invalidation ou de réinitialisation
G06F 12/0871 - Affectation ou gestion d’espace de mémoire cache
G06F 12/126 - Commande de remplacement utilisant des algorithmes de remplacement avec maniement spécial des données, p. ex. priorité des données ou des instructions, erreurs de maniement ou repérage
A rate adaptation method is provided. The rate adaptation method may be applied to an apparatus. The rate adaptation method may include the following steps. A processor of the apparatus may detect a channel utilization (CU) information and a physical (PHY) code information. Then, the processor may perform a rate adaptation according to the CU information and the PHY code information through a neural network model.
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
82.
METHOD AND APPARATUS OF LEARNING AND/OR USING LIFETIME MODEL OF GLOBAL NAVIGATION SATELLITE SYSTEM NAVIGATION MESSAGES
A method of learning a lifetime model of global navigation satellite system (GNSS) navigation messages includes: obtaining GNSS navigation data, and analyzing the GNSS navigation data to learn the lifetime model, wherein the lifetime model includes information indicative of a lifetime behavior of at least one data set of a GNSS navigation message.
G01S 19/48 - Détermination de position en combinant ou en commutant entre les solutions de position dérivées du système de positionnement par satellite à radiophares et les solutions de position dérivées d'un autre système
83.
TRANSFER LEARNING DEVICE AND TRANSFER LEARNING METHOD
A transfer learning device includes a memory and a processor. The memory is configured to store a plurality of commands and framework data. The processor is configured to execute the following steps according to the commands from the memory. The processor sets first model data to enhance network throughput data, energy efficiency data, or both. The processor collects a plurality of training data and triggers the framework data according to the training data. The processor updated the weight data of the first model data based on the framework data. The processor generates second model data by optimizing the first model data based on the weight data of the first model data for current environment data, requirement data, or both. The processor outputs the second model data.
An integrated circuit structure is provided. The integrated circuit structure includes a substrate, a patterned ground shield structure, and a shielded circuit. The patterned ground shield structure is disposed above the substrate. The patterned ground shield structure includes a central portion and branches. The branches are connected to the central portion. The branches substantially extend radially from a central point of the central portion and surround the central portion. The shielded circuit including at least one conductive line is located directly above the patterned ground shield structure.
A method for processing memory commands in a computing system comprises: transmitting, from a coherence hub to a downstream cache subsystem, a plurality of sub-commands, each of the sub-commands corresponding to a cache line size; receiving, at the downstream cache subsystem, at least one of the plurality of sub-commands; in response to receiving the at least one sub-command, determining, by the downstream cache subsystem, a full address range of the data block; and performing, by the downstream cache subsystem, an optimized memory operation directed to a downstream memory subsystem.
G06F 12/0831 - Protocoles de cohérence de mémoire cache à l’aide d’un schéma de bus, p. ex. avec moyen de contrôle ou de surveillance
G06F 12/0871 - Affectation ou gestion d’espace de mémoire cache
G06F 12/126 - Commande de remplacement utilisant des algorithmes de remplacement avec maniement spécial des données, p. ex. priorité des données ou des instructions, erreurs de maniement ou repérage
86.
CSI COMPRESSION BASED ON MULTI-DIMENSIONAL MIMO RF SIGNATURE
Method and user equipment (UE) are provided for CSI compression based on multi-dimensional MIO RF signature. In one novel aspect, the UE receives CSI-RS, estimates a basis matrix and a coefficient matrix of a downlink channel matrix based on the at least one CSI-RS, wherein the basis matrix is an N-dimensional non-orthogonal matrix, with N greater than two, and the coefficient matrix is a linear combination coefficient matrix for the basis matrix, and transmits to the network at least one feedback comprising feeding back the basis matrix in a first periodicity and feeding back the coefficient matrix in a second periodicity. In one embodiment, the UE compresses the basis matrix and the coefficient matrix to a feedback basis matrix and a feedback coefficient matrix before transmitting.
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
87.
CHANNEL STATE INFORMATION REFERENCE SIGNAL CONFIGURATION FOR HIGH VELOCITY
A method of providing channel state information (CSI) reference signal (RS) configuration is proposed to support high velocity in new radio (NR) systems. A CSI-RS resource can be configured with a bursty period in which the same CSI-RS resource is repeatedly transmitted over time. Any two repetitions of the CSI-RS resource are not overlapped in time. For periodic and semi-persistent CSI-RS, the repetitions of CSI-RS in the bursty period can be signalled by radio resource control (RRC) signaling. For aperiodic CSI-RS, the CSI-RS repetitions in the bursty period can be indicated by the triggering downlink control information (DCI). UE can acquire Doppler-domain information based on the CSI-RS repetition to facilitate high velocity scenarios in 5G NR systems.
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
H04L 1/08 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue par émission répétée, p. ex. système Verdan
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
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
88.
METHOD AND ELECTRONIC DEVICE FOR OVERLAPPING A PLURALITY OF IMAGE LAYERS
A method of overlapping a plurality of image layers is provided. The image layers are received from an application. Processing information is collected. The processing information includes a first image format of an overlapped image output by a graphics processor and a dirty region of the image layers. It is determined whether to enable the local refresh function of the graphics processor. An overlay process to be used for the image layers is set when it is determined to enable the local refresh function of the graphics processor. The first image format of the overlapped image is changed to a second image format. The data size of the second image format is less than that of the first image format. The overlay process is performed on the image layers to output the overlapped image with the second image format. The dirty region of the overlapped image is refreshed.
In communication system, the process of random-access is critical for initiating communication, as it allows the UE to signal its presence to the network, receive timing and frequency adjustments, and secure a communication channel. Here we outline issues to ensure quick and reliable network entry, reducing latency and improving overall user experience. The uplink link budget is also not particularly favorable due to significant path loss and limited UE power. To further improve the uplink link budget, based on the link budget formula: CNR = TX EIRP + G/T -K -PL -10*LOG10 (BW), we can consider enhancing the uplink SNR by Bandwidth reduction. In 6G, new preamble formats can be considered corresponding to even lower bandwidths. By adopting new preamble formats with lower bandwidths, the uplink CNR can be further improved, leading to better communication performance and reliability in 6G NTN scenarios. 6G proposes two new preamble formats with different mapping methods: NF0-NF8: The frequency domain resource occupation depends on the subcarrier spacing (SCS) and the preamble sequence length. The time domain occupation is flexible and can span multiple slots, depending on the network configuration. NT0-NT12: The preamble occupies one subcarrier in the frequency domain. The time domain occupation is also flexible and can span multiple slots, depending on the network configuration.
Aspects of the disclosure provide a procedure to reduce data interruption during cell change, including handover, cell switch, and PSCell change. UE performs the parts of L1/L2/L3 processing, which will cause interruption on source cell, including L2 and/or L3 reconfiguration, and/or RF retuning, and/or baseband retuning, etc, just before PRACH occasion on the target cell or just before/after RS occasion for DL synchronization. When RF retuning is needed for DL synchronization, a preconfigured measurement gap can activated by the handover command or predefined condition or measurement report or UE uses an autonomous measurement gap.
An execution in parallel method for a graphic processing unit includes providing a plurality of threads, enabling a first program counter, and the first program counter running a first program on the plurality of threads. When receiving a fork instruction, enable a second program counter, and if a first active mask of the fork instruction is set as a pass mask, and a second active mask is set as a fail mask, the first program counter activates a first set of threads corresponding to the pass mask. When the first set of threads is blocked, the second program counter activates a second set of threads corresponding to the fail mask. When the second set of threads is blocked, the first program counter activates the first set of threads. When receiving a join instruction, disable the second program counter, and the first program counter activates the plurality of threads.
A power control method includes measuring an internal resistance of a battery of the system, measuring a maximum boot-up current of the system, generating a voltage drop according to the internal resistance and the maximum boot-up current, generating a minimum boot-up voltage according to a predetermined voltage and the voltage drop, and performing a boot-up process using a setting with the minimum boot-up voltage where the battery is charged to at least the minimum boot-up voltage in the boot-up process.
A method for performing code reviewing with aid of an AI model includes: receiving multiple codes to be reviewed; according to a specific database related to the multiple codes, guiding the AI model to review each code among the multiple codes to generate a reviewing result; outputting the reviewing result to a user interface; receiving feedback information regarding the reviewing result from the user interface; and according to the feedback information, guiding the AI model to perform a reflection operation.
A method and apparatus for video coding using inherited cross-component models with history table design. According to the method, a prediction candidate list comprising one or more inherited cross-component prediction candidates from a cross-component model history table is determined, the inherited cross-component prediction candidates are inserted into the prediction candidate list according to a pre-defined order or the table is reset at particular position. A target model parameter set associated with a target inherited prediction model is determined based on an inherited model parameter set associated with the target inherited prediction model selected from the prediction candidate list. The second-colour block is encoded or decoded using prediction data comprising cross-colour prediction generated by applying the target inherited prediction model with the target model parameter set to reconstructed first-colour block. In another method, multiple cross-component model history tables are used.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/107 - Sélection du mode de codage ou du mode de prédiction entre codage prédictif spatial et temporel, p. ex. rafraîchissement d’image
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
95.
Method and Apparatus of Inheriting Cross-Component Models with Availability Constraints in Video Coding System
A method and apparatus for video coding using inherited cross-component models. According to the method, a non-adjacent cross-component prediction candidate is derived, where cross-component model information associated with the non-adjacent cross-component prediction candidate is derived based on target cross-component model information associated with one or more non-adjacent spatial positions in an unconstrained region comprising a current CTU (Coding Tree Unit) of the current block, and the unconstrained region is limited to be within one or more pre-defined distances in a vertical direction, a horizontal direction or both from the current CTU. A merge candidate list comprising the non-adjacent cross-component prediction candidate is generated. The current block is encoded or decoded using coding information comprising the merge candidate list.
H04N 19/105 - Sélection de l’unité de référence pour la prédiction dans un mode de codage ou de prédiction choisi, p. ex. choix adaptatif de la position et du nombre de pixels utilisés pour la prédiction
H04N 19/159 - Type de prédiction, p. ex. prédiction intra-trame, inter-trame ou de trame bidirectionnelle
H04N 19/186 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une couleur ou une composante de chrominance
A bias voltage generator comprises a first bias voltage generating circuit and a second bias voltage generating circuit. Wherein the first bias voltage generating circuit comprises: a first bias circuit, comprising a first transistor and a first current source connected in cascode between a first supply voltage and a ground voltage; and a first amplifier circuit, configured for generating a first bias voltage according to an input common mode voltage and a first feedback voltage from the first transistor, and wherein the second bias voltage generating circuit comprises: a second bias circuit, comprising a second transistor and a second current source connected in cascode between a first supply voltage and a ground voltage; and a second amplifier circuit, configured for generating a second bias voltage according to the input common mode voltage and a second feedback voltage from the second transistor.
An electronic device is provided. The electronic device includes a memory and a compression engine. The compression engine is configured to reclaim pages of the memory. The compression engine receives a plurality of reclaim requests corresponding to a plurality of reclaim queues. The plurality of reclaim requests are assigned to the plurality of queues based on types of the plurality of reclaim requests.
A semiconductor package is provided. The semiconductor package includes a glass carrier, a redistribution layer (RDL) structure, a first die, a molding compound and a plurality of conductive ball structures. The RDL structure is directly disposed on a first surface of the glass carrier. The first die is mounted on the RDL structure. The molding compound is disposed on the RDL structure and surrounding the first die. The plurality of conductive ball structures is disposed on a second surface of the glass carrier. The second surface is opposite the first surface.
H10B 80/00 - Ensembles de plusieurs dispositifs comprenant au moins un dispositif de mémoire couvert par la présente sous-classe
H10D 80/30 - Ensembles de plusieurs dispositifs comprenant au moins un dispositif couvert par la présente sous-classe l’au moins un dispositif étant couvert par les groupes , p. ex. des ensembles comprenant des puces de processeur à circuit intégré
The present invention provides a wireless communication method, which includes the steps of: establishing a link with another device; and transmitting a Bluetooth packet to the another device, wherein the Bluetooth packet includes a preamble, a control header and a payload, and a bandwidth used for transmitting the preamble and the control header is different from a bandwidth used for transmitting the payload.
H04L 69/22 - Analyse syntaxique ou évaluation d’en-têtes
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
H04L 69/322 - Protocoles de communication intra-couche entre entités paires ou définitions d'unité de données de protocole [PDU]
100.
METHOD AND APPARATUS FOR TRIGGERING WI-FI NON-PRIMARY CHANNEL ACCESS MECHANISM ACCORDING TO TIMING PROFILE OF SCHEDULED TRAFFIC OF NON-WI-FI WIRELESS COMMUNICATION DEVICE
A Wi-Fi device includes a wireless interface circuit and a control circuit. The control circuit receives a timing profile of scheduled traffic of a non-Wi-Fi wireless communication device, and refers to the timing profile to instruct the wireless interface circuit to transmit at least one frame for triggering a non-primary channel access (NPCA) mechanism between the Wi-Fi device and another Wi-Fi device.