09 - Appareils et instruments scientifiques et électriques
35 - Publicité; Affaires commerciales
42 - Services scientifiques, technologiques et industriels, recherche et conception
Produits et services
Lightning conductors; range finders; smart speakers; virtual
reality controllers; point-of-sale [POS] terminals;
refrigerator magnets; sports whistles; laboratory robots;
video projectors; humanoid robots having communication and
learning functions for assisting and entertaining people;
television apparatus; intercommunication apparatus; mobile
telephones; bathroom scales; electronic random number
indicator equipment [ERNIE]; apparatus to check franking;
telepresence robots; heat regulating apparatus; apparatus
and instruments for astronomy; humanoid robots with
artificial intelligence for use in scientific research;
electronic notice boards; data sets, recorded or
downloadable; electrified fences; alarms; chips [integrated
circuits]; measuring devices, electric; automatic indicators
of low pressure in vehicle tyres; biometric scanners;
holograms; downloadable application software for virtual
environments; pigeon training whistles; portable
remote-controlled car stoppers; dog whistles; electronic key
fobs being remote control apparatus; electronic numeric
displays; piezoelectric sensors; condensers [capacitors];
semiconductors; security surveillance robots; ticket
dispensing terminals, electronic; user-programmable humanoid
robots, not configured; computer software applications,
downloadable; transparencies [photography]; batteries,
electric; material testing instruments and machines;
measuring apparatus; measures; hemline markers; computer
software platforms, recorded or downloadable; decorative
magnets; padlocks, electronic; life-saving apparatus and
equipment; optical fibres [light conducting filaments];
control panels [electricity]; phototelegraphy apparatus;
computer programs, downloadable; computer software,
recorded; computers; egg-candlers; humanoid robots with
artificial intelligence for use in household cleaning and
laundry; humanoid robots with artificial intelligence for
preparing beverages; portable power chargers; materials for
electricity mains [wires, cables]; cameras [photography];
dashboard cameras; camcorders; navigational instruments;
computer network routers; dictating machines; voting
machines; mechanisms for counter-operated apparatus;
counters; computer operating programs, recorded;
radiological apparatus for industrial purposes; fire
extinguishers; ionization apparatus not for the treatment of
air or water; thermometers, not for medical purposes. Organization of exhibitions for commercial or advertising
purposes; wholesale services for pharmaceutical, veterinary
and sanitary preparations and medical supplies; retail or
wholesale services for veterinary medicines; providing user
reviews for commercial or advertising purposes;
import-export agency services; rental of vending machines;
providing business information via a website; online
advertising on a computer network; retail or wholesale
services for medicines; marketing; compilation of
information into computer databases; consumer profiling for
commercial or marketing purposes; presentation of goods on
communication media, for retail purposes; business auditing;
rental of sales stands; business intermediary services
relating to the matching of various professionals with
clients; rental of cash registers; provision of an online
marketplace for buyers and sellers of goods and services;
sponsorship search; compiling indexes of information for
commercial or advertising purposes; sales promotion for
others; advertising. Providing online non-downloadable computer software;
authenticating works of art; providing search engines for
the internet; hosting software platforms for virtual
reality-based work collaboration; platform as a service
[PaaS]; graphic arts design in the fields of calligraphy,
painting and seal carving; set design for theatrical
enterprises; truck weighing services; dress designing;
surveying [engineering]; design of magnetic refrigerator
stickers; handwriting analysis [graphology]; styling
[industrial design]; chemistry services; quality control;
computer software design; art work design; logo design
services; design of interior decor; inspection services for
new and used vehicles before sale; graphic arts design;
cloud seeding; design of computer-simulated models;
animation design services; design of clothing for pets;
design of customized books; testing and analysis of goods
being imported or exported for quarantine clearance
purposes; computer programming; quantum computing; software
as a service [SaaS]; weather forecasting; research in the
field of artificial intelligence technology; weighing goods
for others; rental of telescopes; hosting virtual
environments; providing virtual computer systems through
cloud computing; clinical trials; technological research;
radon detection services; rental of meters for the recording
of energy consumption; rental of scientific microscopes;
cartography services; artificial intelligence consultancy.
The present disclosure provides a method for transmitting a downlink channel, an apparatus, and a readable storage medium. The method comprises: when there is an overlapping time domain interval between a first time period of DTX and a running time period of a first timer, sending a physical downlink control channel (PDCCH) to a user equipment within the time domain interval, wherein the first timer is: a timer used for data retransmission in a connected discontinuous reception (C-DRX) cycle configured for the user equipment. In the method of the present disclosure, when the first time period of DTX of a network device overlaps with the running time period of the first timer in the C-DRX cycle of the user equipment, the network device still sends the PDCCH within the overlapping time domain interval, and the user equipment monitors the PDCCH within the time domain interval, so as to still obtain data transmission scheduling within the time domain interval, thereby ensuring data transmission performance and low transmission delay.
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
4.
INFORMATION REPORTING METHOD AND APPARATUS, AND DEVICE AND STORAGE MEDIUM
An information reporting method includes determining an information reporting mode, where the information reporting mode includes at least one of reporting first information or reporting second information, the first information is used for indicating functionality information configured by a terminal based on artificial intelligence (AI) communication, and the second information is used for indicating model information configured by the terminal based on the AI communication. The method further includes reporting information to a network device based on the information reporting mode as determined.
H04L 41/16 - Dispositions pour la maintenance, l’administration ou la gestion des réseaux de commutation de données, p. ex. des réseaux de commutation de paquets en utilisant l'apprentissage automatique ou l'intelligence artificielle
H04L 43/062 - Génération de rapports liés au trafic du réseau
5.
MEASUREMENT REPORTING METHOD, APPARATUS, STORAGE MEDIUM, USER EQUIPMENT, AND NETWORK DEVICE
A method for measurement reporting, performed by user equipment, the method including: acquiring a first measurement result, where the first measurement result is a measurement result within a first time period; obtaining a second measurement reslt by performing a measurement result perdiction operation based on the first measurement result, where the second measuremnet result is a measurement result within a second time period; and sending the second measurement result to a network device.
H04W 24/10 - Planification des comptes-rendus de mesures
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
6.
COMMUNICATION METHOD, APPARATUS, DEVICE AND SYSTEM, AND STORAGE MEDIUM
A communication method is performed by a terminal. The method includes determining indication information configured to indicate at least one of an association relationship between first information and a terminal type, or an association relationship between the first information and the terminal. The first information is configured to schedule a downlink channel. The terminal type includes at least one of a type 1 terminal or a type 2 terminal, and a capability of the type 1 terminal is different from a capability of the type 2 terminal. The capability of the type 1 terminal is higher than the capability of the type 2 terminal, or the capability of the type 2 terminal is higher than the capability of the type 1 terminal.
H04W 72/51 - Critères d’affectation ou de planification des ressources sans fil sur la base des propriétés du terminal ou du dispositif
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
H04W 72/566 - Critères d’affectation ou de planification des ressources sans fil sur la base de critères de priorité de l’information, de la source d’information ou du destinataire
7.
METHOD AND APPARATUS FOR DETERMINING BEAM, AND STORAGE MEDIUM
A method for determining a beam, performed by a user equipment (UE) in a wireless communication network, includes determining a first synchronization signal/physical broadcast channel block (SSB) beam, wherein the first SSB beam is used for a random access. A method for determining a beam, performed by a network device, includes sending a plurality of synchronization signal/physical broadcast channel block (SSB) beams having a first SSB beam used for a random access and determined by a user equipment (UE).
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
H04L 5/14 - Fonctionnement à double voie utilisant le même type de signal, c.-à-d. duplex
H04W 74/0833 - Procédures d’accès aléatoire, p. ex. avec accès en 4 étapes
8.
COMMUNICATION PARAMETER DETERMINATION METHOD AND APPARATUS, AND DEVICE AND STORAGE MEDIUM
A method for determining communication parameters is performed by a user equipment (UE). The method includes: receiving first information; and determining, based on the first information, a first number of first beam number combinations and at least one first parameter combination corresponding to the first number of first beam number combinations, wherein the first parameter combination includes a frequency domain vector parameter Pv and a non-zero coefficient parameter β.
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
9.
INFORMATION PROCESSING METHOD AND APPARATUS, COMMUNICATION DEVICE, AND STORAGE MEDIUM
A method for processing information is performed by a user equipment (UE), and includes: in response to performing a first operation associated with a first mobility configuration of the UE, performing a second operation associated with a second mobility configuration of the UE.
H04W 36/00 - Dispositions pour le transfert ou la resélection
H04W 8/02 - Traitement de données de mobilité, p. ex. enregistrement d'informations dans un registre de localisation nominal [HLR Home Location Register] ou de visiteurs [VLR Visitor Location Register]Transfert de données de mobilité, p. ex. entre HLR, VLR ou réseaux externes
H04W 36/32 - La resélection étant déclenchée par des paramètres spécifiques par des données de localisation ou de mobilité, p. ex. des données de vitesse
H04W 36/36 - Contrôle de resélection par un équipement d'abonné ou un équipement terminal
10.
INFORMATION TRANSMISSION METHOD AND APPARATUS, AND COMMUNICATION DEVICE AND STORAGE MEDIUM
An information transmission/reception method is provided. A network device transmits at least one set of cell discontinuous transmission/reception configurations to a user equipment (UE), wherein one set of cell discontinuous transmission/reception configuration is associated with at least one cell, and/or one UE discontinuous reception (DRX) configuration; and the cell discontinuous transmission/reception configuration comprises a cell discontinuous transmission (Cell DTX) configuration and/or a cell discontinuous reception (Cell DRX) configuration.
An information processing method is performed by a terminal, and includes: sending request information, wherein the request information is used for requesting to perform bandwidth aggregation on positioning reference signals.
An information processing method is performed by a core network device, and includes: sending indication information to an access network device, wherein the indication information indicates positioning reference signal bandwidth aggregation.
An information reporting method executed by a terminal device comprises: in response to a preset condition being met, reporting auxiliary information to a network-side device, wherein the auxiliary information is used for assisting the network-side device with performing mobility management, and the reporting of the auxiliary information is not triggered based on a measurement reporting condition being met.
A power headroom reporting method based on multi-panel transmission is performed by a terminal device with a plurality of panels. The method includes: in response to the terminal device configuring multiple transmission and reception point (multi-TRP) based uplink simultaneous multi-panel transmission (STxMP) for a physical uplink shared channel (PUSCH) on a first transmission slot corresponding to the PUSCH carrying a medium access control control element (MAC CE) PHR report, or on a slot meeting a timeline requirement, and an actual PUSCH transmission being a transmission from a single panel towards a single TRP, calculating at least one actual power headroom (PH) and reporting a power headroom report (PHR) based on a maximum power configuration of the terminal device.
H04W 52/36 - Commande de puissance d'émission [TPC Transmission power control] utilisant les limitations de la quantité totale de puissance d'émission disponible avec une plage ou un ensemble discrets de valeurs, p. ex. incrément, variation graduelle ou décalages
H04W 52/42 - Commande de puissance d'émission [TPC Transmission power control] le TPC étant effectué dans des situations particulières dans des systèmes à diversité de temps, d'espace, de fréquence ou de polarisation
15.
COMMUNICATION METHOD, ELECTRONIC DEVICE AND STORAGE MEDIUM
A communication method is applied to an access point multi-link device (AP MILD), and includes: determining a first radio frame, wherein the first radio frame includes at least one first identification bit, and the first identification bit indicates that an affiliated AP to which a corresponding target communication connection belongs is to be removed; and sending the first radio frame over at least one communication connection of the affiliated AP.
A communication method is performed by a network device and includes: transmitting configuration information to user equipment, where the configuration information is configured to determine configuration parameters of at least one discontinuous transmission and reception pattern corresponding to each of at least one serving carrier; and transmitting first indication information to the user equipment, where the first indication information is configured to activate a first discontinuous transmission and reception pattern among the at least one discontinuous transmission and reception pattern.
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 80/02 - Protocoles de couche liaison de données
17.
METHOD FOR RECEIVING INDICATION INFORMATION, METHOD FOR SENDING INDICATION INFORMATION, AND DEVICE, SYSTEM, MEDIUM AND PROGRAM PRODUCT
Provided in the embodiments of the present disclosure are a method for receiving indication information, a method for sending indication information, and a device, a system, a medium and a program product. The method for receiving indication information comprises: receiving indication information sent by a network device, wherein the indication information comprises a first parameter, and the first parameter is used for determining random access information on the basis of at least one piece of random access channel (RACH) configuration information. In the method, a terminal can determine random access information on the basis of indication information sent by a network device and a first parameter indicated by the network device, so as to rationally use and select RACH can be on the basis of network-side requirements or control, so that the network device can effectively control the load distribution and improve the random access performance.
The present disclosure relates to communication methods, terminals, network devices, a system, a storage medium, and a program product. A communication method comprises: receiving a synchronization signal block (SSB) on the basis of an SSB pattern, wherein a terminal supports a first communication protocol, the SSB pattern includes at least one of the following: an SSB pattern shared by the first communication protocol and a second communication protocol, and an SSB pattern dedicated to the first communication protocol, and the first communication protocol is subsequent to the second communication protocol. The present disclosure can improve the communication efficiency.
The present disclosure provides a radio link monitoring method, and a device, a system, a storage medium, and a program product. The method is executed by a terminal device. The method comprises: performing radio link monitoring on a radio frame, wherein the radio frame is a radio frame for a downlink signal and/or data transmitted in an IoT-NTN TDD mode. The embodiments of the present disclosure can improve the accuracy of radio link monitoring.
The present disclosure relates to a communication method, a terminal, a network device, a system, a storage medium, and a program product. The communication method comprises: receiving first system information, the first system information being used by a terminal supporting a first communication protocol and a terminal supporting a second communication protocol, and the first communication protocol being later than the second communication protocol. The present disclosure avoids interference, thus improving communication efficiency.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium and a program product. The communication method comprises: a terminal receiving first information sent by a network device, wherein the first information is used for indicating that a first cell configured by the network device for the terminal supports satellite handover without changing PCI and SSB frequencies, and the first cell comprises at least one of the following: a secondary cell (SCell) and a primary secondary cell (PSCell). The embodiments of the present disclosure provide, for a multi-orbit satellite CA or DC scenario, a process of replacing a first cell (for example, an SCell and/or a PSCell) without using an RRC reconfiguration message, thereby reducing signaling overheads and reducing data interruption during the replacement process.
The present disclosure provides communication methods, terminals, network devices, a system, and a storage medium. A method comprises: receiving first indication information sent by a network device, the first indication information being used for indicating a time domain offset of a neighbor cell relative to a serving cell; and executing a first operation on the basis of the time domain offset, the first operation being an operation related to the neighbor cell. The present disclosure improves the availability of NTN technology and reduces terminal energy consumption.
Provided in the present disclosure are a communication method, a communication device, a communication system and a storage medium. The method comprises: receiving a first request sent by a second network element, wherein the first request is used for requesting a sensing service; determining for the sensing service at least one of a first device, a second device, and a third network element, wherein the first device is configured to send a sensing signal, the second device is configured to receive the sensing signal, and the third network element is a relay node between at least one of the first device and the second device and the first network element; and sending first information to at least one of the first device and the second device by means of the third network element, wherein the first information is used for indicating execution of the sensing service. The method of the present disclosure can ensure smooth execution of a sensing service.
The present application discloses an information transmission method, a communication device, a communication system, a storage medium, and a program product. First information is received at a first candidate frequency domain position corresponding to the first information, and/or second information is received at a second candidate frequency domain position corresponding to the second information, wherein the first information and the second information are transmitted by a network device, and the first candidate frequency domain position is different from the second candidate frequency domain position. Thus, by means of different frequency domain positions, a terminal can distinguish different information transmitted by the network device, and by receiving corresponding information at corresponding positions, resources can be effectively saved, the energy consumption of the terminal can be reduced, and system communication efficiency can be improved.
The embodiments of the present disclosure relate to the technical field of communications, and disclose an information processing method, an apparatus, and a computer-readable storage medium. The information processing method comprises: receiving first information sent by a terminal, the first information comprising: layer 1 reference signal received power (L1-RSRP); and verifying L1-RSRP accuracy on the basis of a threshold, wherein a first L1-RSRP is a maximum value among a plurality of L1-RSRPs predicted by the terminal on the basis of an artificial intelligence (AI) model. According to the embodiments of the present disclosure, reporting a maximum value among predicted L1-RSRPs as a predicted absolute L1-RSRP can reduce uncertainty associated with reporting absolute RSRPs.
The present disclosure provides a communication method, a terminal, a network device, a system, and a storage medium. The method comprises: determining, on the basis of a predefined manner or configuration information sent by a network device, whether to monitor a low-power wake-up signal (LP-WUS) within a first time period. The present disclosure achieves the purpose of power saving of the terminal and is conducive to improving the reliability of data scheduling.
The present disclosure provides a communication method, a terminal, a network device, a system, and a storage medium. The method comprises: receiving a first media access control element (MAC CE) sent by a network device, wherein the first MAC CE is used for configuring a timing advance (TA) corresponding to conditional Layer 1/Layer 2 triggered mobility (CLTM); and on the basis of the first MAC CE, maintaining the TA corresponding to the CLTM. The present disclosure provides support for multiple transmission and reception points (TRPs), and reduces the delay of executing LTM, especially CLTM.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium, and a program product. The method is executed by a first network element, and comprises: determining to allocate a first bearer and a second bearer to a first service, wherein the first service is an IMS service accessed by using NB-IoT, the first bearer is used for carrying IMS signaling of the first service, and the second bearer is used for carrying IMS data of the first service. The solution of the present disclosure can meet the requirements on IMS services, and enhances the system performance.
The present application discloses a communication method, a communication device, a communication system, a storage medium, and a program product. The communication method comprises: receiving at least one of first information and second information which are sent by a network device, wherein the first information comprises a first synchronization signal and first system information, and the second information comprises at least one of a second synchronization signal and second system information. Moreover, the sequence of the first synchronization signal is different from the sequence of the second synchronization signal, the first synchronization signal comprises at least one of a primary synchronization signal (PSS) and a secondary synchronization signal (SSS), and the second synchronization signal comprises at least one of the PSS and the SSS, such that a terminal can quickly and accurately identify the type of information according to the sequence of the synchronization signal in the received information, thereby triggering a corresponding processing flow in a targeted manner, and improving communication efficiency of the system.
The present disclosure relates to the technical field of communications, and provides a communication method, a communication device, and a communication system. The method comprises: a network device sending, to a terminal device, a demodulation reference signal (DMRS) sequence for a semi-persistent scheduling (SPS) physical downlink shared channel (PDSCH), wherein the SPS PDSCH belongs to a first SPS configuration, and a scrambling identifier (ID) of the DMRS sequence for the SPS PDSCH is used for indicating whether the first SPS configuration is released. This eliminates the need for a terminal device to perform blind detection on the basis of downlink control information (DCI) to acquire SPS configuration release indicating information, thereby reducing detection power consumption of terminal devices.
The present disclosure relates to the technical field of communications, and provides a communication method, a communication device, and a communication system. The method comprises: a network device sends a semi-persistent scheduling (SPS) physical downlink shared channel (PDSCH) to a terminal device, the SPS PDSCH belonging to first SPS scheduling, wherein the SPS PDSCH is used for indicating whether the first SPS scheduling is released. In this way, the terminal device acquires indication information for SPS scheduling release without performing blind detection of downlink control information (DCI), thereby reducing detection power consumption of the terminal device.
Disclosed in the present application are a communication method, a communication device, a communication system, a storage medium and a program product. The communication method executed by a terminal comprises: on the basis of a time window in which the terminal is located, determining a processing mode for a on-demand synchronization signal block (OD-SSB); and processing the OD-SSB on the basis of the processing mode. Thus, different processing can be performed on OD-SSBs in different time windows, thereby balancing the reliability of OD-SSB measurement results and power consumption to the greatest extent.
The present application discloses a communication method, a communication device, a communication system, a storage medium, and a program product. At least one of a first information block and a second information block sent by a network device is received. The first information block comprises a first synchronization signal and a first physical broadcast channel (PBCH). The second information block comprises at least one of a second synchronization signal and a second PBCH. In addition, a pattern of the first information block is different from that of the second information block, so that on the basis of a pattern of a received information block, a terminal can quickly and accurately identify the type of the information block, thereby allocating processing resources in a targeted manner. In this way, a system can more flexibly adapt to diversified communication requirements and scenarios, thereby improving the communication efficiency of the system.
The present disclosure relates to a communication method, a communication device, a communication system and a storage medium. The communication method comprises: a terminal being capable of receiving, via an access network device, a first message sent by a first core network device, wherein the first message is used for instructing the terminal to establish a protocol data unit (PDU) session related to the first core network device; alternatively, the terminal being capable of receiving, via the access network device, a second message sent by the first core network device, wherein the second message is sent by the first core network device on the basis of terminal information, and the second message is sent by the first core network device to the terminal via a user plane. Thus, the first core network device can communicate with the terminal via the user plane, thereby ensuring the service implementation effect.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium, and a program product. The method is executed by a first network element, and comprises: exchanging first data with a terminal, the first data corresponding to first information, and the first information comprising one of the following: first identifier information and second identifier information, the first identifier information indicating that the first data is IMS signaling, and the second identifier information indicating that the first data is IMS data. An access type used by the terminal is NB-IoT. By means of the solution of the present disclosure, the requirements of an IMS service can be met, and system performance can be enhanced.
Disclosed in the present application are a communication method, a communication device, a communication system, a storage medium and a program product. The communication method comprises: determining at least one of a first parameter, a second parameter and a third parameter, wherein the first parameter is used for determining a first time interval, the first time interval is a time interval between an NPDCCH and an NPDSCH, and the NPDSCH is scheduled by DCI carried on the NPDCCH; the second parameter is used for determining a second time interval, and the second time interval is a time interval between the NPDSCH and an HARQ-ACK feedback corresponding to the NPDSCH; the third parameter is used for determining a third time interval, the third time interval is a time interval between the NPDCCH and an NPUSCH, and the NPUSCH is scheduled by the DCI carried on the NPDCCH; first information is sent by a network device; and the NPDCCH, the NPDSCH, the HARQ-ACK feedback and the NPUSCH are all located in a time-division duplexing (TDD) frame. Thus, uplink-downlink collisions can be avoided in a system, an HARQ process is optimized, the utilization rate of resources is effectively improved, and the overall performance of the system is also enhanced.
The present application discloses a communication method, a communication device, a communication system, a storage medium and a program product. First information and second information sent by a network device are received, wherein the first information is used for instructing a terminal to activate a secondary cell (SCell), the second information is used for configuring a first synchronization signal block (SSB), and the first SSB is used for activation of the SCell, so that the terminal can perform SCell activation on the basis of an adjusted SSB, thereby improving the success rate of SCell activation, optimizing resource configuration, effectively improving a data transmission rate and spectral efficiency, increasing system capacity, and improving the communication efficiency of the system.
The embodiments of the present disclosure relate to communication methods, communication devices, and a communication system. A communication method comprises: receiving a first radio frame sent by a second device, wherein the first radio frame is used for responding to a second radio frame sent by a first device, and the second radio frame is used for requesting to disable a dynamic power saving mode; and switching from a first capability communication mode to a second capability communication mode, wherein the first capability communication mode is a communication mode in which the first device enables the dynamic power saving mode, and the second capability communication mode is a communication mode in which the first device requests to enable the dynamic power saving mode. At least one communication parameter in the second capability communication mode is greater than a communication parameter in the first capability communication mode, such that the device can automatically adjust the communication capability on the basis of changes in the dynamic power saving state, thereby improving communication efficiency and system performance.
Provided in the present disclosure are sensing methods and an apparatus. A method executed by a first network element comprises: receiving a first message sent by a second network element when a trigger condition is met, the first message being used to indicate a first position of a terminal, and the first position being related to the position of a sensing target; and, on the basis of the first position, determining a first sensing parameter for sensing the sensing target, the first sensing parameter comprising at least one of the following: a first sensing area; a parameter related to a first sensing entity; and a first sensing mode. Thus, on the basis of the first position of the terminal related to the position of the sensing target of which the position is changeable, the first sensing parameter for sensing the sensing target can be determined, such that the sensing target of which the position is changeable can be sensed, thus improving the performance of sensing systems.
Embodiments of the present disclosure relate to a communication method, a communication device, and a communication system. The communication method comprises: a first device receiving an L3-RSRP predicted value sent by a UE; and on the basis of the L3-RSRP predicted value and at least one RSRP accuracy margin, determining the accuracy of L3‑RSRP prediction performed by the UE, wherein the first device includes a testing equipment (TE) or a network device, and the RSRP accuracy margin includes at least one of the following: a first margin based on a time offset, a second margin based on an L1 filtered sample count difference, a third margin based on an L1 filtering mode difference, and a fourth margin, wherein the fourth margin is obtained on the basis of the time offset, the L1 filtered sample count difference, and the L1 filtering mode difference. In this way, an artificial intelligence-based mobility management mechanism is further enhanced.
Provided in the embodiments of the present disclosure are data collection methods, communication devices, a communication system, a storage medium and a program product. A method is executed by a first node, and comprises: receiving first information sent by a plurality of second nodes, wherein the first information is used for indicating the data provision capability of the second nodes, the data provision capability is used for indicating data supported to be provided by the second nodes to the first node, and the data provision capability is further used by the first node to determine whether to collect data from the second nodes. The technical solution provided in the embodiments of the present disclosure facilitates the provision of data collection services for different pieces of data of different data source entities by the first node, thereby improving the flexibility of data collection. Moreover, the first node learns of the data provision capability of the plurality of second nodes, thereby facilitating the management of the plurality of second nodes by the first node in a subsequent data collection process.
The present disclosure relates to communication methods, a communication device, communication systems, a storage medium, and a program product. A communication method is executed by a first device. The method comprises: receiving a first message sent by a second device, the first message carrying a first service identifier; and determining, on the basis of the first service identifier and a second service identifier, whether a locally stored access stratum identifier is valid, the second service identifier being associated with the access stratum identifier. The communication method can improve the reliability of data transmission.
The present disclosure relates to communication methods, a communication device, a communication system, a storage medium and a program product. A method comprises: receiving a synchronization signal block (SSB) sent by a network device; determining at least one first SSB for random access; and, within a time domain range associated with the at least one first SSB, determining random access information corresponding to the at least one first SSB, the random access information comprising a random access occasion (RO) and/or a random access preamble. In the embodiments of the present disclosure, a terminal can determine within the certain time domain range the random access information corresponding to the first SSB, thereby ensuring the validity of the random access information, accordingly helping the network device accurately receive the random access information, and improving the success rate of random access.
The present invention provides an information transmission method and an apparatus. The method executed by a terminal comprises: sending a first message to a network device, wherein the first message is used for indicating first computing power available for AI-based processing by the terminal. In this way, the terminal sends, to the network device, the first computing power available for AI-based processing by the terminal, such that when determining that computing power resources for AI-based processing by the terminal are occupied, the network device can schedule AI-based processing by the terminal on the basis of computing power information available to the terminal, thereby fully leveraging the advantages of AI-based processing by the terminal and improving the performance of a communication system.
Communication methods, communication devices, a communication system, a storage medium and a program product. A communication method comprises: a network device sending a first message to a terminal device; and the terminal device receiving the first message, and determining the number of repeated transmissions of msg4 on the basis of the first message. On this basis, the terminal device can directly determine the number of repeated transmissions of msg4, thereby further improving msg4 transmission efficiency.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium, and a program product. The communication method is executed by a first device. The method comprises: receiving a first message sent by a second device, wherein the first message carries first information, the first information is used for indicating an operation that the second device expects the first device to perform, the first message is sent by the second device when the second device has not received a second message, and the second message carries a device identifier of the first device. The communication method can improve communication efficiency.
The present disclosure relates to communication methods, communication devices, a communication system, a storage medium, and a program product. A communication method comprises: receiving at least one threshold sent by a network device; and on the basis of the at least one threshold and at least one measurement result, determining a switching operation for measurement states of a terminal, wherein the at least one measurement result is obtained by means of the terminal measuring at least one of a first cell and a second cell, the first cell is a serving cell of the terminal, the second cell comprises the serving cell of the terminal and a neighboring cell, and the measurement states of the terminal include at least two of measurement offloading, measurement relaxation and normal measurement. Thus, rapid switching to a corresponding measurement state is enabled, thereby facilitating the reduction of the signaling overhead and power consumption of terminals; the mobility of the terminals can also be fully taken into consideration, thereby facilitating an improvement to the efficiency of mobility management; and the balance between measurement and services can also be achieved by freeing up more resources for the services under measurement relaxation or measurement offloading, thereby accommodating different service requirements.
Provided in the embodiments of the present disclosure are delay determination methods, a device, a system, a storage medium and a program product. A delay determination method comprises: on the basis of the state of a model, determining a first delay, the model being used for determining channel state information (CSI), and the first delay being used for indicating a delay for determining the CSI on the basis of the model. In the method, when the model is in different states, delays for determining the CSI on the basis of the model are different and, on the basis of the state of the model, a terminal and a network device can determine the corresponding first delay, such that the network device can perform reasonable configuration, thus ensuring that the terminal can complete CSI processing or calculation within a sufficient delay, and improving the overall communication performance.
H04W 72/512 - Critères d’affectation ou de planification des ressources sans fil sur la base des propriétés du terminal ou du dispositif lorsqu’un faible temps de latence est requis, p. ex. URLLC
49.
INFORMATION PROCESSING METHOD, COMMUNICATION DEVICE, COMMUNICATION SYSTEM, AND STORAGE MEDIUM
Embodiments of the present disclosure provide an information processing method, a communication device, a communication system, and a storage medium. The information processing method is executed by a terminal, and comprises: determining to configure a first threshold and at least one second threshold for an LCG; and when the second threshold is less than the first threshold, determining a first operation, the first operation being related to DSR transmission.
The present disclosure relates to a CPU occupancy duration determination method, and a device, a system, a storage medium and a program product. The CPU occupancy duration determination method comprises: determining a first duration of first CPU occupancy and/or a second duration of second CPU occupancy, wherein a first CPU is used for executing a first processing mode, and a second CPU is used for executing a second processing mode. In the above embodiments, both a terminal and a network device determine the first duration of CPU occupancy of when processing CSI without using a model, and the second duration of CPU occupancy of when processing CSI by using a model, so that the terminal and the network device share the same understanding, thereby achieving the effect of being able to determine the used CPU occupancy duration when processing CSI by using a model, ensuring that the network device can subsequently configure, on the basis of the determined first duration and second duration, a more rational time for the terminal to send the CSI, and improving the stability of CSI measurement between the terminal and the network device.
The present disclosure relates to communication methods, a communication device, a communication system, a storage medium and a program product. A method may be performed by a terminal, and the method comprises: on the basis of a timer and/or first indication information from a network device, determining whether to retain a first measurement report, the first measurement report comprising one or more measurement reports that have not been transmitted to the network device. By introducing the mechanism of the timer and/or network indication, the terminal can dynamically manage measurement reports that have not been transmitted, thereby preventing long-term occupation of the cache by measurement data due to insufficient resources, improving resource utilization, ensuring that the network side can adjust terminal behaviors on the basis of real-time requirements, and enhancing flexibility.
Provided in the present disclosure are communication methods, a communication device, a communication system, a storage medium and a program product. In the present disclosure, a terminal receives a first message sent by a network device, so as to determine a first behavior on the basis of an ISA indicated by the first message, wherein the first behavior may include at least one of: whether to receive a system message, determining an MBS service area, and whether to receive an MCCH sent by the network device, thereby standardizing terminal behaviors in a scenario where a terminal receives an ISA indicated by a first message.
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 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
53.
COMMUNICATION METHOD, COMMUNICATION DEVICE, COMMUNICATION SYSTEM, STORAGE MEDIUM AND PROGRAM PRODUCT
Provided in the present disclosure are a communication method, a communication device, a communication system, a storage medium and a program product. In the present disclosure, a terminal determines first time-frequency resource configuration information on the basis of a predefined rule or first indication information sent by a network device, the first time-frequency resource configuration information being used for a first terminal to perform CSS detection on the basis of a first time-frequency resource, so as to ensure that the first terminal can effectively determine a time-frequency resource used for CSS detection, such that the first terminal can perform CSS detection on the basis of the first time-frequency resource indicated by the first time-frequency resource configuration information.
A method of decoding one or more pictures which are encoded using one or more picture components is described. The method includes determining, from a list of output picture component sets, at least one target output picture component set for a picture to be decoded, wherein the output picture component sets contain different combinations of the picture components of the picture, and decoding encoded data belonging to the at least one target output component set.
H04N 19/169 - 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
55.
TIME DELAY DETERMINATION METHODS, COMMUNICATION DEVICE, STORAGE MEDIUM AND PROGRAM PRODUCT
The present disclosure belongs to the technical field of communications, and relates to time delay determination methods, a communication device, a storage medium and a program product. A method comprises: on the basis of a first time point and a second time point, a terminal device determines an event-based layer 1 measurement reporting time delay, wherein the first time point is a starting point of layer 1 measurement corresponding to a trigger event, the second time point is a time point corresponding to the terminal device sending an uplink message to a network device by means of a first uplink resource, the uplink message is used for indicating a second uplink resource or requesting the second uplink resource, and the second uplink resource is used for reporting a layer 1 measurement result. In the method of the present disclosure, the layer 1 measurement reporting time delay is defined so as to implement a measurement reporting process performed by layer 1, thus further verifying whether terminals have the capability of accurately detecting channel changes in a timely manner, and reporting in a timely manner.
Embodiments of the present disclosure relate to the technical field of communications. Disclosed are a measurement parameter configuration method and apparatus, and a computer-readable storage medium. The measurement parameter configuration method applied to a user terminal (UE) side involves determining a measurement parameter based on the UE's height information. According to the embodiments of the present disclosure, the measurement parameter is determined based on the UE's height information, thereby better meeting the measurement parameter configuration requirements.
A method for decoding, from a bitstream, a geometry of a 3D point cloud, is implemented in a decoder. The method includes: receiving the bitstream, wherein the bitstream contains vertex information including information about a position of a vertex on edges of cuboids of leaf nodes of an octree structure of the point cloud; splitting a leaf node into sub-cuboids; and obtaining the vertex information about the sub-cuboids to determine points of the point cloud.
A method for communication based on precoding, performed by a network device, including: determining a codebook used by a terminal from at least two sets of candidate codebooks, where the at least two sets of candidate codebooks include a first codebook applicable to far-field communication and a second codebook applicable to near-field communication; and sending first indication information to the terminal, where the first indication information indicates the codebook used by the terminal.
The present disclosure provides an information processing method, a communication device, and a storage medium. The information processing method is executed by a UE, includes: receiving beam indication information sent by a network device, wherein the beam indication information is configured for indicating a beam for transmission in an SBFD time unit.
H04L 5/14 - Fonctionnement à double voie utilisant le même type de signal, c.-à-d. duplex
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
H04W 72/231 - Canaux de commande ou signalisation pour la gestion des ressources dans le sens descendant de la liaison sans fil, c.-à-d. en direction du terminal les données de commande provenant des couches au-dessus de la couche physique, p. ex. signalisation RRC ou MAC-CE
60.
COMMUNICATION METHOD, COMMUNICATION DEVICE, NETWORK FUNCTION ENTITY, AND ELECTRONIC DEVICE
Embodiments of the present disclosure relate to the technical field of communications, and provide a communication method, a communication device, a network function entity, and an electronic device. The method comprises: a first network function entity of a communication device delivers first configuration information downwards to a second network function entity, wherein the first network function entity and the second network function entity are network function entities of an access layer, and the first configuration information is used for configuring a first artificial intelligence (AI) model. According to the embodiments of the present disclosure, an AI model is transmitted in the access layer and can be used for the management process of a wireless communication system in the 3GPP, and a foundation is laid for an access network device to manage the AI model.
H04W 24/02 - Dispositions pour optimiser l'état de fonctionnement
H04L 41/16 - Dispositions pour la maintenance, l’administration ou la gestion des réseaux de commutation de données, p. ex. des réseaux de commutation de paquets en utilisant l'apprentissage automatique ou l'intelligence artificielle
The embodiments of the present disclosure relate to the technical field of mobile communications. Provided are a communication method, an electronic device, and a storage medium. The communication method is applied to a station (STA). The method comprises: establishing second connections to a second AP by means of a first AP, wherein each second connection is in an inactive state, an STA establishes a first connection to the first AP, the first connection is in an active state, and the first AP and the second AP belong to different physical entities. The embodiments of the present disclosure provide a mechanism for supporting an STA to switch between a plurality of AP devices.
Provided in the present disclosure are a communication method and apparatus, belonging to the technical field of communications. The method includes determining a reference signal pattern, wherein the reference signal pattern is used for an orthogonal time frequency space (OTFS) modulation system, and a guard interval is provided between a data transmission position and a reference signal transmission position in the reference signal pattern.
A method for measuring channel state information (CSI) is performed by a terminal, and includes: determining, according to state indication information, a measurement resource for measuring the CSI; wherein the state indication information indicates at least one of a time period during which a spatial unit of a base station is turned off or a time period during which the spatial unit is turned on.
H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
A cell configuration method includes: indicating at least one piece of candidate cell configuration information to a terminal device; and transmitting a change signaling to the terminal device. The change signaling is used for at least one of: activating or deactivating the at least one piece of candidate cell configuration information; or changing specific configuration content corresponding to the at least one piece of candidate cell configuration information.
A failure processing method includes receiving configuration information of at least one cell or cell group sent by a network side device; reading the configuration information; determining a reading failure for the configuration information; and performing a process corresponding to the reading failure.
A Quality of Service (QoS) flow control method includes: receiving, by a first core network function entity, terminal status information from a second core network function entity, wherein the terminal status information indicates a power consumption state of a terminal; and updating, by the first core network function entity, a QoS parameter of a QoS flow according to the terminal status information.
A random access (RA) method, performed by a terminal, includes: in response to triggering an RA process by a terminal supporting a beam correspondence, determining at least one of a sending beam or a receiving beam of the terminal based on the beam correspondence; and transmitting at least one of information or data in the RA process triggered currently based on the at least one of the sending beam or the receiving beam of the terminal.
A task processing method performed by a first network element includes: receiving a task calculation request sent by an application function (AF), in which the task calculation request carries task information of a calculation task and calculation resource information of a plurality of user equipment (UE); dividing the calculation task into a plurality of calculation sub-tasks to be executed in a distributed manner by the first network element, by UEs, or by both the first network element and UEs, based on the task information and the calculation resource information; determining a plurality of task execution results of the plurality of calculation subtasks; and sending the plurality of task execution results to the AF via a second network element.
The present disclosure relates to a frequency-domain position determination method and apparatus, and a storage medium. The frequency-domain position determination method comprises: receiving an NCD-SSB; and determining the frequency-domain position of a first cell-defining synchronization signal block (CD-SSB) and the frequency-domain position of a second CD-SSB on the basis of the NCD-SSB, the first CD-SSB belonging to a first access network, and the second CD-SSB belonging to a second access network. In the described embodiment, upon receiving an NCD-SSB, a terminal can determine the frequency-domain position of a CD-SSB of a first access network and the frequency-domain position of a CD-SSB of a second access network on the basis of the NCD-SSB, so that the terminal does not need to distinguish between NCD-SSBs, and instead, the terminal distinguishes between the CD-SSBs, thereby reducing resource consumption for the NCD-SSBs; in addition, distinguishing between the CD-SSBs can also ensure more stable communication between the terminal and a network device.
The present disclosure relates to communication methods, terminals, network devices, a system, a storage medium, and a program product. A communication method comprises: a terminal determining a frequency location of a synchronization channel on the basis of a mapping relationship, wherein the mapping relationship is a mapping relationship among a frequency range, the frequency location of the synchronization channel, and a global synchronization channel number (GSCN), and different communication protocols correspond to different mapping relationships; and the terminal receiving a synchronization signal at the frequency location. The present disclosure can avoid a situation in which terminals cannot distinguish among synchronization signals from base stations using different communication protocols, thereby ensuring as much as possible accurate identification of synchronization signals from different communication systems.
Disclosed in embodiments of the present disclosure are a communication method, a communication device, a communication system, and a storage medium. The method executed by a terminal comprises: determining a processing manner for a first sensing reference signal on the basis of configuration information sent by a network device; and processing the first sensing reference signal on the basis of the processing manner. Therefore, the processing manner for the first sensing reference signal is determined by the terminal, thereby improving the flexibility and reliability of sensing reference signal processing.
The embodiments of the present disclosure provide a service method, a network device, a network system, a storage medium, and a program product. The method, which is performed by a first network function (NF), comprises: providing a security and privacy service, wherein the security and privacy service comprises a security service and/or a privacy service, and the security and privacy service is configured for being requested and invoked by a plurality of second NFs. The present disclosure improves security and privacy service reliability and scalability, and reduces security and privacy service redundancy.
METHOD AND APPARATUS FOR CODING ONE OR MORE PICTURES COMPOSED OF ONE OR MORE PICTURE COMPONENTS USING A DATA UNIT HOLDING A SUBSET OF PICTURE COMPONENTS
A method of coding one or more pictures composed of a plurality of picture components is disclosed. The method includes generating a coded picture which is composed of a plurality of data units including coded picture components of the picture. The plurality of picture components of the picture are coded for obtaining the coded picture components, and the plurality of coded picture components are stored into the plurality of data units such that at least one of the plurality of data units contains a subset of the plurality of coded picture components.
H04N 19/172 - Procédés ou dispositions pour le codage, le décodage, la compression ou la décompression de signaux vidéo numériques utilisant le codage adaptatif caractérisés par l’unité de codage, c.-à-d. la partie structurelle ou sémantique du signal vidéo étant l’objet ou le sujet du codage adaptatif l’unité étant une zone de l'image, p. ex. un objet la zone étant une image, une trame ou un champ
H04N 19/119 - Aspects de subdivision adaptative, p. ex. subdivision d’une image en blocs de codage rectangulaires ou non
74.
COMMUNICATION METHOD, COMMUNICATION DEVICE, COMMUNICATION SYSTEM, STORAGE MEDIUM, AND PROGRAM PRODUCT
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium, and a program product. The method can be executed by an ambient Internet of Things (AIoT) device. The method comprises: determining that paging signaling sent by a network device is received, and determining a first frequency domain resource from among a plurality of candidate frequency domain resources; and sending a first message to the network device on the basis of the first frequency domain resource, the first message being used for initiating random access. In this way, upon receiving paging signaling, an AIoT device can determine a first frequency domain resource from among a plurality of candidate frequency domain resources, and send a first message, so that a device has reduced blindness in random resource selection during random access, lowering the probabilities of resource collision and resource idleness, thereby increasing the utilization rate of access resources.
The present disclosure provides a communication method, a communication device, a communication system and a storage medium. The method comprises: sending a preset message to a network device, wherein the preset message is used for carrying service information of a preset service or signaling information of the preset service, and the preset message indicates that the preset message carries the service information or the signaling information. In the present disclosure, a terminal can send the service information and the signaling information of the preset service in a differentiated manner. Thus, it can be ensured that the service information and the signaling information sent in a differentiated manner can respectively meet respective transmission requirements (such as QoS requirements), and can meet different quality-of-service requirements of the preset service, thereby ensuring communication quality.
The present application discloses a sensing method, a communication device, a communication system, a storage medium, and a program product. The sensing method executed by a first network element comprises: receiving a first sensing request, wherein the first sensing request comprises sensing target information, and the sensing target is associated with a terminal; sending a first request to a second network element serving the terminal, wherein the first request is used for requesting location information of the terminal; and in response to receiving the location information of the terminal, sensing a sensing target on the basis of the location information of the terminal. Thus, a sensing service using a positioning service is implemented, and the reliability and accuracy of the sensing service are improved.
The present disclosure relates to global navigation satellite system measurement methods and an apparatus. A method comprises: while in a time division duplex mode, receiving a global navigation satellite system signal within a global navigation satellite system measurement gap; and measuring the global navigation satellite system signal. In the global navigation satellite system measurement methods and the apparatus provided in the present disclosure, when a UE is in the TDD mode, a GNSS signal is first received within the GNSS measurement gap, and then the received GNSS signal is measured, so as to prevent the UE from frequently entering an idle state after GNSS-related information expires, thus ensuring that the UE can efficiently perform GNSS measurement, and reducing power consumption.
G01S 19/39 - Détermination d'une solution de navigation au moyen des signaux émis par un système de positionnement satellitaire à radiophares le système de positionnement satellitaire à radiophares transmettant des messages horodatés, p. ex. GPS [Système de positionnement global], GLONASS [Système mondial de satellites de navigation] ou GALILEO
78.
COMMUNICATION METHOD, COMMUNICATION DEVICE, COMMUNICATION SYSTEM, STORAGE MEDIUM, AND PROGRAM PRODUCT
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium, and a program product. The method may be performed by a first ambient Internet of things (AIoT) device. The method comprises: receiving a first message sent by a network device; on the basis of the first message, determining that a second message needs to be sent to the network device, and determining a first frequency domain resource; and sending the second message to the network device on the first frequency domain resource, wherein the second message comprises a device identifier corresponding to the AIoT device. Uplink transmission can be activated only when scheduling is confirmed, thereby reducing unnecessary power consumption, avoiding collisions caused by random contention, and ensuring reliable transmission of the second message.
The present disclosure relates to communication methods, a communication device, a communication system, a storage medium and a program product. A method performed by a terminal comprises: receiving first information sent by a network device, the first information indicating a data collection configuration that the network device can provide, and the data collection configuration being used for data collection by the terminal; and, on the basis of the data collection configuration and a first configuration, determining whether to send a first request to the network device, the first request being used to request the network device to provide the first configuration, wherein the first configuration is a network configuration required by the terminal to perform data collection. In this way, signaling and radio resource wastes caused by a terminal requesting a first configuration that a network device cannot provide can be avoided, thereby optimizing a data collection process.
The present disclosure relates to communication methods, terminals, network devices, a system, a storage medium and a program product. A communication method comprises: a terminal sending a report, wherein the report is triggered by an event, the event is that the quality of a current beam is lower than a first threshold value, the report comprises a first differential quality, and the first differential quality is the difference between the quality of the current beam and the first threshold value. The present disclosure can improve the communication efficiency.
The present disclosure relates to a communication method, a terminal, a network device, a system, a storage medium and a program product. The communication method comprises: a terminal determining a first time, wherein the first time is used for determining that the reference signal resource corresponding to a report is a reference signal resource no later than the first time, the report is triggered by an event, and the report is carried on the basis of a physical uplink shared channel (PUSCH). In the present disclosure, a terminal determines a first time, which is used for determining that the reference signal resource corresponding to a report is a reference signal resource not later than the first time, such that the reported report can be more reliable, thereby improving the communication efficiency.
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
82.
COMMUNICATION METHOD, APPARATUS AND SYSTEM, AND DEVICE, STORAGE MEDIUM AND PROGRAM PRODUCT
The present disclosure relates to the technical field of communications, and relates to a communication method, apparatus and system, and a device, a storage medium and a program product. The method comprises: receiving N channel measurement reference signals at N first moments, wherein the N first moments are moments predicted and output by an artificial intelligence (AI) model, and the N channel measurement reference signals are used for determining monitoring information of the AI model, with N being an integer greater than or equal to 1. The communication method, apparatus and system, and the device, the storage medium and the program product provided in the present disclosure are used for a terminal device to receive N channel measurement reference signals at N moments predicted and output by an AI model, and to obtain monitoring information of the AI model on the basis of the N channel measurement reference signals, thereby realizing monitoring over the AI model.
Provided in the present disclosure are an information receiving and sending method, and an information receiving and sending apparatus. The method, which is executed by a first device, comprises: receiving first information sent by a second device; receiving second information sent by a third device; determining third information on the basis of the first information and the second information; sending the third information to the second device; and sending the third information to the third device. Therefore, compared with a method in which a first device sends first information to a third device and directly sends second information to a second device, the method can reduce link resource overheads, and increase the throughput of information transmission, thereby improving the performance of a communication system.
H04W 72/25 - Canaux de commande ou signalisation pour la gestion des ressources entre terminaux au moyen d’une liaison sans fil, p. ex. liaison secondaire
84.
COMMUNICATION METHODS, COMMUNICATION DEVICE, AND COMMUNICATION SYSTEM
The present disclosure relates to the technical field of communications, and provides communication methods, a communication device and a communication system. A method comprises: a network device sends on a first time-frequency resource a specific first sequence to a terminal device, so as to indicate, by means of the first sequence, whether to release first SPS. Thus, the terminal device does not need to perform blind detection on the basis of downlink control information (DCI) to acquire indication information of a SPS release, saving the detection power consumption of the terminal device.
The present disclosure relates to the technical field of communications. Provided are a communication method, a communication device and a communication system. The method comprises: a network device sending a specific first sequence to a terminal device on a first time-frequency resource, such that whether first SPS has been activated can be indicated by means of the first sequence. Thus, the terminal device is not required to perform blind detection on the basis of downlink control information (DCI) so as to acquire SPS activation indication information, such that the detection power consumption of the terminal device can be reduced.
The present disclosure relates to a communication method, a communication device, a communication system, and a storage medium. The communication method comprises: receiving a first signal, the first signal comprising at least one of the following: a first part and a second part, wherein the first part is used for indicating a transmission start position of a first channel, and the second part is used for indicating clock reference information of the first channel; and on the basis of the first signal, determining at least one of the transmission start position and the clock reference information of the first channel. In this way, the indication overhead of a transmission start position and clock reference information of a first channel can be reduced, and the indication accuracy of the transmission start position and the clock reference information of the first channel can be improved, thereby improving the data transmission rate and ensuring the system performance.
The present disclosure relates to communication methods, a communication device, a communication system, a storage medium and a program product. A method is executed by a first network element, and comprises: sending first information to a terminal, wherein the first information indicates that a first network supports carrying out IMS services by means of NB-IoT access, the first network element is located in the first network, and an access type used by the terminal is NB-IoT. The solution of the present disclosure can carry out IMS services by means of NB-IoT access, thereby enhancing system performance.
Provided in the embodiments of the present disclosure are an information processing method, a communication device, a communication system and a storage medium. The information processing method is executed by a terminal, and comprises: determining that at least one reporting interval is configured for one LCG, wherein one reporting interval is used for at least indicating a value interval of one remaining time period; and determining the volume of data sent in the at least one reporting interval when a DSR is sent.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium and a program product. The method comprises: receiving, within a first area by means of an LR, downlink information sent by a network device, wherein the first area comprises at least one cell configured with a low-power signal. In the embodiments of the present disclosure, in an area where a low-power signal is deployed, such as a first area, a terminal can receive, when located in any of different cells within the first area, downlink information by means of an LR without activating or waking up MR, thereby effectively improving the energy-saving effect of the terminal.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium, and a program product. The method comprises: receiving first indication information sent by a network device, wherein the first indication information is used for indicating time information corresponding to activated random access channel (RACH) configuration information among at least one piece of RACH configuration information. In the method of the present disclosure, a terminal can determine, on the basis of the first indication information sent by the network device, the time information corresponding to the activated RACH configuration information among the at least one piece of RACH configuration information, thereby determining a period of time during which the activated RACH configuration information is available, rationally using RACH resources, facilitating load balancing, and improving random access performance.
The present disclosure relates to communication methods, a communication device, a communication system, a storage medium and a program product. A method is executed by a terminal, and comprises: the terminal performing a first service on a first cell; and sending a first message on a second cell, the first message being used for requesting system information of the second cell. By means of the solution of the present disclosure, terminals request system messages on demand when performing first services.
Embodiments of the present disclosure relate to the technical field of communications. Disclosed are an information processing method, an apparatus, and a computer readable storage medium. The information processing method comprises: receiving first information sent by a terminal, the first information comprising a first Layer 3 reference signal received power (L3-RSRP); and determining an accuracy metric value of the L3-RSRP on the basis of the first L3-RSRP and a corresponding ground-truth L3-RSRP, wherein the first L3-RSRP is predicted on the basis of an artificial intelligence (AI) model. In the embodiments of the present disclosure, the accuracy metric value of the L3-RSRP is determined on the basis of the first L3-RSRP predicted on the basis of the AI model and the corresponding ground-truth L3-RSRP, and the performance metric of the RSRP prediction accuracy can be obtained, so that an AI-based mobility management mechanism is perfected, and RSRP estimation and switching management efficiency is further improved.
The present disclosure relates to an information retransmission method, and a device, a storage medium and a program product. The information retransmission method comprises: receiving first information sent by a second device, wherein the first information is used for indicates that a first device retransmits second information, and the second information carries an identifier of the first device; and on the basis of the first information, determining a first frequency domain resource, wherein the first frequency domain resource is used for retransmitting the second information. In the embodiment, both the first device and the second device can determine, on the basis of the first information used for indicating the retransmission of the second information, the frequency domain resource that is used to retransmit the second information, thereby ensuring that an accurate frequency domain resource is used during the retransmission of the second information; and the first device and the second device have a consistent understanding on the determined frequency domain resource that is used to retransmit the second information, thus improving the stability of retransmitting the second information between the first device and the second device.
Provided in the present disclosure are an information transmission method and apparatus. The method, which is executed by a terminal, comprises: sending first information to a first network device, wherein the first information is used for indicating first computing power supported by a terminal for performing processing on the basis of artificial intelligence (AI); and/or sending second information to a second network device, wherein the second information is used for indicating second computing power supported by the terminal for performing processing on the basis of AI. In this way, a terminal may send, to a first network device, first computing power supported by the terminal for performing processing on the basis of AI, and/or send, to a second network device, second computing power supported by the terminal for performing processing on the basis of AI, such that the first network device and/or the second network device may schedule, on the basis of computing power information supported by the terminal, the terminal to perform processing on the basis of AI, so as to fully leverage the advantages of the terminal performing processing on the basis of AI, thereby improving the performance of a communication system.
Provided in the present disclosure are symbol sending methods, a communication device, a communication system, and a storage medium. A symbol sending method comprises: sending a first modulation symbol or a second modulation symbol to a second device, wherein the first modulation symbol is used for determining the second modulation symbol, and a first device communicates with a third device by means of the second device; or sending the second modulation symbol to the third device, wherein the first modulation symbol is a symbol corresponding to data bits subjected to modulation mapping under a first modulation scheme, the second modulation symbol is a symbol corresponding to the data bits subjected to modulation mapping under a second modulation scheme, and for the same modulation order, the number of amplitude levels of the second modulation scheme is less than the number of amplitude levels of the first modulation scheme. The method of the present disclosure can improve the data transmission performance and efficiency.
The embodiments of the present disclosure relate to a time alignment method, a communication device, and a communication system. The time alignment method comprises: a test equipment (TE) or a network device (NW) configuring first information of a user equipment (UE), wherein the first information is used for performing, at a same time instance, time alignment on a predicted L3-RSRP reported by the UE and a ground-truth RSRP calculated by the TE or the NW. Therefore, it is ensured that a predicted RSRP and a ground-truth RSRP are compared at a same time instance, thereby improving the reliability of performance verification of an AI model.
The embodiments of the present disclosure relate to a communication method, a communication device and a communication system. The communication method comprises: a first device evaluating the channel quality prediction performance of a user equipment (UE) on the basis of a channel quality predicted value and a channel quality measured value, wherein the first device comprises a test equipment (TE) or a network device; the channel quality predicted value is obtained by means of the UE performing channel quality prediction on a channel indicated by a first channel sequence; the channel quality measured value is obtained by means of the UE performing channel quality measurement on a channel indicated by a second channel sequence; the second channel sequence is obtained after the TE performs a scrambling operation on the first channel sequence; and the first channel sequence and the second channel sequence each comprises at least one target channel having the same channel characteristics. The communication method can further enhance a mobility management mechanism based on artificial intelligence.
The present disclosure relates to an information processing method and apparatus, a device, a system, a storage medium, and a program product. A network device sends system information (SI) to a terminal device on the basis of a downlink time period, wherein the downlink time period is used for transmitting IoT-NTN-based downlink data. Embodiments of the present disclosure can ensure that a network device can send SI to a terminal device during a downlink time period used for transmitting IoT-NTN-based downlink data, thereby ensuring the reliability of SI transmission, improving the network quality of service and reliability, and meeting the high requirements of modern communication systems for speed, efficiency, and security.
The present disclosure provides a communication method, a first-type terminal, a network device, a system, and a storage medium. The method comprises: in a first cell-specific search space (CSS), on the basis of specific information of a first-type terminal, detecting and receiving downlink control information (DCI) sent by a network device, wherein the first CSS is used by the network device to send the DCI to a second-type terminal. The present disclosure can reduce terminal energy consumption while meeting scheduling requirements of different types of terminals, thereby facilitating the development of LPWA technology, and providing high availability.
The present disclosure relates to a communication method, a communication device, a communication system, a storage medium and a program product. The method comprises: sending network information to a first node, wherein the first node is a node that collects data, the network information comprises information of a first network in which a terminal is located, and the network information is used by the first node to select the terminal that collects data and determine a data collection configuration of the terminal for data collection; and receiving a data collection indication sent by the first node, wherein the data collection indication comprises the data collection configuration. That is to say, the first node can provide a corresponding data collection configuration for the terminal on the basis of the network information sent by the terminal, thereby avoiding the waste of signaling and radio resources caused by the terminal requesting a data collection configuration that cannot be provided by a network.