[go: up one dir, main page]

WO2025231750A1 - Transmission d'informations de commande - Google Patents

Transmission d'informations de commande

Info

Publication number
WO2025231750A1
WO2025231750A1 PCT/CN2024/092076 CN2024092076W WO2025231750A1 WO 2025231750 A1 WO2025231750 A1 WO 2025231750A1 CN 2024092076 W CN2024092076 W CN 2024092076W WO 2025231750 A1 WO2025231750 A1 WO 2025231750A1
Authority
WO
WIPO (PCT)
Prior art keywords
control information
uplink control
measurement report
indication fields
uplink
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
PCT/CN2024/092076
Other languages
English (en)
Inventor
Xiaolong Guo
Bo Gao
Yang Zhang
Meng MEI
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ZTE Corp
Original Assignee
ZTE Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ZTE Corp filed Critical ZTE Corp
Priority to PCT/CN2024/092076 priority Critical patent/WO2025231750A1/fr
Publication of WO2025231750A1 publication Critical patent/WO2025231750A1/fr
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Definitions

  • This document is directed generally to digital wireless communications.
  • LTE Long-Term Evolution
  • 3GPP 3rd Generation Partnership Project
  • LTE-A LTE Advanced
  • 5G The 5th generation of wireless system, known as 5G, advances the LTE and LTE-Awireless standards and is committed to supporting higher data-rates, large number of connections, ultra-low latency, high reliability and other emerging business needs.
  • a communication device e.g., a user equipment (UE) to transmit a control information comprising a measurement report associated with a trigger event.
  • UE user equipment
  • a first example wireless communication method includes performing, by a communication device, an operation that enables transmission of any one or more of a first uplink control information and a second uplink control information, where the first uplink control information corresponds to a first uplink resource and the second uplink control information corresponds to a second uplink resource, and where the operation is performed in response to the first uplink resource overlapping with the second uplink resource in time domain; and transmitting, by the communication device and in response to the performing the operation, any one or more of the first uplink control information and the second uplink control information on the first uplink resource or the second uplink resource, where any one or more of the first uplink control information and the second uplink control information comprises a measurement report associated with a trigger event.
  • the operation includes multiplexing the first uplink control information and the second uplink control information. In some embodiments, the operation includes dropping the first uplink resource or the second uplink resource. In some embodiments, the multiplexing the first uplink control information and the second uplink control information, or the dropping the first uplink resource or the second uplink resource is performed based on a priority index or a priority value associated with the measurement report. In some embodiments, the first uplink control information comprises a request associated with the measurement report, and the second uplink control information comprises the measurement report. In some embodiments, a first priority value of the first uplink control information is same as a second priority value of the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined using a formula that includes a report content related parameter, and a value of the report content related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information comprises the measurement report
  • the second uplink control information comprises a channel state information (CSI) report that is not triggered by any trigger event.
  • CSI channel state information
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined using a formula that includes a report type related parameter, and a value of the report type related parameter for the first uplink control information is less than that for the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined using a formula that includes a parameter related to whether the first uplink control information or the second uplink control information is associated with the trigger event, and a value of the parameter for the first uplink control information is less than that for the second uplink control information.
  • a priority value for the first uplink control information or the second uplink control information is determined from a formula that includes a report type related parameter, and a value of the report type related parameter is related to whether the first uplink control information or the second uplink control information is associated with the trigger event.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined from a formula that includes a report configuration index related parameter, and a value of the report configuration index related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information has a higher priority than that for the second uplink control information.
  • the communication device is configured or indicated or determines to transmit an uplink control information comprising one or more measurement reports on an uplink resource, where each measurement report is associated with a report configuration and a cell index.
  • the communication device is configured to transmit a first plurality of measurement reports on a same uplink resource, where the one or more measurement reports are a subset of the first plurality of measurement reports.
  • the uplink control information further comprises a plurality of bits with zero values.
  • indication fields associated with the one or more measurement reports are mapped in the uplink control information based on an order of priority value corresponding to the one or more measurement reports.
  • a size of the uplink control information is determined based on a reporting state indication field that indicates presence of indications fields for the one or more measurement reports or presence of the one or more measurement reports.
  • a priority value for the uplink control information is determined from a formula that includes a cell index related parameter, and where a value of the cell index related parameter for the uplink control information is determined based on one cell index among cell indexes associated with the one or more measurement reports.
  • the communication device determines or selects a second plurality of measurement reports from the one or more measurement reports in ascending priority value or in descending priority to transmit on the uplink resource in response to a capacity or a number of available resources of the uplink resource not being capable of or being insufficient for transmitting the control information comprising the one or more measurement reports.
  • one or more measurement reports other than the second plurality of measurement reports are dropped, omitted or not transmitted.
  • the communication device does not multiplex a first measurement report from the first uplink resource in the second uplink resource in response to the second uplink resource carrying a second measurement report
  • the communication device does not multiplex a control information from the first uplink resource in the second uplink resource in response to the second uplink resource being configured by a network device or not having a corresponding physical downlink control channel (PDCCH)
  • the communication device drops the first uplink resource carrying the first measurement report and transmits the second uplink resource carrying the second measurement report in response to a priority value corresponding to the second measurement report being less than that corresponding to the first measurement report, or the communication device drops the first uplink resource not carrying the measurement report and transmits the second uplink resource carrying the measurement report.
  • PDCCH physical downlink control channel
  • the method further comprises performing, by the communication device, any one or more of the following operations in response to a beam failure recovery (BFR) procedure being triggered for a cell while the BFR procedure has not completed or in response to a random access procedure being initiated for the cell while the BFR procedure is not completed: the communication device does not transmit the measurement report on any cells or the cell, the communication device does not initiate a measurement reporting on any cells or the cell, the communication device does not start a timer configured for the measurement report on any cells or the cell, and/or the communication device sets a counter associated with the measurement report on any cells or on the cell to zero, and/or the communication device transmits the measurement report on another cell.
  • any one or more of the operations is performed in response to the measurement report being associated with a specific type of trigger event.
  • a second example wireless communication method includes transmitting, by a communication device, an uplink control information on an uplink resource, where the uplink control information comprises a measurement report, where the measurement report is associated with a trigger event, where indication fields in the measurement report comprises at least one of a first set of indication fields associated with a first set of reference signals or a second set of indication fields associated with a second set of reference signals, and where the trigger event is associated with at least one of the first set of reference signals or the second set of reference signals.
  • each indication field in the measurement report is associated with a reference signal
  • the reference signal is associated with a transmission parameter
  • the reference signal is associated with a reference signal resource set that is based on a type of the trigger event associated with the measurement report.
  • a number of indication fields of the first set of indication fields or the second set of indication fields in the measurement report is based on a type of the trigger event associated with the measurement report.
  • the communication device is configured with a maximum number of reported reference signals or a number of reported reference signals for the measurement report.
  • the trigger event happens or is fulfilled in response to a quality of at least one beam being greater than or equal to a threshold value more than that of a reference signal derived from an activated transmission configuration indicator (TCI) state that has a M-th quality in ascending or descending order among a plurality of activated TCI states, and M is a predefined value, or M is configured by a radio resource control (RRC) message, indicated by a medium access control-control element (MAC CE) , or is determined based on the maximum number of reported reference signals or the number of reported reference signals.
  • TCI transmission configuration indicator
  • M is a predefined value
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the reference signal derived from the activated transmission configuration indicator (TCI) state having the M-th quality or a plurality of reference signals derived from the plurality of activated TCI states is associated with the first set of reference signals, and the at least one beam is associated with the second set of reference signals.
  • M is configured or indicated with a value larger than the maximum number of reported reference signals or the number of reported reference signals.
  • a number of indication fields of the first set of indication fields is not greater than a value configured for the maximum number of reported reference signals
  • a number of indication fields of the first set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is not greater than a value configured for the maximum number of reported reference signals.
  • the indication fields in the measurement report comprises a first indication field that indicates a number of indication fields of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a bitmap of identifications of the plurality of activated TCI states, where each bit of the bitmap indicates presence or absence of indication fields for a corresponding activated TCI state of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a second indication field that indicates a number of indications fields of the second set of indication fields in the measurement report.
  • the communication device determines one or more indication fields of the first set of indication fields and one or more indication fields of the second set of indication fields based on the first indication field, a bitmap, or the second indication field, and where the communication device indicates an identification of a reference signal or a value of report quantity associated with the reference signal for each indication field determined by the communication device. In some embodiments, the communication device indicates a zero value for indication fields other than the one or more indication fields of the first set of indication fields and the one or more indication fields of the second set of indication fields.
  • a number of indication fields of the first set of indication fields is not greater than another number of indication fields of the second set of indication fields.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to an ascending or descending order of quality corresponding to a respective TCI state.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to bitmap of identifications of the plurality of activated TCI states.
  • at least one indication field of the first set of indication fields are associated with an activated TCI state with a M-th quality, a highest signal quality or a lowest signal quality.
  • the communication device receives a control channel with a TCI state of a cell associated with the TCI state, the shared channel is received not later than a number of time units after transmitting any one or more of the first uplink control information or the second uplink control information, the first uplink control information or the second uplink control information is associated with a reference signal associated with the TCI state, the control channel is received at a slot that is after a number of slots after the reception of the shared channel, the TCI state is indicated in the TCI states activation command, and the TCI states activation command comprises a radio resource control (RRC) signaling or a medium access control-control element (MAC CE) .
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the number of time units is a predefined value or a configured value
  • a time unit comprises a slot or a millisecond
  • the number of slots is determined by a time parameter related to SSB transmission or SSB processing, and a value of the time parameter is zero.
  • a third example wireless communication method includes receiving, by a network device, any one or more of a first uplink control information and a second uplink control information on a first uplink resource or a second uplink resource, where the first uplink control information corresponds to a first uplink resource and the second uplink control information corresponds to a second uplink resource, where any one or more of the first uplink control information and the second uplink control information comprises a measurement report associated with a trigger event.
  • the first uplink control information comprises a request associated with the measurement report
  • the second uplink control information comprises the measurement report.
  • a first priority value of the first uplink control information is same as a second priority value of the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a report content related parameter, and a value of the report content related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information comprises the measurement report
  • the second uplink control information comprises a channel state information (CSI) report that is not triggered by any trigger event.
  • CSI channel state information
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a report type related parameter, and a value of the report type related parameter for the first uplink control information is less than that for the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a parameter related to whether the first uplink control information or the second uplink control information is associated with the trigger event, and a value of the parameter for the first uplink control information is less than that for the second uplink control information.
  • a priority value for the first uplink control information or the second uplink control information is based on a formula that includes a report type related parameter, and a value of the report type related parameter is related to whether the first uplink control information or the second uplink control information is associated with the trigger event.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a report configuration index related parameter, and a value of the report configuration index related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information has a higher priority than that for the second uplink control information.
  • the network device receives an uplink control information comprising one or more measurement reports on an uplink resource, where each measurement report is associated with a report configuration and a cell index.
  • the network device receives a first plurality of measurement reports on a same uplink resource, where the one or more measurement reports are a subset of the first plurality of measurement reports.
  • the uplink control information further comprises a plurality of bits with zero values.
  • indication fields associated with the one or more measurement reports are mapped in the uplink control information based on an order of priority value corresponding to the one or more measurement reports.
  • a size of the uplink control information is based on a reporting state indication field that indicates presence of indications fields for the one or more measurement reports or presence of the one or more measurement reports.
  • a priority value for the uplink control information is based on a formula that includes a cell index related parameter, and where a value of the cell index related parameter for the uplink control information is based on one cell index among cell indexes associated with the one or more measurement reports.
  • a fourth example wireless communication method includes receiving, by a network device, an uplink control information on an uplink resource, where the uplink control information comprises a measurement report, where the measurement report is associated with a trigger event, where indication fields in the measurement report comprises at least one of a first set of indication fields associated with a first set of reference signals or a second set of indication fields associated with a second set of reference signals, and where the trigger event is associated with at least one of the first set of reference signals or the second set of reference signals.
  • each indication field in the measurement report is associated with a reference signal
  • the reference signal is associated with a transmission parameter
  • the reference signal is associated with a reference signal resource set that is based on a type of the trigger event associated with the measurement report.
  • a number of indication fields of the first set of indication fields or the second set of indication fields in the measurement report is based on a type of the trigger event associated with the measurement report.
  • the network device sends a signal with which the communication device is configured with a maximum number of reported reference signals or a number of reported reference signals for the measurement report.
  • the trigger event happens or is fulfilled in response to a quality of at least one beam being greater than or equal to a threshold value more than that of a reference signal derived from an activated transmission configuration indicator (TCI) state that has a M-th quality in ascending or descending order among a plurality of activated TCI states, and M is a predefined value, or M is configured by a radio resource control (RRC) message, indicated by a medium access control-control element (MAC CE) , or is determined based on the maximum number of reported reference signals or the number of reported reference signals.
  • TCI transmission configuration indicator
  • M is a predefined value
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the reference signal derived from the activated transmission configuration indicator (TCI) state having the M-th quality or a plurality of reference signals derived from the plurality of activated TCI states is associated with the first set of reference signals, and the at least one beam is associated with the second set of reference signals.
  • M is configured or indicated with a value larger than the maximum number of reported reference signals or the number of reported reference signals.
  • a number of indication fields of the first set of indication fields is not greater than a value configured for the maximum number of reported reference signals
  • a number of indication fields of the first set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is not greater than a value configured for the maximum number of reported reference signals.
  • the indication fields in the measurement report comprises a first indication field that indicates a number of indication fields of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a bitmap of identifications of the plurality of activated TCI states, where each bit of the bitmap indicates presence or absence of indication fields for a corresponding activated TCI state of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a second indication field that indicates a number of indications fields of the second set of indication fields in the measurement report.
  • a number of indication fields of the first set of indication fields is not greater than another number of indication fields of the second set of indication fields.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to an ascending or descending order of quality corresponding to a respective TCI state.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to bitmap of identifications of the plurality of activated TCI states. In some embodiments, at least one indication field of the first set of indication fields are associated with an activated TCI state with a M-th quality, a highest signal quality or a lowest signal quality.
  • the network device after the receiving the any one or more of the first uplink control information and the second uplink control information and after a transmission of a shared channel carrying a transmission configuration indicator (TCI) states activation command, transmits a control channel with a TCI state of a cell associated with the TCI state, the shared channel is transmitted not later than a number of time units after transmitting any one or more of the first uplink control information or the second uplink control information, the first uplink control information or the second uplink control information is associated with a reference signal associated with the TCI state, the control channel is transmitted at a slot that is after a number of slots after the reception of the shared channel, the TCI state is indicated in the TCI states activation command, and the TCI states activation command comprises a radio resource control (RRC) signaling or a medium access control-control element (MAC CE) .
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the number of time units is a predefined value or a configured value
  • a time unit comprises a slot or a millisecond
  • the number of slots is determined by a time parameter related to SSB transmission or SSB processing, and a value of the time parameter is zero.
  • the above-described methods are embodied in the form of processor-executable code and stored in a non-transitory computer-readable storage medium.
  • the code included in the computer readable storage medium when executed by a processor, causes the processor to implement the methods described in this patent document.
  • a device that is configured or operable to perform the above-described methods is disclosed.
  • FIG. 1 shows an exemplary flowchart for transmitting uplink control information.
  • FIG. 2 shows another exemplary flowchart for transmitting uplink control information.
  • FIG. 3 shows an exemplary flowchart for receiving uplink control information.
  • FIG. 4 shows another exemplary flowchart for receiving uplink control information.
  • FIG. 5 shows an exemplary block diagram of a hardware platform that may be a part of a network device or a communication device.
  • FIG. 6 shows an example of wireless communication including a base station (BS) and user equipment (UE) based on some implementations of the disclosed technology.
  • BS base station
  • UE user equipment
  • beam information report is based on channel state information (CSI) report, and a type of report for the beam information report in time domain can be configured to be periodic, semi-persistent or aperiodic.
  • CSI channel state information
  • a user equipment UE
  • CSI report e.g., measurement report
  • a UE can be enabled to transmit a beam information report when a condition related to a trigger event is fulfilled, where the trigger event is associated with the beam information report.
  • This patent document describes at least the following example techniques: (1) indication fields in the measurement report for a plurality of trigger events; determining a priority value for a measurement report; (2) describing multiplexing rules for an uplink resource carrying a measurement report (e.g., the multiplexing rules may be for when an uplink resource carrying a measurement report overlaps with another uplink resource) ; (3) determining an uplink resource for a measurement report transmission, where the determining may be based on a configuration signaling and a physical downlink control channel (PDCCH) ; (4) describing that the communication device applies a transmission configuration indicator (TCI) or receives a control channel (e.g., PDCCH) of a TCI state after the communication device transmits the measurement report; and (5) describing whether or not the communication device transmits the measurement report in case that a beam failure recovery is triggered.
  • TCI transmission configuration indicator
  • PDCCH control channel
  • a CSI report in the current new radio (NR) system can assist the network to provide a better transmission configuration to a UE.
  • a CSI report can be configured to be aperiodic, semi-persistent or periodic.
  • a UE can be configured with the report quantity for a CSI report to contain one or more of channel quality indicator (CQI) , precoding matrix indicator (PMI) , rank indicator (RI) , CSI-RS Resource Indicator (CRI) , synchronization signal block resource indicator (SSBRI) , signal-to-noise and interference ratio (SINR) , and/or reference signal received power (RSRP) .
  • CQI channel quality indicator
  • PMI precoding matrix indicator
  • RI rank indicator
  • SSBRI synchronization signal block resource indicator
  • SINR signal-to-noise and interference ratio
  • RSRP reference signal received power
  • the related counter can be incremented by 1.
  • the counter reaches the maximum counting number configured for the BFD-RS set, beam failure recovery procedure for the BFD-RS set is triggered.
  • the evaluation of the condition of a trigger event is based on a filtered measurement result, where the filtered measurement result is obtained in Layer 3 based on multiple measurement results within a time duration configured by timeToTrigger.
  • Uplink control information (UCI) types can include HARQ-ACK information, scheduling request (SR) , link recovery request (LRR) , and CSI.
  • UCI bits may include HARQ-ACK information bits (if any) , SR information bits (if any) , LRR information bit (if any) , and CSI bits (if any) .
  • SR scheduling request
  • LRR link recovery request
  • CSI CSI bits
  • Normally SR is applicable for SR and/or for LRR in NR systems.
  • UE can be configured or scheduled by network device uplink resource (s) to carry UCI bits.
  • UE can multiplex UCI bits from the PUCCH in the another PUCCH or the PUSCH, and the UE transmits the bits after multiplexing in the another PUCCH or the PUSCH.
  • the PUCCH can be dropped by the UE.
  • a measurement report may comprise a L1-RSRP reporting associated with a trigger event, a L1-SINR reporting associated with a trigger event or a CSI report associated with a trigger event.
  • a measurement report or a control information can comprise one part or two parts.
  • a non event-triggered CSI report may be a CSI report that is not triggered by an event and may comprise an aperiodic (AP) CSI report, a semi-persistent (SP) CSI report, or a periodic (P) CSI report.
  • a report quantity or a quality may comprise a L1-SINR, a L1-RSRP, a differential L1-SINR or a differential L1-RSRP.
  • a report quantity may quantify an attribute of a signal (e.g., L1-SINR, a L1-RSRP, a differential L1-SINR or a differential L1-RSRP) .
  • a reference signal may comprise a SSB or a CSI-RS.
  • an uplink resource may comprise a PUSCH or a PUCCH.
  • a cell may comprise a serving cell, a physical cell, a candidate cell, a neighbor cell or a carrier component.
  • UE performs multiplexing of uplink control information or dropping of uplink resource when one or more uplink resources overlaps in time domain, and UE may transmit one or more uplink control information on the corresponding one or more uplink resources, where at least one of the one or more uplink control information comprises a measurement report associated with a trigger event, and where the uplink resource that is dropped may be from the one or more uplink resources.
  • Embodiment 1 specifies indication fields of measurement reports associated with different types of trigger event.
  • an indication field in a measurement report is associated with a reference signal, where the reference signal is associated with a specific transmission parameter or the reference signal is associated with a reference signal resource set (e.g., not associated with the specific transmission parameter) , and where whether the reference signal is associated with either the specific transmission parameter or the reference signal resource set is determined based on the type of trigger event associated with the measurement report.
  • the reference signal resource set is associated with the measurement report, e.g., the reference signal resource set is configured for the measurement report.
  • an indication field e.g., reference signal resource indicator or report quantity corresponding to a reference signal
  • a reference signal associated with a specific transmission parameter e.g., the indicated TCI state
  • an indication field is associated with a reference signal associated with a reference signal resource set.
  • an indication field e.g., reference signal resource indicator or report quantity corresponding to a reference signal
  • a reference signal associated with a specific transmission parameter e.g., the indicated TCI state
  • the number of indication fields associated with reference signals in a measurement report is determined based on the type of trigger event associated with the measurement report.
  • the number of indication fields associated with reference signals (e.g., reference signal resource indicator or report quantity corresponding to a reference signal) in the measurement report is M + N; if a measurement report is associated with a trigger event with a second type, the number of indication fields associated with reference signals (e.g., reference signal resource indicator or report quantity corresponding to a reference signal) in the measurement report is M.
  • the M indication fields are associated with a reference signal resource set, and the N indication fields are associated with a specific transmission parameter.
  • the M indication fields are not associated with a specific transmission parameter, and the N indication fields are associated with a specific transmission parameter.
  • the value of M is the number of reported reference signal configured for the measurement report, or is not greater than the maximum number of reported reference signal configured for the measurement report.
  • N is a fixed or predefined value (e.g., 1 or 2) .
  • the value of M + N is the number of reported reference signal configured for the measurement report, or is not greater than the maximum number of reported reference signal configured for the measurement report.
  • N is a fixed or predefined value (e.g., 1 or 2) .
  • the number of indication fields not associated with a specific report quantity in a measurement report is determined based on the type of trigger event associated with the measurement report, where each of the indication fields is associated with a reference signal.
  • the number of indication fields not associated with a specific report quantity (e.g., differential RSRP or differential SINR) is A; if a measurement report is associated with a trigger event with a second type, the number of indication fields not associated with a specific report quantity is B.
  • A is 1 and B is 2.
  • a total number of indication fields for report quantity in a measurement report is 4, if the measurement report is associated with a trigger event with a first type, the number of indication fields associated with a specific report quantity (e.g., differential RSRP or differential SINR) is 4-A, and the number of indication fields not associated with the specific report quantity is A.
  • a specific report quantity e.g., differential RSRP or differential SINR
  • an indication field associated with the specific transmission parameter (e.g., current beam) does not comprise a RS ID, indicates a zero/invalid value or is reserved.
  • the indication fields not associated with the specific transmission parameter (e.g., new beams) comprises a RS ID.
  • indication fields associated with the specific transmission parameter comprises a report quantity with differential L1-RSRP/L1-SINR value.
  • the indication fields not associated with the specific transmission parameter comprises a report quantity with differential L1-RSRP/L1-SINR value or absolute L1-RSRP/L1-SINR value, wherein only one report quantity (e.g., in the first ordinal position, associated with the first RS ID or associated with the RS with highest quality) can be absolute L1-RSRP/L1-SINR value.
  • an indication field associated with the specific transmission parameter is mapped before or after indication fields not associated with the specific transmission parameter.
  • an indication field associated with the specific transmission parameter and indication fields not associated with the specific transmission parameter are mapped according to the ascending/descending order of quality of RSs associated with the indication fields.
  • the indication fields not associated with a specific report quantity are associated with a specific transmission parameter; if a measurement report is associated with a trigger event with a second type, the indication fields not associated with a specific report quantity are associated with a reference signal resource set.
  • the specific transmission parameter is a current beam, an indicated TCI state, an activated TCI state, or an activated TCI state with the worst/best quality (e.g., L1-RSRP) .
  • indication fields in the measurement report can comprise a first set of indication fields associated with a first set of reference signals (e.g., one-to-one association) and a second set of indication fields associated with a second set of reference signals, where the trigger event is associated with the first set of reference signals and second set of reference signals.
  • the first set of reference signals and the second set of reference signals are associated with a same type (e.g., SSB or CSI-RS) of reference signals.
  • the first set of reference signals and the second set of reference signals are a plurality of SSB resources
  • the first set of reference signals and the second set of reference signals are associated with a same time domain transmission type (e.g., periodic, semi-persistent or aperiodic) of reference signals.
  • the first set of reference signals and the second set of reference signals are all periodic (e.g., periodic CSI-RS and SSB) .
  • the first set of reference signals and the second set of reference signals are QCL type (e.g., type-A, type B, type C or typeD) associated with a same time domain transmission type (e.g., periodic, semi-persistent or aperiodic) of reference signals.
  • the first set of reference signals and the second set of reference signals are all periodic (e.g., periodic CSI-RS and SSB) .
  • the first set of reference signals and the second set of reference signals are in a same time duration, where a time duration is a slot or a frame.
  • the first set of reference signals and the second set of reference signals are in a same time duration, where a time duration is a slot or a frame.
  • an interval or gap between a first transmission occasion of a reference signal of the first set of reference signals and a second transmission occasion of a reference signal of the second set of reference signals is not greater than or is less than a predefined or configured value, where the predefined or configured value is in a unit of slot or millisecond.
  • the trigger event (e.g., the specific type of trigger event) is fulfilled when quality (e.g., RSRP or SINR) of at least one new beam becomes a threshold value better than a quality value determined based on a plurality of reference signals derived from a plurality of TCI states activated for the UE (e.g., a plurality of activated TCI states) .
  • quality e.g., RSRP or SINR
  • the quality value is a mean or median value of quality values correspond to the plurality of reference signals.
  • the quality value is calculated by a formula comprising quality values corresponding to the plurality of reference signals and coefficients corresponding to the quality values.
  • the trigger event (e.g., the specific type of trigger event) is fulfilled when quality (e.g., RSRP or SINR) of at least one new beam becomes a threshold value better than a reference signal derived from an activated TCI state which has a M-th quality in ascending or descending order (e.g., M-th worst quality or M-th best quality) among a plurality of TCI states activated for the UE.
  • quality e.g., RSRP or SINR
  • M-th quality in ascending or descending order e.g., M-th worst quality or M-th best quality
  • M is a fixed or predefined value (e.g., an integer value within 1 to 7) or M is configured by a RRC message, indicated/activated by a MAC CE, or determined based on the maximum number of reported reference signals or the number of reported reference signals.
  • the plurality of TCI states activated for the UE does not include the indicated TCI state, the applied TCI state or a TCI state indicated by a PDCCH.
  • the configuration by the RRC message is for the trigger event (e.g., M is indicated in the configuration of the trigger event) or for the measurement report associated with the trigger event (e.g., M is indicated in the configuration of the measurement report) .
  • the indication or activation by the MAC CE indicates a value from a plurality of values configured for M.
  • M N RS, max
  • the reference signals derived from the activated TCI state having the M-th best/worst quality and the reference signals derived from the plurality of TCI states are associated with the first set of reference signals.
  • the at least one new beam is associated with the second set of reference signals, where the second set of reference signals are derived from a plurality of TCI states configured for the UE or from a reference signal resource set configured for the measurement report.
  • Each of the first set of indication fields associated with the first set of reference signals comprises an indication field indicating an identification of an activated TCI state or a report quantity associated with an activated TCI state.
  • Each of the second set of indication fields associated with the second set of reference signals comprises an indication field indicating an identification of a reference signal or a report quantity associated with the reference signal.
  • M can be configured/indicated/activated with a value not greater than the maximum number of reported reference signals or the number of reported reference signals.
  • the number of indication fields of the first set is not greater than a value configured for the maximum number of reported reference signals (e.g., the number of the indication fields can be variable) .
  • the number of indication fields of the first set is equal to a value configured for the number of reported reference signals or is equal to the value of M. (e.g., the number of the indication fields is fixed) .
  • the number of indication fields of the second set is equal to a value configured for the number of reported reference signals (e.g., the number of the indication fields is fixed) .
  • the number of indication fields of the second set is not greater than a value configured for the maximum number of reported reference signals (e.g., the number of the indication fields can be variable) .
  • indication fields in the measurement report comprises a first indication field indicating the number of indication fields of the first set in the measurement report or indicating a bitmap of identifications of the plurality of activated TCI states. Each bit of the bitmap is associated with a TCI state indicated in a MAC CE for TCI state activation or an activated TCI state.
  • Value 0 of a bit of the bitmap indicates that indication fields (e.g., report quantity, identification) for the associated TCI state or the associated activated TCI state are absent, invalid, reserved or indicated with zero values in the measurement report.
  • Value 1 of a bit of the bitmap indicates that indication fields for the associated TCI state or the associated activated TCI state are present, valid or indicated with valid values (e.g., information of the associated TCI state) in the measurement report.
  • association between a bit of the bitmap and a TCI state is based on ordinal position of the TCI state among all the TCI states indicated in the MAC CE for TCI state activation, e.g., the first bit in the bitmap is associated with the first TCI state with the first ordinal position among all the TCI states indicated in the MAC CE for TCI state activation, the second bit in the bitmap is associated with the second TCI state with the second ordinal position among all the TCI states indicated in the MAC CE for TCI state activation, and so on.
  • association between a bit of the bitmap and an activated TCI state is based on codepoint of an indication field for TCI in a DCI, e.g., the first bit in the bitmap is associated with the TCI state associated with the first codepoint of the indication field for TCI in the DCI, the second bit in the bitmap is associated with the TCI state associated with the first codepoint of the indication field for TCI in the DCI, and so on.
  • indication fields in the measurement report comprises a second indication field indicating the number of indications fields of the second set in the measurement report.
  • the maximum number of reported reference signals are configured to be 4, up to 4 indication fields can be present in the measurement. If the number of indication fields is indicated to be 2 in the measurement report, two indication fields are present in the measurement report and another two indication fields are absent in the measurement report.
  • indication fields associated with the second, fifth and seventh TCI states in the TCI state activation MAC CE, in the measurement report are present and indicate information (e.g., identification, RSRP, SINR) of the corresponding TCI state. And the other indication fields in the measurement report are absent, reserved or indicated with zero/invalid values.
  • the number of indications fields of the first set and that of second set are fixed.
  • the number of indications fields of the second set are fixed (e.g., is equal to the maximum number of reported reference signals or the number of reported reference signals) , and the number of indications fields of the first set is indicated by the first indication field.
  • the number of indications fields of the first set are fixed, and the number of indications fields of the second set is indicated by the second indication field.
  • the number of indications fields of the first set is indicated by the first indication field and the number of indications fields of the second set is indicated by the second indication field.
  • UE determines at least one of the indication fields of the first set and at least one of the indication fields of the second set, and indicates an identification of an activated TCI state, a value of report quantity associated with the activated TCI state, an identification of a reference signal or a value of report quantity associated with the reference signal for each of the indication fields determined by UE.
  • UE determines at least one of the indication fields of the first set, and indicates an identification of a reference signal or a value of report quantity associated with the reference signal for each of the indication fields determined by UE and for each of the indication fields of the second set.
  • UE determines at least one of the indication fields of the second set, and indicates an identification of a reference signal or a value of report quantity associated with the reference signal for each of the indication fields determined by UE and for each of the indication fields of the first set.
  • UE indicates an identification of a reference signal or a value of report quantity associated with the reference signal for each of the indication fields of the first set and the second set.
  • UE determining the indication fields of the first set and/or the second set which are to indicate an identification of an activated TCI state, a value of report quantity associated with the activated TCI state, an identification of a reference signal or a value of report quantity associated with the reference signal based on whether a condition of the trigger event associated with a respective reference signal is fulfilled or not.
  • a corresponding indication field can indicate an identification of the reference signal or a value of report quantity associated with the reference signal, otherwise, the corresponding indication field indicates a zero value.
  • the number of the at least one of the indication fields of the first set determined by UE is not greater than the value of M.
  • UE indicates a zero value (e.g., zero-padding) for the indication fields other than the indication fields of the first set and/or second set which are determined by the UE to indicate an identification of an activated TCI state, a value of report quantity associated with the activated TCI state, an identification of a reference signal or a value of report quantity associated with the reference signal.
  • a zero value e.g., zero-padding
  • the number of indication fields of the first set is not greater than the number of indication fields of the second set.
  • the indication fields of the first set are associated with the activated TCI states according to the bitmap of identifications of activated TCI states.
  • the first indication field of the first set is associated with a first TCI state associated with the first bit of the bitmap (e.g., the first ordinal position in the bitmap)
  • the second indication field of the first set is associated with a second TCI state associated with the second bit of the bitmap, and so on.
  • one or more bits in the bitmap indicate value of 1 respectively
  • the first indication field of the first set is associated with a first TCI state associated with the first bit of the one or more bits (e.g., first ordinal position among the one or more bits)
  • the second indication field of the first set is associated with a second TCI state associated with the second bit of the one or more bits, and so on.
  • the indication fields of the first set are associated with the activated TCI states according to the ascending or descending order of quality.
  • the first indication field of the first set (e.g., with the first ordinal position) is associated with the activated TCI state with the M-th best/worst quality
  • the second indication field of the first set is associated with the activated TCI state with the (M-1) -th best/worst quality, and so on.
  • the first indication field of the first set (e.g., with the first ordinal position) is associated with the activated TCI state with the first best/worst quality
  • the second indication field of the first set is associated with the activated TCI state with the second best/worst quality, and so on.
  • At least one indication field of the first set is associated with the activated TCI state with the M-th best/worst quality or the activated TCI state with the best/worst quality.
  • the activated TCI states or the plurality of TCI states activated for the UE does not include an indicated or applied TCI state.
  • the first indication field indicating the number of indication fields of the first set in the measurement can be indicated in the first part of the measurement report.
  • the indication fields of the first set in the measurement or the indication fields of the second set in the measurement can be indicated in the first part of the measurement report if the measurement report comprises one part or in the second part of the measurement report if the measurement report comprises two parts.
  • Embodiment 2 specifies determination of a priority index/value associated with a measurement report, where the determination is based on a formula in which a plurality of parameters is contained.
  • UE For multiplexing of uplink control information or dropping of uplink resource associated with a measurement report, UE determines to multiplex the uplink control information or not, or to drop the uplink resource or not based on the priority index or priority value associated with the measurement report. A lower priority index represents the priority is higher.
  • UE transmits a first control information comprising a request associated with (or to indicate a transmission of) a measurement report and a second control information comprising a measurement report.
  • the priority values of the first and second control information can be the same.
  • the first control information may be a 1-bit information (e.g., a 1-bit scheduling request)
  • the second control information may include the measurement report.
  • the parameters in the formula to determine the priority values are the same to the first and second control information.
  • UE transmits a first control information comprising a request associated with a measurement report and a second control information comprising a measurement report.
  • the priority value of the first control information is less than the priority value of the second control information.
  • a report content related parameter (e.g., k) in the formula to determine the priority value for the first control information is less than that for the second control information.
  • UE transmits a first control information comprising a measurement report and a second control information comprising a non event-triggered CSI report (also known as a CSI report that is not triggered by an event) .
  • an event type related parameter (e.g., e) in the formula to determine the priority value for the first control information is associated with a type of trigger event associated with the first control information.
  • e 0 for a measurement report associated with a first type of trigger event
  • e 1 for a measurement report associated with a second type of trigger event
  • the maximum number of e is the maximum number of types of trigger events can be configured for a UE.
  • a report type related parameter (e.g., y) in the formula to determine the priority value for the first control information is less than that for the second control information.
  • y 0 for a measurement report to be carried on an uplink resource scheduled by a PDCCH
  • y 1 for a measurement report to be carried on an uplink resource configured for the measurement report
  • y 2 for aperiodic CSI reports to be carried on PUSCH
  • y 3 for semi-persistent CSI reports to be carried on PUSCH
  • y 4 for semi-persistent CSI reports to be carried on PUCCH
  • y 5 for periodic CSI reports to be carried on PUCCH.
  • a report type related parameter (e.g., y) in the formula to determine the priority value for the first control information is associated with the type of trigger event associated with the first control information.
  • a parameter (e.g., z) related to whether the first or second control information is associated with a trigger event in the formula to determine the priority value for the first control information is less than that for the second control information.
  • z 0 for a measurement report (e.g., first control information)
  • a report type related parameter (e.g., y) in the formula to determine the priority value for the first control information or the second control information is related to whether the first or second control information is associated with a trigger event.
  • a report configuration index related parameter (e.g., s) in the formula to determine the priority value for the first control information is less than that for the second control information.
  • UE does not expect to be configured a measurement report associated with a report configuration index which is less than another report configuration index associated with a non event-triggered CSI report, where the measurement report and the non event-triggered CSI report are associated with the same cell (e.g., configured on the same cell or configured with reference signal resource sets which are configured on the same cell) .
  • a report configuration index associated with the first control information is configured to be less than that associated with the second control information.
  • a cell index related parameter (e.g., c) in the formula to determine the priority value for the first control information or the second control information is determined based on one of the one or more cell indexes associated with one or more measurement reports in the first control information or the second control information. Association between a cell index and a measurement report is based on the measurement report is configured on a cell with the cell index or the measurement report is configured with a reference signal resource set which are associated with the cell with the cell index.
  • the one of the one or more cell indexes is the lowest or highest cell index among the one or more cell indexes.
  • a first control information has a higher priority over a second control information irrespective of the respective priority values.
  • UE determines a first priority value for the first control information and a second priority value for the second control information, the first control information has a higher priority than the second control information regardless of the first and second priority values.
  • measurement reports and non event-triggered CSI reports associated with a candidate cell has a higher priority than measurement reports and non event-triggered CSI reports associated with a serving cell regardless of the priority values of the corresponding measurement reports and non event-triggered CSI reports.
  • a parameter in the formula to determine the priority value for the first control information or the second control information is independent.
  • parameter s in the formula is associated with a report configuration index associated with a measurement report if the control information comprises a measurement report
  • parameter s in the formula is associated with a report configuration index associated with a non event-triggered CSI report if the control information comprises a non event-triggered CSI report.
  • the configurations for measurement reports and non event-triggered CSI reports are indexed or configured independently.
  • s is an eventTriggeredReportConfigID if the control information comprises a measurement report and s is a reportConfigID if the control information comprises a non event-triggered CSI report.
  • UE determines (e.g., is triggered) to transmit a control information comprising one or more measurement reports on an uplink resource, where each measurement report is associated with a report configuration and/or a cell index, where the control information is generated either without multiplexing or after multiplexing (e.g., based on the embodiments in this patent document) .
  • a same report configuration is associated with a plurality of measurement reports. For instance, a plurality of measurement reports are configured in a same report configuration, or, a plurality of reference signal resource sets associated with corresponding measurement reports are configured in a same report configuration.
  • the one or more measurement reports can be a subset of the plurality of measurement reports.
  • a report configuration list (e.g., event triggering state list or a list of report configurations) is associated with a plurality of measurement reports.
  • the one or more measurement reports can be a subset of the plurality of measurement reports.
  • control information has a fixed size, and it comprises a plurality of bits with zero values besides the one or more measurement reports.
  • the fixed size is predefined, configured or is determined based on the uplink resource (e.g., its corresponding modulation and coding scheme, code rate, a number of resource elements or a number of OFDM symbols) .
  • the fixed size can be determined based on the uplink resource (e.g., its corresponding modulation and coding scheme, code rate, a number of resource elements or a number of OFDM symbols) and a configured parameter, wherein the configured parameter indicates a number of resource elements or a number of OFDM symbols for the control information transmission or indicates a ratio related parameter.
  • UE transmits and maps the control information on a number of resource elements or OFDM symbols indicated by the configured parameter from all resource elements or OFDM symbols of the uplink resource.
  • the ratio related parameter indicates a value of 0.5
  • a half of the resource elements or OFDM symbols are used to determine the fixed size.
  • the configured parameter indicates 4 resource elements
  • 4 resource elements are used to determine the fixed size.
  • control information has a variable size, and it comprises a reporting state indication field besides the one or more measurement reports.
  • the variable size is determined based on the reporting state indication field.
  • the reporting state indication field indicates presence of indications fields for the one or more measurement reports or presence of the one or more measurement reports.
  • the reporting state indication field comprises a bitmap of cell identifications, where each bit in the bitmap is associated with a cell identification, and bit value 1 indicates a measurement report associated with the cell identification is present, triggered or transmitted, and bit value 0 indicates a measurement report associated with the cell identification is absent, not triggered or not transmitted.
  • the reporting state indication field indicates the number of the one or more measurement reports and the one or more measurement reports are present.
  • the reporting state indication field comprises a bitmap of identifications of measurement reports, where each bit in the bitmap is associated with a measurement report from the plurality of measurement reports associated with a same report configuration, and bit value 1 indicates a corresponding measurement report is present, triggered or transmitted, and bit value 0 indicates a corresponding measurement report is absent, not triggered or not transmitted. Bit value 1 is indicated for the one or more measurement reports in the bitmap.
  • a fixed number of bits of the control information are associated with a measurement report from the one or more measurement reports, a plurality of bits which are from the fixed number of bits and are not mapped with the measurement report are indicated zero values by the UE.
  • the control information has a fixed size (e.g., B*J bits) , and a fixed number of bits (e.g., B) can be associated with a respective measurement report.
  • B a fixed number of bits
  • Zero bits will be indicated in the control information field for a measurement report if the measurement report is not triggered or transmitted (e.g., when J is larger than the number of the one or more measurement reports) .
  • a bit size of the indication fields e.g., cell identification, event type identification, report quantity, RS ID or indication fields in Embodiment 1
  • the value of J can be configured based on the number of the plurality of measurement reports, predefined or determined based on the fixed size of the control information.
  • Table 1 Control information fields for measurement reports
  • control information has a variable size (e.g., at most B*J bits) , and a fixed number of bits (e.g., B) can be associated with a respective measurement report.
  • Control information fields for a measurement report are absent if the measurement report is not triggered or transmitted or is indicated absent by the reporting state indication field. If a bit size of the indication fields for a measurement report is less than B, zero bits will be padded after the indication fields till the fixed number of bits are reached.
  • the value of J can be configured based on the number of the plurality of measurement reports, predefined or determined based on the fixed size of the control information.
  • the value of the fixed number (e.g., B) is determined by a measurement report which has the maximum bit size among all measurement reports configured/indicated to transmit on the uplink resource. Wherein the one or more measurement reports are a subset of the all measurement reports. Or, the value of the fixed number is predefined or configured.
  • a plurality of bits which are in the control information and are not mapped with any one of the one or more measurement reports are indicated zero values by the UE.
  • the indication fields for measurement reports are mapped in the control information based on the priority values corresponding to the one or more measurement reports, e.g., in ascending order of priority value.
  • measurement report 1 in Table 1 has a lowest priority value among all the measurement reports.
  • the indication fields for measurement reports are mapped in the control information based on the cell index associated with the one or more measurement reports, e.g., in ascending/descending order of cell index.
  • measurement report 1 in Table 1 has a lowest cell index among all the measurement reports.
  • the reporting state indication field is indicated in the first part of the control information, and the indication fields for measurement reports are indicated in the first part of the control information if the control information comprises one part or in the second part of the control information if the control information comprises two parts.
  • UE determines or selects a plurality of measurement reports from the one or more measurement reports in ascending priority value or in descending prioritization to transmit on the uplink resource.
  • the measurement reports other than the plurality of measurement reports are dropped, omitted or not transmitted.
  • UE when the uplink resource overlaps with another uplink resource in time domain, UE performs multiplexing for each of the one or more measurement reports based on the priority value of the corresponding measurement report.
  • UE performs multiplexing of the control information by selecting a number of measurement reports in ascending priority value or in descending prioritization when the uplink resource with highest index or highest capacity (e.g., determined based on the number of resource elements, modulation order and code rate) from the configured uplink resource set is determined to carry the control information after multiplexing, or when the uplink resource indicated/configured to carry the control information is not capable of carrying all the control information after multiplexing.
  • the measurement reports which are not selected in the performing multiplexing are dropped, omitted or not transmitted.
  • UE when the uplink resource overlaps with another uplink resource in time domain, UE performs multiplexing of the control information based on a priority value corresponding to the one or more measurement reports.
  • UE determines a priority value for the one or more measurement reports, where the parameters in the formula to determine the priority value are determined based on one of the measurement reports (e.g., the measurement report corresponding to the lowest report configuration index and/or the lowest cell index) .
  • UE when the uplink resource overlaps with another uplink resource in time domain, UE performs multiplexing of the control information based on the lowest or highest priority value among one or more priority values corresponding to the one or more measurement reports.
  • UE multiplexes the control information or not based on the lowest or highest priority value, and all the measurement reports are multiplexed or not transmitted (e.g., dropped) .
  • UE determines omission of Part 2 CSI based on priority order of CSI reports which configured or indicated to be transmitted on an uplink resource, where one of the CSI reports comprises the control information comprising the one or more measurement reports and comprises two parts/sets, the priority order of the second part/set of the control information is 0 (e.g., highest priority) .
  • Embodiment 3 specifies UE transmitting/reporting control information (e.g., uplink control information, UCI) after multiplexing/dropping, where the control information at least comprises a measurement report.
  • control information e.g., uplink control information, UCI
  • UE transmits a first control information in a first uplink resource and transmits a second control information in a second uplink resource, where the first control information comprises a first set of one or more measurement reports and the second control information comprises a second set of one or more measurement reports, and the first uplink resource and the second uplink resource are overlapped in time domain and/or in the same cell, UE determines to drop the first control information and the first uplink resource or to drop the second control information and the second uplink resource based on a first priority value and a second priority value, where the first priority value is the highest/lowest priority value among the priority values corresponding to the first set of one ore more measurement reports and the second priority value is the highest/lowest priority value among the priority values corresponding to the second set of one ore more measurement reports.
  • UE transmits a first control information in a first uplink resource and transmits a second control information in a second uplink resource, where the first and second uplink resources are overlapped in time domain, and UE performs multiplexing of the first and second uplink control information or dropping of the first and second uplink resource.
  • the first uplink control information at least comprises a measurement report.
  • UE determines not to multiplex/transmit a plurality of measurement reports from the one or more measurement reports in a control information (e.g., first control information) as mentioned in Embodiment 2, and the control information comprises a first set/part of indication fields and a second set/part of indication fields, then UE performs at least one of:
  • a control information e.g., first control information
  • the first set/part of indications fields at least indicate a cell identification related field, a report configuration identifier related field or a field related to the number of reported reference signals and the second set/part of indication fields at least indicate a reference signal index or a report quantity.
  • UE determines to transmit an uplink control information comprising N measurement reports and the uplink resource is not capable of carrying the uplink control information, where the uplink control information comprises an indication field indicating the value of N and indication fields of the N measurement reports
  • the uplink control information comprises an indication field indicating the value of N and indication fields of the N measurement reports
  • UE selects M measurement reports from the N measurement reports to transmit on the uplink resource based on the capacity of the uplink resource and the priority values of the N measurement reports.
  • M is an integer not less than 1 and less than N.
  • the first uplink resource is associated with a first resource priority index and the second uplink resource is associated with a second resource priority index.
  • the resource priority index can be 0 or 1.
  • the first uplink resource is associated with a smaller resource priority index and the first control information at least comprises HARQ-ACK information and a measurement report
  • the second uplink resource is associated with a larger resource priority index
  • the first uplink resource is associated with a smaller resource priority index and the first control information at least comprises HARQ-ACK information and a CSI report
  • the second uplink resource is associated with a larger resource priority index
  • the first uplink resource is associated with a larger resource priority index and is scheduled by a PDCCH
  • the second uplink resource is associated with a smaller resource priority index and the second control information comprises a measurement report
  • the second uplink resource is configured to carry the second control information or is activated/indicated by a PDCCH to carry the second uplink resource
  • the first and second uplink resource are on the same carrier or cell, UE does not transmit the second uplink resource.
  • the first uplink resource comprises a PUCCH resource and the first control information at least comprises HARQ-ACK information and a measurement report
  • the second uplink resource comprises a PUSCH resource
  • UE multiplexes HARQ-ACK information and CSI reports comprising the measurement report and non event-triggered CSI reports (also known as CSI reports that are not triggered by one or more events) from the first control information in the second uplink resource and does not transmit the first uplink resource if the second control information does not comprise a measurement report, a AP CSI report or a SP CSI report.
  • non event-triggered CSI reports also known as CSI reports that are not triggered by one or more events
  • UE does not transmit the second configured grant PUSCH regardless of the resource priority indexes of the two PUSCHs.
  • UE does not transmit the PUSCH carrying a SP CSI report regardless of the resource priority indexes of the two PUSCHs.
  • UE does not transmit the first PUSCH regardless of the resource priority indexes of the two PUSCHs or UE does not transmit the PUSCH with the smaller resource priority index.
  • UE does not transmit the second PUSCH regardless of the resource priority indexes of the two PUSCHs or UE does not transmit the PUSCH with the smaller resource priority index.
  • UE does not expect a PUCCH resource that results from multiplexing overlapped PUCCH resources to overlap with more than one PUSCHs if each of the more than one PUSCHs carries a measurement report and with a PDCCH.
  • UE transmits a PUCCH transmission and a number of PUSCH transmissions, where control information is transmitted on the PUCCH transmission, the PUSCH transmissions are on one or more cells, and the PUCCH transmission overlaps with the PUSCH transmissions, UE multiplexes the control information in a PUSCH transmission from the PUSCH transmissions which are scheduled by corresponding PDCCHs or with corresponding PDCCHs, but not from the PUSCH transmissions configured by RRC signalling or without corresponding PDCCHs.
  • the UE multiplexes the UCI from the PUCCH in one of the first PUSCHs.
  • Embodiment 4 specifies UE transmitting a measurement report on an uplink resource based on the configuration and/or indication from downlink signaling.
  • the uplink resource for measurement report transmission is scheduled by a PDCCH; if the configuration parameter is set to be disabled or false, or the configuration parameter is absent, the uplink resource for measurement report transmission is configured in the configuration.
  • UE does not expect the configuration parameter is set to disabled/false or the configuration parameter is absent, and the configured uplink resource is absent in the configuration.
  • the uplink resource for measurement report transmission is indicated by a PDCCH.
  • the PDCCH indicates to transmit the measurement report on an uplink resource configured in the configuration when one or more indications fields in the PDCCH indicates a specific value, otherwise, the PDCCH indicates to transmits the measurement report on an uplink resource scheduled by the PDCCH.
  • the UL-SCH indicator indicates 0 and CSI request field indicates all zeros.
  • the UL-SCH indicator indicates 0, CSI request field indicates all zero (s) , and SRS request field is of all zero (s) .
  • UE does not expect to receive a PDCCH indicating to transmit a measurement report on a configured uplink resource when the configured uplink resource is absent in the configuration.
  • an uplink resource carrying a measurement report with a PDCCH comprises, an uplink resource carrying a measurement report without a PDCCH comprising the uplink resource for measurement report is scheduled by a PDCCH or transmission of the uplink resource for measurement report is indicated by a PDCCH.
  • Embodiment 5 specifies UE applying or activating a TCI state after transmitting a measurement report.
  • a TCI state is with known status when during a time period from the last transmission of a reference signal to a number of time units after a transmission of a measurement report, where the reference signal is associated with the measurement report and is associated with the TCI state (e.g., the reference signal is in the TCI state or QCLed to the TCI state) .
  • UE transmits a first measurement report associated with a reference signal
  • UE receives a downlink signaling (e.g., PDCCH or MAC CE) activating a SP CSI-RS resource or triggering an AP CSI-RS resource
  • the SP CSI-RS resource or the AP CSI-RS resource and the reference signal are associated with a transmission parameter (e.g., a TCI state)
  • a transmission parameter e.g., a TCI state
  • the transmission parameter is an activated TCI state, a configured TCI state or a TCI state with known status
  • UE receives PDCCH with the transmission parameter of a cell associated with the TCI state at a slot that is after a number of slots after a CSI report associated with the SP CSI RS or AP CSI-RS.
  • the number of slots is determined based on a predefined value (e.g., multiples of the number of slots of a subframe) .
  • UE receives a PDCCH with a TCI state of a cell associated with the TCI state at a slot that is after a number of slots after reception of a PDSCH carrying TCI States Activation command, where the TCI state is indicated in the TCI States Activation command, and the TCI States Activation command comprises a RRC signaling or a MAC CE.
  • a time parameter related to SSB transmission e.g., T first-SSB
  • SSB processing e.g., T SSB-proc
  • the measurement report is associated with a reference signal associated with the TCI state (e.g., the reference signal is in the TCI state or QCLed to the TCI state) .
  • a time unit comprises a slot or a millisecond.
  • Embodiment 6 specifies UE transmitting a measurement report in the case that a beam failure detection/recovery (BFD/BFR) procedure is performed by the UE.
  • BFD/BFR beam failure detection/recovery
  • a BFR is triggered or a random access procedure is initiated when a counter related to the beam failure detection is larger than a maximum number.
  • UE performs at least one of:
  • UE performs at least one of:
  • UE transmits a measurement report associated with the SCell on an uplink resource in another cell for which a BFR is not triggered, where the another cell can be a SPcell, or any one of SCells.
  • UE performing the embodiments above is in response to the measurement report is associated with a specific type of trigger event (e.g., quality of a current beam/an indicated TCI state/an activated TCI state is worse than a certain threshold) .
  • a specific type of trigger event e.g., quality of a current beam/an indicated TCI state/an activated TCI state is worse than a certain threshold
  • FIG. 1 shows an exemplary flowchart for transmitting uplink control information.
  • Operation 102 includes performing, by a communication device, an operation that enables transmission of any one or more of a first uplink control information and a second uplink control information, where the first uplink control information corresponds to a first uplink resource and the second uplink control information corresponds to a second uplink resource, and where the operation is performed in response to the first uplink resource overlapping with the second uplink resource in time domain.
  • Operation 104 includes transmitting, by the communication device and in response to the performing the operation, any one or more of the first uplink control information and the second uplink control information on the first uplink resource or the second uplink resource, where any one or more of the first uplink control information and the second uplink control information comprises a measurement report associated with a trigger event.
  • the operation includes multiplexing the first uplink control information and the second uplink control information. In some embodiments, the operation includes dropping the first uplink resource or the second uplink resource. In some embodiments, the multiplexing the first uplink control information and the second uplink control information, or the dropping the first uplink resource or the second uplink resource is performed based on a priority index or a priority value associated with the measurement report. In some embodiments, the first uplink control information comprises a request associated with the measurement report, and the second uplink control information comprises the measurement report. In some embodiments, a first priority value of the first uplink control information is same as a second priority value of the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined using a formula that includes a report content related parameter, and a value of the report content related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information comprises the measurement report
  • the second uplink control information comprises a channel state information (CSI) report that is not triggered by any trigger event.
  • CSI channel state information
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined using a formula that includes a report type related parameter, and a value of the report type related parameter for the first uplink control information is less than that for the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined using a formula that includes a parameter related to whether the first uplink control information or the second uplink control information is associated with the trigger event, and a value of the parameter for the first uplink control information is less than that for the second uplink control information.
  • a priority value for the first uplink control information or the second uplink control information is determined from a formula that includes a report type related parameter, and a value of the report type related parameter is related to whether the first uplink control information or the second uplink control information is associated with the trigger event.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively determined from a formula that includes a report configuration index related parameter, and a value of the report configuration index related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information has a higher priority than that for the second uplink control information.
  • the communication device is configured or indicated or determines to transmit an uplink control information comprising one or more measurement reports on an uplink resource, where each measurement report is associated with a report configuration and a cell index.
  • the communication device is configured to transmit a first plurality of measurement reports on a same uplink resource, where the one or more measurement reports are a subset of the first plurality of measurement reports.
  • the uplink control information further comprises a plurality of bits with zero values.
  • indication fields associated with the one or more measurement reports are mapped in the uplink control information based on an order of priority value corresponding to the one or more measurement reports.
  • a size of the uplink control information is determined based on a reporting state indication field that indicates presence of indications fields for the one or more measurement reports or presence of the one or more measurement reports.
  • a priority value for the uplink control information is determined from a formula that includes a cell index related parameter, and where a value of the cell index related parameter for the uplink control information is determined based on one cell index among cell indexes associated with the one or more measurement reports.
  • the communication device determines or selects a second plurality of measurement reports from the one or more measurement reports in ascending priority value or in descending priority to transmit on the uplink resource in response to a capacity or a number of available resources of the uplink resource not being capable of or being insufficient for transmitting the control information comprising the one or more measurement reports.
  • one or more measurement reports other than the second plurality of measurement reports are dropped, omitted or not transmitted.
  • the communication device does not multiplex a first measurement report from the first uplink resource in the second uplink resource in response to the second uplink resource carrying a second measurement report
  • the communication device does not multiplex a control information from the first uplink resource in the second uplink resource in response to the second uplink resource being configured by a network device or not having a corresponding physical downlink control channel (PDCCH)
  • the communication device drops the first uplink resource carrying the first measurement report and transmits the second uplink resource carrying the second measurement report in response to a priority value corresponding to the second measurement report being less than that corresponding to the first measurement report, or the communication device drops the first uplink resource not carrying the measurement report and transmits the second uplink resource carrying the measurement report.
  • PDCCH physical downlink control channel
  • the method further comprises performing, by the communication device, any one or more of the following operations in response to a beam failure recovery (BFR) procedure being triggered for a cell while the BFR procedure has not completed or in response to a random access procedure being initiated for the cell while the BFR procedure is not completed: the communication device does not transmit the measurement report on any cells or the cell, the communication device does not initiate a measurement reporting on any cells or the cell, the communication device does not start a timer configured for the measurement report on any cells or the cell, and/or the communication device sets a counter associated with the measurement report on any cells or on the cell to zero, and/or the communication device transmits the measurement report on another cell.
  • any one or more of the operations is performed in response to the measurement report being associated with a specific type of trigger event.
  • FIG. 2 shows another exemplary flowchart for transmitting uplink control information.
  • Operation 202 includes transmitting, by a communication device, an uplink control information on an uplink resource, where the uplink control information comprises a measurement report, where the measurement report is associated with a trigger event, where indication fields in the measurement report comprises at least one of a first set of indication fields associated with a first set of reference signals or a second set of indication fields associated with a second set of reference signals, and where the trigger event is associated with at least one of the first set of reference signals or the second set of reference signals.
  • each indication field in the measurement report is associated with a reference signal
  • the reference signal is associated with a transmission parameter
  • the reference signal is associated with a reference signal resource set that is based on a type of the trigger event associated with the measurement report.
  • a number of indication fields of the first set of indication fields or the second set of indication fields in the measurement report is based on a type of the trigger event associated with the measurement report.
  • the communication device is configured with a maximum number of reported reference signals or a number of reported reference signals for the measurement report.
  • the trigger event happens or is fulfilled in response to a quality of at least one beam being greater than or equal to a threshold value more than that of a reference signal derived from an activated transmission configuration indicator (TCI) state that has a M-th quality in ascending or descending order among a plurality of activated TCI states, and M is a predefined value, or M is configured by a radio resource control (RRC) message, indicated by a medium access control-control element (MAC CE) , or is determined based on the maximum number of reported reference signals or the number of reported reference signals.
  • TCI transmission configuration indicator
  • M is a predefined value
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the reference signal derived from the activated transmission configuration indicator (TCI) state having the M-th quality or a plurality of reference signals derived from the plurality of activated TCI states is associated with the first set of reference signals, and the at least one beam is associated with the second set of reference signals.
  • M is configured or indicated with a value larger than the maximum number of reported reference signals or the number of reported reference signals.
  • a number of indication fields of the first set of indication fields is not greater than a value configured for the maximum number of reported reference signals
  • a number of indication fields of the first set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is not greater than a value configured for the maximum number of reported reference signals.
  • the indication fields in the measurement report comprises a first indication field that indicates a number of indication fields of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a bitmap of identifications of the plurality of activated TCI states, where each bit of the bitmap indicates presence or absence of indication fields for a corresponding activated TCI state of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a second indication field that indicates a number of indications fields of the second set of indication fields in the measurement report.
  • the communication device determines one or more indication fields of the first set of indication fields and one or more indication fields of the second set of indication fields based on the first indication field, a bitmap, or the second indication field, and where the communication device indicates an identification of a reference signal or a value of report quantity associated with the reference signal for each indication field determined by the communication device. In some embodiments, the communication device indicates a zero value for indication fields other than the one or more indication fields of the first set of indication fields and the one or more indication fields of the second set of indication fields.
  • a number of indication fields of the first set of indication fields is not greater than another number of indication fields of the second set of indication fields.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to an ascending or descending order of quality corresponding to a respective TCI state.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to bitmap of identifications of the plurality of activated TCI states.
  • at least one indication field of the first set of indication fields are associated with an activated TCI state with a M-th quality, a highest signal quality or a lowest signal quality.
  • the communication device receives a control channel with a TCI state of a cell associated with the TCI state, the shared channel is received not later than a number of time units after transmitting any one or more of the first uplink control information or the second uplink control information, the first uplink control information or the second uplink control information is associated with a reference signal associated with the TCI state, the control channel is received at a slot that is after a number of slots after the reception of the shared channel, the TCI state is indicated in the TCI states activation command, and the TCI states activation command comprises a radio resource control (RRC) signaling or a medium access control-control element (MAC CE) .
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the number of time units is a predefined value or a configured value
  • a time unit comprises a slot or a millisecond
  • the number of slots is determined by a time parameter related to SSB transmission or SSB processing, and a value of the time parameter is zero.
  • FIG. 3 shows an exemplary flowchart for receiving uplink control information.
  • operation 302 includes receiving, by a network device, any one or more of a first uplink control information and a second uplink control information on a first uplink resource or a second uplink resource, where the first uplink control information corresponds to a first uplink resource and the second uplink control information corresponds to a second uplink resource, where any one or more of the first uplink control information and the second uplink control information comprises a measurement report associated with a trigger event.
  • the first uplink control information comprises a request associated with the measurement report
  • the second uplink control information comprises the measurement report.
  • a first priority value of the first uplink control information is same as a second priority value of the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a report content related parameter, and a value of the report content related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information comprises the measurement report
  • the second uplink control information comprises a channel state information (CSI) report that is not triggered by any trigger event.
  • CSI channel state information
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a report type related parameter, and a value of the report type related parameter for the first uplink control information is less than that for the second uplink control information.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a parameter related to whether the first uplink control information or the second uplink control information is associated with the trigger event, and a value of the parameter for the first uplink control information is less than that for the second uplink control information.
  • a priority value for the first uplink control information or the second uplink control information is based on a formula that includes a report type related parameter, and a value of the report type related parameter is related to whether the first uplink control information or the second uplink control information is associated with the trigger event.
  • a first priority value for the first uplink control information and a second priority value for the second uplink control information are respectively based on a formula that includes a report configuration index related parameter, and a value of the report configuration index related parameter for the first uplink control information is less than that for the second uplink control information.
  • the first uplink control information has a higher priority than that for the second uplink control information.
  • the network device receives an uplink control information comprising one or more measurement reports on an uplink resource, where each measurement report is associated with a report configuration and a cell index.
  • the network device receives a first plurality of measurement reports on a same uplink resource, where the one or more measurement reports are a subset of the first plurality of measurement reports.
  • the uplink control information further comprises a plurality of bits with zero values.
  • indication fields associated with the one or more measurement reports are mapped in the uplink control information based on an order of priority value corresponding to the one or more measurement reports.
  • a size of the uplink control information is based on a reporting state indication field that indicates presence of indications fields for the one or more measurement reports or presence of the one or more measurement reports.
  • a priority value for the uplink control information is based on a formula that includes a cell index related parameter, and where a value of the cell index related parameter for the uplink control information is based on one cell index among cell indexes associated with the one or more measurement reports.
  • FIG. 4 shows another exemplary flowchart for receiving uplink control information.
  • operation 402 includes receiving, by a network device, an uplink control information on an uplink resource, where the uplink control information comprises a measurement report, where the measurement report is associated with a trigger event, where indication fields in the measurement report comprises at least one of a first set of indication fields associated with a first set of reference signals or a second set of indication fields associated with a second set of reference signals, and where the trigger event is associated with at least one of the first set of reference signals or the second set of reference signals.
  • each indication field in the measurement report is associated with a reference signal
  • the reference signal is associated with a transmission parameter
  • the reference signal is associated with a reference signal resource set that is based on a type of the trigger event associated with the measurement report.
  • a number of indication fields of the first set of indication fields or the second set of indication fields in the measurement report is based on a type of the trigger event associated with the measurement report.
  • the network device sends a signal with which the communication device is configured with a maximum number of reported reference signals or a number of reported reference signals for the measurement report.
  • the trigger event happens or is fulfilled in response to a quality of at least one beam being greater than or equal to a threshold value more than that of a reference signal derived from an activated transmission configuration indicator (TCI) state that has a M-th quality in ascending or descending order among a plurality of activated TCI states, and M is a predefined value, or M is configured by a radio resource control (RRC) message, indicated by a medium access control-control element (MAC CE) , or is determined based on the maximum number of reported reference signals or the number of reported reference signals.
  • TCI transmission configuration indicator
  • M is a predefined value
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the reference signal derived from the activated transmission configuration indicator (TCI) state having the M-th quality or a plurality of reference signals derived from the plurality of activated TCI states is associated with the first set of reference signals, and the at least one beam is associated with the second set of reference signals.
  • M is configured or indicated with a value larger than the maximum number of reported reference signals or the number of reported reference signals.
  • a number of indication fields of the first set of indication fields is not greater than a value configured for the maximum number of reported reference signals
  • a number of indication fields of the first set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is equal to a value configured for the number of reported reference signals
  • a number of indication fields of the second set of indication fields is not greater than a value configured for the maximum number of reported reference signals.
  • the indication fields in the measurement report comprises a first indication field that indicates a number of indication fields of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a bitmap of identifications of the plurality of activated TCI states, where each bit of the bitmap indicates presence or absence of indication fields for a corresponding activated TCI state of the first set of indication fields in the measurement report.
  • the indication fields in the measurement report comprises a second indication field that indicates a number of indications fields of the second set of indication fields in the measurement report.
  • a number of indication fields of the first set of indication fields is not greater than another number of indication fields of the second set of indication fields.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to an ascending or descending order of quality corresponding to a respective TCI state.
  • indication fields of the first set of indication fields are associated with the plurality of activated TCI states according to bitmap of identifications of the plurality of activated TCI states. In some embodiments, at least one indication field of the first set of indication fields are associated with an activated TCI state with a M-th quality, a highest signal quality or a lowest signal quality.
  • the network device after the receiving the any one or more of the first uplink control information and the second uplink control information and after a transmission of a shared channel carrying a transmission configuration indicator (TCI) states activation command, transmits a control channel with a TCI state of a cell associated with the TCI state, the shared channel is transmitted not later than a number of time units after transmitting any one or more of the first uplink control information or the second uplink control information, the first uplink control information or the second uplink control information is associated with a reference signal associated with the TCI state, the control channel is transmitted at a slot that is after a number of slots after the reception of the shared channel, the TCI state is indicated in the TCI states activation command, and the TCI states activation command comprises a radio resource control (RRC) signaling or a medium access control-control element (MAC CE) .
  • RRC radio resource control
  • MAC CE medium access control-control element
  • the number of time units is a predefined value or a configured value
  • a time unit comprises a slot or a millisecond
  • the number of slots is determined by a time parameter related to SSB transmission or SSB processing, and a value of the time parameter is zero.
  • FIG. 5 shows an exemplary block diagram of a hardware platform 500 that may be a part of a network device (e.g., base station) or a communication device (e.g., a user equipment (UE) ) .
  • the hardware platform 500 includes at least one processor 510 and a memory 505 having instructions stored thereupon. The instructions upon execution by the processor 510 configure the hardware platform 500 to perform the operations described in FIGS. 1 to 4 and in the various embodiments described in this patent document.
  • the transmitter 515 transmits or sends information or data to another device.
  • a network device transmitter can send a message to a user equipment.
  • the receiver 520 receives information or data transmitted or sent by another device.
  • a user equipment can receive a message from a network device.
  • FIG. 6 shows an example of a wireless communication system (e.g., a 5G or NR cellular network) that includes a base station 620 and one or more user equipment (UE) 611, 612 and 613.
  • the UEs access the BS (e.g., the network) using a communication link to the network (sometimes called uplink direction, as depicted by dashed arrows 631, 632, 633) , which then enables subsequent communication (e.g., shown in the direction from the network to the UEs, sometimes called downlink direction, shown by arrows 641, 642, 643) from the BS to the UEs.
  • a wireless communication system e.g., a 5G or NR cellular network
  • the UEs access the BS (e.g., the network) using a communication link to the network (sometimes called uplink direction, as depicted by dashed arrows 631, 632, 633) , which then enables subsequent communication (e.g.,
  • the BS send information to the UEs (sometimes called downlink direction, as depicted by arrows 641, 642, 643) , which then enables subsequent communication (e.g., shown in the direction from the UEs to the BS, sometimes called uplink direction, shown by dashed arrows 631, 632, 633) from the UEs to the BS.
  • the UE may be, for example, a smartphone, a tablet, a mobile computer, a machine to machine (M2M) device, an Internet of Things (IoT) device, and so on.
  • M2M machine to machine
  • IoT Internet of Things
  • a computer-readable medium may include removable and non-removable storage devices including, but not limited to, Read Only Memory (ROM) , Random Access Memory (RAM) , compact discs (CDs) , digital versatile discs (DVD) , etc. Therefore, the computer-readable media can include a non-transitory storage media.
  • program modules may include routines, programs, objects, components, data structures, etc. that perform particular tasks or implement particular abstract data types.
  • Computer-or processor-executable instructions, associated data structures, and program modules represent examples of program code for executing steps of the methods disclosed herein. The particular sequence of such executable instructions or associated data structures represents examples of corresponding acts for implementing the functions described in such steps or processes.
  • a hardware circuit implementation can include discrete analog and/or digital components that are, for example, integrated as part of a printed circuit board.
  • the disclosed components or modules can be implemented as an Application Specific Integrated Circuit (ASIC) and/or as a Field Programmable Gate Array (FPGA) device.
  • ASIC Application Specific Integrated Circuit
  • FPGA Field Programmable Gate Array
  • DSP digital signal processor
  • the various components or sub-components within each module may be implemented in software, hardware or firmware.
  • the connectivity between the modules and/or components within the modules may be provided using any one of the connectivity methods and media that is known in the art, including, but not limited to, communications over the Internet, wired, or wireless networks using the appropriate protocols.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

L'invention concerne des techniques de transmission ou de réception d'informations de commande comprenant un rapport de mesure associé à un événement déclencheur. Un exemple de procédé de communication sans fil comprend la mise en œuvre, par un dispositif de communication, d'une opération qui permet la transmission d'une ou plusieurs informations de contrôle de liaison montante, parmi une première information de contrôle de liaison montante et une deuxième information de contrôle de liaison montante, où la première information de contrôle de liaison montante correspond à une première ressource de liaison montante et la deuxième information de contrôle de liaison montante correspond à une deuxième ressource de liaison montante, où l'opération est mise en œuvre en réponse au chevauchement de la première ressource de liaison montante avec la deuxième ressource de liaison montante dans le domaine temporel ; et la transmission d'une ou plusieurs des premières informations de commande de liaison montante et des secondes informations de commande de liaison montante sur la première ressource de liaison montante ou la seconde ressource de liaison montante, les premières informations de commande de liaison montante ou les secondes informations de commande de liaison montante comprenant un rapport de mesure associé à un événement déclencheur.
PCT/CN2024/092076 2024-05-09 2024-05-09 Transmission d'informations de commande Pending WO2025231750A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2024/092076 WO2025231750A1 (fr) 2024-05-09 2024-05-09 Transmission d'informations de commande

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2024/092076 WO2025231750A1 (fr) 2024-05-09 2024-05-09 Transmission d'informations de commande

Publications (1)

Publication Number Publication Date
WO2025231750A1 true WO2025231750A1 (fr) 2025-11-13

Family

ID=97674085

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2024/092076 Pending WO2025231750A1 (fr) 2024-05-09 2024-05-09 Transmission d'informations de commande

Country Status (1)

Country Link
WO (1) WO2025231750A1 (fr)

Similar Documents

Publication Publication Date Title
JP6845277B2 (ja) 適応的に構成されたtdd通信システムのためのサウンディング参照信号の送信
EP2858445B1 (fr) Transmission d'informations de commande de liaison montante
US9504062B2 (en) Method and device for scheduling downlink data transmission
CN114080773A (zh) 具有不同服务类型的harq-ack码本的sr传输的优先级区分
CN110505711B (zh) 处理调度请求的方法、设备、装置及介质
EP3349502A1 (fr) Dispositif et procédé de traitement de rapports d'information d'état de canal pour intervalles de temps de transmission
US12432770B2 (en) Multiplexing techniques for overlapping channels with different priorities
KR20210113423A (ko) 복수의 짧은 tti 전송의 시그널링
WO2015148961A1 (fr) Amélioration de services de communication de groupe
KR20250004825A (ko) 무선 통신에서의 동시 업링크 전송 방식
WO2023010503A1 (fr) Techniques de planification de transmission
US20240048335A1 (en) Harq-ack codebook determination techniques
US20240250797A1 (en) Transmission configuration indication in wireless mobility
WO2025231750A1 (fr) Transmission d'informations de commande
WO2025152072A1 (fr) Rapport d'informations de faisceau
WO2025175427A1 (fr) Informations de commande de liaison montante
US12028292B2 (en) Reference signal transmission techniques
WO2025222644A1 (fr) Transmission et réception d'informations de commande
WO2025160960A1 (fr) Planification de mesures de signal de cellule dans systèmes de communication sans fil
WO2025222645A1 (fr) Procédures d'équipement utilisateur pour rapport d'informations de faisceau déclenché par un événement
WO2025097272A1 (fr) Commutation de faisceau initiée par un équipement utilisateur à faible latence
WO2024098633A1 (fr) Unité de traitement d'informations d'état de canal
WO2025129504A1 (fr) Mesure et rapport reposant sur un signal de référence d'informations d'état de canal
JP7792008B2 (ja) Harq-ackコードブックの決定技術
WO2025236394A1 (fr) Configuration de rapport de faisceau initié par un équipement utilisateur ou commandé par un événement dans des réseaux sans fil