The present invention provides a base station device having one or more APs, wherein: the one or more APs are affiliated with a first AP MLD; a first seamless mobility domain (SMD) is configured from a plurality of AP MLDs including the first AP MLD; a second SMD is configured from a plurality of AP MLDs not including the first AP MLD; the first SMD and the second SMD are part of the same mobility domain; each of the APs affiliated with the AP MLDs belonging to each of the first SMD and the second SMD includes a processing unit that uses a mobility domain element (MDE) to report that the AP is included in a group of APs constituting the mobility domain; and all of the APs affiliated with the AP MLDs belonging to each of the first SMD and the second SMD report the same MDE.
A non-access point (non-AP) station (STA) apparatus according to an aspect of the present invention is a STA apparatus for communicating with access point (AP) apparatus, the STA apparatus comprises: a receiver circuitry, configured to receive trigger frame from the AP apparatus, wherein the trigger frame comprises distributed resource unit (DRU) signaling information instructing the STA apparatus to perform the DRU transmission; and a processing circuitry, configured to interpret the DRU signaling information as an instruction to perform a regular resource unit (RRU) transmission.
The present invention defines a method for realizing a store-and-forward satellite operation, and defines the detailed behavior of UE, and/or a satellite, and/or a network. The present invention provides a technique for a UE, which is capable of communicating via a satellite, to execute management of a store and forward (S & F) mode and/or appropriate processing of UE behavior during the S & F mode in order for each device to appropriately support an S & F satellite operation provided by a satellite that has lost connection to the ground and/or a device mounted on the satellite.
Provided in the present invention are a method executed by a user equipment (UE), and a UE. The method comprises: determining that there is at least one first triggered BMR; when a currently activated third BWP is configured with a beam reporting mode A, executing, on a pre-configured PUCCH and according to the beam reporting mode A, a PUCCH transmission for sending BMR resource request information, and when the currently activated third BWP is configured with a beam reporting mode B, executing, on the pre-configured PUCCH and according to the beam reporting mode B, a PUCCH transmission for sending BMR notification information; in a state in which the sending of the first triggered BMR is not completed after the PUCCH transmission is executed, executing switching from the third BWP to a fourth BWP; and re-triggering the first triggered BMR according to the beam reporting mode A or beam reporting mode B that is configured on the fourth BWP after switching, or considering that the first triggered BMR is re-triggered.
The present invention comprises: a substrate (10); a circuit layer (20) which is provided on the substrate (10); a light-emitting element layer which is provided on the circuit layer (20); and a sealing film (45a) which is provided on the light-emitting element layer and in which an organic sealing film (42) having a flat surface in the display region and a first inorganic sealing film (43) are laminated in this order. In a frame region (F) around the display region, at a peripheral end portion of the organic sealing film (42), a first inclined portion (Ga) having an inclined surface at less than 45° with respect to a surface of the substrate (10) and a second inclined portion (Gb) having an inclined surface at not less than 45° with respect to the surface of the substrate (10) are provided in this order from the outer side.
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H05B 33/22 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition des couches auxiliaires diélectriques ou réfléchissantes
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A first access point device transmits a first frame and a second frame, and receives a third frame. The first frame indicates the start of a sounding procedure that includes one or more sounding sequences. The second frame starts the sounding sequence and includes information indicating an access point device other than the first access point device. The third frame is a response frame to the first frame.
H04W 16/28 - Structures des cellules utilisant l'orientation du faisceau
H04W 28/16 - Gestion centrale des ressourcesNégociation de ressources ou de paramètres de communication, p. ex. négociation de la bande passante ou de la qualité de service [QoS Quality of Service]
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
H04W 92/20 - Interfaces entre des dispositifs hiérarchiquement similaires entre des points d'accès
7.
SYSTEMS AND METHODS FOR DERIVING PARAMETERS FOR NON-LINEAR TRANSFORM NORMALIZATION TECHNIQUES IN VIDEO CODING
A device may be configured to receive a bitstream. The device may decode the bitstream according to a video coding technique. The device may reconstruct feature data from the decoded bitstream. The device may determine a normalization technique from one or more normalization techniques. The device may perform the normalization technique on reconstructed feature data to generate feature data for input into a neural network. Normalizations techniques may include a combination of a linear normalization techniques, scaling down normalization techniques, and logarithmic normalization techniques. In one example, a normalization technique may include a transform based normalization technique. In one example, parameters of a transform based normalization technique may be selected using a regressive residual network.
H04N 19/90 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant des techniques de codage non prévues dans les groupes , p. ex. les fractales
An assistance system (60) comprises: a storage unit (61) that stores installation information indicating an installation location of equipment in a target range and a visual feature of the equipment; an acquisition unit (62) that acquires a captured image of a camera that images the target range; a processing unit (63) that detects an object from the captured image and selects, as equipment that is installed at the installation location, an object having the correspondence relationship with the stored visual feature of the equipment; and a display control unit (64) that outputs, to a projector, a video signal for projecting, on the selected equipment, a guide display indicating the installation location at which the equipment is installed.
G09G 5/00 - Dispositions ou circuits de commande de l'affichage communs à l'affichage utilisant des tubes à rayons cathodiques et à l'affichage utilisant d'autres moyens de visualisation
9.
USER EQUIPMENTS, BASE STATIONS, AND COMMUNICATION METHODS
A method performed by a user equipment (UE) is described. The method includes receiving, from a base station, a first CSI report configuration and a second CSI report configuration, the first CSI report configuration configuring a first reference signal (RS) resource set and a third RS resource set, the second CSI report configuration configuring a second RS resource set; and determining resource mapping(s) between first CSI-RS resources of the first RS resource set and second CSI-RS resources of the second RS resource set, wherein the first RS resource set is configured for beam prediction, the second RS resource set is configured for channel measurement, the third RS resource set is configured for channel measurement, and the resource mapping(s) is determined based on a radio resource control (RRC) parameter included in the second CSI report configuration.
H04W 24/10 - Planification des comptes-rendus de mesures
H04W 16/28 - Structures des cellules utilisant l'orientation du faisceau
H04W 24/02 - Dispositions pour optimiser l'état de fonctionnement
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
10.
LIGHT-EMITTING ELEMENT, DISPLAY DEVICE, AND PRODUCTION METHOD FOR LIGHT-EMITTING ELEMENT
A light-emitting element (1) comprises: a light-emitting layer (13); an upper functional layer (14) that is positioned higher than the light-emitting layer (13); a lower functional layer (12) that is positioned lower than the light-emitting layer (13); and a resist (RE) that covers the side surfaces of the light-emitting layer (13). The lowest conductivity from among the conductivity of the light-emitting layer (13), the conductivity of the upper functional layer (14), and the conductivity of the lower functional layer (12) is referred to as the target conductivity. The conductivity of the resist (RE) is lower than said target conductivity.
H10K 50/86 - Dispositions pour améliorer le contraste, p. ex. en empêchant la réflexion de la lumière ambiante
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 50/858 - Dispositifs pour extraire la lumière des dispositifs comprenant des moyens de réfraction, p. ex. des lentilles
H10K 71/20 - Modification de la forme de la couche active dans les dispositifs, p. ex. mise en forme
H10K 71/40 - Traitement thermique, p. ex. recuit en présence d'une vapeur de solvant
H10K 101/40 - Interrelation des paramètres entre plusieurs couches ou sous-couches actives constitutives, p. ex. valeurs HOMO dans des couches adjacentes
11.
IMAGE PROJECTION DEVICE, IMAGE PROJECTION METHOD, AND IMAGE PROJECTION SYSTEM
This image projection device comprises: a projection unit that projects image light onto a projection target object to project an image; a lens capable of changing a size of a projection area onto which the image light is projected; and a switching unit that switches a mode of the lens between a telephoto end and a wide-angle end. When a vehicle is not positioned at a platform, the projection unit projects a first image in a state in which the switching unit has set the mode to the telephoto end, and when the vehicle enters the platform, the projection unit stops projection of the first image. When the vehicle is positioned at the platform, the projection unit projects the first image or a second image different from the first image in a state in which the switching unit has set the mode to the wide-angle end.
This parking guidance system (60) comprises: a camera (61) that captures an image of a target range including a parking area; a projector (62) that projects the image onto the target range; and a control device (63) that, on the basis of the captured image captured by the camera (61), detects a vehicle to be guided, determines a parking position at which the vehicle to be guided is to be parked in the parking area on the basis of a parking status of the parking area and the type of the vehicle to be guided, and outputs, to the projector (62), a video signal for projecting the image onto the determined parking position.
A device may be configured to decode video data based on information included in a film grain characteristics information message. In one example, film grain characteristics information message includes syntax elements indicating information regarding spatial resolution. In one example, a syntax element indicates a width of a picture in luma samples that parameters in the film grain characteristics information message apply to. In one example, a syntax element indicates a height of the picture in luma samples that the parameters in the film grain characteristics information message apply to.
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.
PROCESSING DEVICE, CONTROL METHOD, PROGRAM, TERMINAL DEVICE, AND DISPLAY DEVICE
This processing device comprises: a control unit that generates an image of an avatar corresponding to a character and a response sentence; and a user information input unit that acquires information relating to a user. The control unit estimates a user attribute on the basis of an input from the user information input unit, and controls the avatar on the basis of the estimated user attribute or a user language. Thus, provided is a processing device that displays an avatar or the like corresponding to the determined attribute of the user.
This processing device comprises: a display control unit that performs control to display, on a display screen, an avatar corresponding to a character; and a control unit that changes the display state of the avatar when a response sentence corresponding to an input sentence is not output. Thus, a processing device, which makes it possible to appropriately display an avatar that makes the malfunction of a system clear to a user, can be provided.
H04N 21/234 - Traitement de flux vidéo élémentaires, p. ex. raccordement de flux vidéo ou transformation de graphes de scènes du flux vidéo codé
G06F 3/0481 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] fondées sur des propriétés spécifiques de l’objet d’interaction affiché ou sur un environnement basé sur les métaphores, p. ex. interaction avec des éléments du bureau telles les fenêtres ou les icônes, ou avec l’aide d’un curseur changeant de comportement ou d’aspect
G09G 5/00 - Dispositions ou circuits de commande de l'affichage communs à l'affichage utilisant des tubes à rayons cathodiques et à l'affichage utilisant d'autres moyens de visualisation
H04N 5/92 - Transformation du signal de télévision pour l'enregistrement, p. ex. modulation, changement de fréquenceTransformation inverse pour le surjeu
H04N 5/93 - Régénération du signal de télévision ou de parties sélectionnées de celui-ci
H04N 21/24 - Surveillance de procédés ou de ressources, p. ex. surveillance de la charge du serveur, de la bande passante disponible ou des requêtes effectuées sur la voie montante
16.
METHOD EXECUTED BY USER EQUIPMENT, AND USER EQUIPMENT
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method executed by a user equipment comprises: receiving, from a base station, a configuration of a delay status report for logical channel groups (LCGs); in the case that a DSR trigger condition is satisfied and/or one or more reporting time thresholds are configured for at least one LCG in the configuration, determining a reporting time threshold associated with a PDCP control PDU, a PDCP SDU or PDCP data PDU identified as requiring retransmission, an RLC control PDU and/or an RLC data PDU awaiting retransmission, and a remaining time corresponding to the reporting time threshold; and sending a delay status report medium access control control element (DSR MAC CE) to the base station, the DSR MAC CE carrying an uplink data volume of a delay report corresponding to each reporting time threshold for each LCG.
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
According to the present invention, first configuration information of a PRACH resource and second configuration information of the PRACH resource are received, the PRACH resource being indicated to be usable by a DCI format. When information indicating that the PRACH resource is usable is detected in the DCI format with a C-RNTI, the PRACH resource that becomes usable is determined on the basis of the first configuration information, and when information indicating that the PRACH resource is usable is detected in the DCI format with a P-RNTI, the PRACH resource that becomes usable is determined on the basis of the second configuration information.
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
This base station device has one or more APs. The base station device comprises a transmission unit that transmits a frame including a first parameter to a terminal device, and a processing unit that uses an SMD (Seamless Mobility Domain) BSS transition. The one or more APs belong to a current AP MLD. The terminal device has one or more non-AP STAs. The one or more non-AP STAs belong to a non-AP MLD. The non-AP MLD uses the SMD BSS transition for transitioning from the current AP MLD to a target AP MLD in the SMD. The current AP MLD deletes all links of the current AP MLD at the end of a period indicated by a value of the first parameter.
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
H04W 36/28 - La resélection étant déclenchée par des paramètres spécifiques par des paramètres de communication agréés ou négociés impliquant une pluralité de liaisons, p. ex. des liaisons multi-appels ou multi-porteuses
H04W 72/23 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal
H04W 76/15 - Établissement de connexions à liens multiples sans fil
H04W 76/38 - Libération de la connexion déclenchée par une temporisation
19.
TERMINAL DEVICE, BASE STATION DEVICE, AND COMMUNICATION METHOD
This terminal device includes one or more Non AP STAs belonging to a Non AP MLD, and comprises a reception unit that receives a frame which includes a BSS Max Idle Period element. The BSS Max Idle Period element includes a Max Idle Period field. The Max Idle Period field is an unsigned integer which includes a value of BSSMaxIdlePeriod. The BSSMaxIdlePeriod indicates a time period. In order to avoid disassociation due to an SMD-ME not receiving a frame, the terminal device transmits a Frame to the associated SMD-ME within the time period indicated by the Max Idle Period field.
H04W 76/38 - Libération de la connexion déclenchée par une temporisation
H04W 28/06 - Optimisation, p. ex. compression de l'en-tête, calibrage des informations
H04W 72/23 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal
H04W 76/15 - Établissement de connexions à liens multiples sans fil
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
20.
BASE STATION DEVICE, TERMINAL DEVICE, AND COMMUNICATION METHOD
This base station device includes a reception unit for receiving a first frame from an AP, and determines bandwidth information of the AP from the first frame. The bandwidth information is BSS bandwidth or a center frequency of the BSS bandwidth.
Provided is an information processing system capable of incorporating information pertaining to image analysis using OCR into a conversation with a user while reducing the possibility that a conversation response to the user will deteriorate. The information processing system to which a language model responds in response to a request comprises an image analysis unit that analyzes an image including character information; and an image response request generation unit that generates an image response request for requesting the language model to generate a response on the basis of information pertaining to the image analysis by the image analysis unit.
This processing device comprises: a display control unit that controls display of a display screen on which an avatar corresponding to a character can be displayed; an acquisition unit that acquires a response sentence; and a control unit that, when the response sentence is acquired, generates a predictive action of the avatar and displays, on the display screen, a predictive display based on the predictive action. Accordingly, for example, it is possible to provide a processing device that enables a user to interact with the device without causing discomfort.
G09G 5/00 - Dispositions ou circuits de commande de l'affichage communs à l'affichage utilisant des tubes à rayons cathodiques et à l'affichage utilisant d'autres moyens de visualisation
G09G 5/22 - Dispositions ou circuits de commande de l'affichage communs à l'affichage utilisant des tubes à rayons cathodiques et à l'affichage utilisant d'autres moyens de visualisation caractérisés par l'affichage de caractères ou de signes individuels en utilisant des signaux de commande d'affichage dérivés de signaux codés représentant les caractères ou les signes avec une mémoire de codes de caractères
23.
PROCESSING DEVICE, DISPLAY METHOD, PROGRAM, TERMINAL DEVICE, AND DISPLAY DEVICE
The present invention comprises: a content display control unit that controls the display of content; a determination unit that, when the content is being displayed, determines the propriety of displaying an avatar; and a control unit that controls the display of the avatar in accordance with the determination results of the determination unit. Due to this configuration, it is possible, for example, to provide a processing device or the like capable of controlling the timing of the display of the avatar so as to be a timing desired by the user.
H04N 21/431 - Génération d'interfaces visuellesRendu de contenu ou données additionnelles
G06F 3/0481 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] fondées sur des propriétés spécifiques de l’objet d’interaction affiché ou sur un environnement basé sur les métaphores, p. ex. interaction avec des éléments du bureau telles les fenêtres ou les icônes, ou avec l’aide d’un curseur changeant de comportement ou d’aspect
24.
PROCESSING DEVICE, PROCESSING METHOD, PROGRAM, TERMINAL DEVICE, AND DISPLAY DEVICE
This processing device comprises: a control unit that outputs a response sentence corresponding to content by an avatar corresponding to a virtual figure for each divided partial character string; and a display control unit that displays an image of the avatar for each partial character string. Thus, the delay of movement of the avatar is suppressed.
H04N 21/44 - Traitement de flux élémentaires vidéo, p. ex. raccordement d'un clip vidéo récupéré d'un stockage local avec un flux vidéo en entrée ou rendu de scènes selon des graphes de scène du flux vidéo codé
G06T 13/40 - Animation tridimensionnelle [3D] de personnages, p. ex. d’êtres humains, d’animaux ou d’êtres virtuels
H04N 21/435 - Traitement de données additionnelles, p. ex. décryptage de données additionnelles ou reconstruction de logiciel à partir de modules extraits du flux de transport
25.
INFORMATION PROCESSING DEVICE, DISPLAY METHOD, PROGRAM, TERMINAL DEVICE, AND DISPLAY DEVICE
This information processing device comprises: an imaging control unit that controls an imaging unit which images a subject; and a display control unit that performs control to display an avatar corresponding to a character on a display unit. The display control unit performs control to display a sub-avatar in association with the avatar when the imaging unit is enabled. Thus, a user can be appropriately notified of the state of sensing by the device.
H04N 21/431 - Génération d'interfaces visuellesRendu de contenu ou données additionnelles
G06F 3/0481 - Techniques d’interaction fondées sur les interfaces utilisateur graphiques [GUI] fondées sur des propriétés spécifiques de l’objet d’interaction affiché ou sur un environnement basé sur les métaphores, p. ex. interaction avec des éléments du bureau telles les fenêtres ou les icônes, ou avec l’aide d’un curseur changeant de comportement ou d’aspect
The present invention implements a conversation system that makes it possible for some of conversation participants to perform confidential utterances. A conversation system (210) is provided with a conversation task control unit (2) that launches a task of a first conversation in which a plurality of users participate. The conversation task control unit (2) launches, on the basis of an instruction or utterance content of at least one user X included in a first user group participating in the first conversation, a task of a second conversation in which a second user group comprising at least one user including the user X participates.
A display device (100) comprises: a first light-emitting element (1-1) which has a first light-emitting layer (13-1) that contains first quantum dots (Q1); a second light-emitting element (1-2) which has a second light-emitting layer (13-2) that contains second quantum dots (Q2); and a charge functional layer (for example, an anode-side charge functional layer (12)) which is shared by the first light-emitting element (1-1) and the second light-emitting element (1-2). The core material of the first quantum dots (Q1) is the same as the core material of the second quantum dots (Q2). The number of shell layers of the first quantum dots (Q1) is greater than the number of shell layers of the second quantum dots (Q2). A first shell (SH1) of the first quantum dots (Q1) and a third shell (SH3) of the second quantum dots (Q2) each contain a metal element and a first group 16 element. A second shell (SH2) of the first quantum dots (Q1) contains the metal element and a second group 16 element that is different from the first group 16 element.
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H05B 33/22 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition des couches auxiliaires diélectriques ou réfléchissantes
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A display device (1) comprises: a substrate (2); a plurality of light-emitting elements (10R, 10G, 10B) each formed by laminating, on the substrate (2), a lower electrode (5), a functional layer (FCR, FCG, FCB) including a light-emitting layer (REM, GEM, BEM), and an upper electrode (8) in this order from the substrate (2) side; a first passivation film (12) that is disposed so as to cover at least the upper electrodes (8) of the respective light-emitting elements (10R, 10G, 10B) and that has first contact holes (12C1-12C6) disposed at positions overlapping the upper electrodes (8) in plan view; and a conductive layer (13) that electrically connects the upper electrodes (8) via the first contact holes (12C1-12C6).
This light-emitting element (1) comprises, in the following order, a first transparent electrode (2), a light-emitting layer (3), a second transparent electrode (4), and a reflective layer (5) that reflects light which is emitted from the light-emitting layer (3) and transmitted through the second transparent electrode (4). The first transparent electrode (2) and the second transparent electrode (4) apply a voltage to the light-emitting layer (3), and the light-emitting layer (3) emits light in which the full width at half maximum of the emission spectrum is 50 nm or less.
H10K 50/852 - Dispositifs pour extraire la lumière des dispositifs comprenant une structure de cavité résonante, p. ex. une paire de réflecteurs de Bragg
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 50/828 - Cathodes transparentes, p. ex. comprenant des couches métalliques minces
The present invention comprises: a base substrate (10); a TFT layer (20) provided on the base substrate (10); a light-emitting element layer (40a) provided on the TFT layer (20) and including a plurality of first electrodes (32), a common first charge transport layer (34), a plurality of light-emitting layers (35a), a common second charge transport layer (36), and a common second electrode (37) stacked in order, the plurality of first electrodes (32) and the plurality of light-emitting layers (35a) corresponding to a plurality of sub-pixels forming a display region (D); and a sealing film (45) provided on the light-emitting element layer (40a). In at least one sub-pixel among the plurality of sub-pixels, a base layer (31) on which the corresponding first electrode (32) is placed is provided on the TFT layer (20) side of the first electrode (32).
H10K 59/124 - Couches isolantes formées entre les éléments TFT et les éléments OLED
H05B 33/10 - Appareils ou procédés spécialement adaptés à la fabrication des sources lumineuses électroluminescentes
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H05B 33/22 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition des couches auxiliaires diélectriques ou réfléchissantes
H05B 33/26 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition ou la disposition du matériau conducteur utilisé comme électrode
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
The present disclosure proposes an antenna module that enables a broadening of frequency range. An antenna module according to the present disclosure comprises: a first dielectric layer that has a first main surface and a second main surface which is on the opposite side from the first main surface; a first patch that is disposed on the first main surface and that is electrically connected to a power feed port; a ground that is disposed on the second main surface; a second dielectric layer that is disposed on the first main surface with the first patch therebetween, and that has a third main surface which contacts the first patch and a fourth main surface which is on the opposite side from the third main surface; and second patches that are disposed on the fourth main surface of the second dielectric layer. The second patches include a plurality of first parasitic patches which are disposed on the fourth main surface and a plurality of second parasitic patches which are disposed with the plurality of first parasitic patches therebetween. Two first parasitic patches are disposed between two second parasitic patches that are disposed opposite each other. A slit is provided between the two first parasitic patches.
The purpose of the present invention is to provide a temple pad which is detachable from a glasses-type terminal and improves wearability. The temple pad comprises: a first portion that rests on the ears of a wearer of a cross-reality terminal; a second portion that presses a portion of the head of the wearer behind the ears; and a coupling portion that is connected to the first portion and the second portion and is coupled to the temples of the cross-reality terminal.
According to the present invention, a response to input time-series content is generated more quickly than in the past. An information processing device (1) comprises: an explanatory text generating unit (10) that acquires first time-series content (CNT1) and generates first explanatory text data (EXT1) relating to the first time-series content (CNT1) discretely on a time axis; and a response generating unit (30) that generates a first response (RES1) relating to the first explanatory text data (EXT1) in response to a first request (REQ1).
This nose pad comprises: a nose pad placed in contact with a nose; a fixed part to be fixed to a body of a cross reality terminal; and a plastically deformable wire provided with a first portion to which the nose pad is fixed, a second portion to which the fixed part is fixed, and a third portion between the first portion and the second portion.
G02C 5/12 - Patins reposant sur le nezSurfaces des pontets ou bordures prenant appui sur le nez
H04N 5/64 - Détails de structure des récepteurs, p. ex. ébénisterie ou housses
35.
INTERNET OF THINGS NON-TERRESTRIAL NETWORK TIME DIVISION DUPLEX SYNCHRONIZATION SIGNAL POSITIONS IN AN INTERNET OF THINGS NON-TERRESTRIAL NETWORK DOWNLINK TIMESLOT
An internet of things (IoT) non-terrestrial network (NTN) device user equipment (UE) is described. The UE includes receiving circuitry configured to receive synchronization signals in an IoT NTN downlink (DL) timeslot and to determine a relative location of at least one synchronization signal within the IoT NTN DL timeslot.
This terminal apparatus that communicates with a network in a first cell comprises: a reception unit that receives first information and second information; and a processing unit. The processing unit determines whether the first information includes a first identifier that is associated with the first cell, determines whether the second information includes a second identifier that is associated with a second cell, and starts an MCCH acquisition procedure on the basis of the following determination when switching from the first cell to the second cell. *The first identifier that is associated with the first cell is included in the first information, the second identifier that is associated with the second cell is included in the second information, and said two identifiers are different. *An identifier that is associated with a cell is not included in at least one of the first information and the second information.
H04W 36/00 - Dispositions pour le transfert ou la resélection
H04W 4/06 - Répartition sélective de services de diffusion, p. ex. service de diffusion/multidiffusion multimédiaServices à des groupes d’utilisateursServices d’appel sélectif unidirectionnel
This terminal device for communicating with a base station device receives RRC signaling, sets the value of a first identifier included in a UE variable, executes cell switching for a cell associated with one LTM candidate information element, and releases one or more conditional LTM execution condition information elements on the basis of a determination that the value of a second identifier included in one of the LTM candidate information elements is different from the value of the first identifier in the UE variable.
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
38.
TERMINAL DEVICE, BASE STATION DEVICE, AND COMMUNICATION METHOD
This terminal device communicates with a base station device, and comprises: an upper layer processing unit that receives a CSI report configuration including a reportQantity-r19; a processing unit that determines the number of CPUs for calculating or processing a CSI report using a CSI-RS corresponding to the CSI report configuration; and a transmission unit that transmits the CSI report. The reportQantity-r19 is configured to a parameter indicating that a predicted CRI is included in CSI, and the predicted CRI indicates an index of a CSI-RS resource. When a parameter related to the number of time intervals associated with the predicted CRI is not configured in the CSI report configuration, the number of CPUs is a first value, and when the parameter related to the number of time intervals associated with the predicted CRI is configured in the CSI report configuration, the number of CPUs is a second value. The CSI report includes the predicted CRI.
Provided is a method for a user equipment (UE) capable of communicating via satellite to execute appropriate processing of a list indicating satellite identifiers for store and forward (S&F) satellite operations provided by a satellite and/or a device mounted on the satellite that has lost connectivity to the ground, in order for each device to appropriately support the S&F satellite operations.
H04W 48/10 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant des informations radiodiffusées
H04W 48/16 - ExplorationTraitement d'informations sur les restrictions d'accès ou les accès
H04W 60/00 - Rattachement à un réseau, p. ex. enregistrementSuppression du rattachement à un réseau, p. ex. annulation de l'enregistrement
Provided is a method for a UE (User Equipment) capable of communicating via satellite to execute appropriate processing of a list indicating satellite identifiers for store and forward (S&F) satellite operations provided by a satellite and/or a device mounted on the satellite that has lost connectivity to the ground, in order for each device to appropriately support the S&F satellite operations.
The present invention provides a method for, when an end-to-end QoS value included in a UE policy and used in communication path establishment or communication for ProSe multi-hop communication is insufficient, etc., transmitting/receiving various kinds of information necessary for communication between UEs that constitute the communication path or communication with a network, and a control message including the information, and causing each UE or the network to perform behavior or processing based on the message.
A wireless terminal of a communications system. In an example embodiment and mode, the wireless terminal comprises interface circuitry and at least one processor. The interface circuitry is configured to receive, from a network node over a radio interface, a latest decoded timing advance, TA, command. The at least one processor is configured to make a determination that an uplink transmission according to the latest decoded timing advance, TA, command would or could result in a timing advance mismatch and/or a downlink-uplink collision on the radio interface, and to generate a timing advance, TA, report message as a result of the determination. The interface circuitry is configured to transmit the timing advance, TA, report message to the network node over the radio interface.
A communication method performed by a user equipment (UE) is described. The method includes receiving, from a base station, a first CSI report configuration and a second CSI report configuration, the first CSI report configuration used for reporting predicted information, the second CSI configuration used for reporting performance information; determining, based on the first CSI report configuration, predicted information reported in a CSI report, the predicted information consisting of N set(s) of predicted PMIs, the N set(s) of predicted PMIs been each associated with a time interval; and determining one set out of the N set(s) of the predicted PMIs determining, based on the second report configuration, measured PMIs, wherein when a transmission occasion of RS resource set for obtaining the measured PMIs overlaps in time domain with an time interval associated with the determined one set, determine to use the measured PMIs and the predicted PMIs in the one set for determining the performance information, and the time interval includes one or more slots.
A method performed by a user equipment (UE) is described. The method includes receiving, from a base station, a first CSI report configuration, the first CSI report configuration being used for reporting information related to prediction accuracy and configuring reference signal (RS) resources for channel measurement, determining, a first number of transmission occasions of the configured RS resources, and to determine a second number of transmission occasions of the configured RS resources out of the first number of the transmission occasions, wherein, for a transmission occasion of the configured RS resources among the first number of the transmission occasions, whether to count the transmission occasion in the second number of the transmission occasions is determined based on whether the transmission occasion satisfies a certain condition, and a value of the first number is indicated by an RRC parameter included in the first CSI report configuration.
A half-duplex user equipment (HD-UE) operating in a non-terrestrial network (NTN) cell comprises interface circuitry and processor circuitry. The interface circuitry is configured to receive a first schedule of a downlink channel/signal and a second schedule of an uplink channel/signal, wherein the uplink channel/signal overlaps with the downlink channel/signal. The processor circuitry is configured individually and/or collectively to make a first determination whether to transmit the uplink channel/signal in accordance with a configuration indicating for a reduced capability (RedCap) in the NTN cell in a case that the configuration is received; and make a second determination, in a case that the configuration is not received, whether to transmit the uplink channel/signal based on a temporal order of the first schedule of the downlink channel/signal.
This light-emitting element (10) comprises an anode (2), a cathode (5), a light-emitting layer (EM) provided between the anode (2) and the cathode (5), and a hole injection layer (3HI) as a hole functional layer provided between the anode (2) and the light-emitting layer (EM) and containing an oxide semiconductor material. A hole-transporting material (SAMP) as a polymer having hole-transporting properties or an oligomer having hole-transporting properties is bonded to the surface of the hole injection layer (3HI) on the light-emitting layer (EM) side.
H10K 50/17 - Couches d'injection des porteurs de charge
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
According to the present invention, when first system information is requested, a first resource is used to transmit a wakeup signal, and a PDCCH for receiving the first system information is monitored over a first period, and when the first system information and second system information are requested, a second resource is used to transmit a wakeup signal, and a PDCCH for receiving the first system information and the second system information is monitored over a second period.
H04W 48/14 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant une requête de l’utilisateur
H04W 72/20 - Canaux de commande ou signalisation pour la gestion des ressources
H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
INTERNET OF THINGS NON-TERRESTRIAL NETWORK TIME DIVISION DUPLEX SYNCHRONIZATION SIGNAL MAPPING IN INTERNET OF THINGS NON-TERRESTRIAL NETWORK DOWNLINK TIMESLOTS AND PERIODS
An internet of things (IoT) non-terrestrial network (NTN) device user equipment (UE) is described. The UE includes receiving circuitry configured to receive synchronization signals in an IoT NTN downlink (DL) timeslot and to determine synchronization signal mapping of the received synchronization signals.
The present invention: receives, in a first cell, first information indicating the configuration of a wake-up signal for requesting transmission of first system information or requesting transmission of the first system information and second system information; and transmits the wake-up signal. The first information includes second information including information indicating a first resource, and third information including information indicating a second resource. The first system information includes scheduling information of the second system information. When the first system information is requested, the wake-up signal is transmitted using the first resource. When the first system information and the second system information are requested, the wake-up signal is transmitted using the second resource.
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
50.
INTERNET OF THINGS NON-TERRESTRIAL NETWORK TIME DIVISION DUPLEX FRAME STRUCTURE AND TIME SLOT DETERMINATION
An internet of things (IoT) non-terrestrial network (NTN) device user equipment (UE) is described. The UE includes receiving circuitry configured to determine an IoT NTN downlink (DL) timeslot within legacy time division duplex (TDD) DL slots. The UE also includes transmitting circuitry configured to determine an IoT NTN uplink (UL) timeslot within legacy TDD UL slots.
This user equipment comprises: a reception unit that receives first system information, second system information, and MCCH information which have been transmitted from a base station device; and a processing unit. The first system information includes scheduling information for the MCCH information, the second system information includes a list of target areas to which MBS sessions are distributed, and the MCCH information includes a list of MBS sessions and a list of target area identifiers associated with the target areas. The reception unit receives the MCCH information on the basis of the scheduling information. If none of the identifiers included in the list of target area identifiers is associated with a session of interest, the processing unit starts an MRB establishment procedure on the basis of the list of MBS sessions, and if any one or more of the identifiers included in the list of target area identifiers is associated with the session of interest, the processing unit starts the MRB establishment procedure on the basis of a determination that the user equipment is located inside the target area associated with the identifier.
H04W 4/06 - Répartition sélective de services de diffusion, p. ex. service de diffusion/multidiffusion multimédiaServices à des groupes d’utilisateursServices d’appel sélectif unidirectionnel
H04W 48/10 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant des informations radiodiffusées
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
52.
TERMINAL DEVICE, BASE STATION DEVICE, AND COMMUNICATION METHOD
In the present invention, setting information of a request signal requesting transmission of one or more pieces of system information is received, the request signal is transmitted using a first request signal resource or a second request signal resource, and the system information requested by the request signal is based on whether or not the setting information includes information indicating the second request signal resource, and whether or not the setting information includes information indicating mapping of second system information.
H04W 72/1268 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison ascendante
H04W 48/10 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant des informations radiodiffusées
H04W 48/14 - Distribution d'informations relatives aux restrictions d'accès ou aux accès, p. ex. distribution de données d'exploration utilisant une requête de l’utilisateur
H04W 72/21 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens ascendant de la liaison sans fil, c.-à-d. en direction du réseau
H04W 72/23 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal
The present invention provides a scheme for, in a case where, inter alia, the value for End-to-End QoS included in a UE policy used for communication or establishment of a communication path for ProSe multihop communication is insufficient, transmitting and receiving various types of information necessary for communication with a network or UEs constituting the communication path and a control message including said information, and executing the processing or behavior of the network or UEs as based on the control message.
This user equipment (UE) comprises a transmission/reception unit and a control unit. The UE is 5G proximity-based services (ProSe) multi-hop remote UE. The transmission/reception unit transmits a PROSE direct link establishment request message to 5G ProSe intermediate UE-to-network (U2N) relay UE in order to establish a 5G ProSe direct link. If the transmission/reception unit receives a PROSE direct link establishment reject message including a first reason value from the 5G ProSe intermediate U2N relay UE, the control unit excludes the 5G ProSe intermediate U2N relay UE from a multi-hop U2N relay reselection process. The first reason value indicates a congestion state.
A user equipment (UE) according to the present invention is provided with a transmitting/receiving unit and a control unit. The UE is a 5G proximity based services (ProSe) multi-hop remote UE, and the UE has established a 5G ProSe direct link with a 5G ProSe intermediate UE-to-network (U2N) relay UE, and when the transmitting/receiving unit receives a ProSe direct link release request message from the 5G ProSe intermediate U2N relay UE to release the 5G ProSe direct link, which includes a first reason value, the control unit excludes the 5G ProSe intermediate U2N relay UE from a multi-hop U2N relay reselection process, the first reason value indicating that direct communication to a target UE was not permitted.
The present invention provides a sound absorbing device having stable sound absorbing characteristics. A sound absorbing device according to the present invention includes an outer wall face, an inner wall face that forms an air passage, and a structure that is between the outer wall face and the inner wall face and that forms an acoustic propagation hole having an acoustic propagation hole outlet and an acoustic propagation hole inlet on the inner wall face.
G10K 11/16 - Procédés ou dispositifs de protection contre le bruit ou les autres ondes acoustiques ou pour amortir ceux-ci, en général
F01N 1/06 - Silencieux caractérisés par leur principe de fonctionnement utilisant les effets d'interférence
G10K 11/175 - 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
57.
USER EQUIPMENTS, BASE STATIONS, AND COMMUNICATION METHODS
A method performed by a user equipment (UE) is described. The method includes receiving, from a base station, a first CSI report configuration and a second CSI report configuration, the first CSI report configuration used for reporting prediction information, the second CSI configuration used for reporting information related to prediction accuracy; determining, based on the first CSI report configuration, prediction reports to be reported in respective reporting instance, wherein the first CSI configuration configures first reference signal (RS) resources for channel measurement, prediction is performed based on measurements for configured first RS resources, and one prediction report in one reporting instances includes at least predicted RS resource indicators corresponding to a first slot, the second CSI configuration configures second RS resources for channel measurement, and determining, a prediction report, to be linked for a transmission occasion of the configured second RS resources, if a first slot corresponding to the prediction report is the closest in time to the transmission occasion of the configured second RS resources than other first slots corresponding to other prediction reports, and an offset between the first slot and the transmission occasion is within a time offset.
H04W 24/10 - Planification des comptes-rendus de mesures
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
A user equipment (UE) is described. The UE comprises reception circuitry configured to receive first information configuring first set of ROs, second information configuring a second set of ROs, and third information including first parameter indicating a time periodicity and a second parameter indicating which time subset in the time periodicity is available for the first set of ROs, control circuitry configured to determine available ROs for a PRACH transmission base on the first information, the second information and the third information.
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
59.
SYSTEMS AND METHODS FOR UPLINK RESOURCE MUTING ON THE PHYSICAL UPLINK SHARED CHANNEL
A wireless terminal of a communications system which comprises receiver circuitry and processor circuitry. The receiver circuitry is configured to receive a physical uplink shared channel, PUSCH, muting configuration message from a network node over a radio interface. The processor circuitry is configured to generate a physical uplink shared channel, PUSCH, whereby resource elements of the PUSCH are generated in accordance with the PUSCH muting configuration message.
H04W 72/1268 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison ascendante
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
H04W 72/541 - Critères d’affectation ou de planification des ressources sans fil sur la base de critères de qualité en utilisant le niveau d’interférence
A terminal device according to the present invention comprises a reception unit that receives N first downlink reference signals and N second downlink reference signals, and a transmission unit that transmits a first CSI and a second CSI, wherein a delay difference is set in a first reporting amount configuration in a first CSI report configuration for the first CSI, CRI-RI-PMI-CQI is set in a second reporting amount configuration in a second CSI report configuration for the second CSI, the first CSI is composed of at least a delay difference, the second CSI is composed of at least a PMI, the delay difference is determined on the basis of the N first downlink reference signals, the PMI is determined on the basis of at least the N second downlink reference signals, and when the first CSI report configuration and the second CSI report configuration are linked, the PMI is determined on the basis of the delay difference and the N second downlink reference signals.
H04W 24/10 - Planification des comptes-rendus de mesures
H04B 7/0456 - Sélection de matrices de pré-codage ou de livres de codes, p. ex. utilisant des matrices pour pondérer des antennes
H04L 27/26 - Systèmes utilisant des codes à fréquences multiples
H04W 16/28 - Structures des cellules utilisant l'orientation du faisceau
H04W 28/16 - Gestion centrale des ressourcesNégociation de ressources ou de paramètres de communication, p. ex. négociation de la bande passante ou de la qualité de service [QoS Quality of Service]
61.
COMMUNICATION APPARATUSES, COMMUNICATION SERVERS, AND COMMUNICATION METHODS
A communication method performed by a communication apparatus is described. The communication method may comprise receiving first configuration for performance monitoring from a communication server via higher layer parameter, the first configuration containing measurement data, calculating a performance metric based on the measurement data, determining a monitoring outcome based on the performance metric, and transmitting the monitoring outcome.
A conductive element substrate (100a) is provided with a resin substrate, a conductive element layer provided on the front surface of the resin substrate, and a rear surface film (53) affixed to the rear surface of the resin substrate, a portion of the interface between the resin substrate and the rear surface film (53) is altered, and the resin substrate and the rear surface film (53) are separated.
A user equipment (UE), receives, from a network, several RS measurement reduction configurations and a set of one or more conditions. Each of the RS measurement reduction configurations corresponds to one or more conditions in the set of conditions. The UE determines that the one or more conditions corresponding to a first RS measurement reduction configuration of the several RS measurement reduction configurations are satisfied. Based on the determination, The UE configures with the first RS measurement reduction configuration. Based on the first RS measurement reduction configuration, the UE measure a first set of one or more RSs and skips measuring a second set of one more RSs.
H04W 24/10 - Planification des comptes-rendus de mesures
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
64.
DETERMINING THE ACCURACY OF REFERENCE SIGNAL MEASUREMENT REDUCTION CONFIGURATIONS IN WIRELESS NETWORKS
A user equipment (UE) receives, from a network, a first configuration for reference signal (RS) measurement reduction. The UE receives, from the network, a second configuration for determining the accuracy of the first configuration. The second configuration identifies a first time occasion to start determining the accuracy of the first configuration. The UE predicts values of a set of one or more RS occasions that start at the first time occasion. The UE performs measurement of values of the set of RS occasions starting at the first time occasion. The UE determines the accuracy of the first configuration based on the comparison of the predicted values of the set of RS occasions and the measured values of the set of RS occasions.
A user equipment (UE) selects a first random access channel occasion (RO). The UE initiates a random access (RA) procedure by transmitting, to a base station (BS), an RA preamble in the first RO. The UE receives, from the BS, an RA response (RAR) indicating an uplink for a message 3 (Msg3) is not granted. The UE select a second RO. In a case that the first RO is within a subband full duplex (SBFD) region in time domain, the UE calculates a backoff time as a function of a first scaling factor. In a case that the first RO is within a non-SBFD region in the time domain, the UE calculates the backoff time as a function of a second scaling factor different from the first scaling factor. The UE retransmits, to the BS, the RA preamble in the second RO after a duration of the calculated backoff time.
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
66.
TERMINAL DEVICE, BASE STATION DEVICE, AND COMMUNICATION METHOD
The present invention comprises: an upper layer processing unit that receives a first upper layer parameter and receives a plurality of transmission configuration indication states; a reception unit that receives a physical downlink control channel (PDCCH) to which downlink control information (DCI) is allocated; and a transmission unit that transmits a physical random access channel (PRACH). One transmission configuration indication state among the plurality of transmission configuration indication states is indicated. The transmission power of the PRACH is determined on the basis of a path loss reference signal. In a case where the first upper layer parameter is configured, a first field is present in the DCI. In a case where the first field has a first value, the path loss reference signal is a downlink reference signal (DLRS) that is QCL with respect to a demodulation reference signal (DMRS) of the PDCCH. In a case where the first field has a second value, the path loss reference signal is a downlink reference signal (DLRS) associated with the one transmission configuration indication state.
H04W 52/18 - Commande de puissance d'émission [TPC Transmission power control] le TPC étant effectué selon des paramètres spécifiques
H04W 16/28 - Structures des cellules utilisant l'orientation du faisceau
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
This terminal device comprises: an upper layer processing unit that receives a plurality of TCI states and a first upper layer parameter; a reception unit that receives a physical downlink control channel in which DCI is disposed and a downlink physical channel; and a transmission unit that transmits an uplink physical channel. Two TCI states among the plurality of TCI states are indicated by the DCI. When at least one TCI state among the plurality of TCI states is associated with the first upper layer parameter, one of the two indicated TCI states is applied to the downlink physical channel, and one or both of the two indicated TCI states are applied to the uplink physical channel.
H04W 16/28 - Structures des cellules utilisant l'orientation du faisceau
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
H04W 72/232 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant de la couche physique, p. ex. signalisation DCI
Provided is a display device capable of restoring a light-emitting layer. Provided is a display device (100), in which a first light-emitting element (1) comprises, from the substrate side, a first pixel electrode (11), a first light-emitting layer (31), a first restoration layer (41) containing a first restoration agent, and a common electrode (15). A second light-emitting element (2) comprises, from the substrate side, a second pixel electrode (12), a second restoration layer (42) containing a second restoration agent, a second light-emitting layer (32), and a common electrode.
H05B 33/10 - Appareils ou procédés spécialement adaptés à la fabrication des sources lumineuses électroluminescentes
H05B 33/12 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 50/822 - Cathodes caractérisées par leur forme
H10K 59/122 - Structures ou couches définissant le pixel, p. ex. bords
H10K 59/35 - Dispositifs spécialement adaptés à l'émission de lumière multicolore comprenant des sous-pixels rouge-vert-bleu [RVB]
H10K 71/15 - Dépôt d'une matière active organique en utilisant un dépôt liquide, p. ex. revêtement par centrifugation caractérisé par le solvant utilisé
69.
CONTROLLING RETRANSMISSION DELAY OF PHYSICAL RANDOM ACCESS CHANNEL (PRACH) TRANSMISSION
A UE selects a random access channel occasion (RO), and transmits, to a BS, a random access (RA) preamble in the RO. The RO is transmitted within either the SBFD region or the non-SBFD region in time domain. The UE receives an RA response, corresponding to the transmitted RA preamble. The UE selects either the SBFD region or the non-SBFD region for transmitting an uplink message via a PUSCH transmission, and determines whether the selected region for the PUSCH transmission is the same as the region within which the RO is transmitted. If the selected region for the PUSCH transmission is the same as the region within which the RO is transmitted, the UE determines a first transmission power for the PUSCH transmission. Otherwise, the UE determines a second, different, transmission power for the PUSCH transmission. The UE transmits the uplink message via the PUSCH at the determined transmission power.
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
H04W 52/50 - Commande de puissance d'émission [TPC Transmission power control] le TPC étant effectué dans des situations particulières au moment de déclencher une communication dans un environnement à accès multiple
H04W 72/02 - Sélection de ressources sans fil par un utilisateur ou un terminal
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
Provided is a terminal device that communicates with a base station device and comprises a reception unit and a processing unit. The reception unit receives a MAC CE that includes one Random Access Resource that is associated with one candidate cell from the base station device, and the processing unit uses the Random Access Resource to perform Random Access with respect to the candidate cell on the basis of cell selection being triggered and it being determined that the cell selected by the cell selection is the candidate cell.
A terminal apparatus receives conditional reconfiguration information from a base station device, determines whether a candidate target cell is an applicable cell on the basis of whether cell intermittent transmission of the candidate target cell to a common control channel in the candidate target cell is activated, and applies a setting included in the conditional reconfiguration information to the candidate target cell that is determined to be the applicable cell on the basis of a determination that a first condition is satisfied.
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
This terminal device comprises: a reception unit that receives a downlink reference signal; a transmission unit that transmits a PUCCH to which a first UCI is allocated, and a PUSCH to which a second UCI is allocated; and a higher-layer processing unit that receives a first higher-layer parameter relating to CSI reporting settings for CSI, a second higher-layer parameter relating to resource settings for the PUCCH, and a third higher-layer parameter relating to frequency resources and a PUCCH format. The second UCI includes the CSI. The CSI is calculated on the basis of the downlink reference signal. The first UCI includes request information or notification information for transmitting the CSI. A transmission opportunity for the PUCCH is set in the second higher-layer parameter. A resource identifier for the PUCCH refers to a parameter set in the third higher-layer parameter. The second higher-layer parameter is set by the first higher-layer parameter.
H04W 72/23 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal
H04W 24/10 - Planification des comptes-rendus de mesures
H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
H04W 72/1268 - Jumelage du trafic à la planification, p. ex. affectation planifiée ou multiplexage de flux de flux de données en liaison ascendante
Provided are a humidifier and a filter unit in which clogging of a humidification filter can be suppressed. This humidifier 1 comprises a water storage tray 20, a filter unit 30 having a humidification filter 31, and an orientation change mechanism for changing the orientation of the humidification filter 31 between a first orientation and a second orientation by driving a motor. The first orientation is an orientation in which a first portion of the humidification filter 31 is immersed in water and a second portion constituting the remainder of the humidification filter 31 is exposed from the water in a state in which water is stored up to a prescribed water level in the water storage tray 20, and the second orientation is an orientation in which the entirety of the second portion of the humidification filter 31 is immersed in water and at least part of the first portion is exposed from the water in a state in which water is stored up to a prescribed water level in the water storage tray 20.
A light-emitting element (30) includes: an anode (4); a cathode (8); a light-emitting layer (6) provided between the anode (4) and the cathode (8); a hole transport layer (5) provided between the anode (4) and the light-emitting layer (6); and a control electrode (9) provided inside the hole transport layer (5) so as to be separated from the anode (4) and having an opening (9K).
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A user equipment (UE), receives, from a base station (BS), a message for scheduling a physical uplink (UL) shared channel (PUSCH) transmission, the message indicating a first UL bandwidth comprising a first group of resource blocks (RBs). The UE determines a second UL bandwidth that includes a second group of RBs that is derived from an intersection of the first group of RBs and a group of RBs associated with a UL subband full duplex (SBFD). The second groups of RBs includes fewer RBs than the first group of RBs. The UE maps several phase-tracking reference signals (PT-RSs), associated with the PUSCH, to the second group of RBs. The UE transmits, to the BS, the PUSCH that includes the mapped PT-RSs.
A light-emitting element (1) is provided with: an anode (11) and a cathode (16); a light-emitting layer (14) positioned between the anode (11) and the cathode (16); and a hole transport layer (13) positioned between the light-emitting layer (14) and the anode (11). The maximum value of the thickness of the hole transport layer (13) is 1.15 times or less the average value of the thickness of the hole transport layer (13). The minimum value of the thickness of the hole transport layer (13) is 0.85 times or more the average value of the thickness of the hole transport layer (13).
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/17 - Couches d'injection des porteurs de charge
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
H10K 59/122 - Structures ou couches définissant le pixel, p. ex. bords
H10K 77/10 - Substrats, p. ex. substrats flexibles
A User Equipment (UE) for performing a Beam Failure Recovery (BFR) procedure is provided. The UE includes at least one processor and at least one non-transitory computer-readable medium storing instructions that, when executed, cause the UE to receive a first Beam Failure Detection Reference Signal (BFD-RS) set associated with a first Synchronization Signal Block (SSB) and a second BFD-RS set associated with a second SSB for a serving cell. The UE receives a BFR configuration, including a first BFR-related parameter associated with the first SSB, for the serving cell. In response to a second BFR-related parameter associated with the second SSB is configured in the BFR configuration, the UE determines that the second BFR-related parameter is associated with the second SSB; otherwise, the UE determines that the first BFR-related parameter is associated with both the first and second SSBs. In addition, a method and a BS are also provided.
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
Methods and apparatus for Artificial Intelligence (AI)/Machine Learning (ML) data collection in wireless communication are provided. The method includes receiving, from a base station (BS), a first configuration for data collection, the first configuration including a measurement resource configuration, a threshold value, and a timer value, performing measurements based on the measurement resource configuration, and in response to a condition, which is determined based on the threshold value and the timer value, being met, storing a measurement result for AI/ML model training.
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
79.
METHOD AND APPARATUS FOR CONDITIONAL LAYER 1/LAYER 2 TRIGGERED MOBILITY
A method performed by a UE for conditional L1/L2 Triggered Mobility (LTM) is provided. The method receives, from a source cell, an RRC configuration including a CSI report configuration and CSI measurement configuration for candidate cells. The method transmits, to the source cell, a first CSI report including an L1-RSRP value based on the CSI measurement configuration. The method receives, from the source cell, a MAC CE including information for a second CSI report. The method transmits, to a target cell, the second CSI report based on the MAC CE. The target cell is one of the candidate cells, the CSI report configuration includes a CSI report quantity including combinations of CSI-RS resource indicator (CRI), rank indicator (RI), precoding matrix indicator (PMI), channel quality indicator (CQI), first PMI (i1), and layer indicator (LI).
Provided is a water drain tank and the like that allows water to be drained easily, while preventing leakage of water from a water drain port. The water drain tank is detachably attached to a device body. When detached from the device body, the orientation of the water drain tank can be changed between a conveying orientation for conveying the drain tank with water stored in a tank body thereof, and a water draining orientation for draining the water from the tank body. The water drain tank comprises: a water drain port for draining water from the tank body when the water drain tank is in the water draining orientation; and a water drain cover that is movable between a first position for closing the water drain port and a second position for opening the water drain port. The water drain cover is configured to move from the first position to the second position as the orientation of the water drain tank changes from the conveyance orientation to the water drain orientation.
A method performed by a User Equipment (UE) for performing a Conditional Layer1/Layer2 Triggered Mobility (CLTM) operation is provided. The method receives, from a serving cell, a CLTM configuration indicating a CLTM candidate cell. The method determines whether at least one condition is satisfied. The method starts a first timer in response to determining that the at least one condition is satisfied. The method triggers a CLTM switch to the CLTM candidate cell after the first timer expires.
A method performed by a UE for L1 measurement reporting is provided. The method receives, from a BS, an L1 measurement configuration that configures at least one LTM event. The method measures multiple candidate beams to obtain multiple L1 measurement results. The method determines, based on the at least one LTM event, a priority of each of the multiple candidate beams. The method generates an L1 measurement report (L1-MR) MAC CE by assembling the multiple L1 measurement results associated with the multiple candidate beams in the L1-MR MAC CE based on the priority of each of the multiple candidate beams. The method transmits, to the BS, the L1-MR MAC CE, where each of the multiple candidate beams is associated with a reference signal index of an LTM candidate cell, and the L1-MR MAC CE is generated by a MAC entity of the UE.
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method comprises the following steps: receiving first configuration information and second configuration information, which are sent by a base station, wherein the first configuration information is channel state indicator (CSI) report configuration information, and the second configuration information is configuration information for reporting artificial intelligence/machine learning (AI/ML) model monitoring information; executing a CSI report at least on the basis of the first configuration information; and executing AI/ML model monitoring at least on the basis of the second configuration information.
Provided in the present disclosure are a method executed by means of a user equipment, and a user equipment. The method comprises: acquiring an RLF prediction result from an RLF prediction model; and when the RLF prediction result is acquired and at least one of the following is satisfied, declaring that an RLF has occurred: a first condition, in which RLF prediction configuration information comprises an information element representing enabling of an RLF prediction-based RLF declaration process, an RLF prediction-based RRC re-establishment process or an RLF prediction-based MCG failure information process; a second condition, in which a time difference between an RLF occurrence moment indicated by the RLF prediction result and the current moment is not greater than a first threshold value; a third condition, in which the current moment is within a prediction time window; a fourth condition, in which a probability value is not less than a second threshold value; a fifth condition, in which there is currently a running timer T310 or timer T312; a sixth condition, in which there are currently one or more triggered measurement events; and a seventh condition, in which a UE, after sending the RLF prediction result to a network side, has not received a handover command or an RRC release message from the network side within a given period of time.
This method for manufacturing a light-emitting element includes: a step (S1) for forming an anode; a step (S6) for forming a cathode; a step (S4) for forming a light-emitting layer performed between the step (S1) for forming an anode and the step (S6) for forming a cathode; a step (S2) for forming a hole transport layer that contains an organic hole transport material; and a step (S3) for aging the hole transport layer by at least one of heat and light. The step (S2) for forming a hole transport layer is performed between the step (S1) for forming an anode and the step (S4) for forming a light-emitting layer. The step (S3) for aging is performed before one of the step (S1) for forming an anode and the step (S6) for forming a cathode, which is performed later.
H10K 71/00 - Fabrication ou traitement spécialement adaptés aux dispositifs organiques couverts par la présente sous-classe
G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels
A light-emitting element (30) includes: a substrate (2); a cathode (3) that is a lower electrode provided at a position near the substrate (2); an anode (8) that is an upper electrode provided sandwiching the cathode (3) on the opposite side from the substrate (2); a light-emitting layer (6) that is provided between the cathode (3) and the anode (8); an electron hole transport layer (7) that is provided between the light-emitting layer (6) and the anode (8); and one or more conductors (9) that are in contact with the electron hole transport layer (7).
H05B 33/10 - Appareils ou procédés spécialement adaptés à la fabrication des sources lumineuses électroluminescentes
H05B 33/14 - Sources lumineuses avec des éléments radiants ayant essentiellement deux dimensions caractérisées par la composition chimique ou physique ou la disposition du matériau électroluminescent
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
A device may be configured to decode video data based on information included in a photosensitive content information message. In one example, a photosensitive content information message includes syntax elements indicating information regarding photosensitive content characteristics. In one example, a syntax element specifies whether photosensitive content in pictures in a persistence scope of the photosensitive content information message exceed photosensitivity content guidelines specified by a standard. In one example, a syntax element specifies whether photosensitive content in pictures in the persistence scope of the photosensitive content information message exceed a particular photosensitivity content guideline specified by the standard. In one example, a syntax element specifies text information about characteristics and description of photosensitive content in decoded pictures associated with the photosensitive content information message
H04N 19/70 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques caractérisés par des aspects de syntaxe liés au codage vidéo, p. ex. liés aux standards de compression
Provided are: a means for specifying various kinds of information which are required to establish a communication channel for multi-hop communication and to provide a UE policy for ProSe multi-hop communication, and further for transmitting and receiving a control message including the information between UEs; and a method for implementing processing and behavior by each UE on the basis of the message.
An access point apparatus according to an aspect of the present invention is an access point apparatus for communicating with multiple station apparatuses, the access point apparatus comprising: a transmitter circuitry configured to transmit a trigger frame, wherein the trigger frame includes a User Info field, wherein the User Info field comprises a Resource Unit (RU) Allocation field and a Distributed Bandwidth (Distributed BW) field, wherein the Distributed BW field indicates a Distributed Bandwidth corresponding to 20 MHz, 40 MHz, 60 MHz or 80 MHz over which subcarriers of a distributed resource unit (DRU) are allocated, wherein the DRU is defined as a resource unit in which subcarriers are allocated in a distributed manner across the bandwidth.
The present disclosure provides a method performed by a device, and a device. The method performed by a device comprises: receiving a reader-to-device (R2D) transmission, wherein the R2D transmission occupies one or more orthogonal frequency division multiplexing (OFDM) symbols, and for each OFDM symbol, a transmission bandwidth of the R2D transmission is greater than or equal to a maximum value among minimum transmission bandwidths respectively corresponding to all R2D chips in the OFDM symbol; and sending a device-to-reader (D2R) transmission in response to the R2D transmission.
The present disclosure provides a method executed by a device, and a device. The method executed by a device comprises: receiving a reader-to-device (R2D) transmission to the device; and executing a device-to-reader (D2R) transmission triggered by the R2D transmission, wherein a value set Equation (i) of a small frequency shift (SFS) factor value used by the D2R transmission is a set predefined for a bit duration Equation (ii) of the D2R transmission, wherein when Equation (ii)=4·106/15·103μs, the set Equation (i) comprises 1, 4, 8, 16, 32, 64, and 128; when Equation (ii)=4·106/30·103μs, the set Equation (i) comprises 1, 4, 8, 16, 32, and 64; when Equation (ii)=4·106/60·103μs, the set Equation (i) comprises 1, 4, 8, 16, and 32; when Equation (ii)=4·106/120·103μs, the set Equation (i) comprises 1, 4, 8, and 16; when Equation (ii)=4·106/240·103μs, the set Equation (i) comprises 1, 4, and 8; when Equation (ii)=4·106/480·103μs, the set Equation (i) comprises 1 and 4; and when Equation (ii)=4·106/960·103 μs, the set Equation (i) comprises 1.
A light-emitting element (30) includes: a substrate (2); an anode (3) that is a lower electrode provided at a position near the substrate (2); a cathode (8) that is an upper electrode provided sandwiching the anode (3) on the opposite side from the substrate (2); a light-emitting layer (6) that is provided between the anode (3) and the cathode (8); an electron hole transport layer (5) that is provided between the anode (3) and the light-emitting layer (6); and one or more conductors (9) that are in contact with the electron hole transport layer (5).
The present disclosure provides a method executed by a user equipment (UE) and a UE. The method comprises: on the basis of a configuration parameter of a low-power wake-up signal (LP-WUS) in a system information block (SIB), determining the number of groups for LP-WUS monitoring occasions (LMOs) in an LP-WUS occasion (LO); and on the basis of the number of groups, determining the length of cyclic redundancy check (CRC) used by the LP-WUS or the number of encoded bits.
Provided in the present invention are a method executed by a user equipment, and a user equipment. The method executed by a user equipment comprises: receiving, from a base station, a configuration of a delay status report for a logical channel group (LCG); when a delay status report (DSR) trigger condition is met and/or one or more reporting time thresholds are configured for at least one LCG in the configuration, determining an uplink data volume corresponding to each reporting time threshold of each LCG; and sending a delay state report medium access control control element (DSR MAC CE) to the base station, wherein the DSR MAC CE carries the uplink data volume corresponding to each reporting time threshold of each LCG, and the uplink data volume comprises a data volume calculated by means of a packet data convergence protocol (PDCP) second data volume operation and/or a radio link control (RLC) second data volume operation.
The present invention comprises: a light-emitting element layer (40a) which is provided above a TFT layer (20) and in which a plurality of first electrodes (31a), a plurality of light-emitting functional layers (33), and a common second electrode (34a) are laminated in that order so as to correspond to a plurality of sub-pixels constituting a display region (D); and a sealing film (45) which is provided above the light-emitting element layer (40a) and in which an inorganic sealing film (41) and an organic sealing film (42) are laminated in that order. In a frame region (F) around the display region (D), an electrode pattern (34b) is provided so as to be separated from the second electrode (34a), and the electrode pattern (34b) is provided so as to overlap the peripheral edge of the organic sealing film (42) with the inorganic sealing film (41) interposed therebetween.
H10K 59/131 - Interconnexions, p. ex. lignes de câblage ou bornes
H10K 50/115 - OLED ou diodes électroluminescentes polymères [PLED] caractérisées par les couches électroluminescentes [EL] comprenant des nanostructures inorganiques actives, p. ex. des points quantiques luminescents
Provided is a technique for a UE capable of communicating via satellite to execute appropriate processing of the management of a store and forward (S&F) mode and/or UE behavior during the S&F mode in order for devices to appropriately support an S&F satellite operation provided by a satellite that has lost connectivity to the ground and/or a device mounted on the satellite.
This base station device comprises: a transmission unit that transmits a TRIGGER frame for requesting transmission of a TB PPDU; and a MAC layer processing unit that issues, to a PHY layer processing unit, PHY-TRIGGER.request primitive including TRIGVECTOR parameter(s) in order to receive the TB PPDU, wherein the TRIGVECTOR parameter(s) include(s) per-STA information indicating whether the TB PPDU from each STA uses a DRU.
According to the present invention, a base station device that has one or more APs includes a processing unit that executes a first procedure. The one or more APs belong to a current AP MLD. The current AP MLD transmits an AID assigned to a non-AP STA in a Response frame. The Response frame includes a portion of the fields included in a Link Reconfiguration Response frame. The first procedure is a procedure that establishes a link to a target AP MLD and is included in a transition preparation procedure.
H04W 84/12 - Réseaux locaux sans fil [WLAN Wireless Local Area Network]
H04W 36/28 - La resélection étant déclenchée par des paramètres spécifiques par des paramètres de communication agréés ou négociés impliquant une pluralité de liaisons, p. ex. des liaisons multi-appels ou multi-porteuses
H04W 48/18 - Sélection d'un réseau ou d'un service de télécommunications
H04W 72/0457 - Affectation de bande ou de débit variable
Conventional TIMD prediction mode derivation has the problem wherein a large amount of computation is required to derive a template image and calculate costs. In the present invention, a TIMD prediction mode derivation unit that, in intra prediction, receives the input of a plurality of prediction mode candidates and selects a prediction mode has a template prediction image derivation unit for generating a prediction image, a template cost derivation unit, and a candidate selection unit. The candidate selection unit narrows down the number of prediction mode candidates on the basis of a cost derived by the template cost derivation unit. A candidate update unit updates the prediction mode candidate list narrowed down by the candidate selection unit and increases the width of a template region. In the TIMD prediction mode derivation unit, multiple iterations of a prediction mode derivation process are performed, and a final prediction mode is selected.
H04N 19/11 - Sélection du mode de codage ou du mode de prédiction parmi plusieurs modes de codage prédictif spatial
H04N 19/176 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant un bloc, p. ex. un macrobloc
H04N 19/593 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage prédictif mettant en œuvre des techniques de prédiction spatiale