This terminal device comprises a reception unit and a control unit. The reception unit receives, via a first cell, a first signal that includes configuration information for measuring a second signal transmitted from a second cell different from the first cell. In addition, the reception unit receives, via the first cell, a fourth signal for instructing switching from the first cell to the second cell. Upon receiving a third signal that includes instruction information for instructing the transmission of measurement information, the control unit performs control so as to transmit the measurement information via the second cell after receiving the fourth signal.
The present invention comprises: a receiving unit that receives, from a first base station device forming a first cell, a first signal that includes first configuration information for requesting first system information from a second base station device forming a second cell; a transmitting unit that transmits a second signal to the second base station device in accordance with the first configuration information; and a control unit that, according to a reference time and information regarding a time offset from the reference time, determines a first time as the start timing of a monitoring window for the first system information transmitted from the second base station device, and controls reception of the first system information transmitted from the second base station device so as to occur within the monitoring window.
H04W 72/231 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the layers above the physical layer, e.g. RRC or MAC-CE signalling
3.
RECEPTION DEVICE, TRANSMISSION DEVICE, AND COMMUNICATION SYSTEM
A reception device (3) comprises: a reception unit that receives, from a transmission device (2), first information (11) relating to a sensing signal, and a first signal (12) in which the sensing signal and a communication signal are superimposed; and a control unit that uses the first information (11) to extract the communication signal from the first signal (12).
H04W 72/232 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
G01S 13/46 - Indirect determination of position data
H04W 72/0446 - Resources in time domain, e.g. slots or frames
H04W 72/0453 - Resources in frequency domain, e.g. a carrier in FDMA
H04W 72/1273 - Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows of downlink data flows
4.
SIGNAL SENDING AND RECEIVING METHOD, APPARATUS, AND COMMUNICATION SYSTEM
Embodiments of the present application provide a signal sending and receiving method, an apparatus, and a communication system. The method comprises: a terminal device receives a serving cell configuration of one or more cells, at least one cell of the one or more cells having a first time domain resource and/or a second time domain resource, wherein in the second time domain resource, a first frequency domain resource is used for uplink and a second frequency domain resource is used for downlink, and the first time domain resource is outside the second time domain resource; and the terminal device sends an uplink signal in a cell having the first time domain resource and/or the second time domain resource.
Provided in the embodiments of the present application are a method and apparatus for determining a chip duration of a D2R transmission. The method comprises: a first device receiving first information sent by a second device, and sending a D2R transmission to the second device on the basis of the first information; and the first device determining a chip duration of the D2R transmission, wherein the first device determines the chip duration of the D2R transmission on the basis of the first information and/or a predefined manner and/or a D2R transmission (possibly but not limited to the D2R transmission).
Provided in the embodiments of the present application are an access failure processing method and apparatus, the method comprising: a first device receiving first information from a second device, determining a first time-frequency resource on the basis of the first information, and sending a second Msg1 to the second device on the first time-frequency resource, wherein before sending the second Msg1 to the second device, the first device sends a first Msg1 to the second device, but fails to receive a first Msg2 fed back by the second device; and/or, before sending the second Msg1 to the second device, the first device sends the first Msg1 to the second device, and receives the first Msg2 fed back by the second device, but the first device fails to send a first Msg3 to the second device; and/or, before sending the second Msg1 to the second device, the first device sends the first Msg1 to the second device, receives the first Msg2 fed back by the second device, and sends the first Msg3 to the second device, but fails to receive feedback information from the second device or receives feedback information from the second device, which is an NACK.
This base station device comprises: a reception unit that receives, from a terminal device, an event-triggered beam report transmitted when a prescribed condition is satisfied; a transmission unit that transmits, to the terminal device, beam report configuration information relating to the beam report; and a control unit that counts the number of reference signal resources and the number of ports, which are simultaneously measured in the terminal device, in accordance with the prescribed condition.
The present invention improves the efficiency of power saving operations related to wireless communication between a terminal device and a base station device. This terminal device includes a control unit, a transmission unit, and a reception unit, and uses a primary cell and a secondary cell. The reception unit receives a synchronization signal setting related to a synchronization signal to be transmitted on demand to the secondary cell, a report setting related to a report of a measurement result of the synchronization signal, and control information indicating the start or stop of the transmission of the synchronization signal. The control unit evaluates a measurement event condition for the secondary cell indicated in the report setting when the control information shows the start of the transmission of the synchronization signal, and does not evaluate the measurement event condition when the control information shows the stop of the transmission of the synchronization signal. The transmission unit transmits a measurement report message including the measurement result of the secondary cell to the base station device when an establishment condition for the measurement event condition is satisfied on the basis of the measurement result of the secondary cell.
H04W 72/231 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the layers above the physical layer, e.g. RRC or MAC-CE signalling
9.
TRANSMISSION NODE, RECEPTION NODE, AND COMMUNICATION SYSTEM
The present invention comprises: a reception unit (113) that receives first information from a reception node (2); a control unit (115) that allocates a sensing signal to a resource in accordance with the first information; and a transmission unit (112) that transmits information relating to the allocation to the reception node (2) and transmits the sensing signal in accordance with the allocation.
H04W 72/1263 - Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
H04W 4/38 - Services specially adapted for particular environments, situations or purposes for collecting sensor information
H04W 72/0446 - Resources in time domain, e.g. slots or frames
H04W 72/566 - Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient
10.
RANDOM ACCESS METHOD AND APPARATUS, AND COMMUNICATION SYSTEM
Embodiments of the present application provide a random access method and apparatus, and a communication system. The method comprises: a terminal device receives information used for configuring a first time domain resource and/or a second time domain resource, wherein the second time domain resource includes a second time domain resource configured to be downlink and/or a second time domain resource configured to be flexible, and the first time domain resource is different from the second time domain resource; and the terminal device uses a random access occasion (RO) overlapping the second time domain resource configured to be downlink or an RO overlapping the second time domain resource, to send a preamble.
Embodiments of the present application provide a performance monitoring method and apparatus, and a communication system. The performance monitoring apparatus is applied to a terminal device. The apparatus comprises a first receiver and a first processor. The first receiver receives first information, wherein the first information is used for configuring at least one channel state information reference signal (CSI-RS) resource set, the CSI-RS resource set is used for performing performance monitoring on an artificial intelligence model or function, the artificial intelligence model or function is used for predicting CSI, and there is at least one CSI-RS in each CSI-RS resource set; the first receiver receives the CSI-RS; and the first processor calculates a performance monitoring metric on the basis of the measurement result of the CSI-RS.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
Provided in the embodiments of the present application are a random access method and apparatus, and a communication system. The method comprises: a terminal device receiving information for configuring a first time-domain resource and/or a second time-domain resource, wherein the second time-domain resource includes a second time-domain resource configured as downlink and/or a second time-domain resource configured as flexible, and the first time-domain resource is different from the second time-domain resource; and using a random access opportunity (RO) overlapping with the second time-domain resource configured as downlink, or an RO overlapping with the second time-domain resource, to send a preamble.
An SSB measurement method and apparatus, and an SSB configuration method and apparatus. The SSB measurement method comprises: a terminal device receiving first information from a network device, wherein the first information is at least used for configuring an SSB measurement timing configuration (SMTC) for a first measurement object; and the terminal device measuring, on the basis of the SMTC for the first measurement object, an SSB transmitted on the first measurement object, wherein the first measurement object comprises a beam-related measurement object and/or a cell-related measurement object.
Embodiments of the present application provide a report transmission apparatus, a report reception apparatus, and a communication system. The report transmission apparatus comprises: a receiver, configured to receive a cell switch command for layer 1 or layer 2 triggered mobility (LTM); and a processor, configured to measure a channel state information reference signal (CSI-RS) resource before and/or after receiving the cell switch command, and transmit a CSI report on the basis of a measurement result.
A terminal apparatus includes: a receiver configured to receive first information regarding configuration of a first period, and second information regarding configuration of a second period, and a controller configured to control transmission and reception in accordance with the first period and the second period, wherein the first period is configured to configure one or both of a first configuration indicating a section in which the base station apparatus is capable of transmission, and a second configuration indicating a section in which the base station apparatus is capable of reception, and a value of a common parameter is applied to each of the first configuration and the second configuration, and the controller performs processing of receiving retransmission of downlink data in accordance with the first configuration and the configuration of the second period, in a case where the first configuration is configured and activated and the second period is configured.
H04W 72/231 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the layers above the physical layer, e.g. RRC or MAC-CE signalling
H04W 72/51 - Allocation or scheduling criteria for wireless resources based on terminal or device properties
16.
GNSR-AWARE SPECTRAL SLOT ASSIGNMENT WITH WAVELENGTH CONVERTERS
According to an aspect of an embodiment, operations may include receiving a wavelength demand for transmitting optical signals in required wavelength ranges. The operations may also include identifying an optical path that includes a plurality of nodes. In addition, the operations may include, for each individual node of the plurality of nodes, grouping one or more virtual nodes into a first group and a second group. The operations may also include identifying a plurality of spectral paths of the optical path. The operations may further include iterating each respective virtual node along the plurality of spectral paths to identify a list of candidate spectral paths in the plurality of spectral paths for each virtual node. In addition, the operations may further include serving the wavelength demand when all virtual nodes are iterated and at least one spectral path of the plurality of spectral paths remains after iteration.
H04J 14/02 - Wavelength-division multiplex systems
H04B 10/079 - Arrangements for monitoring or testing transmission systemsArrangements for fault measurement of transmission systems using an in-service signal using measurements of the data signal
17.
RECORDING MEDIUM, INFORMATION PROCESSING DEVICE, AND INFORMATION PROCESSING SYSTEM
An information processing device uses an agent including the training model and identifies a first command group corresponding to a first objective corresponding to a first input content. The information processing device uses the agent to generate and execute at least one command of the first command group until the first objective is achieved and repeats a first process of summarizing a result of executing the command. Here, for example, the information processing device generates a command based on at least any of the first input content, a history of executed commands in the first process up to the previous time, and a summary of a result of executing one or more commands. The information processing device uses the agent and when the first objective 102 is achieved, generates answer content corresponding to the first input content.
A processing apparatus for a timer, configured in a terminal equipment, includes: first processor circuitry configured to perform at least one of the following processing when a first timer is not running: fast recovery; random access-based cell switch; transmitting the first uplink data by using a dynamic grant; or starting or restarting the first timer; wherein the first timer is a configured grant timer or a time alignment timer.
An information reception apparatus, applicable to a terminal equipment, includes: a transmitter; and a receiver configured to receive a first downlink control information (DCI) for scheduling a physical downlink shared channel (PDSCH) of one or more cells in a first cell set and/or a second DCI for scheduling a physical uplink shared channel (PUSCH) of one or more cells in a second cell set in a scheduling cell, wherein the receiver is further configured to receive, when the receiver receives the first DCI, a PDSCH in some or all of cell(s) scheduled by the first DCI, and the transmitter is further configured to transmit, when the receiver receives the second DCI, a PUSCH in some or all of cell(s) scheduled by the second DCI.
H04W 72/232 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
H04W 72/1263 - Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
A signal forwarding apparatus, applicable to a repeater, includes: a mobile termination (MT) configured to receive a timing advance command, the timing advance command indicating an index value TA for controlling a first timing; and forwarding entity configured to transmit a signal on a backhaul link by using the first timing, wherein the repeater is an RF repeater, the mobile termination is used to communicate with a network device via a control link, and the forwarding entity is used to forward an RF signal between a network device and a user equipment via the backhaul link and an access link.
A method and apparatus for transmitting and receiving information. Including: receiving first configuration information by a first network device from a second network device, the first configuration information being used for data collection configuration; receiving first information and/or second information by the first network device from the second network device, the first information and the second information being related to data collection, the first information is at least used to generate a measurement configuration, and the second information is at least used to generate a data report configuration related to the measurement; and transmitting third information by the first network device to the second network device, the third information being at least used for suggestions and/or feedback of the data collection configuration given by the second network device.
H04L 41/16 - Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks using machine learning or artificial intelligence
22.
METHOD AND APPARATUS FOR TRANSMITTING AND RECEIVING INFORMATION
An apparatus for transmitting and receiving information, provided in a terminal equipment, includes: a generator configured to generate first information, the first information being information on artificial intelligence/machine learning (AI/ML) in wireless communication; and a first transmitter configured to transmit the first information to a network device.
Provided in the embodiments of the present application are a signal transceiving method, apparatus and system. The method comprises: a first device receiving on a first resource a first signal sent by a second device, wherein the first signal at least bears first information and/or second information, the first information is at least control information sent by the second device, and the second information is at least data information sent by the second device; and the first device sending on a second resource a second signal to the second device, wherein the first information is at least used for instructing or controlling or triggering the first device to receive the second information, and/or controlling or scheduling or triggering the first device to send the second signal.
Embodiments of the present application provide a report sending method and apparatus, a report receiving method and apparatus, a report configuration method and apparatus, and a communication system. The report sending apparatus is an apparatus applied to a terminal device side. The apparatus on the terminal device side is configured with an artificial intelligence model or function for channel state information prediction. The report sending apparatus comprises a first communication unit, and the first communication unit performs the following operations: configuring a first resource set used for performing performance monitoring on the artificial intelligence model or function, and a second resource set used for inference, time-domain behavior of the first resource set or the second resource set being at least one of the following: periodic, semi-persistent, and aperiodic; and sending a channel state information report used for performance monitoring and a channel state information report used for inference, time-domain behavior of the channel state information report used for performance monitoring or the channel state information report used for inference being at least one of the following: periodic, semi-persistent, or aperiodic, wherein a terminal device measures the first resource set to acquire ground truth data and/or compute performance metrics, and the terminal device measures the second resource set, the measurement results being used as input to the artificial intelligence model or function.
Provided in the embodiments of the present application are a report transmission method and apparatus, and a communication system. The apparatus comprises: a processor, which determines, when a report satisfies a trigger condition, to transmit a PUCCH on a PUCCH resource, or not to transmit the PUCCH on the PUCCH resource; and a transmitter, which transmits the report when it is determined to transmit the PUCCH, and does not transmit the report when it is determined not to transmit the PUCCH.
Provided in the embodiments of the present application are a method for supporting data segmentation of an ambient Internet of Things device, an apparatus and a communication system. The apparatus is applied to a first terminal device, and comprises: a first communication module, which receives first information sent by a reader, the first information indicating information related to the size of a device-to-reader (D2R) message; and a determination module, which determines, on the basis of the first information and memory information, segmented transmission of the message sent by the first terminal device to the reader, wherein the first communication module communicates with the reader by means of ambient Internet of Things radio, and the reader is arranged on a network device or a second terminal device.
Provided in the embodiments of the present application are a method and apparatus for receiving a reference signal, a method and apparatus for sending a reference signal, and a communication system. The apparatus for receiving a reference signal is applied to an apparatus at a terminal device side, and an apparatus at a network device side is configured with an artificial intelligence model or function for beam management, the beam management comprising spatial domain beam prediction. The apparatus for receiving a reference signal comprises a first communication unit, the first communication unit being configured to: be configured, by the apparatus at the network device side, with a first resource set used for performance monitoring and/or a resource set used for inference, the resource set used for inference comprising a second resource set (Set B), or the resource set used for inference comprising the second resource set (Set B) and a third resource set (Set A); and receive a reference signal in the first resource set and/or a reference signal in the resource set used for inference.
Provided in the embodiments of the present application are a method and apparatus for an LTM cell change and an LTM candidate configuration, and a communication system. The method comprises: a terminal device receiving an LTM candidate configuration sent by a network device, and the terminal device executing an LTM cell change, wherein the execution of the LTM cell change at least includes using the LTM candidate configuration, the LTM candidate configuration is used for a first LTM cell change and/or a second LTM cell change, the first LTM cell change is a conditional LTM cell change, and the second LTM cell change is an LTM cell change triggered by means of an LTM cell change command.
A terminal, includes: a receiver configured to receive a first signal including first information indicating that Cell DTX (discontinuous transmission) is enabled from a base station; and a controller configured to control whether or not to generate feedback information with respect to a resource preset for receiving a signal from the base station according to whether or not an inactive section of the Cell DTX and the resource overlap.
An apparatus for configuring a discontinuous reception (DRX) cycle, configured in a network device, includes: a transmitter configured to transmit a first configuration message to a terminal equipment, the first configuration message configuring a non-integer DRX cycle represented by one or more fractions; and the first configuration message includes a first information element, the first information element including a field indicating a non-integer long DRX cycle and a start offset thereof and/or indicating a non-integer short DRX cycle.
An apparatus for performance monitoring, includes: a receiver configured to receive a first configuration and a second configuration transmitted by a network device; wherein the first configuration at least comprises one or more performance metrics and the second configuration at least comprises a reporting configuration; processor circuitry configured to, according to the first configuration, monitor performance of a functionality of AI/ML (Artificial Intelligence/Machine Learning); and a transmitter configured to transmit performance information corresponding to the functionality to the network device according to the reporting configuration.
A performance monitoring apparatus, includes: a receiver configured to receive a first configuration transmitted by a network device; a monitor configured to monitor a performance of an AI/ML (Artificial Intelligence/Machine Learning) model with an enabled or activated functionality according to the first configuration, the functionality comprising a feature or a feature group enabled by a configuration indicated by terminal equipment capability; and processor circuitry configured to determine whether or not the functionality fails according to monitoring.
H04L 5/00 - Arrangements affording multiple use of the transmission path
H04L 41/16 - Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks using machine learning or artificial intelligence
H04W 8/22 - Processing or transfer of terminal data, e.g. status or physical capabilities
A resource configuration method and apparatus. The resource configuration method includes: a terminal equipment receives configuration information from a network device, wherein the configuration information includes a resource configuration, the resource configuration includes a second set for beam measurement and a first set for beam prediction, and the configuration information further includes a reporting configuration for reporting in respect of the second set and/or the first set.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
H04L 41/16 - Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks using machine learning or artificial intelligence
Provided in the embodiments of the present application are an uplink transmission or downlink transmission method and apparatus, and a communication system. The uplink transmission apparatus is applied to an apparatus on a network device side. The uplink transmission apparatus comprises a first communication unit. The first communication unit is configured to: configure an apparatus on a terminal device side to perform uplink transmission by using a codebook generated on the basis of an artificial intelligence function or model; and receive data uplink-transmitted by the terminal device on the basis of the codebook.
Provided in the embodiments of the present application are a method and apparatus for sending a power headroom report, a method and apparatus for receiving a power headroom report, and a communication system. The method for sending a power headroom report comprises: a terminal device receiving a serving cell configuration of a cell, wherein the serving cell configuration comprises at least one uplink power control information element, which can comprise two power control parameter sets for a PUSCH, the two power control parameter sets including a first power control parameter set and a second power control parameter set; and sending one or two power headrooms of the cell, wherein the one or two power headrooms include: a first power headroom associated with the first power control parameter set, and/or a second power headroom associated with the second power control parameter set.
Provided in the embodiments of the present application are a method and apparatus for sending a power headroom report, a method and apparatus for receiving a power headroom report, and a communication system. The method for sending a power headroom report comprises: a terminal device receives information for configuring a first time domain resource and/or a second time domain resource, wherein in the second time domain resource, a first frequency domain resource is used for uplink and a second frequency domain resource is used for downlink, and the first time domain resource is outside the second time domain resource; and the terminal device sends power headroom of a cell configured with the first time domain resource and/or the second time domain resource.
Embodiments of the present application provide a report sending method and apparatus, a report receiving method and apparatus, a report configuration method and apparatus, and a communication system. The report sending apparatus is applied to an apparatus on a terminal device side. An artificial intelligence model or function for beam management is configured for the apparatus on the terminal device side. The report sending apparatus comprises a first communication unit, and the first communication unit performs the following operations: configuring a first resource set for performing performance monitoring on the artificial intelligence model or function, and a second resource set for reasoning, wherein a time domain behavior of the first resource set or the second resource set is at least one of the following: a periodic time domain behavior, a semi-persistent time domain behavior, and an aperiodic time domain behavior; and sending a channel state information report for performance monitoring and a channel state information report for reasoning, wherein a time domain behavior of the channel state information report for performance monitoring or the channel state information report for reasoning is at least one of the following: a periodic time domain behavior, a semi-persistent time domain behavior, and an aperiodic time domain behavior, a terminal device measures the first resource set to acquire real reference data and/or a calculation performance metric, the terminal device measures the second resource set, and a measurement result is used for inputting the artificial intelligence model or function.
A data transmission method, a data transmission indication method, and an apparatus. The method comprises: when a first condition is met, a terminal device sends first data to a first network device by means of a dedicated user plane channel and/or a protocol data unit or protocol data unit set having a specified priority, wherein the first data is used for performing at least one of training a first model and supervising the first model, and the first model is an AI/ML model applied to the terminal device side.
A data collection method, an indication method for data collection, and an apparatus. The data collection method comprises: a terminal device receiving first information sent by a first network device or a second network device; and the terminal device collecting first data by using a first configuration matching the first information, wherein the first data is used for at least one of training a first model and supervising the first model, and the first model is an AI/ML model applied to the terminal device side.
Provided in the embodiments of the present application are a method and apparatus for supporting the priority of a logical channel, and a communication system. The apparatus is applied to a terminal device, and comprises: a configuration unit, which configures a first parameter and a default priority for a logical channel of a media access control (MAC) entity of the terminal device, the first parameter being configured to set the priority of the logical channel containing first data; and a determination unit, which determines the priority of the logical channel, wherein the first parameter is configured by means of radio resource control (RRC) signaling, and the remaining time of a packet data convergence protocol layer service data unit (PDCP SDU) associated with the first data is less than a first threshold.
Provided in the embodiments of the present application are an information interaction method and apparatus related to a wireless positioning method. The information interaction method comprises: a network device sending first configuration information to a terminal device, the first configuration information being used for instructing the terminal device to switch and/or terminate and/or select and/or reselect a wireless positioning method; and according to the first configuration information, the terminal device selecting, reselecting, switching or terminating the wireless positioning method.
Provided in the embodiments of the present application are a method and apparatus for determining and configuring a random access resource. The method comprises: a terminal device receiving a first random access configuration and/or a second random access configuration; and on the basis of the first random access configuration and/or the second random access configuration, the terminal device determining the validity of a random access resource (set) and/or selecting a random access resource (set) and/or initializing related random access parameters and/or terminating a random access process.
Provided in the embodiments of the present application are a data sending method and apparatus, a data receiving method and apparatus, and a communication system. The method comprises: a sending device generating a MAC data packet, wherein the MAC data packet comprises at least one of higher-layer data, control information and padding data; and on an ambient Internet of Things (A-IoT) wireless interface, sending to a receiving device a first transmission comprising the MAC data packet.
A method may include obtaining information regarding an adjustment to a data network, the information being indicative of one or more parameters of the data network to adjust. The method may include selecting an artificial intelligence (AI) agent from multiple AI agents based on the one or more parameters. The method may also include determining an adjustment to the one or more parameters of the data network using the selected AI agent, the adjustment to the one or more parameters predicted by the selected AI agent to result in changes to the data network that conform with the information. The method may further include implementing the adjustment to the one or more parameters in the data network.
H04L 41/16 - Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks using machine learning or artificial intelligence
G06F 18/2321 - Non-hierarchical techniques using statistics or function optimisation, e.g. modelling of probability density functions
H04W 24/02 - Arrangements for optimising operational condition
An apparatus for receiving an aperiodic channel state information reference signal, applicable to a terminal equipment, includes: a first receiver configured to receive first information carried by higher layer signaling, the first information being at least used for the terminal equipment to determine a transmission configuration indication state for reception of the aperiodic channel state information reference signal, the first information comprising at least one of a first parameter and qcl-info; and a second receiver configured to receive the aperiodic channel state information reference signal based on the determined transmission configuration indication state.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
H04W 76/20 - Manipulation of established connections
46.
METHOD AND APPARATUS FOR INDICATING A CHANNEL STATE INFORMATION REPORT CONFIGURATION
A method and apparatus for indicating a channel state information report configuration. Including: receiving channel state information report configuration, the channel state information report configuration at least including a report quantity of channel state information, the report quantity is not configured as cri-RI-CQI, and/or, the channel state information report configuration does not include a list of sub-configurations, and/or, the channel state information report configuration does not include non-precoding matrix indicator antenna port indication information, and/or, a sub-configuration in a list of sub-configurations in the channel state information report configuration is not configured with antenna port subset indication information, and/or, a sub-configuration in a list of sub-configurations in the channel state information report configuration is configured with antenna port subset indication information, an activated antenna port associated with the sub-configuration being associated with non-precoding matrix indicator antenna port indication information.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
47.
INFORMATION RECEIVING METHOD AND APPARATUS, INFORMATION TRANSMITTING METHOD AND APPARATUS, AND COMMUNICATION SYSTEM
An information receiving apparatus, applicable to a first remote UE (user equipment), includes: processor circuitry configured to communicate with at least one of second remote UEs via a relay UE; and a receiver configured to receive a notification message transmitted by the relay UE, the notification message being used to indicate a radio link failure between the relay UE and at least one of the second remote UEs, wherein the notification message comprises identification information related to the radio link failure.
A delay status report generation method and apparatus. The delay status report generation apparatus is configured in a terminal device, and comprises: a processor, which triggers a delay status report (DSR) for a first logical channel (LCH) in a first logical channel group (LCG), wherein the first LCG is configured with a trigger time threshold and at least one reporting time threshold, the trigger time threshold being greater than all reporting time thresholds; and the processor generates a first delay-status-report medium access control control element (DSR MAC CE) and/or a second DSR MAC CE, which comprise or do not comprise delay information of the first LCG, or the processor does not generate a DSR MAC CE, or the processor cancels the triggered DSR.
Embodiments of the present application provide an information processing method and apparatus, and a communication system. The information processing method comprises a terminal device receiving channel state information reference signal (CSI-RS) resource configuration information and/or channel state information (CSI) reporting setting information from a network device; and the terminal device reporting CSI on the basis of the CSI-RS resource configuration information and/or the CSI reporting setting information, the CSI being related to a cell switch command for layer 1 or layer 2 triggered mobility (LTM).
An apparatus includes: a receiver configured to receive a configuration message from a network device; and processor circuitry configured to determine whether a configured uplink grant in a multi- Physical Uplink Shared CHannel (PUSCH) Configured Grant (CG) is going to be used according to the configuration message via a MAC entity of the terminal equipment, and notify a lower layer of information on whether the configured uplink grant is going to be used, wherein the configuration message is a first configuration message, comprising a first information element, the first information element comprising a first field, the first field providing the number of consecutive slots allocated in one multi-PUSCH CG period, wherein, if the first field is configured, fields in a sub-information element rrc-ConfiguredUplinkGrant in the first information element are used to determine a time-domain resource configuration of a first configured uplink grant in the multi-PUSCH CG period.
An apparatus for calculating channel state information, configured in a terminal equipment, includes: a receiver configured to at least receive channel state information (CSI) reporting configuration information and/or CSI resource configuration information, wherein the CSI reporting configuration information comprises M pieces of sub-configuration information, where M is an integer greater than or equal to 1, and the CSI resource configuration information at least comprises indication information of the number of ports; processor circuitry configured to calculate CSI at least according to one or more corresponding symbols on one or more first antenna ports to which sub-configuration information within the M pieces of sub-configuration information is related, wherein the first antenna ports comprise [3000+0, . . . , 3000+P−1], where P is the number of enabled ports indicated by port indication information of the sub-configuration information; and a transmitter configured to report the CSI.
A capability reporting apparatus, configured in a terminal equipment, includes: a transmitter configured to transmit full power capability reporting information to a network device to indicate whether the terminal equipment supports full power Mode 2 when the terminal equipment is capable of supporting an 8Tx uplink transmission; wherein for the full power Mode 2, different number of antenna ports per SRS (sounding reference signal) resource are configured.
An information transceiving apparatus, applied to a source cell of a terminal equipment, includes: a transmitter configured to transmit first signaling to a target cell, wherein the first signaling is used to notify the target cell of TA-related (Timing Advance-related) information or indicate TA-related information to the target cell.
Provided in the present application are a rate control apparatus and a communication system. The rate control apparatus comprises: a transmitter, which sends a first media access control control element (MAC CE) to a terminal device, the first MAC CE being used for indicating bit rate information related to at least one logical channel, or data radio bearer, or quality of service flow (LCH or DRB or QoS flow).
Provided in the embodiments of the present application are a report sending method and apparatus. The method comprises: a terminal device receiving a cell switch command for Layer 1 or Layer 2 triggered mobility (LTM); and sending a first physical uplink shared channel (PUSCH), or sending a first PUSCH and a second PUSCH, wherein the first PUSCH and/or the second PUSCH is not later than a PUSCH successfully sent for the first time, and the first PUSCH carries a first channel state information (CSI) report and/or the second PUSCH carries a second CSI report.
A cooling device includes a first cold plate that cools a first heat generating component, a second cold plate that cools a second heat generating component, a radiator that is provided on the second cold plate and cools a refrigerant, a first refrigerant passage that connects the first cold plate and the second cold plate, and causes the refrigerant that received heat from the first heat generating component to flow from the first cold plate into the second cold plate, and a second refrigerant passage that connects the second cold plate and the radiator and causes the refrigerant that received heat from the second heat generating component to flow from the second cold plate into the radiator.
A semiconductor device includes a semiconductor layer, a gate electrode provided on a first surface of the semiconductor layer, a first electrode provided on the first surface of the semiconductor layer and separated from the gate electrode, a first oxide film provided between the gate electrode and the first electrode on the first surface of the semiconductor layer and apart from the first electrode.
H10D 30/47 - FETs having zero-dimensional [0D], one-dimensional [1D] or two-dimensional [2D] charge carrier gas channels having 2D charge carrier gas channels, e.g. nanoribbon FETs or high electron mobility transistors [HEMT]
A communication apparatus includes: a receiver that receives a reference signal transmitted by each of one or more base station apparatuses and measures received power corresponding to each of the reference signals; and a controller that transmits a measurement report including the received power to a first base station apparatus in a case where a total value of the received power of the reference signals is a terminal first threshold value or more.
Provided in the embodiments of the present application are a method and apparatus for receiving a reference signal, a method and apparatus for transmitting a reference signal, and a communication system. The apparatus for receiving a reference signal is applied to a terminal device. The terminal device is configured with an artificial intelligence model or function used for beam management, and the beam management comprises spatial-domain beam prediction. The apparatus comprises a first receiver. The first receiver is configured with a first resource set used for performance monitoring, and a second resource set and a third resource set used for inference; and is configured to receive, in a predetermined time sequence, a reference signal from the first resource set and a reference signal from the second resource set. The terminal device measures the first resource set to acquire reference real data and/or calculate a performance metric; the terminal device measures the second resource set, wherein a result of the measurement is used as an input of the artificial intelligence model or function; and the terminal device does not measure the third resource set, wherein the third resource set is used as an output of the artificial intelligence model or function to predict a beam. A beam corresponding to the first resource set is the same as a beam corresponding to the third resource set, or the beam corresponding to the first resource set is a subset of the beam corresponding to the third resource set.
Embodiments of the present application provide a reference signal configuration method and apparatus, and a communication system. The reference signal configuration apparatus is applied to a terminal device, and at least one of the terminal device and a network device is configured with an artificial intelligence model or function used for beam management. The apparatus comprises: a first receiver, which is configured with a first reference signal set (Set A) and a second reference signal set (Set B), wherein resource settings of the first reference signal set and resource settings of the second reference signal set are configured by means of different channel state information resource configuration identifiers (CSI-ResourceConfigId), and for an inference operation of the artificial intelligence model or function, channel state information reference signal resources (CSI-RS resources) in the first reference signal set are not counted toward activated resources or activated ports.
A communication management device includes: network energy saving processor circuitry configured to execute network energy saving control of a radio access network, wherein the network energy saving processor circuitry: connects a terminal connected to a first base station to a second base station and shifts an operation mode of the first base station from a normal mode to a network energy saving mode when traffic volumes of a first cell and a second cell become less than a predetermined threshold, transmits, to the second base station, an instruction indicating acquisition of location information of each terminal connected to the second base station and receives the location information from the second base station, and determines whether to return the operation mode of the first base station from the network energy saving mode to the normal mode based on the traffic volume of the second cell and the location information.
Provided in the embodiments of the present application are a PUSCH sending method and apparatus, a PUSCH receiving method and apparatus, and a communication system. The PUSCH sending method comprises: a terminal device receives information used for configuring a first time domain resource and/or a second time domain resource; and the terminal device sends a PUSCH on the first time domain resource and/or the second time domain resource, wherein PUSCH transmission in the first time domain resource is related to an SRS resource associated with the first time domain resource, and PUSCH transmission in the second time domain resource is related to an SRS resource associated with the second time domain resource.
An apparatus for detecting beam failure for a beam failure detection reference signal set of a serving cell includes: a receiver configured to receive a beam failure instance indication in each of two beam failure detection reference signal sets configured for a serving cell; and processor circuitry configured to: increment, when the receiver receives a beam failure instance indication in a BFD-RS set which is included in the two BFD-RS sets, a beam failure indication count of the BFD-RS set by 1, trigger, in a case where the beam failure indication count of the BFD-RS set is greater than or equal to a beam failure instance maximum count for BFD-RS set, beam failure recovery for the BFD-RS set of the serving cell.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
64.
WIRELESS COMMUNICATION METHOD AND APPARATUS AND SYSTEM
A terminal apparatus includes: a receiver configured to receive first downlink control information associated with beam failure or link failure; and a transmitter configured to transmit first uplink control information according to a spatial filter and/or power associated with a first reference signal after receiving first downlink control information wherein, the first reference signal is associated with a first TRP (transmission and reception point) in at least two TRPs, a TRP associated with the first uplink control information is identical to the first TRP associated with the first reference signal, and the first reference signal is identified from at least one reference signal for beam recovery.
Provided in the embodiments of the present application are an SRS transmission method and apparatus, an SRS reception method and apparatus, and a communication system. The SRS transmission method comprises: a terminal device receiving information used for configuring a first time-domain resource and/or a second time-domain resource; and the terminal device transmitting an SRS resource (a corresponding SRS) in a time-domain resource type associated with the SRS resource, and/or not transmitting the SRS resource (the corresponding SRS) in a time-domain resource type not associated with the SRS resource, wherein the time-domain resource type associated with the SRS resource comprises the first time-domain resource and/or the second time-domain resource.
An apparatus for indicating a channel state information (CSI) report configuration, includes: a first receiver configured to receive first information from a network device, the first information at least comprising L sub-configurations of a CSI report configuration, and one of the L sub-configurations corresponding to one piece of CSI; and a second receiver configured to receive second information from the network device, the second information being at least used for indicating and/or triggering and/or activating at least one of the L sub-configurations; wherein the second information is carried by an MAC (media access control) CE (Control Element); the MAC CE includes one or more second fields, the second field is used to indicate activation/deactivation of a sub-configuration of a semi-persistent CSI report configuration.
H04W 72/21 - Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
H04W 72/231 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the layers above the physical layer, e.g. RRC or MAC-CE signalling
67.
TERMINAL APPARATUS, BASE STATION APPARATUS, AND RADIO COMMUNICATION SYSTEM
A terminal apparatus includes: a receiver configured to receive a first signal for giving an instruction for cell switching to a first L1/L2-triggered mobility (LTM) candidate from a base station apparatus; and processor circuitry configured to, upon receiving the first signal, retain a Service Data Adaptation Protocol (SDAP) entity, release a first bearer and a logical channel that exist in a current configuration and do not exist in a first configuration for the first LTM candidate, apply the first configuration, and perform the cell switching to the first LTM candidate.
Provided is a transmission node in a communication system including the transmission node and a reception node that receives the reflected waves of a signal transmitted from the transmission node, said transmission node comprising: a storage unit for storing first information that is shared with the reception node, said information indicating one or more combinations for transmitting and receiving signals among a plurality of combinations of a transmission beam in the transmission node and a reception beam in the reception node; and a control unit that, on the basis of the first information stored in the storage unit, switches the transmission beam used for transmitting signals.
Embodiments of the present application provide a wake-up signal (WUS) acknowledgment receiving method and receiving apparatus. The WUS acknowledgment receiving apparatus is configured in a terminal device, and the apparatus comprises: a first sending unit, which sends a WUS to a first network device; and a first receiving unit, which receives a media access control protocol data unit (MAC PDU) sent by the first network device and used for a random access response, the MAC PDU comprising: a first media access control subprotocol data unit (MAC subPDU), the first MAC subPDU being used for acknowledging the WUS; and a second MAC subPDU, the second MAC subPDU having a random access preamble identifier (RAPID) field.
A communication system includes: a first communication apparatus, and a second communication apparatus that performs a synchronization process for establishing synchronization with the first communication apparatus, wherein the first communication apparatus is configured to start a first timer with a first process, and the second communication apparatus is configured to start a second timer with a second process including decryption on a first signal, and enable control for obtaining second time-point information in response to expiration of the second timer, and a time of the first timer corresponds to a first time longer than a time taken for a process for encryption in the first communication apparatus, and a time of the second timer corresponds to a second time longer than a time taken for a process for the decryption in the second communication apparatus.
A semiconductor device with an antenna includes: a semiconductor chip having a first chip surface, and a circuit surface located opposite the first chip surface; a heat dissipation part having a first surface, and a second surface located opposite the first surface and in contact with the first chip surface of the semiconductor chip; a wiring board having a first board surface, a second board surface located opposite the first board surface, and a laminate in which an insulating layer formed of a resin and an interconnect layer formed of a metal are laminated, wherein the wiring board covers side surfaces of the heat dissipation part and of the semiconductor chip and the circuit surface of the semiconductor chip, and exposes the first surface of the heat dissipation part at the first board surface; and the antenna provided on the second board surface of the wiring board.
An apparatus, applicable to a network device, includes: a transmitter configured to transmit reference signal resource set configuration information and reporting configuration information to a terminal equipment, wherein the reference signal resource set configuration information comprises configuration identifiers of more than one reference signal resource set, and the reporting configuration information comprises a configuration identifier of a first reference signal resource set and a configuration identifier of a second reference signal resource set, the first reference signal resource set and the second reference signal resource set being resource sets in the more than one reference signal resource set, the first reference signal resource set being used for measurement, and the second reference signal resource set being used for prediction reporting; and a receiver configured to receive a first report which comprises the prediction reporting from the terminal equipment.
A PRACH (Physical Random Access Channel) transmission apparatus configured in a terminal equipment includes: processor circuitry configured to, for a PRACH transmission with preamble repetitions, determine a second number of PRACH occasions related to a time period, wherein the time period is a first number of association pattern periods of synchronization signal blocks and PRACH occasions (SSB-to-RO association pattern periods), the first number is a smallest number for which at least one valid PRACH occasion group for each of a number of SSB indexes is determined in the time period; and a transmitter configured to repeatedly transmit a preamble on the second number of PRACH occasions.
Provided is a transmitting node in a wireless communication system in which: the transmitting node transmits a sensing signal; a receiving node receives the sensing signal, measures wireless quality at the time of receiving the sensing signal, and transmits a measurement result to the transmitting node; and the transmitting node uses the measurement result to sense a target. The transmitting node comprises: a transmission unit that transmits a first sensing signal having a first directivity and a second sensing signal having a second directivity; a reception unit that receives, from the receiving node, a first measurement result regarding the wireless quality at the time of receiving the first sensing signal at the receiving node and a second measurement result regarding the wireless quality at the time of receiving the second sensing signal at the receiving node; and a control unit that performs a first determination process for determining an excluded receiving node to be excluded from sensing from among a plurality of the receiving nodes according to the reception quality in the first measurement result, estimates a reflection position of the second signal from the second measurement result, performs a second determination process for determining, according to the estimated estimation position, the excluded receiving node from among the receiving nodes other than the excluded receiving node determined by the first determination process, and transmits a quality report stop instruction that instructs the excluded receiving nodes not to transmit the measurement result.
Provided is a base station device having a carrier that supports spectrum sharing (SS) in an N-th generation (where N is an integer) and an M-th generation (where M is an integer) different from the N-th generation, the base station device comprising: a transmission unit that transmits an initial signal used by a terminal device in initial access; and a control unit that shares at least part of the initial signal between terminal devices of the N-th generation and the M-th generation.
Provided in the embodiments of the present application is a method for determining a power control parameter, which method is applied to a terminal device. The method comprises: before applying a transmission configuration indication state (TCI state), sending a physical uplink shared channel (PUSCH) on a non-subband non-overlapping full duplex (SBFD) symbol and/or an SBFD symbol; on the basis of at least one of a first parameter preambleReceivedTargetPower, a second parameter msg3-DeltaPreamble and a third parameter deltaPreamble, determining a target received power for the PUSCH sent on the non-SBFD symbol, and on the basis of at least one of a fourth parameter preambleReceivedTargetPower-SBFD, a fifth parameter msg3-DeltaPreamble-SBFD and a sixth parameter deltaPreamble-SBFD, determining a target received power for the PUSCH sent on the SBFD symbol; and/or, on the basis of a seventh parameter msg3-Alpha, determining a path loss compensation factor for the PUSCH sent on the non-SBFD symbol, and on the basis of an eighth parameter msg3-Alpha-SBFD, determining a path loss compensation factor for the PUSCH sent on the SBFD symbol.
An antenna-equipped substrate device includes a wiring board having a plurality of insulating layers; an antenna having a first antenna element provided on a first surface of the wiring board; an amplifier provided on the first surface of the wiring board and connected to the first antenna element. The wiring board has a first portion where the antenna is provided and a second portion where the amplifier is provided. A thickness of the first portion of the wiring board is thinner than a thickness of the second portion of the wiring board.
There is provided a network control device for controlling a plurality of devices included in an optical network. The network control device includes an acquirer that acquires first information indicating a transmission state of each of an optical transceiver, a first wavelength division multiplexing (WDM) device connected to the optical transceiver via a first transmission line, and a second WDM device connected to the first WDM device via a second transmission line different from the first transmission line from at least one of the optical transceiver, the first WDM device, and the second WDM device, a calculator that calculates transmission performance in the first transmission line based on the first information, and a setting changer that changes a setting of at least one of the optical transceiver, the first WDM device, and the second WDM device based on the transmission performance in the first transmission line.
A data transmission apparatus, configured in a terminal equipment, includes: first configuration processor circuitry configured with a first channel state information report and/or a second channel state information report, wherein the first channel state information report is related to layer 1/layer 2 triggered mobility, and the second channel state information report is not related to layer 1/layer 2 triggered mobility; determining processor circuitry configured to determine a priority/priorities of the first channel state information report and/or the second channel state information report; and a first transmitter configured to transmit the first channel state information report and/or the second channel state information report according to determined priority/priorities, wherein a priority of the first channel state information report is higher than a priority of the second channel state information report.
A data transmission apparatus includes: a first receiver configured to receive first configuration information and second configuration information, wherein the first configuration information comprises first reference signal position information of a candidate cell; and a first transmitter configured to transmit a channel state information report according to the first configuration information and/or the second configuration information, wherein in a case where the terminal equipment is configured to comprise a measurement of a special cell in the channel state information report, wherein the first configuration information comprises first reference signal position information of the special cell, and the channel state information report comprises the measurement of the special cell, wherein the first receiver further, receives fourth configuration information, wherein the fourth configuration information configures a first reference signal set associated with the channel state information report, wherein the first reference signal set comprises the first reference signals of the special cell.
An apparatus for performing small data transmission, applied to a terminal device, includes: first processor circuitry controlling the terminal device, the first processor circuitry configured to perform: initiating small data transmission including Mobile Originated SDT or Mobile Terminated SDT by upper layers of the terminal device; and performing configured grant-based small data transmission when a next valid configured grant occasion fulfils a predetermined condition in the time domain; wherein a valid configured grant occasion is Configured grant resources configured for the small data transmission and corresponds to a synchronization signal block with synchronization signal reference signal received power above a first configured threshold and the synchronization signal block is available.
A terminal apparatus includes: a receiver configured to receive first sidelink control information from another terminal apparatus, the first sidelink control information being used to indicate a priority of first sidelink data which is transmitted by the another terminal apparatus, the first sidelink control information being further used to trigger transmission of an assistance information; processor circuitry configured to: determine a first transmission priority according to the priority of the first sidelink data, and determine a resource set according to the first transmission priority; and a transmitter configured to transmit the assistance information to the another terminal apparatus, the assistance information including time frequency domain information of resources in the resource set, the resource set being used by the another terminal apparatus for determining a first candidate resource set for transmitting the first sidelink data.
H04W 72/40 - Resource management for direct mode communication, e.g. D2D or sidelink
H04W 72/25 - Control channels or signalling for resource management between terminals via a wireless link, e.g. sidelink
H04W 72/542 - Allocation or scheduling criteria for wireless resources based on quality criteria using measured or perceived quality
H04W 72/566 - Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient
83.
METHOD AND AN APPARATUS FOR TRANSMITTING AND RECEIVING CHANNEL STATE INFORMATION, AND COMMUNICATION SYSTEM
An apparatus for transmitting channel state information, applicable to a terminal equipment, includes: first processor circuitry controlling the terminal equipment to perform the following operations: generating one or more channel state information (CSI) report(s), the CSI report comprising at least one of first CSI, second CSI or third CSI; and transmitting part or all of at least one of the CSI report to a network device according to a rule.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
84.
INFORMATION TRANSMISSION METHOD, INFORMATION RECEPTION METHOD AND APPARATUSES THEREOF
A terminal equipment includes: a receiver configured to: receive serving cell configuration information of a first cell, the serving cell configuration information comprising a first higher layer parameter used to configure a first DCI format to comprise a first information field used for SCell dormancy indication, and/or the serving cell configuration information comprising a second higher layer parameter used to configure a second DCI format to comprise a first information field used for SCell dormancy indication; and receive the first DCI format and/or the second DCI format in the first cell, wherein the first DCI format is used for scheduling of one PDSCH in one cell, or multiple PDSCHs in multiple cells with one PDSCH per cell, and the second DCI format is used for scheduling of one PUSCH in one cell, or multiple PUSCHs in multiple cells with one PUSCH per cell.
H04W 72/232 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
H04L 1/00 - Arrangements for detecting or preventing errors in the information received
H04W 72/0453 - Resources in frequency domain, e.g. a carrier in FDMA
85.
CHANNEL STATE INFORMATION REPORT GENERATION AND RECEPTION METHODS, AND APPARATUSES THEREOF
A channel state information (CSI) report generation apparatus, configured in a terminal equipment, includes: a receiver configured to receive channel state information reference signal (CSI-RS) resource configuration information and CSI report configuration information, wherein the CSI-RS resource configuration information is used to configure at least one CSI-RS resource set, one CSI-RS resource set in the at least one CSI-RS resource set comprising Y CSI-RS resources, and the CSI report configuration information comprises M pieces of sub-configuration information, where Y and M are integers greater than or equal to 1; and a generator configured to generate a CSI report according to the CSI-RS resource configuration information and the CSI report configuration information, wherein the CSI report comprises N CSI-RS resource indices (CRIs), where N is an integer greater than or equal to 1.
An apparatus for IAB (Integrated Access and Backhaul)-node integration, applicable to a mobile IAB-node, includes: a mobile IAB-MT (Mobile Termination); and a mobile IAB-DU (Distributed Unit), wherein, the mobile IAB-DU is configured by an OAM (Operation, Administration and Maintenance) with a base station information of an F1-terminating IAB-donor-CU (Central Unit); and the mobile IAB-DU performs F1 setup with the F1-terminating IAB-donor-CU according to the base station information.
A channel state information generation apparatus, applicable to a terminal equipment, includes: first processor circuitry controlling the terminal equipment, the first processor circuitry configured to: receive a first configuration by the terminal equipment from a network device, the first configuration being used to configure the terminal equipment to transmit channel state information (CSI) to the network device, and the first configuration comprising model information and/or bitwidth information associated with precoding matrix information; and generate the CSI by the terminal equipment according to a model, the model being determined at least according to the first configuration, and the CSI at least comprising the precoding matrix information.
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
88.
METHOD, APPARATUS AND SYSTEM FOR PROCESSING SIDELINK RADIO LINK FAILURE
An apparatus for processing a sidelink radio link failure, configured in a first remote device, includes: processor circuitry configured to transmit indication information to a relay device when detecting a sidelink radio link failure (SL RLF) for a second remote device or detecting that an upper layer in the first remote device requests to release a PC5 RRC (radio resource control) connection between the first remote device and the second remote device, the indication information indicating that an end-to-end sidelink radio link failure occurs.
An apparatus for transmitting uplink transmission, applicable to LTM (L1/L2-triggered mobility) cell switch procedure, configured in a terminal equipment, includes: a receiver configured to receive an CG (Configured Grant) occasion via RRC (Radio Resource Control) signaling and to receive a first MAC CE (media access control control element) including candidate configuration information; and a transmitter configured to transmit uplink transmission to a cell associated with the candidate configuration information by using an available CG occasion or using a DG (dynamic grant).
A precoding configuration apparatus, configured in a terminal equipment capable of supporting an 8Tx uplink transmission, includes: a transmitter configured to report, to a network device, first information indicating the number of supported antenna groups and second information indicating whether a full power mode 1 is supported by the terminal equipment; and a receiver configured to receive, from the network device, precoding configuration information for indicating a precoder type which is determined by the network device according to the first information and the second information, and wherein the receiver is further configured to receive downlink control information including a transmission precoding matrix indication field indicating a value in one or more values which are indicated according to the precoding configuration information.
H04B 7/0456 - Selection of precoding matrices or codebooks, e.g. using matrices for antenna weighting
H04W 72/232 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
91.
METHOD AND APPARATUS FOR TRANSMITTING AND RECEIVING INFORMATION
An apparatus for transmitting and receiving information, configured in a first network device, includes: a generator configured to generate second configuration information according to first configuration information and first information and/or second information, the second configuration information being used to configure measurement and data reporting of a terminal equipment, the first configuration information and the first information being from a second network device, and the second information being from the terminal equipment; and a first transmitter configured to transmit the second configuration information to the terminal equipment.
H04L 41/16 - Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks using machine learning or artificial intelligence
A precoding configuration apparatus, configured in a terminal equipment capable of supporting 8Tx uplink transmission, the terminal equipment supporting full-power mode 2, includes: a receiver configured to receive configuration information from a network device, wherein the configuration information includes one or multiple of the following: for sounding reference signal (SRS) resources in a sounding reference signal resource set in which a first parameter usage is set to be a first value codebook, different numbers of SRS ports are configured for different SRS resources, and at least one sounding reference signal resource is configured with 8 ports; an antenna group number Ng and corresponding precoder(s) are configured for 8-port transmission of the terminal equipment and a codebook subset is configured for 4-port/2-port transmission of the terminal equipment, or, an antenna group number Ng and corresponding precoder(s) are configured for 8-port transmission of the terminal equipment.
H04B 7/0456 - Selection of precoding matrices or codebooks, e.g. using matrices for antenna weighting
H04W 72/232 - Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
93.
INFORMATION RECEPTION METHOD, INFORMATION TRANSMISSION METHOD AND APPARATUSES THEREOF
A terminal equipment includes: processor circuitry configured to select a group of Random Access Occasions (ROs) from a set of random access resources, the group of ROs including more than one physical random access channel occasion (PRACH occasion, RO); a transmitter configured to transmit a Msg1 (Message 1) with a PRACH transmission on one or more ROs of the group of ROs; and a receiver configured to receive a Msg2 (Message 2) used to carry a random access response (RAR) in response to the Msg 1 after a last RO of the group of ROs.
An information transmitting apparatus, configured in a terminal equipment, includes: processor circuitry configured to trigger a delay information reporting at a media access control layer of the terminal equipment; and a transmitter configured to transmit the delay information reporting to a network device via a media access control control element, wherein that the processor circuitry triggers the delay information report at the media access control layer of the terminal equipment comprises: the media access control layer of the terminal equipment determines whether to trigger the delay information report according to a value of at least one discard timer.
An indicating apparatus, configured to indicate unused transmission occasions, configured in a terminal equipment, includes: determining processor circuitry configured to determine an unused transmission occasion at a media access control layer of the terminal equipment; and indicating processor circuitry configured to indicate relevant information on the unused transmission occasion to a physical layer of the terminal equipment via the media access control layer of the terminal equipment; wherein the determining processor circuitry determines whether a transmission occasion in a predetermined number of valid transmission occasions is an unused transmission occasion.
A packet processing apparatus includes a packet processor that processes a received packet and a buffering storage that performs storage processing on the received packet. The buffering storage includes a plurality of buffers that each stores the received packet, a selector that selects the buffer from which the packet is output, and a switching controller that controls the selector to sequentially switch buffers to be read from the plurality of buffers. The packet processor includes a distribution controller that determines a buffer of a distribution destination based on an insertion delay amount of each flow to which the packet belongs when the packet is received.
This base station device includes: a sensing unit that transmits a first signal or a second signal, receives a reflection signal of the first signal or the second signal having been reflected on a terminal device, and performs sensing on the terminal device; and a control unit that receives the wireless quality of the first signal and/or the second signal measured by the terminal device, and determines which of the first signal and the second signal is to be used for the sensing in accordance with the wireless quality.
A terminal includes: a receiver configured to receive third information related to transmission power and fourth information related to transmission power; a controller configured to generate measurement information for each of a plurality of sub-configurations for measurement in accordance with the third information and the fourth information; and a transmitter configured to transmit the measurement information, wherein the controller estimates second information related to reception power of a third signal corresponding to each of the plurality of sub-configurations for measurement according to first information related to reception power of a second signal received by the receiver, the third information, and the fourth information, and generates the measurement information.
H04W 52/14 - Separate analysis of uplink or downlink
H04B 7/06 - Diversity systemsMulti-antenna systems, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
A terminal device includes: a receiver configured to be able to receive an RRC (radio resource control) message and a first signal from a base station device; and processor circuitry configured to be able to perform configuration according to a first parameter in a case where the RRC message includes the first parameter, wherein the first parameter includes a second parameter indicating a group identifier of a current serving cell and a third parameter related to a configuration of a first LTM (L1/L2 Triggered Mobility) candidate and a group identifier of a cell of the first LTM candidate, the processor circuitry stores a second value of the second parameter in a first variable regardless of whether a first value is stored in the first variable in a case where the second parameter is included in the RRC message.
An optical transmission system includes a transmitter and a receiver. The transmitter includes a generator that generates a second digital signal including a first digital signal and a third signal, the first digital signal including a first signal corresponding to a pilot symbol and a second signal corresponding to a data signal, the third signal including information related to a carrier phase of the first signal after Tomlinson-Harashima Precoding (THP) processing is performed, a THP processor that performs the THP processing on the second digital signal, and a transmission circuit that transmits, to the transmission line, signal light generated based on a third digital signal. The receiver includes a reception circuit that receives the signal light from the transmission line, and a compensator that compensates for an error of the second signal based on the first signal and the third signal included in the third digital signal.