WO2021155816A1 - 一种被用于无线通信的节点中的方法和装置 - Google Patents

一种被用于无线通信的节点中的方法和装置 Download PDF

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Publication number
WO2021155816A1
WO2021155816A1 PCT/CN2021/075167 CN2021075167W WO2021155816A1 WO 2021155816 A1 WO2021155816 A1 WO 2021155816A1 CN 2021075167 W CN2021075167 W CN 2021075167W WO 2021155816 A1 WO2021155816 A1 WO 2021155816A1
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Prior art keywords
cell
target
characteristic
sub
value
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PCT/CN2021/075167
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English (en)
French (fr)
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刘铮
张晓博
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上海朗帛通信技术有限公司
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Priority to EP21750310.1A priority Critical patent/EP4087348A4/en
Publication of WO2021155816A1 publication Critical patent/WO2021155816A1/zh
Priority to US17/813,935 priority patent/US20220368500A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0001Arrangements for dividing the transmission path
    • H04L5/0003Two-dimensional division
    • H04L5/0005Time-frequency
    • H04L5/0007Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0001Arrangements for dividing the transmission path
    • H04L5/0003Two-dimensional division
    • H04L5/0005Time-frequency
    • H04L5/0007Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT
    • H04L5/001Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT the frequencies being arranged in component carriers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0078Timing of allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • H04L5/0094Indication of how sub-channels of the path are allocated
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/14Spectrum sharing arrangements between different networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0453Resources in frequency domain, e.g. a carrier in FDMA

Definitions

  • This application relates to transmission methods and devices in wireless communication systems, and in particular to multi-carrier transmission schemes and devices in wireless communication.
  • a multi-carrier communication process such as carrier aggregation (CA, Carrier Aggregation), cross-carrier scheduling (Cross Carrier Scheduling) is supported.
  • CA carrier aggregation
  • PCC Primary Component Carrier
  • Data transmission in Cell (Pcell) only supports self-scheduling of this carrier, and does not support cross-carrier scheduling in which a secondary carrier (Secondary Component Carrier, SCC) or a secondary cell (Secondary Cell, Scell) is used as a scheduling carrier.
  • a secondary carrier Secondary Component Carrier, SCC
  • SCC Secondary Cell
  • Scell secondary Cell
  • This application discloses a method used in a first node in wireless communication, which is characterized in that it includes:
  • the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same cell group;
  • the first sub-band set includes a positive integer number of sub-bands
  • the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set
  • the first control signaling candidate is The occupied frequency domain resource belongs to a subband included in the first subband set
  • the first time window includes the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set
  • the scheduling cell set includes a positive integer number of serving cells, the serving cell to which any one of the subbands included in the first set of subbands belongs belongs to the set of scheduling cells; any one of the subbands included in the first set of subbands
  • the subcarrier interval of the included subcarriers is equal to the first subcarrier interval; the first subcarrier interval is used to determine the time length of the first time window; the control included in the target control signaling candidate set
  • the number of monitoring times of signaling candidates is not greater than a first threshold, and whether the scheduling cell set includes at least one of the target cell, whether the characteristic cell and
  • At least one of whether the scheduling cell set includes the target cell and whether the characteristic cell and the target cell are the same is used to determine the first threshold, thereby ensuring that when there are multiple When all serving cells can schedule a serving cell, the number of times the user equipment monitors PDCCH candidates (Candidate) will not exceed the maximum blind detection capability of the user equipment, which ensures that the user equipment correctly receives the PDCCH.
  • the cell schedules a serving cell to set the maximum number of times the user equipment monitors the PDCCH candidate (candidate).
  • the number of times the user equipment monitors the PDCCH candidate does not exceed the maximum blind detection capability of the user equipment, it will not be excessive
  • the maximum number of monitoring times of the user equipment is limited, and the PDCCH blocking probability (Blocking Probability) is reduced as much as possible while ensuring the correct reception of the PDCCH by the user equipment, and the transmission performance of the PDCCH is improved.
  • the above method is characterized in that it further includes:
  • the second information is used to determine a configuration cell group, the configuration cell group includes a positive integer greater than 1 serving cells; the target cell belongs to the configuration cell group, and the characteristic cell belongs to the configuration cell Group, the characteristic cell is the primary cell in the configuration cell group; the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells, and the set of scheduled cells includes a positive integer number of serving cells Any serving cell included in the scheduling cell set belongs to the configured cell group, and any serving cell included in the scheduled cell set belongs to the configured cell group.
  • the above method is characterized in that a target ratio value is used to determine the first threshold, the target ratio value is a positive number not greater than 1, and the target ratio value is equal to the first ratio value, One of the second ratio values; the first ratio value is equal to the ratio between the first sum value and the first characteristic sum value, and the second ratio value is equal to the second sum value and the second characteristic sum value
  • the ratio between; the first sum value is a positive number, the first characteristic sum value is a positive number not less than the first sum value, the second sum value is a positive number, the second characteristic sum value Is a positive number not less than the second sum value, the first ratio value and the second ratio value are not equal; whether the scheduling cell set includes the target cell, the characteristic cell, and the target cell At least one of whether they are the same is used to determine the target ratio value from between the first ratio value and the second ratio value.
  • the above method is characterized in that it further includes:
  • the third information is used to determine a first cell subset and a second cell subset, the first cell subset includes a positive integer number of serving cells, and the second cell subset includes a positive integer number of serving cells
  • the number of serving cells that belong to the first cell subset included in the scheduled cell set is equal to the first number, and the number of serving cells that belong to the second cell subset included in the scheduled cell set Equal to the second number;
  • the first feature sum value and the number of serving cells included in the second cell subset are linearly related to the product of the first factor, and the first feature sum value is linearly related to the first cell subset
  • the number of serving cells included in the set is linearly related;
  • the first sum value and the second number are linearly related to the product of the first factor, and the first sum value is linearly related to the first number;
  • the first factor is configurable, or the first factor is predefined.
  • the serving cells included in the scheduled cell set are divided into serving cells included in the first cell subset and serving cells included in the second cell subset, so that there are multiple
  • the serving cell schedules a serving cell when setting the maximum number of times the user equipment monitors the PDCCH candidates (Candidate), multiple transmission points (TRP, Transmit Receive Point) or multiple panels ( The ability of the Panel, thereby ensuring the correct reception of the PDCCH when the serving cell is capable of supporting multiple transmission points (TRP, Transmit Receive Point) or multiple panels (Pannel).
  • the above method is characterized in that the first feature sum value is equal to the number of serving cells included in the configured cell group; the first sum value is equal to the number of service cells included in the scheduled cell group The number of serving cells.
  • the above method is characterized in that the second sum value is equal to the first sum value, and the first characteristic sum value and the second characteristic sum value are not equal; the second The difference between the characteristic sum value and the first characteristic sum value is predefined, or the difference between the second characteristic sum value and the first characteristic sum value is configurable.
  • the second sum value and the first sum value are equal, and the difference between the second characteristic sum value and the first characteristic sum value is predefined or configurable, thereby This enables the distribution of the user equipment’s ability to monitor PDCCH alternatives to vary with whether there are multiple serving cells scheduling a single serving cell, which simplifies the design of the PDCCH while ensuring the correct reception of the PDCCH by the user equipment, and can ensure different The application scenarios reuse the same design.
  • the above method is characterized in that it further includes:
  • the fourth information is used to determine a second factor, the second factor is a positive number less than 1, the second factor is used to determine the second sum value, and the second sum value sum The first sum value is not equal, and the second characteristic sum value is equal to the first characteristic sum value.
  • the above method is characterized in that the fourth information is used to determine the first monitoring frequency and the sum of the monitoring frequency, and the first monitoring frequency is equal to that used for scheduling the feature in the target cell
  • the number of monitoring times for the control signaling candidates of the cell, and the sum of the monitoring times is equal to the total number of monitoring times for the control signaling candidates used for scheduling the characteristic cell; the second factor and the first monitoring times are sum The ratio between the sum of the monitoring times is linearly related.
  • the second factor is linearly related to the ratio between the first monitoring times and the sum of the monitoring times to ensure the distributed PDCCH blind detection capability and the required number of PDCCH candidates Matching, while ensuring the correct reception of the PDCCH, the realized load matching of the PDCCH further reduces the blocking probability of the PDCCH and improves the transmission performance of the PDCCH.
  • the above method is characterized in that the first subcarrier interval is one candidate subcarrier interval among X candidate subcarrier intervals, and the X is a positive integer greater than 1.
  • Each candidate subcarrier interval corresponds to the X candidate parameters one by one, and each candidate parameter of the X candidate parameters is a positive integer; the first parameter is that the first subcarrier interval is in the X backup parameters.
  • the candidate parameter corresponding to the parameter is selected, the first threshold is equal to a rounded down value of the target value, and the first parameter is used to determine the target value.
  • the above method is characterized in that the characteristic cell includes a characteristic sub-band, the characteristic sub-band includes a positive integer number of sub-carriers, and the sub-carrier interval of any sub-carrier included in the characteristic sub-band is equal to The second subcarrier interval, the first subcarrier interval and the second subcarrier interval are not equal.
  • the above method is characterized in that it further includes:
  • the fifth information is used to indicate a first ability parameter, and the first ability parameter is a positive integer; the first ability parameter is used to determine the first threshold.
  • This application discloses a method used in a second node in wireless communication, which is characterized in that it includes:
  • the first sub-band set includes a positive integer number of sub-bands
  • the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set
  • the first control signaling candidate is The occupied frequency domain resource belongs to a subband included in the first subband set
  • the first time window includes the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set
  • the scheduling cell set includes a positive integer number of serving cells, the serving cell to which any one of the subbands included in the first set of subbands belongs belongs to the set of scheduling cells; any one of the subbands included in the first set of subbands
  • the subcarrier interval of the included subcarriers is equal to the first subcarrier interval; the first subcarrier interval is used to determine the time length of the first time window; the control included in the target control signaling candidate set
  • the number of monitored times of signaling candidates is not greater than a first threshold, and at least one of whether the set of scheduling cells includes the target cell, and whether the characteristic
  • the above method is characterized in that it further includes:
  • the second information is used to indicate a configuration cell group, the configuration cell group includes a positive integer number of serving cells greater than 1; the target cell belongs to the configuration cell group, and the characteristic cell belongs to the configuration cell Group, the characteristic cell is the primary cell in the configuration cell group; the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells, and the set of scheduled cells includes a positive integer number of serving cells Any serving cell included in the scheduling cell set belongs to the configured cell group, and any serving cell included in the scheduled cell set belongs to the configured cell group.
  • the above method is characterized in that a target ratio value is used to determine the first threshold, the target ratio value is a positive number not greater than 1, and the target ratio value is equal to the first ratio value, One of the second ratio values; the first ratio value is equal to the ratio between the first sum value and the first characteristic sum value, and the second ratio value is equal to the second sum value and the second characteristic sum value
  • the ratio between; the first sum value is a positive number, the first characteristic sum value is a positive number not less than the first sum value, the second sum value is a positive number, the second characteristic sum value Is a positive number not less than the second sum value, the first ratio value and the second ratio value are not equal; whether the scheduling cell set includes the target cell, the characteristic cell, and the target cell At least one of whether they are the same is used to determine the target ratio value from between the first ratio value and the second ratio value.
  • the above method is characterized in that it further includes:
  • the third information is used to indicate a first cell subset and a second cell subset, the first cell subset includes a positive integer number of serving cells, and the second cell subset includes a positive integer number of serving cells
  • the number of serving cells that belong to the first cell subset included in the scheduled cell set is equal to the first number, and the number of serving cells that belong to the second cell subset included in the scheduled cell set Equal to the second number;
  • the first feature sum value and the number of serving cells included in the second cell subset are linearly related to the product of the first factor, and the first feature sum value is linearly related to the first cell subset
  • the number of serving cells included in the set is linearly related;
  • the first sum value and the second number are linearly related to the product of the first factor, and the first sum value is linearly related to the first number;
  • the first factor is configurable, or the first factor is predefined.
  • the above method is characterized in that the first feature sum value is equal to the number of serving cells included in the configured cell group; the first sum value is equal to the number of service cells included in the scheduled cell group The number of serving cells.
  • the above method is characterized in that the second sum value is equal to the first sum value, and the first characteristic sum value and the second characteristic sum value are not equal; the second The difference between the characteristic sum value and the first characteristic sum value is predefined, or the difference between the second characteristic sum value and the first characteristic sum value is configurable.
  • the above method is characterized in that it further includes:
  • the fourth information is used to indicate a second factor, the second factor is a positive number less than 1, and the second factor is used to determine the second sum value, and the second sum value sum The first sum value is not equal, and the second characteristic sum value is equal to the first characteristic sum value.
  • the above method is characterized in that the fourth information is used to indicate a first monitoring frequency and a sum of the monitoring frequency, and the first monitoring frequency is equal to that used for scheduling the feature in the target cell
  • the number of monitoring times for the control signaling candidates of the cell, and the sum of the monitoring times is equal to the total number of monitoring times for the control signaling candidates used for scheduling the characteristic cell; the second factor and the first monitoring times are sum The ratio between the sum of the monitoring times is linearly related.
  • the above method is characterized in that the first subcarrier interval is one candidate subcarrier interval among X candidate subcarrier intervals, and the X is a positive integer greater than 1.
  • Each candidate subcarrier interval corresponds to the X candidate parameters one by one, and each candidate parameter of the X candidate parameters is a positive integer; the first parameter is that the first subcarrier interval is in the X backup parameters.
  • the candidate parameter corresponding to the parameter is selected, the first threshold is equal to a rounded down value of the target value, and the first parameter is used to determine the target value.
  • the above method is characterized in that the characteristic cell includes a characteristic sub-band, the characteristic sub-band includes a positive integer number of sub-carriers, and the sub-carrier interval of any sub-carrier included in the characteristic sub-band is equal to The second subcarrier interval, the first subcarrier interval and the second subcarrier interval are not equal.
  • the above method is characterized in that it further includes:
  • the fifth information is used to indicate a first ability parameter, and the first ability parameter is a positive integer; the first ability parameter is used to determine the first threshold.
  • This application discloses a first node device used in wireless communication, which is characterized in that it includes:
  • a first processor receiving first information, where the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same cell group;
  • the first receiver monitors the control signaling candidates included in the target control signaling candidate set, where the target control signaling candidate set includes a positive integer number of control signaling candidates;
  • the first sub-band set includes a positive integer number of sub-bands
  • the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set
  • the first control signaling candidate is The occupied frequency domain resource belongs to a subband included in the first subband set
  • the first time window includes the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set
  • the scheduling cell set includes a positive integer number of serving cells, the serving cell to which any one of the subbands included in the first set of subbands belongs belongs to the set of scheduling cells; any one of the subbands included in the first set of subbands
  • the subcarrier interval of the included subcarriers is equal to the first subcarrier interval; the first subcarrier interval is used to determine the time length of the first time window; the control included in the target control signaling candidate set
  • the number of monitoring times of signaling candidates is not greater than a first threshold, and whether the scheduling cell set includes at least one of the target cell, whether the characteristic cell and
  • This application discloses a second node device used in wireless communication, which is characterized in that it includes:
  • a second processor sending first information, where the first information is used to indicate a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same cell group;
  • the first transmitter determines the control signaling candidates included in the target control signaling candidate set, where the target control signaling candidate set includes a positive integer number of control signaling candidates;
  • the first sub-band set includes a positive integer number of sub-bands
  • the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set
  • the first control signaling candidate is The occupied frequency domain resource belongs to a subband included in the first subband set
  • the first time window includes the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set
  • the scheduling cell set includes a positive integer number of serving cells, and the serving cell to which any one of the subbands included in the first set of subbands belongs belongs to the set of scheduling cells; any one of the subbands included in the first set of subbands
  • the subcarrier interval of the included subcarriers is equal to the first subcarrier interval; the first subcarrier interval is used to determine the time length of the first time window; the control included in the target control signaling candidate set
  • the number of monitored times of signaling candidates is not greater than a first threshold, and at least one of whether the set of scheduling cells includes the target cell, and whether the
  • the method in this application has the following advantages:
  • the method in this application sets the maximum number of times the user equipment monitors the PDCCH candidate (Candidate) according to whether there are multiple serving cells scheduling a serving cell, and the number of times the user equipment monitors the PDCCH candidate does not exceed the user equipment
  • the maximum monitoring times of the user equipment will not be excessively limited, while ensuring the correct reception of the PDCCH by the user equipment, the blocking probability of the PDCCH (Blocking Probability) is reduced as much as possible, and the transmission of the PDCCH is improved. performance.
  • the maximum number of times the user equipment monitors the PDCCH candidate (Candidate) is set at the same time to consider multiple transmissions of each serving cell.
  • Point TRP, Transmit Receive Point
  • Pannel multiple panels
  • the distribution of the user equipment's ability to monitor the PDCCH alternatives can be changed according to whether there are multiple serving cells scheduling a serving cell, which simplifies the correct reception of the PDCCH by the user equipment.
  • the design of PDCCH is improved, and the same design can be reused in different application scenarios.
  • the method in this application ensures that the distributed PDCCH blind detection capability matches the required number of PDCCH candidates. While ensuring the correct reception of the PDCCH, the load matching of the PDCCH is achieved, which further reduces the PDCCH The blocking probability improves the transmission performance of the PDCCH.
  • Fig. 1 shows a flowchart of control signaling candidates included in the first information and target control signaling candidate set according to an embodiment of the present application
  • Figure 2 shows a schematic diagram of a network architecture according to an embodiment of the present application
  • Fig. 3 shows a schematic diagram of a wireless protocol architecture of a user plane and a control plane according to an embodiment of the present application
  • Fig. 4 shows a schematic diagram of a first node device and a second node device according to an embodiment of the present application
  • Figure 5 shows a wireless signal transmission flow chart according to an embodiment of the present application
  • Fig. 6 shows a wireless signal transmission flow chart according to another embodiment of the present application.
  • Fig. 7 shows a wireless signal transmission flow chart according to another embodiment of the present application.
  • Fig. 8 shows a schematic diagram of the relationship between a set of scheduled cells and a set of scheduled cells according to an embodiment of the present application
  • Fig. 9 shows a schematic diagram of a target ratio value according to an embodiment of the present application.
  • FIG. 10 shows a schematic diagram of the relationship between the first cell subset and the second cell subset according to an embodiment of the present application
  • FIG. 11 shows a schematic diagram of the first feature sum value and the first sum value according to an embodiment of the present application
  • FIG. 12 shows a schematic diagram of the relationship between the first feature and value and the second feature and value according to an embodiment of the present application
  • FIG. 13 shows a schematic diagram of the relationship between the second factor and the second sum value according to an embodiment of the present application
  • Fig. 14 shows a schematic diagram of a second factor according to an embodiment of the present application.
  • FIG. 15 shows a schematic diagram of the relationship between the first parameter and the first subcarrier interval according to an embodiment of the present application
  • FIG. 16 shows a schematic diagram of the relationship between the first subcarrier interval and the second subcarrier interval according to an embodiment of the present application
  • Fig. 17 shows a structural block diagram of a processing device in a first node device according to an embodiment of the present application
  • Fig. 18 shows a structural block diagram of a processing device in a second node device according to an embodiment of the present application.
  • Embodiment 1 illustrates a flowchart of control signaling candidates included in the first information and target control signaling candidate set according to an embodiment of the present application, as shown in FIG. 1.
  • each box represents a step, and it should be particularly emphasized that the order of each box in the figure does not represent the time sequence relationship between the steps shown.
  • the first node device in this application receives first information in step 101, the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell Belongs to the same cell group as the target cell; the first node device in this application monitors the control signaling candidates included in the target control signaling candidate set in step 102, and the target control signaling candidate set includes A positive integer number of control signaling candidates; wherein, the first sub-band set includes a positive integer number of sub-bands, and the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set, so The frequency domain resource occupied by the first control signaling candidate belongs to a sub-band included in the first sub-band set; the first time window includes any control signal included in the target control signaling candidate set Let the time domain resources occupied by the candidate; the scheduling cell set includes a positive integer number of serving cells, and the serving cell to which any one of the subbands included in the first subband set belongs belongs to the scheduling cell set
  • the first information is transmitted through an air interface.
  • the first information is transmitted through a wireless interface.
  • the first information is transmitted through higher layer signaling.
  • the first information is transmitted through physical layer signaling.
  • the first information includes all or part of a high-layer signaling.
  • the first information includes all or part of a physical layer signaling.
  • the first information includes all or part of an IE (Information Element, information element) in an RRC (Radio Resource Control, radio resource control) signaling.
  • IE Information Element, information element
  • RRC Radio Resource Control, radio resource control
  • the first information includes all or part of a field (Field) in an IE (Information Element, information element) in an RRC (Radio Resource Control, radio resource control) signaling.
  • Field Information Element, information element
  • RRC Radio Resource Control, radio resource control
  • the first information includes all or part of a MAC (Medium Access Control) layer signaling.
  • MAC Medium Access Control
  • the first information includes all or part of a system information block (SIB, System Information Block).
  • SIB system information block
  • the first information is transmitted through a DL-SCH (Downlink Shared Channel, downlink shared channel).
  • DL-SCH Downlink Shared Channel, downlink shared channel
  • the first information is transmitted through a PDSCH (Physical Downlink Shared Channel).
  • PDSCH Physical Downlink Shared Channel
  • the first information is cell specific (Cell Specific).
  • the first information is UE-specific.
  • the first information is carrier specific (Carrier Specific).
  • the first information is configured per carrier.
  • the first information is specific to the serving cell (Serving Cell Specific).
  • the first information is configured per serving cell (Per Serving Cell).
  • the first information includes all or part of a field of DCI (Downlink Control Information) signaling.
  • DCI Downlink Control Information
  • the first information belongs to an IE (Information Element, information element) "CrossCarrierSchedulingConfig" in an RRC signaling.
  • IE Information Element, information element
  • the first information belongs to an IE (Information Element, information element) "ServingCellConfig" in an RRC signaling.
  • IE Information Element, information element
  • the first information belongs to an IE (Information Element, information element) "CrossCarrierSchedulingConfig" in an RRC signaling configuring a primary cell (Primary Cell, Pcell).
  • IE Information Element, information element
  • the first information belongs to an IE (Information Element, information element) "ServingCellConfig" in an RRC signaling that configures a primary cell (Primary Cell, PCell).
  • IE Information Element, information element
  • PCell Primary Cell
  • the first information includes a field "schedulingCellId” in an IE (Information Element) "CrossCarrierSchedulingConfig" in RRC signaling.
  • the first information includes a field "schedulingCellId” in an IE (Information Element) "CrossCarrierSchedulingConfig" in an RRC signaling for configuring a primary cell (Primary Cell, Pcell).
  • the first information includes a field "schedulingCellInfo” in an IE (Information Element) "CrossCarrierSchedulingConfig" in RRC signaling.
  • the first information includes an IE (Information Element) in RRC signaling, a field in "CrossCarrierSchedulingConfig” and a choice (CHOICE) "own” or “other” in "schedulingCellInfo” .
  • IE Information Element
  • CrossCarrierSchedulingConfig a field in "CrossCarrierSchedulingConfig”
  • choice CHOICE
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used by the first node device in this application to determine the target cell.
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to explicitly indicate the target cell.
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to implicitly indicate the target cell.
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to indirectly indicate the target cell.
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to indicate the serving cell index (Serving Cell Index, ServCellIndex) of the target cell.
  • the serving cell index Serving Cell Index, ServCellIndex
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to indicate whether the target cell and the characteristic cell are the same.
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to indicate the frequency occupied by the target cell and the signal carrying the first information. Whether the domain resources belong to the same serving cell.
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to indicate whether the target cell and the characteristic cell are the same; when the target cell When it is different from the characteristic cell, the first information is also used to indicate the serving cell index (Serving Cell Index) of the target cell.
  • the serving cell index Serving Cell Index
  • the above sentence "the first information is used to determine the target cell” includes the following meaning: the first information is used to indicate the frequency occupied by the target cell and the signal carrying the first information. Whether the serving cell to which the domain resources belong is the same; when the target cell and the serving cell to which the frequency domain resources occupied by the signal carrying the first information belong are not the same, the first information is also used to indicate the target Serving Cell Index of the cell.
  • scheduling another serving cell by one serving cell means that a PDCCH (Physical Downlink Control Channel, physical downlink control channel) transmitted on one serving cell schedules a signal on another serving cell.
  • PDCCH Physical Downlink Control Channel, physical downlink control channel
  • scheduling another serving cell by one serving cell means that a PDCCH (Physical Downlink Control Channel, physical downlink control channel) transmitted on one serving cell schedules another serving cell.
  • PDCCH Physical Downlink Control Channel, physical downlink control channel
  • the target cell is a serving cell (Serving Cell).
  • the target cell corresponds to a component carrier (CC).
  • CC component carrier
  • the target cell is a serving cell corresponding to a component carrier (Component Carrier) in Carrier Aggregation (CA).
  • Component Carrier Component Carrier
  • CA Carrier Aggregation
  • the target cell is a serving cell (Serving Cell) in MCG (Master Cell Group) in Carrier Aggregation (CA).
  • Serving Cell Serving Cell
  • MCG Master Cell Group
  • CA Carrier Aggregation
  • the target cell is a serving cell (Serving Cell) in SCG (Secondary Cell Group, secondary cell group) in Carrier Aggregation (CA).
  • Serving Cell Serving Cell
  • SCG Secondary Cell Group, secondary cell group
  • CA Carrier Aggregation
  • the target cell is a serving cell (Serving Cell) corresponding to a component carrier (Component Carrier) in a MCG (Master Cell Group) in Carrier Aggregation (CA).
  • Server Cell Serving Cell
  • Component Carrier Component Carrier
  • MCG Master Cell Group
  • CA Carrier Aggregation
  • the target cell is a serving cell (Serving Cell) corresponding to a component carrier (Component Carrier) in a SCG (Secondary Cell Group, secondary cell group) in Carrier Aggregation (CA).
  • Server Cell Serving Cell
  • Component Carrier Component Carrier
  • SCG Secondary Cell Group, secondary cell group
  • CA Carrier Aggregation
  • the target cell is a serving cell (Serving Cell) corresponding to a primary component carrier (PCC).
  • Serving Cell serving Cell
  • PCC primary component carrier
  • the target cell is a primary cell (Primary Cell, PCell).
  • the target cell is a special cell (Special Cell, Spcell).
  • the target cell is a serving cell (Serving Cell) corresponding to a secondary carrier (Secondary Component Carrier, SCC).
  • Serving Cell Serving Cell
  • SCC Secondary Component Carrier
  • the target cell is a secondary cell (Secondary Cell, Scell).
  • the characteristic cell is a serving cell (Serving Cell).
  • the characteristic cell corresponds to a component carrier (CC).
  • CC component carrier
  • the characteristic cell is a serving cell corresponding to a component carrier (Component Carrier) in Carrier Aggregation (CA).
  • Component Carrier Component Carrier
  • CA Carrier Aggregation
  • the characteristic cell is a serving cell (Serving Cell) in MCG (Master Cell Group) in Carrier Aggregation (CA).
  • Serving Cell Serving Cell
  • MCG Master Cell Group
  • CA Carrier Aggregation
  • the characteristic cell is a serving cell (Serving Cell) in SCG (Secondary Cell Group, secondary cell group) in Carrier Aggregation (CA).
  • Serving Cell Serving Cell
  • SCG Secondary Cell Group, secondary cell group
  • CA Carrier Aggregation
  • the characteristic cell is a serving cell (Serving Cell) corresponding to a component carrier (Component Carrier) in a MCG (Master Cell Group) in Carrier Aggregation (CA).
  • Server Cell serving Cell
  • Component Carrier Component Carrier
  • MCG Master Cell Group
  • CA Carrier Aggregation
  • the characteristic cell is a serving cell (Serving Cell) corresponding to a component carrier (Component Carrier) in a SCG (Secondary Cell Group, secondary cell group) in Carrier Aggregation (CA).
  • Server Cell Serving Cell
  • Component Carrier Component Carrier
  • SCG Secondary Cell Group, secondary cell group
  • CA Carrier Aggregation
  • the characteristic cell is a serving cell (Serving Cell) corresponding to a primary component carrier (PCC).
  • Serving Cell serving Cell
  • PCC primary component carrier
  • the characteristic cell is a primary cell (Primary Cell, PCell).
  • the characteristic cell is a special cell (Special Cell, Spcell).
  • the characteristic cell is the primary cell in the MCG, or the characteristic cell is the primary cell in the SCG.
  • the target cell and the characteristic cell are the same.
  • the target cell and the characteristic cell are different.
  • the serving cell to which the frequency domain resources occupied by the signal carrying the first information belongs is the same as the characteristic cell.
  • the serving cell to which the frequency domain resources occupied by the signal carrying the first information belongs is different from the characteristic cell.
  • the above sentence "the target cell is used to schedule a characteristic cell” includes the following meaning: the PDCCH transmitted on the target cell is used to schedule the signal transmitted on the characteristic cell.
  • the above sentence "the target cell is used to schedule a characteristic cell” includes the following meaning: when the target cell and the characteristic are the same, the PDCCH transmitted on the target cell is used for self-scheduling ( Self-Schedule) the signal transmitted on the characteristic cell; when the target cell and the characteristic are not the same, the PDCCH transmitted on the target cell is used for cross-carrier scheduling (Cross-Schedule) the characteristic cell On the transmitted signal.
  • Self-Schedule self-scheduling
  • Cross-Schedule cross-carrier scheduling
  • the above sentence "the target cell is used to schedule a characteristic cell” includes the following meaning: the target cell is a scheduling cell (Scheduling Cell) of the characteristic cell.
  • the above sentence "the target cell is used to schedule a characteristic cell” includes the following meaning: the characteristic cell is a scheduled cell (Scheduled Cell) of the target cell.
  • the cell group to which the characteristic cell and the target cell belong is MCG.
  • the cell group to which the characteristic cell and the target cell belong is an SCG.
  • the monitoring of the control signaling candidates included in the target control signaling candidate set is by decoding the control signaling candidates included in the target control signaling candidate set ( Decoding).
  • the monitoring of the control signaling candidates included in the target control signaling candidate set is through blind decoding of the control signaling candidates included in the target control signaling candidate set. (Blind Decoding).
  • the monitoring of the control signaling candidates included in the target control signaling candidate set is by decoding the control signaling candidates included in the target control signaling candidate set ( decoding) and CRC check.
  • the monitoring of the control signaling candidates included in the target control signaling candidate set is by decoding the control signaling candidates included in the target control signaling candidate set ( decoding) and RNTI (Radio Network Temporary Identity) scrambled CRC check.
  • decoding decoding the control signaling candidates included in the target control signaling candidate set
  • RNTI Radio Network Temporary Identity
  • the monitoring of the control signaling candidates included in the target control signaling candidate set is based on the monitored DCI (Downlink Control Information) format (Format(s)) to control the target Decoding of the control signaling candidates included in the signaling candidate set is implemented.
  • DCI Downlink Control Information
  • Form(s) Form(s)
  • the monitoring (Monitoring) of the control signaling candidates included in the target control signaling candidate set is based on the monitored DCI (Downlink Control Information) one or more format (Format(s)) pairs Decoding of each control signaling candidate included in the target control signaling candidate set is implemented.
  • DCI Downlink Control Information
  • Form(s) Format
  • the target control signaling candidate set includes only one control signaling candidate.
  • the target control signaling candidate set includes more than one control signaling candidate.
  • any one control signaling candidate included in the target control signaling candidate set occupies a positive integer number of CCEs (Control Channel Elements, control channel elements).
  • any one control signaling candidate included in the target control signaling candidate set occupies a positive integer number of resource elements (RE, Resource Element) in the time-frequency domain.
  • any one control signaling candidate included in the target control signaling candidate set occupies time-frequency resources in the time-frequency domain.
  • any control signaling candidate included in the target control signaling candidate set is a physical downlink control channel (PDCCH, Physical Downlink Control Channel) candidate (Candidate).
  • PDCCH Physical Downlink Control Channel
  • any control signaling candidate included in the target control signaling candidate set is a monitored physical downlink control channel candidate (Monitored PDCCH Candidate).
  • any control signaling candidate included in the target control signaling candidate set is a physical downlink control channel (PDCCH, Physical Downlink Control Channel) candidate (Candidate) in a DCI format.
  • PDCCH Physical Downlink Control Channel
  • any one control signaling candidate included in the target control signaling candidate set is a time-frequency resource set that may carry DCI in a specific format.
  • the target control signaling candidate set when the target control signaling candidate set includes more than one control signaling candidate, the target control signaling candidate set includes two control signaling candidates occupying the same time-frequency resource .
  • the target control signaling candidate set when the target control signaling candidate set includes more than one control signaling candidate, the target control signaling candidate set includes any two control signaling candidates occupying time
  • the frequency resources are not the same.
  • the first set of sub-bands includes only one sub-band.
  • the first set of sub-bands includes more than one sub-band.
  • any sub-band included in the first set of sub-bands is a bandwidth part (BWP, Bandwidth Part).
  • any one of the sub-bands included in the first set of sub-bands is an active downlink bandwidth part (Active DL BWP, Active Downlink Bandwidth Part).
  • any one of the sub-bands included in the first set of sub-bands is a continuous frequency domain resource with the same numerical structure (Numerology) in a carrier (Carrier) bandwidth.
  • any one of the sub-bands included in the first set of sub-bands is a frequency-domain continuous subcarrier (Subcarrier) with the same numerical structure (Numerology) in a carrier (Carrier) bandwidth.
  • any one of the sub-bands included in the first set of sub-bands is on a given carrier (Carrier) and includes a continuous common resource block (CRB) for a given mathematical structure (Numerology). Common Resource Blocks (Subset).
  • Carrier Carrier
  • CRB common resource block
  • Subset Common Resource Blocks
  • the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs is a serving cell corresponding to a carrier to which any one of the sub-bands included in the first set of sub-bands belongs.
  • any two sub-bands included in the first sub-band set belong to two different carriers.
  • any two sub-bands included in the first sub-band set belong to two different serving cells (Serving Cell) respectively.
  • the first sub-band set includes more than one sub-band
  • the first sub-band set includes more than one sub-band, there are two sub-bands in the first sub-band set that belong to the same serving cell (Serving Cell).
  • serving Cell serving Cell
  • the first control signaling candidate may be any control signaling candidate included in the target control signaling candidate set.
  • the first control signaling candidate is a given control signaling candidate included in the target control signaling candidate set.
  • the frequency domain resource occupied by any one control signaling candidate included in the target control signaling candidate set belongs to one frequency band included in the first sub-band set.
  • one frequency band included in the first set of sub-bands includes frequency domain resources occupied by one control signaling candidate included in the target control signaling candidate set.
  • the first set of subbands includes frequency domain resources occupied by all control signaling candidates in the target control signaling candidate set.
  • the first set of sub-bands includes a sub-band that does not include frequency domain resources occupied by any control signaling candidate in the target control signaling candidate set.
  • any sub-band included in the first sub-band set includes frequency domain resources occupied by one control signaling candidate in the target control signaling candidate set.
  • any one of the sub-bands included in the first set of sub-bands is configurable.
  • any one of the sub-bands included in the first set of sub-bands is configured through an IE (Information Element, information element) "BWP-Downlink".
  • IE Information Element, information element
  • any subband included in the first set of subbands is a BWP indicated by IE (Information Element) "downlinkBWP-ToAddModList”.
  • the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set is configured through the signaling "SearchSpace".
  • the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set is configured through the signaling "ControlResourceSet”.
  • the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set is configured through the signaling "SearchSpace” and the signaling "ControlResourceSet”.
  • it further includes:
  • the sixth information is used to determine the sub-carrier spacing of each sub-band in the first sub-band set and the sub-carrier in each sub-band in the first sub-band set.
  • it further includes:
  • the seventh information is used to determine the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set.
  • the seventh information is used to determine the sub-band in the first sub-band set to which the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set belongs.
  • it further includes:
  • the sixth information is used to determine the sub-carrier spacing of each sub-band in the first sub-band set and the sub-carriers included in each sub-band in the first sub-band set, and the seventh The information is used to determine the frequency domain resources occupied by each control signaling candidate in the target control signaling candidate set in the sub-bands in the first set of sub-bands.
  • the first time window is a slot.
  • the first time window is a slot corresponding to the first subcarrier interval.
  • the first time window includes a positive integer number of consecutive OFDM (Orthogonal Frequency Division Multiplexing, Orthogonal Frequency Division Multiplexing) symbols in the time domain.
  • OFDM Orthogonal Frequency Division Multiplexing, Orthogonal Frequency Division Multiplexing
  • the first time window includes a positive integer number of time-domain continuous OFDM (Orthogonal Frequency Division Multiplexing, Orthogonal Frequency Division Multiplexing) symbols corresponding to the first subcarrier interval.
  • OFDM Orthogonal Frequency Division Multiplexing, Orthogonal Frequency Division Multiplexing
  • the first time window is a span.
  • the first time window is a span corresponding to the first subcarrier interval.
  • the first time window is a time interval with a minimum time interval between the earliest OFDM symbols in two PDCCH occasions (Occasion).
  • the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set belongs to the first time window.
  • the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set is a part of the first time window.
  • the scheduling cell set includes only one serving cell (Serving Cell).
  • the scheduling cell set includes more than one serving cell (Serving Cell).
  • any one serving cell included in the scheduling cell set is an activated cell.
  • the scheduling cell set includes a cell in which a serving cell is deactivated.
  • any one serving cell included in the scheduling cell set includes an active BWP.
  • the scheduling cell set includes a serving cell including a non-active BWP.
  • the number of serving cells included in the scheduling cell set is equal to the number of subbands included in the first set of subbands.
  • the number of serving cells included in the scheduling cell set and the number of subbands included in the first subband set are not equal.
  • the above sentence "the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs to the set of scheduling cells" includes the following meaning: the set of scheduling cells includes the first sub-band The serving cell to which any one of the sub-bands included in the set belongs.
  • the above sentence “the serving cell to which any one of the sub-bands included in the first sub-band set belongs to the scheduling cell set” includes the following meaning: the scheduling cell set only includes the first sub-band The serving cell to which the sub-bands included in the frequency band set belong.
  • the scheduling cell set further includes serving cells other than the serving cell to which the sub-bands included in the first sub-band set belong.
  • the above sentence “the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs to the set of scheduling cells” includes the following meaning: the first set of sub-bands includes M sub-bands, so The scheduling cell set includes M serving cells, each of the M serving cells includes the M subbands, and the M is a positive integer.
  • the above sentence “the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs belongs to the set of scheduling cells” includes the following meaning: the first set of sub-bands includes M sub-bands, so The scheduling cell set includes M serving cells, the M sub-bands are the BWPs of the M serving cells, and the M is a positive integer.
  • the above sentence “the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs belongs to the set of scheduling cells” includes the following meaning: the first set of sub-bands includes M sub-bands, so The scheduling cell set includes M serving cells, the M sub-bands belong to the M serving cells, and the M is a positive integer.
  • the above sentence “the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs to the set of scheduling cells” includes the following meaning: any one of the sub-bands included in the first set of sub-bands The serving cell corresponding to the carrier to which the frequency band belongs belongs to the scheduling cell set.
  • any two sub-bands in the first set of sub-bands include subcarriers with equal subcarrier spacing (SCS). Subcarrier).
  • the subcarrier interval of any subcarrier included in any subband included in the first subband set is equal to the first subcarrier interval.
  • the first sub-band set includes more than one sub-carrier, and the sub-carrier spacing of any two sub-carriers included in the first sub-band set is equal.
  • any one of the sub-bands included in the first set of sub-bands includes a positive integer number of subcarriers.
  • any one of the sub-bands included in the first set of sub-bands includes a subcarrier that is a positive integer multiple of 12.
  • any one of the sub-bands included in the first set of sub-bands includes a positive integer number of physical resource blocks (PRB, Physical Resource Block).
  • PRB Physical Resource Block
  • the first subcarrier interval is equal to one of 15kHz, 30kHz, 60kHz, 120kHz, 240kHz.
  • the above sentence “the first subcarrier interval is used to determine the time length of the first time window” includes the following meaning: the first subcarrier interval is used by the first node in this application The device is used to determine the time length of the first time window.
  • the sentence “the first subcarrier interval is used to determine the time length of the first time window” includes the following meaning: the first time window is a time slot (Slot), and the first time window is A subcarrier interval is used to determine the number of time slots included in one subframe (Subframe), and the time length of the first time window is equal to the length of one subframe and the number of time slots included in one subframe Ratio.
  • the above sentence “the first subcarrier interval is used to determine the time length of the first time window” includes the following meaning: the first subcarrier interval is used to determine the first time window The time length of each OFDM symbol included.
  • the above sentence “the first subcarrier interval is used to determine the time length of the first time window” includes the following meaning: the configuration (Configuration) index (Index) of the first subcarrier interval is Used to determine the time length of the first time window.
  • the sentence "the first subcarrier interval is used to determine the time length of the first time window” includes the following meaning: the first subcarrier interval is used to determine the first time window according to the correspondence relationship. The length of a time window.
  • the sentence "the first subcarrier interval is used to determine the length of time of the first time window” includes the following meaning: the first subcarrier interval is used to determine the The length of the first time window.
  • the number of monitoring (Monitoring) times of the control signaling candidates included in the target control signaling candidate set is equal to the number of control signaling candidates included in the target control signaling candidate set.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set is greater than the number of control signaling candidates included in the target control signaling candidate set.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set is less than the number of control signaling candidates included in the target control signaling candidate set.
  • the maximum possible number of monitoring times for a control signaling candidate included in the target control signaling candidate set is equal to the number of monitored DCI formats (Format).
  • the maximum number of possible monitoring times for a control signaling candidate included in the target control signaling candidate set is equal to the different DCI payload sizes included in the monitored DCI format (Format). Size).
  • the maximum number of monitoring times of the control signaling candidates included in the target control signaling candidate set is not less than the number of control signaling candidates included in the target control signaling candidate set.
  • monitoring may be performed at least once for each control signaling candidate included in the target control signaling candidate set.
  • the primary monitoring of a control signaling candidate included in the target control signaling candidate set is a primary decoding of a control signaling candidate included in the target control signaling candidate set ( Decoding).
  • the one-time monitoring of a control signaling candidate included in the target control signaling candidate set is to perform a monitoring of a control signaling candidate included in the target control signaling candidate set according to a given DCI format. Let the candidate decode once (Decoding).
  • the one-time monitoring of a control signaling candidate included in the target control signaling candidate set is to perform the monitoring of the target control signaling candidate set according to a given DCI payload size (Payload Size).
  • the number of monitoring times of control signaling candidates included in the target control signaling candidate set may be equal to zero.
  • the number of monitoring times of control signaling candidates included in the target control signaling candidate set may be greater than zero.
  • the number of monitoring times of control signaling candidates included in the target control signaling candidate set is greater than zero.
  • the number of monitoring times of control signaling candidates included in the target control signaling candidate set is greater than or equal to zero.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set refers to the monitoring of each control signaling candidate included in the target control signaling candidate set. The sum of times.
  • the monitoring times of the control signaling candidates included in the target control signaling candidate set refers to the total monitoring times of the control signaling candidates included in the target control signaling candidate set.
  • the number of monitoring times of control signaling candidates included in the target control signaling candidate set refers to the largest possible monitoring of the control signaling candidates included in the target control signaling candidate set frequency.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set refers to the monitoring of each control signaling candidate included in the target control signaling candidate set. The maximum possible value of the number of times.
  • the first node device in the present application may terminate early (Early Termination).
  • the first node device in this application only monitors the target control signaling candidates Some control signaling options in the set.
  • the first threshold may be equal to zero.
  • the first threshold is greater than zero.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set is less than the first threshold.
  • the number of monitoring times of control signaling candidates included in the target control signaling candidate set is equal to the first threshold.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold" includes the following meanings: Whether the scheduling cell set includes the target cell and whether the characteristic cell and the target cell are the same are used to determine the first threshold.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold" includes the following meanings: Whether the set of scheduling cells includes the target cell is used to determine the first threshold.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold” includes the following meanings: Whether the characteristic cell and the target cell are the same is used to determine the first threshold.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold" includes the following meanings: Whether the scheduling cell set includes at least one of the target cell, whether the characteristic cell and the target cell are the same is used by the first node device in this application to determine the first threshold.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold” includes the following meanings: At least one of whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same is used to determine the first threshold according to a decision condition.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold” includes the following meanings: At least one of whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same is used to determine the first threshold according to the correspondence relationship.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold” includes the following meanings: At least one of whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same is used to determine the calculation method of the first threshold.
  • the above sentence "whether at least one of the set of scheduling cells includes the target cell, and whether the characteristic cell and the target cell are the same is used to determine the first threshold” includes the following meanings: At least one of whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same is used to determine the calculation formula of the first threshold.
  • the first node device in this application detects control signaling among the control signaling candidates included in the target control signaling candidate set, the detected control signaling is Used to schedule the characteristic cell.
  • the first node device in this application detects control signaling among the control signaling candidates included in the target control signaling candidate set, the detected control signaling is Used to schedule cells other than the characteristic cell.
  • whether the scheduling cell set includes the target cell includes the following meaning: whether the scheduling cell set is used to schedule the characteristic cell.
  • whether the set of scheduling cells includes the target cell includes the following meaning: whether the set of scheduling cells includes a serving cell used to schedule the characteristic cell.
  • whether the scheduling cell set includes the target cell includes the following meaning: whether the scheduling cell set is used for cross-carrier scheduling of the characteristic cell.
  • whether the characteristic cell and the target cell are the same includes the following meaning: whether the characteristic cell and the target cell are the same serving cell.
  • whether the characteristic cell and the target cell are the same includes the following meaning: whether the first node device supports cross-carrier scheduling of a primary cell (Primary Cell, PCell).
  • whether the characteristic cell and the target cell are the same includes the following meaning: whether the first node device supports cross-carrier scheduling of a primary cell (Primary SCG Cell, PSCell) in a secondary cell group.
  • a primary cell Primary SCG Cell, PSCell
  • whether the characteristic cell and the target cell are the same includes the following meaning: whether the first node device supports cross-carrier scheduling of special cells (Special Cell, Spcell).
  • Embodiment 2 illustrates a schematic diagram of a network architecture according to the present application, as shown in FIG. 2.
  • Figure 2 illustrates a diagram of a network architecture 200 of 5G NR, LTE (Long-Term Evolution) and LTE-A (Long-Term Evolution Advanced) systems.
  • the 5G NR or LTE network architecture 200 may be referred to as 5GS (5G System)/EPS (Evolved Packet System, evolved packet system) 200 some other suitable terminology.
  • 5GS/EPS 200 may include one or more UE (User Equipment) 201, NG-RAN (Next Generation Radio Access Network) 202, 5GC (5G Core Network, 5G Core Network)/EPC (Evolved Packet Core, Evolved Packet Core) 210, HSS (Home Subscriber Server)/UDM (Unified Data Management) 220 and Internet Service 230.
  • 5GS/EPS can be interconnected with other access networks, but for simplicity Show these entities/interfaces. As shown in the figure, 5GS/EPS provides packet switching services, but those skilled in the art will easily understand that various concepts presented throughout this application can be extended to networks that provide circuit switching services or other cellular networks.
  • the NG-RAN includes NR/Evolved Node B (gNB/eNB) 203 and other gNB (eNB) 204.
  • the gNB (eNB) 203 provides user and control plane protocol termination towards the UE 201.
  • the gNB (eNB) 203 may be connected to other gNB (eNB) 204 via an Xn/X2 interface (eg, backhaul).
  • gNB (eNB) 203 can also be called a base station, base transceiver station, radio base station, radio transceiver, transceiver function, basic service set (BSS), extended service set (ESS), TRP (transmitting and receiving node), or some other Appropriate term.
  • the gNB (eNB) 203 provides an access point to the 5GC/EPC210 for the UE201.
  • UE201 include cellular phones, smart phones, Session Initiation Protocol (SIP) phones, laptop computers, personal digital assistants (PDAs), satellite radios, non-terrestrial base station communications, satellite mobile communications, global positioning systems, multimedia devices , Video devices, digital audio players (for example, MP3 players), cameras, game consoles, drones, aircraft, narrowband IoT devices, machine-type communication devices, land vehicles, automobiles, wearable devices, or any Other similar functional devices.
  • SIP Session Initiation Protocol
  • PDAs personal digital assistants
  • satellite radios non-terrestrial base station communications
  • satellite mobile communications global positioning systems
  • multimedia devices Video devices
  • digital audio players for example, MP3 players
  • cameras game consoles, drones, aircraft, narrowband IoT devices, machine-type communication devices, land vehicles, automobiles, wearable devices, or any Other similar functional devices.
  • UE201 can also refer to UE201 as a mobile station, subscriber station, mobile unit, subscriber unit, wireless unit, remote unit, mobile device, wireless device, wireless communication device, remote device, mobile subscriber station, access terminal, Mobile terminal, wireless terminal, remote terminal, handset, user agent, mobile client, client or some other suitable term.
  • the gNB (eNB) 203 is connected to the 5GC/EPC210 through the S1/NG interface.
  • the 5GC/EPC210 includes MME (Mobility Management Entity)/AMF (Authentication Management Field)/SMF (Session Management Function).
  • MME/AMF/SMF211 is a control node that processes the signaling between UE201 and 5GC/EPC210. In general, MME/AMF/SMF211 provides bearer and connection management. All user IP (Internet Protocol, Internet Protocol) packets are transmitted through S-GW/UPF212, and S-GW/UPF212 itself is connected to P-GW/UPF213. The P-GW provides UE IP address allocation and other functions.
  • the P-GW/UPF 213 is connected to the Internet service 230.
  • the Internet service 230 includes the operator's corresponding Internet protocol service, which may specifically include the Internet, Intranet, IMS (IP Multimedia Subsystem, IP Multimedia Subsystem), and packet switching streaming service.
  • the UE201 corresponds to the first node device in this application.
  • the UE 201 supports multi-carrier transmission.
  • the UE 201 supports secondary carrier cross-carrier scheduling for transmission of the primary carrier.
  • the gNB (eNB) 201 corresponds to the second node device in this application.
  • the gNB (eNB) 201 supports multi-carrier transmission.
  • the gNB (eNB) 201 supports cross-carrier scheduling of secondary carrier transmission of the primary carrier.
  • Embodiment 3 shows a schematic diagram of an embodiment of a wireless protocol architecture of a user plane and a control plane according to the present application, as shown in FIG. 3.
  • FIG. 3 is a schematic diagram illustrating an embodiment of the radio protocol architecture for the user plane 350 and the control plane 300.
  • FIG. 3 shows three layers for the first node device (UE or gNB) and the second node device (gNB or UE).
  • the radio protocol architecture of the control plane 300 layer 1, layer 2, and layer 3.
  • Layer 1 (L1 layer) is the lowest layer and implements various PHY (physical layer) signal processing functions.
  • the L1 layer will be referred to as PHY301 herein.
  • Layer 2 (L2 layer) 305 is above PHY301 and is responsible for the link between the first node device and the second node device through PHY301.
  • L2 layer 305 includes MAC (Medium Access Control) sublayer 302, RLC (Radio Link Control, radio link layer control protocol) sublayer 303, and PDCP (Packet Data Convergence Protocol, packet data convergence protocol) sublayer 304. These sublayers terminate at the second node device.
  • the PDCP sublayer 304 provides multiplexing between different radio bearers and logical channels.
  • the PDCP sublayer 304 also provides security by encrypting data packets, and provides cross-zone movement support between the second node device and the first node device.
  • the RLC sublayer 303 provides segmentation and reassembly of upper layer data packets, retransmission of lost data packets, and reordering of data packets to compensate for out-of-order reception due to HARQ.
  • the MAC sublayer 302 provides multiplexing between logic and transport channels.
  • the MAC sublayer 302 is also responsible for allocating various radio resources (for example, resource blocks) in a cell among the first node devices.
  • the MAC sublayer 302 is also responsible for HARQ operations.
  • the RRC (Radio Resource Control) sublayer 306 in layer 3 (L3 layer) of the control plane 300 is responsible for obtaining radio resources (ie, radio bearers) and using the communication between the second node device and the first node device. RRC signaling to configure the lower layer.
  • the radio protocol architecture of the user plane 350 includes layer 1 (L1 layer) and layer 2 (L2 layer).
  • the radio protocol architecture for the first node device and the second node device in the user plane 350 is for the physical layer 351 and the L2 layer 355.
  • the PDCP sublayer 354 in the L2 layer 355, the RLC sublayer 353 in the L2 layer 355, and the MAC sublayer 352 in the L2 layer 355 are basically the same as the corresponding layers and sublayers in the control plane 300, but the PDCP sublayer 354 also provides The header of the upper layer data packet is compressed to reduce the radio transmission overhead.
  • the L2 layer 355 in the user plane 350 also includes the SDAP (Service Data Adaptation Protocol) sublayer 356.
  • SDAP Service Data Adaptation Protocol
  • the SDAP sublayer 356 is responsible for the mapping between the QoS flow and the data radio bearer (DRB, Data Radio Bearer). To support business diversity.
  • the first node device may have several upper layers above the L2 layer 355, including a network layer (for example, an IP layer) terminating at the P-GW on the network side and terminating at the other end of the connection (For example, remote UE, server, etc.) at the application layer.
  • the wireless protocol architecture in FIG. 3 is applicable to the first node device in this application.
  • the wireless protocol architecture in FIG. 3 is applicable to the second node device in this application.
  • the first information in this application is generated in the RRC306.
  • the first information in this application is generated in the MAC302 or MAC352.
  • the first information in this application is generated in the PHY301 or PHY351.
  • the second information in this application is generated in the RRC306.
  • the second information in this application is generated in the MAC302 or MAC352.
  • the second information in this application is generated in the PHY301 or PHY351.
  • the third information in this application is generated in the RRC306.
  • the third information in this application is generated in the MAC302 or MAC352.
  • the third information in this application is generated in the PHY301 or PHY351.
  • the fourth information in this application is generated in the RRC306.
  • the fourth information in this application is generated in the MAC302 or MAC352.
  • the fourth information in this application is generated in the PHY301 or PHY351.
  • the fifth information in this application is generated in the RRC306.
  • the fifth information in this application is generated in the MAC302 or MAC352.
  • Embodiment 4 shows a schematic diagram of a first node device and a second node device according to the present application, as shown in FIG. 4.
  • the first node device (450) may include a controller/processor 490, a data source/buffer 480, a receiving processor 452, a transmitter/receiver 456, and a transmitting processor 455.
  • the transmitter/receiver 456 includes an antenna. 460.
  • the second node device (410) may include a controller/processor 440, a data source/buffer 430, a receiving processor 412, a transmitter/receiver 416 and a transmitting processor 415, the transmitter/receiver 416 includes an antenna 420.
  • upper layer packets such as the first information, second information, third information, and fourth information included in this application, are provided to the controller/processor 440.
  • the controller/processor 440 implements the functions of the L2 layer and above.
  • the controller/processor 440 provides header compression, encryption, packet segmentation and reordering, multiplexing between logic and transport channels, and multiplexing of the radio of the first node device 450 based on various priority measures. Resource allocation.
  • the controller/processor 440 is also responsible for HARQ operation, retransmission of lost packets, and signaling to the first node device 450, such as the first information, second information, third information, and fourth information included in this application
  • the high-level information of is generated in the controller/processor 440.
  • the transmit processor 415 implements various signal processing functions for the L1 layer (ie, physical layer), including coding, interleaving, scrambling, modulation, power control/allocation, precoding and physical layer control signaling generation, etc., such as this
  • the generation of the physical layer signals of the first information, second information, third information, and fourth information in the application is completed by the transmit processor 415.
  • each receiver 456 receives the radio frequency signal through its corresponding antenna 460, and each receiver 456 recovers the baseband information modulated onto the radio frequency carrier, and provides the baseband information to the receiving processor 452.
  • the reception processor 452 implements various signal reception processing functions of the L1 layer.
  • the signal reception processing function includes the reception of the physical layer signals of the first, second, third, and fourth information in this application and the monitoring of the control signaling candidates included in the target control signaling candidate set.
  • the multi-carrier symbols in the multi-carrier symbol stream undergo demodulation based on various modulation schemes (for example, binary phase shift keying (BPSK), quadrature phase shift keying (QPSK)), and then descrambling, decoding and deinterleaving to The data or control transmitted by the second node device 410 on the physical channel is restored, and then the data and control signals are provided to the controller/processor 490.
  • BPSK binary phase shift keying
  • QPSK quadrature phase shift keying
  • the controller/processor 490 is responsible for the L2 layer and above, and the controller/processor 490 interprets the first information, the second information, the third information, and the fourth information in this application.
  • the controller/processor may be associated with a memory 480 that stores program codes and data.
  • the memory 480 may be referred to as a computer-readable medium.
  • the data source/buffer 480 is used to provide high-level data to the controller/processor 490.
  • the data source/buffer 480 represents the L2 layer and all protocol layers above the L2 layer.
  • the controller/processor 490 provides header compression, encryption, packet segmentation and reordering, and logic through the radio resource allocation based on the second node 410 Multiplexing with the transmission channel to implement the L2 layer protocol for the user plane and the control plane.
  • the controller/processor 490 is also responsible for HARQ operations, retransmission of lost packets, and signaling to the second node 410.
  • the fifth information in this application is generated by the controller/processor 490.
  • the transmission processor 455 implements various signal transmission processing functions for the L1 layer (ie, the physical layer), and the physical layer signal carrying the fifth information is generated by the transmission processor 455.
  • Signal transmission processing functions include sequence generation (for the signal generated by the sequence), coding and interleaving to facilitate forward error correction (FEC) at the UE450, and based on various modulation schemes (e.g., binary phase shift keying (BPSK), Quadrature Phase Shift Keying (QPSK) modulates the baseband signal (for the signal generated by the bit block), divides the sequence-generated signal or modulation symbol into parallel streams and maps each stream to the corresponding multi-carrier subcarrier and/ Or multi-carrier symbols are then mapped to the antenna 460 by the transmitting processor 455 via the transmitter 456 and transmitted in the form of radio frequency signals.
  • BPSK binary phase shift keying
  • QPSK Quadrature Phase Shift Keying
  • the receivers 416 receive radio frequency signals through its corresponding antenna 420, and each receiver 416 recovers the baseband information modulated onto the radio frequency carrier, and provides the baseband information to the receiving processor 412.
  • the receiving processor 412 implements various signal receiving and processing functions for the L1 layer (ie, the physical layer), including receiving and processing the physical layer signals in this application that carry the fifth information in this application, and the signal receiving and processing functions include acquiring multiple The carrier symbol stream, and then the sequence decorrelation of the multi-carrier symbols in the multi-carrier symbol stream or the solution based on various modulation schemes (for example, binary phase shift keying (BPSK), quadrature phase shift keying (QPSK)) Tune, then decode and deinterleave to recover the data and/or control signals originally transmitted by the first node device 450 on the physical channel.
  • BPSK binary phase shift keying
  • QPSK quadrature phase shift keying
  • the data and/or control signals are then provided to the controller/processor 440.
  • the controller/processor 440 implements the functions of the L2 layer, including reading the fifth information in this application.
  • the controller/processor may be associated with a buffer 430 that stores program codes and data.
  • the buffer 430 may be a computer-readable medium.
  • the first node device 450 includes: at least one processor and at least one memory, the at least one memory includes computer program code; the at least one memory and the computer program code are configured to The at least one processor is used together, the first node device 450 means at least: receiving first information, the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, the characteristic cell Belongs to the same cell group as the target cell; monitors the control signaling candidates included in the target control signaling candidate set, and the target control signaling candidate set includes a positive integer number of control signaling candidates; where the first A set of sub-bands includes a positive integer number of sub-bands, the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set, and the frequency occupied by the first control signaling candidate
  • the domain resource belongs to a subband included in the first subband set; the first time window includes the time domain resource occupied by any one control signaling candidate included in the target control signaling candidate set; the scheduling cell
  • the set
  • the first node device 450 includes: a memory storing a computer-readable instruction program, the computer-readable instruction program generates an action when executed by at least one processor, and the action includes: receiving First information, the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same cell group; monitoring target control signaling candidate set Included control signaling candidates, the target control signaling candidate set includes a positive integer number of control signaling candidates; wherein, the first sub-band set includes a positive integer number of sub-bands, and the first control signaling candidate is all One control signaling candidate included in the target control signaling candidate set, and the frequency domain resource occupied by the first control signaling candidate belongs to one sub-band included in the first sub-band set; The time window includes the time domain resources occupied by any one control signaling candidate included in the target control signaling candidate set; the scheduling cell set includes a positive integer number of serving cells, and any of the first sub-band set includes The serving cell to which
  • the second node device 410 device includes: at least one processor and at least one memory, the at least one memory includes computer program code; the at least one memory and the computer program code are configured to Use at least one processor together.
  • the second node device 410 means at least: sending first information, the first information is used to indicate a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same Cell group; determine the control signaling candidates included in the target control signaling candidate set, where the target control signaling candidate set includes a positive integer number of control signaling candidates; wherein the first subband set includes a positive integer number of subbands Frequency band, the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set, and the frequency domain resource occupied by the first control signaling candidate belongs to the first sub A sub-band included in the frequency band set; the first time window includes the time domain resources occupied by any one control signaling candidate included in the target control signaling candidate set; the scheduling cell set includes a positive
  • the second node device 410 includes: a memory storing a computer-readable instruction program, the computer-readable instruction program generates an action when executed by at least one processor, and the action includes: sending a first Information, the first information is used to indicate a target cell, the target cell is used to schedule a characteristic cell, the characteristic cell and the target cell belong to the same cell group; the target control signaling candidate set is determined Included control signaling candidates, the target control signaling candidate set includes a positive integer number of control signaling candidates; wherein, the first sub-band set includes a positive integer number of sub-bands, and the first control signaling candidate is the A control signaling candidate included in the target control signaling candidate set, and the frequency domain resource occupied by the first control signaling candidate belongs to a sub-band included in the first sub-band set; the first time The window includes the time domain resources occupied by any one control signaling candidate included in the target control signaling candidate set; the scheduling cell set includes a positive integer number of serving cells, and any one of the first sub-band
  • the first node device 450 is a user equipment (UE).
  • UE user equipment
  • the first node device 450 is a user equipment that supports multi-carrier transmission.
  • the first node device 450 is a user equipment that supports secondary carrier cross-carrier scheduling of the primary carrier.
  • the second node device 410 is a base station device (gNB/eNB).
  • the second node device 410 is a base station device supporting multi-carrier transmission.
  • the second node device 410 is a base station device that supports secondary carrier cross-carrier scheduling of the primary carrier.
  • the receiver 456 (including the antenna 460), the receiving processor 452 and the controller/processor 490 are used in this application to receive the first information.
  • the receiver 456 (including the antenna 460), the receiving processor 452 and the controller/processor 490 are used in this application to receive the second information.
  • the receiver 456 (including the antenna 460), the receiving processor 452 and the controller/processor 490 are used in this application to receive the third information.
  • the receiver 456 (including the antenna 460), the receiving processor 452 and the controller/processor 490 are used in this application to receive the fourth information.
  • the transmitter 456 (including the antenna 460), the transmission processor 455 and the controller/processor 490 are used to send the fifth information in this application.
  • the transmitter 416 (including the antenna 420), the transmission processor 415, and the controller/processor 440 are used to transmit the first information in this application.
  • the transmitter 416 (including the antenna 420), the transmission processor 415 and the controller/processor 440 are used to transmit the second information in this application.
  • the transmitter 416 (including the antenna 420), the transmission processor 415, and the controller/processor 440 are used to transmit the third information in this application.
  • the transmitter 416 (including the antenna 420), the transmission processor 415 and the controller/processor 440 are used to transmit the fourth information in this application.
  • the receiver 416 (including the antenna 420), the receiving processor 412 and the controller/processor 440 are used to receive the fifth information in this application.
  • Embodiment 5 illustrates a wireless signal transmission flowchart according to an embodiment of the present application, as shown in FIG. 5.
  • the second node device N1 is a maintenance base station of the serving cell of the first node device U2. It is particularly noted that the sequence in this example does not limit the signal transmission sequence and implementation sequence in this application.
  • the second node device N1 receives fifth information in step S11, the second transmission information in step S12, in step S13 sends the first information, the third information transmitted in step S14, in step S15 a fourth transmission Information, determine the control signaling candidates included in the target control signaling candidate set in step S16.
  • step S21 For the first node device U2, transmitting a fifth message in step S21, receives the second information at step S22, the first information received in step S23, receives the third information in a step S24, in step S25 a fourth received Information, the control signaling candidates included in the target control signaling candidate set are monitored in step S26.
  • the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same cell group;
  • the target control signaling The candidate set includes a positive integer number of control signaling candidates;
  • the first sub-band set includes a positive integer number of sub-bands, and the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set
  • the frequency domain resource occupied by the first control signaling candidate belongs to one sub-band included in the first sub-band set;
  • the first time window includes any one included in the target control signaling candidate set The time domain resources occupied by the control signaling candidate;
  • the scheduling cell set includes a positive integer number of serving cells, and the serving cell to which any one of the subbands included in the first subband set belongs belongs to the scheduling cell set;
  • the sub-carrier interval of the sub-carriers included in any sub-band included in a sub-band set is equal to the first sub-carrier interval;
  • the first ratio value is equal to the ratio between the first sum value and the first characteristic sum value
  • the second ratio value is equal to the ratio between the second sum value and the second characteristic sum value
  • the first sum value is a positive number
  • the first characteristic sum value is a positive number not less than the first sum value
  • the second sum value is a positive number
  • the second characteristic sum value is not less than the A positive number of the second sum value, the first ratio value and the second ratio value are not equal
  • One is used to determine the target ratio value between the first ratio value and the second ratio value
  • the third information is used to determine the first cell subset and the second cell subset
  • the The fourth information is used to determine the second factor
  • the fifth information is used to indicate the first capability parameter, and the first capability parameter is a positive integer
  • the first capability parameter is used to determine Set the first threshold.
  • the second information is transmitted through an air interface.
  • the second information is transmitted through a wireless interface.
  • the second information is transmitted through higher layer signaling.
  • the second information is transmitted through physical layer signaling.
  • the second information includes all or part of a high-level signaling.
  • the second information includes all or part of a physical layer signaling.
  • the second information includes all or part of an IE (Information Element, information element) in an RRC (Radio Resource Control, radio resource control) signaling.
  • IE Information Element, information element
  • RRC Radio Resource Control, radio resource control
  • the second information includes all or part of a field (Field) in an IE (Information Element, information element) in an RRC (Radio Resource Control, radio resource control) signaling.
  • Field Information Element, information element
  • RRC Radio Resource Control, radio resource control
  • the second information includes all or part of a MAC (Medium Access Control) layer signaling.
  • MAC Medium Access Control
  • the second information includes all or part of a system information block (SIB, System Information Block).
  • SIB system information block
  • the second information is transmitted through a DL-SCH (Downlink Shared Channel, downlink shared channel).
  • DL-SCH Downlink Shared Channel, downlink shared channel
  • the second information is transmitted through a PDSCH (Physical Downlink Shared Channel).
  • PDSCH Physical Downlink Shared Channel
  • the second information is cell specific (Cell Specific).
  • the second information is UE-specific.
  • the second information is carrier specific (Carrier Specific).
  • the second information is configured per carrier.
  • the second information is specific to the serving cell (Serving Cell Specific).
  • the second information is configured per serving cell (Per Serving Cell).
  • the second information includes all or part of a field of a DCI (Downlink Control Information) signaling.
  • DCI Downlink Control Information
  • the second information belongs to an IE (Information Element, information element) "CellGroupConfig" in one RRC signaling.
  • IE Information Element, information element
  • the second information belongs to a field "sCellToAddModList” in an IE (Information Element) "CellGroupConfig" in an RRC signaling.
  • the second information belongs to a field "sCellToReleaseList” in an IE (Information Element) "CellGroupConfig" in an RRC signaling.
  • the second information and the first information are carried by two different RRC signaling.
  • the second information and the first information are carried through the same RRC signaling.
  • the second information and the first information are carried by two different IEs in the same RRC signaling.
  • the second information and the first information are carried by two different fields in the same IE in the same RRC signaling.
  • the above sentence "the second information is used to determine the configuration cell group” includes the following meaning: the second information is used by the first node device in this application to determine the configuration cell group.
  • the above sentence "the second information is used to determine the configuration cell group” includes the following meaning: the second information is used to explicitly indicate the configuration cell group.
  • the above sentence "the second information is used to determine the configuration cell group” includes the following meaning: the second information is used to implicitly indicate the configuration cell group.
  • the above sentence "the second information is used to determine the configuration cell group” includes the following meaning: the second information is used to indirectly indicate the configuration cell group.
  • the third information is transmitted through an air interface.
  • the third information is transmitted through a wireless interface.
  • the third information is transmitted through higher layer signaling.
  • the third information is transmitted through physical layer signaling.
  • the third information includes all or part of a high-level signaling.
  • the third information includes all or part of a physical layer signaling.
  • the third information includes all or part of an IE (Information Element, information element) in an RRC (Radio Resource Control, radio resource control) signaling.
  • IE Information Element, information element
  • RRC Radio Resource Control, radio resource control
  • the third information includes all or part of fields in an IE (Information Element, information element) in an RRC (Radio Resource Control, radio resource control) signaling.
  • IE Information Element, information element
  • RRC Radio Resource Control, radio resource control
  • the third information includes all or part of a MAC (Medium Access Control) layer signaling.
  • MAC Medium Access Control
  • the third information includes all or part of a system information block (SIB, System Information Block).
  • SIB system information block
  • the third information is transmitted through a DL-SCH (Downlink Shared Channel, downlink shared channel).
  • DL-SCH Downlink Shared Channel, downlink shared channel
  • the third information is transmitted through a PDSCH (Physical Downlink Shared Channel).
  • PDSCH Physical Downlink Shared Channel
  • the third information is cell specific (Cell Specific).
  • the third information is UE-specific.
  • the third information is specific to the carrier group (Carrier Group Specific).
  • the third information is specific to a cell group (Cell Group Specific).
  • the third information is carrier-specific (Carrier Specific).
  • the third information is specific to the serving cell (Serving Cell Specific).
  • the third information includes all or part of a field of DCI (Downlink Control Information) signaling.
  • DCI Downlink Control Information
  • the third information includes a field "CORESETPoolIndex” in an IE “ControlResourceSet” in an IE (Information Element) "PDCCH-Config" in RRC signaling.
  • the third information includes an IE (Information Element, information element) "PDCCH-Config" in RRC signaling.
  • IE Information Element, information element
  • the third information includes an IE (Information Element, information element) "PDCCH-Config" in an IE “ControlResourceSet” in an RRC signaling.
  • IE Information Element, information element
  • the third information and the first information are carried by two different RRC signaling.
  • the third information and the first information are carried through the same RRC signaling.
  • the third information and the first information are carried by two different IEs in the same RRC signaling.
  • the third information and the first information are carried by two different fields in the same IE in the same RRC signaling.
  • the second information and the third information are carried through two different RRC signaling.
  • the second information and the third information are carried through the same RRC signaling.
  • the second information and the third information are carried by two different IEs in the same RRC signaling.
  • the second information and the third information are carried by two different fields in the same IE in the same RRC signaling.
  • the above sentence "the third information is used to determine the first cell subset and the second cell subset” includes the following meaning: the third information is used by the first node device in this application To determine the first cell subset and the second cell subset.
  • the sentence “the third information is used to determine the first cell subset and the second cell subset” includes the following meaning: the third information is used to determine the location of the first cell subset.
  • the control resource set (CORESET, Control Resource Set) provided by each serving cell included in the resource pool index (CORESET Pool Index), and the control resource set provided by each serving cell included in the first cell subset ( CORESET, Control Resource Set) resource pool indexes (CORESET Pool Index) are all equal;
  • the third information is used to determine the control resource set (CORESET, provided by each serving cell included in the second cell subset) Control Resource Set) resource pool index (CORESET Pool Index), the control resource set (CORESET, Control Resource Set) provided by each serving cell included in the second cell subset is all equal.
  • the sentence “the third information is used to determine the first cell subset and the second cell subset” includes the following meaning: the third information is used to determine the location of the first cell subset.
  • the number of control resource sets (CORESET, Control Resource Set) provided by each serving cell included, and the control resource sets (CORESET, Control Resource Set) provided by each serving cell included in the first cell subset The third information is used to determine the number of control resource sets (CORESET, Control Resource Set) provided by each serving cell included in the second cell subset, and the second cell subset
  • the number of control resource sets (CORESET, Control Resource Set) provided by each serving cell included in the set is equal.
  • the sentence “the third information is used to determine the first cell subset and the second cell subset” includes the following meaning: the third information includes P sub-information blocks, and the P is equal to the The sum of the number of serving cells included in the first cell subset and the number of serving cells included in the second cell subset; the P sub-information blocks are respectively for the first cell subset and the second cell subset P serving cells included in the cell subset; any one of the P sub-information blocks is used to determine the control resource set (CORESET, Control) provided by the corresponding serving cell in the P serving cells.
  • the third information includes P sub-information blocks, and the P is equal to the The sum of the number of serving cells included in the first cell subset and the number of serving cells included in the second cell subset
  • the P sub-information blocks are respectively for the first cell subset and the second cell subset P serving cells included in the cell subset
  • any one of the P sub-information blocks is used to determine the control resource set (CORESET, Control) provided by the corresponding serving cell in the P
  • control resource Set the number of control resource sets (CORESET, Control Resource Set) provided by each serving cell included in the first cell subset is equal, and each serving cell included in the second cell subset is The number of provided control resource sets (CORESET, Control Resource Set) is equal.
  • the sentence “the third information is used to determine the first cell subset and the second cell subset” includes the following meaning: the third information includes P sub-information blocks, and the P is equal to the The sum of the number of serving cells included in the first cell subset and the number of serving cells included in the second cell subset; the P sub-information blocks are respectively for the first cell subset and the second cell subset P serving cells included in the cell subset; any one of the P sub-information blocks is used to determine the control resource set (CORESET, Control) provided by the corresponding serving cell in the P serving cells.
  • the third information includes P sub-information blocks, and the P is equal to the The sum of the number of serving cells included in the first cell subset and the number of serving cells included in the second cell subset
  • the P sub-information blocks are respectively for the first cell subset and the second cell subset P serving cells included in the cell subset
  • any one of the P sub-information blocks is used to determine the control resource set (CORESET, Control) provided by the corresponding serving cell in the P
  • CORESET Pool Index Resource Set
  • CORESET Pool Index the control resource set (CORESET, Control Resource Set) provided by each serving cell included in the first cell subset (CORESET Pool Index) is equal to " 0"
  • the control resource set (CORESET, Control Resource Set) resource pool index (CORESET Pool Index) provided by each serving cell included in the second cell subset is all equal to "1".
  • the third information includes P sub-information blocks, and the P is equal to the number of serving cells included in the first cell subset and the number of serving cells included in the second cell subset. And; the P sub-information blocks are respectively for the P serving cells included in the first cell subset and the second cell subset.
  • the fourth information is transmitted through an air interface.
  • the fourth information is transmitted through a wireless interface.
  • the fourth information is transmitted through higher layer signaling.
  • the fourth information is transmitted through physical layer signaling.
  • the fourth information includes all or part of a high-level signaling.
  • the fourth information includes all or part of a physical layer signaling.
  • the fourth information includes all or part of an RRC (Radio Resource Control, radio resource control) signaling.
  • RRC Radio Resource Control, radio resource control
  • the fourth information includes all or part of a MAC (Medium Access Control) layer signaling.
  • MAC Medium Access Control
  • the fourth information is transmitted through a DL-SCH (Downlink Shared Channel, downlink shared channel).
  • DL-SCH Downlink Shared Channel, downlink shared channel
  • the fourth information is transmitted through a PDSCH (Physical Downlink Shared Channel).
  • PDSCH Physical Downlink Shared Channel
  • the fourth information is UE-specific.
  • the fourth information is carrier specific (Carrier Specific).
  • the fourth information is configured per carrier.
  • the fourth information is specific to the serving cell (Serving Cell Specific).
  • the fourth information is configured per serving cell (Per Serving Cell).
  • the fourth information includes all or part of a field of DCI (Downlink Control Information) signaling.
  • DCI Downlink Control Information
  • the third information and the fourth information are carried by two different RRC signaling.
  • the third information and the fourth information are carried through the same RRC signaling.
  • the third information and the fourth information are carried by two different IEs in the same RRC signaling.
  • the third information and the fourth information are carried by two different fields in the same IE in the same RRC signaling.
  • the above sentence "the fourth information is used to determine the second factor” includes the following meaning: the fourth information is used by the first node device in this application to determine the second factor.
  • the above sentence "the fourth information is used to determine the second factor” includes the following meaning: the fourth information is used to explicitly indicate the second factor.
  • the fourth information is used to determine the second factor
  • the fourth information is used to implicitly indicate the second factor
  • the fourth information is used to determine the second factor
  • the fourth information is used to indirectly indicate the second factor
  • Embodiment 6 illustrates a wireless signal transmission flowchart according to another embodiment of the present application, as shown in FIG. 6.
  • the second node device N3 is a maintenance base station of the serving cell of the first node device U4. It is particularly noted that the sequence in this example does not limit the signal transmission sequence and implementation sequence in this application.
  • step S31 receives fifth information in step S31, the second transmission information in step S32, sends the first information in step S33, the third transmission information in step S34, in step S35 a fourth transmission Information, the control signaling candidates included in the target control signaling candidate set are determined in step S36, and the control signaling is sent in step S37.
  • the fifth transmission information in step S41 receives the second information at step S42, receives the first information in step S43, receives the third information in a step S44, in step S45 a fourth received Information, the control signaling candidates included in the target control signaling candidate set are monitored in step S46.
  • the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same cell group;
  • the target control signaling The candidate set includes a positive integer number of control signaling candidates;
  • the first sub-band set includes a positive integer number of sub-bands, and the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set
  • the frequency domain resource occupied by the first control signaling candidate belongs to one sub-band included in the first sub-band set;
  • the first time window includes any one included in the target control signaling candidate set Time domain resources occupied by control signaling candidates;
  • the scheduling cell set includes a positive integer number of serving cells, and the serving cell to which any one of the subbands included in the first subband set belongs belongs to the scheduling cell set;
  • the sub-carrier interval of the sub-carriers included in any sub-band included in a sub-band set is equal to the first sub-carrier interval;
  • the first ratio value is equal to the ratio between the first sum value and the first characteristic sum value
  • the second ratio value is equal to the ratio between the second sum value and the second characteristic sum value
  • the first sum value is a positive number
  • the first characteristic sum value is a positive number not less than the first sum value
  • the second sum value is a positive number
  • the second characteristic sum value is not less than the A positive number of the second sum value, the first ratio value and the second ratio value are not equal
  • whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of One is used to determine the target ratio value between the first ratio value and the second ratio value
  • the third information is used to determine the first cell subset and the second cell subset
  • the The fourth information is used to determine the second factor
  • the fifth information is used to indicate the first capability parameter, and the first capability parameter is a positive integer
  • the first capability parameter is used to determine Set the first threshold
  • the control signaling occupies one control signaling candidate included in the target control signaling candidate
  • the fifth information is transmitted through an air interface.
  • the fifth information is transmitted through a wireless interface.
  • the fifth information is transmitted through higher layer signaling.
  • the fifth information is transmitted through physical layer signaling.
  • the fifth information includes all or part of a high-level signaling.
  • the fifth information includes all or part of a physical layer signaling.
  • the fifth information includes all or part of an RRC (Radio Resource Control, radio resource control) signaling.
  • RRC Radio Resource Control, radio resource control
  • the fifth information includes all or part of a MAC (Medium Access Control) layer signaling.
  • MAC Medium Access Control
  • the fifth information is transmitted through a UL-SCH (Uplink Shared Channel, uplink shared channel).
  • UL-SCH Uplink Shared Channel, uplink shared channel
  • the fifth information is transmitted through a PUSCH (Physical Uplink Shared Channel).
  • PUSCH Physical Uplink Shared Channel
  • the fifth information is UE-specific.
  • the fifth information is carrier-specific (Carrier Specific).
  • the fifth information is used to indicate the capability of the first node device in this application.
  • the fifth information is used to indicate the CA or DC (Dual Connectivity) capability of the first node device in this application.
  • the fifth information is used to indicate the blind detection capability of the first node device in this application.
  • the fifth information includes the IE "Phy-Parameters”.
  • the fifth information includes the domain "pdcch-BlindDetectionCA-r16" in the IE "Phy-Parameters”.
  • the fifth information includes the domain "pdcch-BlindDetectionCA-r15" in the IE "Phy-Parameters”.
  • the fifth information includes the domain "pdcch-BlindDetectionCA-r17" in the IE "Phy-Parameters”.
  • the fifth information includes the domain "pdcch-BlindDetectionCA” in the IE "Phy-Parameters”.
  • the fifth information includes the field "pdcch-BlindDetectionNRDC" in the IE "Phy-Parameters”.
  • the fifth information includes the field "pdcch-BlindDetectionMCG-UE" in the IE "Phy-Parameters”.
  • the fifth information includes the field "pdcch-BlindDetectionSCG-UE" in the IE "Phy-Parameters”.
  • the sentence "the fifth information is used to indicate the first capability parameter” includes the following meaning: the fifth information is used by the first node device in this application to indicate the first capability parameter.
  • the above sentence "the fifth information is used to indicate the first capability parameter” includes the following meaning: the fifth information is used to explicitly indicate the first capability parameter.
  • the above sentence "the fifth information is used to indicate the first capability parameter” includes the following meaning: the fifth information is used to implicitly indicate the first capability parameter.
  • the above sentence "the fifth information is used to indicate the first capability parameter” includes the following meaning: the fifth information is used to indirectly indicate the first capability parameter.
  • the first capability parameter is the number of serving cells with the maximum number of blind decoding (BD, Blind Decoding) times that can be supported by the first node device in this application.
  • BD Blind Decoding
  • the first capability parameter is the maximum number of blind decoding (BD, Blind Decoding) serving cells that the first node device in this application can support in a cell group (Cell Group). quantity.
  • BD Blind Decoding
  • the first capability parameter is the maximum number of blind decoding (BD, Blind Decoding) times that the first node device in this application can support in a Master Cell Group (MCG) The number of serving cells.
  • BD Blind Decoding
  • MCG Master Cell Group
  • the first capability parameter is the maximum number of blind decoding (BD, Blind Decoding) times that the first node device in this application can support in a Secondary Cell Group (SCG) The number of serving cells.
  • BD Blind Decoding
  • SCG Secondary Cell Group
  • the first capability parameter is the number of serving cells.
  • the sentence "the first ability parameter is used to determine the first threshold” includes the following meaning: the target value in this application is proportional to the first ability parameter.
  • the sentence "the first ability parameter is used to determine the first threshold” includes the following meaning: the first threshold is proportional to the first ability parameter.
  • the above sentence "the first ability parameter is used to determine the first threshold” includes the following meanings: the first ability parameter, the target ratio value in this application, and all in this application.
  • the first parameter is jointly used to determine the first threshold.
  • the above sentence "the first ability parameter is used to determine the first threshold” includes the following meanings: the first ability parameter, the target ratio value in this application, and all in this application.
  • the first parameter is jointly used to determine the target value in this application.
  • the above sentence "the first ability parameter is used to determine the first threshold” includes the following meanings: the first ability parameter, the target ratio value in this application, and all in this application.
  • the product of the three first parameters is equal to the target value in this application.
  • the above sentence "the first ability parameter is used to determine the first threshold” is realized by the following formula:
  • the number of serving cells included in the configured cell group in this application is greater than the first capability parameter.
  • the number of serving cells included in the configured cell group in this application is equal to the first capability parameter.
  • the number of serving cells included in the configured cell group in this application is less than the first capability parameter.
  • the number of serving cells included in the scheduled cell set in this application is greater than the first capability parameter.
  • the number of serving cells included in the scheduled cell set in this application is equal to the first capability parameter.
  • the number of serving cells included in the scheduled cell set in this application is less than the first capability parameter.
  • the sum of the product between the second quantity in this application and the first factor in this application and the first quantity in this application is greater than the first ability parameter.
  • the sum of the product between the second quantity in this application and the first factor in this application and the first quantity in this application is equal to the first ability parameter.
  • the sum of the product between the second quantity in this application and the first factor in this application and the first quantity in this application is smaller than the first ability parameter.
  • Embodiment 7 illustrates a wireless signal transmission flowchart according to another embodiment of the present application, as shown in FIG. 7.
  • the second node device N5 is a maintenance base station of the serving cell of the first node device U6. It is particularly noted that the sequence in this example does not limit the signal transmission sequence and implementation sequence in this application.
  • step S5 For the second node device N5, receives fifth information in step S51, the ninth information received in step S52, transmits an eighth message in step S53, the second transmission information in step S54, in step S55 transmits a sixth Information, the third information is sent in step S56, the seventh information is sent in step S57, the fourth information is sent in step S58, the tenth information is sent in step S59, and the target control signaling candidate set is determined in step S5a
  • the included control signaling is optional.
  • step S61 For U6 node device, transmitting a fifth message in step S61, the information transmitted in step S62, the ninth, the eighth information received in step S63, the second information receiving step S64, in step S65, receiving the sixth Information, the third information is received in step S66, the seventh information is received in step S67, the fourth information is received in step S68, the tenth information is received in step S69, and the target control signaling candidate set is monitored in step S6a Included control signaling options
  • the sixth information is used to determine the sub-carriers of each sub-band in the first set of sub-bands and sub-carriers in each sub-band in the first set of sub-bands in this application interval.
  • the seventh information is used to determine the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set in this application.
  • the seventh information is used to determine the time-frequency resource occupied by each control signaling candidate in the target control signaling candidate set in this application.
  • the eighth information is used to indicate the first factor in this application.
  • the ninth information is used to indicate the first factor in this application.
  • the tenth information is used to indicate the difference between the second feature and value in this application and the first feature and value in this application.
  • Embodiment 8 illustrates a schematic diagram of the relationship between a set of scheduled cells and a set of scheduled cells according to an embodiment of the present application, as shown in FIG. 8.
  • the horizontal axis represents frequency
  • the filling block at the top of each arc represents a serving cell included in the configuration cell group
  • each filling block at the top of the arc filled with diagonal lines to the left from top to bottom represents A serving cell included in the scheduling cell set
  • each filling block at the top of the arc filled with diagonal lines from top to bottom represents a serving cell included in the scheduled cell set
  • the filling block represents a serving cell that belongs to both the scheduling cell set and the scheduled cell set
  • the dashed arc with arrows represents the relationship between the two serving cells and being scheduled.
  • the configured cell group in this application includes a positive integer number of serving cells greater than 1; the target cell in this application belongs to the configured cell group, and the characteristic cell in this application belongs to all serving cells.
  • the configured cell group, the characteristic cell is the primary cell in the configured cell group;
  • the scheduled cell set includes the serving cell scheduled by the serving cell included in the scheduling cell set in this application, and the scheduled cell
  • the set includes a positive integer number of serving cells; any serving cell included in the scheduling cell set belongs to the configured cell group, and any serving cell included in the scheduled cell set belongs to the configured cell group.
  • the configured cell group is a master cell group (MCG, Master Cell Group).
  • the configured cell group is a secondary cell group (SCG, Secondary Cell Group).
  • SCG Secondary Cell Group
  • the configured cell group includes a MAC entity (MAC entity), a set of logical channels (a set of logical channels) associated with RLC entities (RLC entities), and a set of logical channels including a primary cell (Primary Cell, SpCell) And a collection of one or more secondary cells (Secondary Cells, Scells).
  • MAC entity MAC entity
  • RLC entities RLC entities
  • RLC entities RLC entities
  • Scells secondary Cells
  • the target cell is a serving cell included in the configured cell group.
  • the configuration cell group includes the target cell.
  • the characteristic cell is a serving cell included in the configured cell group.
  • the configured cell group includes the characteristic cell.
  • the target cell is a primary cell (Primary Cell, Pcell) included in the configured cell group.
  • Primary Cell Primary Cell
  • the target cell is a special cell (Special Cell, Spcell) included in the configured cell group.
  • Spcell Special Cell
  • the target cell is a secondary cell (Secondary Cell, SCell) included in the configured cell group.
  • SCell Secondary Cell
  • the sentence "the characteristic cell is the primary cell in the configuration cell group” includes the following meaning: when the configuration cell group is the primary cell group (MCG), the characteristic cell is the configuration cell group (MCG). Primary Cell (Pcell) in a cell group; when the configuration cell group is a secondary cell group (SCG), the characteristic cell is a primary SCG cell in the configuration cell group (SCG) PSCell).
  • the above sentence "the characteristic cell is a primary cell in the configuration cell group” includes the following meaning: the characteristic cell is a special cell (Spcell) included in the configuration cell group.
  • Spcell special cell
  • the above sentence "the characteristic cell is the primary cell in the configuration cell group” includes the following meaning: the characteristic cell is the first node included in the configuration cell group and is included in the application.
  • the device is used to perform an initial connection establishment procedure (initial connection establishment procedure) or initiate a connection re-establishment procedure (connection re-establishment procedure) in a serving cell.
  • the above sentence "the characteristic cell is the primary cell in the configuration cell group” includes the following meaning: the characteristic cell is the first node included in the configuration cell group by the application
  • the device is used to perform random access (Random Access) serving cells when performing a reconfiguration with synchronization procedure (Reconfiguration with Sync procedure).
  • the above sentence “the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells” includes the following meaning: the set of scheduled cells includes any one included in the set of scheduled cells All serving cells scheduled by the serving cell.
  • the above sentence "the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells” includes the following meaning: the set of scheduled cells only includes the services included in the set of scheduled cells The serving cell scheduled by the cell.
  • the above sentence "the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells” includes the following meaning: any one of the services scheduled by the serving cells included in the set of scheduled cells The cell belongs to the scheduled cell set.
  • the above sentence "the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells” includes the following meaning: any one of the services scheduled by the serving cells included in the set of scheduled cells The cells form the set of scheduled cells.
  • the above sentence “the set of scheduled cells includes the serving cells scheduled by the serving cells included in the set of scheduled cells” includes the following meaning: the set of scheduled cells includes any one included in the set of scheduled cells The scheduling cell of the serving cell.
  • one serving cell included in the scheduling cell set schedules one serving cell included in the scheduled cell refers to: the PDCCH transmitted on one serving cell included in the scheduling cell set schedules the scheduled cell A serving cell included in the scheduling cell.
  • scheduling one serving cell included in the scheduled cell by one serving cell included in the scheduling cell set refers to: scheduling the PDCCH transmitted on one serving cell included in the scheduling cell set on the A signal transmitted on a serving cell included in the scheduled cell.
  • the set of scheduled cells when the set of scheduling cells includes the target cell, the set of scheduled cells includes the characteristic cell.
  • the characteristic cell belongs to the set of scheduled cells.
  • any one serving cell included in the scheduling cell set is one serving cell included in the configuration cell group.
  • any one serving cell included in the scheduled cell set is one serving cell included in the configured cell set.
  • Embodiment 9 illustrates a schematic diagram of a target ratio value according to an embodiment of the present application, as shown in FIG. 9.
  • each rectangle represents one of the first ratio value, the second ratio value and the target ratio value, and the arrows represent the calculation process.
  • the target ratio value is used to determine the first threshold value in this application, the target ratio value is a positive number not greater than 1, and the target ratio value is equal to the first ratio value and the second ratio value.
  • the first ratio value is equal to the ratio between the first sum value and the first characteristic sum value
  • the second ratio value is equal to the ratio between the second sum value and the second characteristic sum value Ratio
  • the first sum value is a positive number
  • the first characteristic sum value is a positive number not less than the first sum value
  • the second sum value is a positive number
  • the second characteristic sum value is not less than
  • If the second sum value is a positive number, the first ratio value and the second ratio value are not equal
  • whether the scheduling cell set in this application includes the target cell in this application and the target cell in this application At least one of whether the characteristic cell and the target cell are the same is used to determine the target ratio value from between the first ratio value and the second ratio value.
  • the target ratio value may be equal to 1.
  • the target ratio value is greater than zero.
  • the target ratio value is less than one.
  • the first ratio value may be equal to 1.
  • the first ratio value is greater than zero.
  • the first ratio value is less than one.
  • the second ratio value may be equal to 1.
  • the second ratio value is greater than zero.
  • the second ratio value is less than one.
  • the above sentence "the target ratio value is used to determine the first threshold value” includes the following meaning: the target value in this application is proportional to the target ratio value.
  • the above sentence "the target ratio value is used to determine the first threshold value” includes the following meaning: the target ratio value is used by the first node device in this application to determine the target ratio value.
  • the above sentence "the target ratio value is used to determine the first threshold value” includes the following meaning: the first threshold value is proportional to the target ratio value.
  • the above sentence "the target ratio value is used to determine the first threshold value” includes the following meaning: the target ratio value is calculated by an arithmetic function to obtain the first threshold value.
  • the above sentence "the target ratio value is used to determine the first threshold value” includes the following meaning: the target ratio value is used to determine an intermediate value, and the first threshold value is a downward value of the intermediate value. Rounded value.
  • the above sentence "the target ratio value is used to determine the first threshold value” includes the following meaning: the target ratio value in this application is used to determine the target value in this application.
  • the sentence "the target ratio value is equal to one of the first ratio value and the second ratio value” includes the following meaning: the target ratio value is equal to the first ratio value, or the target ratio The value is equal to the second ratio value.
  • the sentence "the target ratio value is equal to one of the first ratio value and the second ratio value” includes the following meaning: the target ratio value may be equal to the first ratio value.
  • the sentence "the target ratio value is equal to one of the first ratio value and the second ratio value” includes the following meanings: the target ratio value may be equal to the second ratio value.
  • the first sum value and the second sum value are equal.
  • the first sum value and the second sum value are not equal.
  • the first characteristic sum value and the second characteristic sum value are equal.
  • the first characteristic sum value and the second characteristic sum value are not equal.
  • the first characteristic sum value is greater than the first sum value.
  • the first characteristic sum value is equal to the first sum value.
  • the second characteristic sum value is greater than the second sum value.
  • the second characteristic sum value is equal to the second sum value.
  • the first ratio value is greater than the second ratio value.
  • the first ratio value is smaller than the second ratio value.
  • the above sentence "Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determine the target ratio value between the ratio values” includes the following meanings: whether the scheduling cell set includes the target cell and whether the characteristic cell and the target cell are the same are used to determine whether the first ratio value and the target cell are the same. The target ratio value is determined between the second ratio values.
  • the above sentence “Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determine the target ratio value between ratio values” includes the following meaning: whether the scheduling cell set includes the target cell is used to determine the target ratio from between the first ratio value and the second ratio value value.
  • the above sentence “Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: whether the characteristic cell and the target cell are the same is used to determine the target ratio from between the first ratio value and the second ratio value value.
  • the above sentence "Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: whether the scheduling cell set includes at least one of the target cell, whether the characteristic cell and the target cell are the same is determined by the first in this application. A node device is used to determine the target ratio value from between the first ratio value and the second ratio value.
  • the above sentence “Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between the ratio values” includes the following meaning: whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the The target ratio value is determined between the first ratio value and the second ratio value.
  • the above sentence "Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: when the characteristic cell and the target cell are the same, the target ratio value is equal to the first ratio value; when the characteristic cell and the target cell are the same, the target ratio value is equal to the first ratio value; When the cells are not the same and the scheduling cell set does not include the target cell, the target ratio value is equal to the first ratio value; when the characteristic cell and the target cell are not the same and the scheduling cell set includes all In the case of the target cell, the target ratio value is equal to the second ratio value.
  • the above sentence “Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: when the characteristic cell and the target cell are the same, the target ratio value is equal to the first ratio value; when the characteristic cell and the target cell are the same, the target ratio value is equal to the first ratio value; When the cells are not the same, the target ratio value is equal to the second ratio value.
  • the above sentence "Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: when the scheduling cell set does not include the target cell, the target ratio value is equal to the first ratio value; when the scheduling cell set includes all In the case of the target cell, the target ratio value is equal to the second ratio value.
  • the above sentence "Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determine the target ratio value between the ratio values” includes the following meaning: whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one is used to determine the first Whether the sum value is equal to the second sum value.
  • the above sentence "Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determine the target ratio value between the ratio values” includes the following meaning: whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one is used to determine the first Whether the characteristic sum value and the second characteristic sum value are equal.
  • the above sentence “Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: when the characteristic cell and the target cell are not the same, the first characteristic sum value and the second characteristic sum value are not equal.
  • the above sentence “Whether the scheduling cell set includes the target cell, whether the characteristic cell and the target cell are the same at least one of the “Determining the target ratio value between ratio values” includes the following meaning: when the scheduling cell set includes the target cell, the first sum value and the second sum value are not equal.
  • Embodiment 10 illustrates a schematic diagram of the relationship between the first cell subset and the second cell subset according to an embodiment of the present application, as shown in FIG. 10.
  • the horizontal axis represents frequency
  • the filling block at the top of each arc represents a serving cell
  • the filling block at the top of the arc filled with each cross line represents a serving cell in the first cell subset
  • each cross The filling block at the top of the arc of the line filling represents a serving cell in the second cell subset.
  • the first cell subset in this application includes a positive integer number of serving cells
  • the second cell subset in this application includes a positive integer number of serving cells
  • the scheduled The number of serving cells belonging to the first cell subset included in the cell set is equal to the first number
  • the number of serving cells belonging to the second cell subset included in the scheduled cell set in this application is equal to The second number
  • the first feature and value in this application and the number of serving cells included in the second cell subset are linearly related to the product of the first factor
  • the first feature and value are linearly related to the first factor
  • the number of serving cells included in a cell subset is linearly related
  • the first sum value and the second number are linearly related to the product of the first factor
  • the first sum value is linearly related to the first number Related
  • the first factor is configurable, or the first factor is predefined.
  • any one serving cell included in the first cell subset only supports a single TRP and a single panel (Panel).
  • the serving cells included in the first cell subset are not provided with a control resource set (CORESET, Control Resource Set) resource pool index (CORESET Pool Index).
  • CORESET Control Resource Set
  • CORESET Pool Index resource pool index
  • the serving cells included in the first cell subset are provided with only one control resource set (CORESET, Control Resource Set) resource pool index (CORESET Pool Index).
  • CORESET Control Resource Set
  • CORESET Pool Index resource pool index
  • the first node device in this application is provided with only one control resource set (CORESET, Control Resource Set) Resource Pool Index (CORESET Pool Index).
  • the first node device in this application is provided with only one control resource set (CORESET, Control Resource Set). Set).
  • CORESET Control Resource Set
  • any one serving cell included in the second cell subset supports more than one TRP.
  • any one serving cell included in the second cell subset supports more than one panel.
  • the first node device in this application is provided with more than one control resource set (CORESET, Control). Resource Set).
  • CORESET Control resource set
  • the first node device in this application is provided with more than one control resource set (CORESET, Control). Resource Set) Resource Pool Index (CORESET Pool Index).
  • the first node device in this application is provided with two control resource sets (CORESET, Control Resource Set).
  • the first node device in this application is provided with two control resource sets (CORESET, Control Resource Set) Resource Pool Index (CORESET Pool Index).
  • CORESET Control Resource Set
  • CORESET Pool Index Resource Pool Index
  • the first node device in this application is a control resource set (CORESET, Control Resource) provided by CORESET.
  • CORESET Pool Index The value of the resource pool index (CORESET Pool Index) is equal to 0, and the first node device in this application is the control resource set (CORESET, Control Resource Set) provided by another CORESET resource pool index (CORESET Pool Index). The value is equal to 1.
  • the control resource set (CORESET, Control) provided by the first node device in this application for the first CORESET Resource Set)
  • the value of the resource pool index (CORESET Pool Index) is equal to 0, and the first node device in this application is the control resource set (CORESET, Control Resource Set) provided by the second CORESET.
  • the resource pool index (CORESET Pool Index) The value of is equal to 1, and the first CORESET and the second CORESET are not the same.
  • the first number is a non-negative integer.
  • the second number is a non-negative integer.
  • the first number may be equal to zero.
  • the second number may be equal to zero.
  • the first number is greater than zero.
  • the second number is greater than zero.
  • any one serving cell included in the scheduled cell set belongs to one of the first cell subset and the second cell subset.
  • any one serving cell included in the scheduled cell set belongs to either the first cell subset or the second cell subset.
  • the set of scheduled cells includes a serving cell that neither belongs to the first cell subset nor the second cell subset.
  • the first factor is equal to one.
  • the first factor is not equal to 1.
  • the above sentence "the first factor is configurable” includes the following meaning: the first factor is the configuration of the second node device under application.
  • the above sentence "the first factor is configurable” includes the following meaning: the first factor is reported by the first node device in the application.
  • the above sentence "the first factor is configurable” includes the following meaning: the first processor also receives eighth information, where the eighth information is used to indicate the first factor .
  • the above sentence "the first factor is configurable” includes the following meaning: the first processor also sends ninth information, where the ninth information is used to indicate the first factor .
  • the above sentence "the first factor is predefined” includes the following meaning: the first factor is equal to a fixed value.
  • the above sentence "the first factor is predefined” includes the following meaning: the first factor is equal to 1.
  • the sentence "the first factor is predefined” includes the following meaning: the first factor is equal to a default (Default) value.
  • the first factor is a blind detection (BD, Blind Decoding) factor (Factor).
  • BD Blind Decoding
  • the first factor is used to determine the multiple by which the number of blind detections can be increased.
  • any one serving cell included in the first cell subset belongs to the configured cell group, and any one serving cell included in the second cell subset belongs to the configured cell group.
  • the configuration cell group includes any one serving cell included in the first cell subset, and the configuration cell group includes any one serving cell included in the second cell subset.
  • the sentence "The first feature and value and the number of serving cells included in the second cell subset are linearly related to the product of the first factor, and the first feature and value are linearly related to the first factor.
  • the linear correlation of the number of serving cells included in a cell subset is achieved by the following formula:
  • Sum 1 represents the first feature and value, Represents the number of serving cells included in the first cell subset, Represents the number of serving cells included in the second cell subset, and ⁇ represents the first factor.
  • the sentence "The first feature and value and the number of serving cells included in the second cell subset are linearly related to the product of the first factor, and the first feature and value are linearly related to the first factor.
  • the linear correlation of the number of serving cells included in a cell subset is achieved by the following formula:
  • Sum 1 represents the first feature and value, Represents the number of serving cells configured with a numerical structure (Numerology) index equal to j included in the first subset of cells, Represents the number of serving cells included in the first cell subset, Represents the number of serving cells configured with a numerical structure (Numerology) index equal to j included in the second cell subset, Represents the number of serving cells included in the second cell subset, and ⁇ represents the first factor.
  • “The number of serving cells included in a cell subset is linearly correlated” includes the following meaning: the first feature and value are equal to the product of the number of serving cells included in the second cell subset and the first factor and the first factor The sum of the number of serving cells included in a cell subset.
  • Linear correlation between the number of serving cells included in a cell subset includes the following meaning: the first feature and value are linearly positively correlated with the product of the number of serving cells included in the second cell subset and the first factor, The first characteristic and value are linearly positively correlated with the number of serving cells included in the first cell subset.
  • the above sentence "the first sum value and the second quantity are linearly related to the product of the first factor, and the first sum value is linearly related to the first quantity” includes the following meanings:
  • the first sum value is equal to the sum of the product of the second number and the first factor and the first number.
  • the above sentence "the first sum value and the second quantity are linearly related to the product of the first factor, and the first sum value is linearly related to the first quantity” includes the following meanings: The first sum value and the second quantity are linearly positively correlated with the product of the first factor, and the first sum value is linearly positively correlated with the first quantity.
  • ⁇ 1 represents the first sum value
  • represents the first factor
  • Embodiment 11 illustrates a schematic diagram of the first feature sum value and the first sum value according to an embodiment of the present application, as shown in FIG. 11.
  • the horizontal axis represents the frequency
  • the unfilled block at the top of each arc represents a serving cell outside the scheduled cell set in a configuration cell group
  • the filling block at the top of the arc filled with each cross Represents a serving cell in the set of scheduled cells.
  • the first feature sum value in this application is equal to the number of serving cells included in the configuration cell group in this application; the first sum value in this application is equal to the number in this application The number of serving cells included in the scheduled cell set.
  • the number of serving cells included in the configured cell group is equal to the number of serving cells included in the scheduled cell set.
  • the number of serving cells included in the configured cell group is not equal to the number of serving cells included in the scheduled cell set.
  • the number of serving cells included in the configured cell group is greater than the number of serving cells included in the scheduled cell set.
  • Embodiment 12 illustrates a schematic diagram of the relationship between the first feature and value and the second feature and value according to an embodiment of the present application, as shown in FIG. 12.
  • each rectangle represents one of the first ratio value and the second ratio value
  • the arrow represents the calculation process.
  • the second sum value in this application is equal to the first sum value in this application, and the first feature sum value in this application is the same as the second feature in this application.
  • the sum value is not equal; the difference between the second characteristic sum value and the first characteristic sum value is predefined, or the difference between the second characteristic sum value and the first characteristic sum value The value is configurable.
  • the “difference value between is configurable” includes the following meaning: the difference between the second characteristic sum value and the first characteristic sum value is predefined.
  • the sentence "The difference between the second feature sum value and the first feature sum value is predefined, or the difference between the second feature sum value and the first feature sum value "The difference between the two is configurable" includes the following meaning: the difference between the second feature and value and the first feature and value is configurable
  • the sentence "The difference between the second feature sum value and the first feature sum value is predefined, or the difference between the second feature sum value and the first feature sum value "The difference between the two is configurable” includes the following meaning: in some cases, the difference between the second feature and value and the first feature and value is predefined, and in other cases, The difference between the second characteristic sum value and the first characteristic sum value is configurable.
  • the above sentence “the difference between the second feature sum value and the first feature sum value is predefined” includes the following meaning: the second feature sum value and the first feature The difference between the sum value is fixed.
  • the above sentence "the difference between the second feature sum value and the first feature sum value is predefined” includes the following meaning: the second feature sum value and the first feature The difference between the sum and the value is hard-coded in the standard protocol (Hard Coded).
  • the above sentence “the difference between the second feature sum value and the first feature sum value is predefined” includes the following meaning: the second feature sum value and the first feature The difference between the sum value is equal to 1.
  • the above sentence “the difference between the second feature sum value and the first feature sum value is predefined” includes the following meaning: the second feature sum value is greater than the first feature sum value The sum value is one greater.
  • the above sentence "the difference between the second feature sum value and the first feature sum value is predefined” includes the following meaning: the second feature sum value and the first feature The difference between the sum value is equal to a default value.
  • the above sentence “the difference between the second feature sum value and the first feature sum value is configurable” includes the following meaning: the second feature sum value and the first feature The difference between the sum value is configured by the second node device in this application.
  • the above sentence “the difference between the second feature sum value and the first feature sum value is configurable” includes the following meaning: the second feature sum value and the first feature The difference between the sum value is reported by the first node device in this application.
  • the above sentence "the difference between the second feature sum value and the first feature sum value is configurable” includes the following meaning: the first processor in this application receives the tenth Information, wherein the tenth information is used to indicate the difference between the second feature sum value and the first feature sum value.
  • the above sentence "the difference between the second feature sum value and the first feature sum value is configurable” includes the following meaning: the first processor in this application sends a tenth An information, wherein the eleventh information is used to indicate the difference between the second feature sum value and the first feature sum value.
  • Embodiment 13 illustrates a schematic diagram of the relationship between the second factor and the second sum value according to an embodiment of the present application, as shown in FIG. 13.
  • three rectangular boxes respectively represent the first scale value, the second scale value and the second factor, and the arrows represent the calculation process.
  • the fourth information in this application is used to determine the second factor, and the second factor is a positive number less than 1, and the second factor is used to determine the The second sum value, the second sum value is not equal to the first sum value in this application, and the second characteristic sum value in this application is equal to the first characteristic sum value in this application.
  • the above sentence "the second factor is used to determine the second sum value” includes the following meaning: the second factor is used by the first node device in this application to determine the first Two sum value.
  • the above sentence "the second factor is used to determine the second sum value” includes the following meaning: the second factor is used to calculate the second sum value.
  • the above sentence "the second factor is used to determine the second sum value” includes the following meaning: the second factor is calculated according to an arithmetic function to obtain the second sum value.
  • the above sentence "the second factor is used to determine the second sum value” includes the following meaning: when the first subset of cells in this application includes the characteristic cell, the first The two sum value is equal to the difference between the first sum value and the second factor; when the second cell subset in this application includes the characteristic cell, the second sum value is equal to the The first sum value minus the difference of the product between the first factor and the second factor in this application.
  • ⁇ 2 represents the second sum value
  • ⁇ 1 represents the first sum value
  • represents the first factor
  • represents the second factor
  • the above sentence "the second factor is used to determine the second sum value” includes the following meaning: the second sum value is equal to the difference between the first sum value and the second factor Difference.
  • Embodiment 14 illustrates a schematic diagram of the second factor according to an embodiment of the present application, as shown in FIG. 14.
  • the horizontal axis represents frequency
  • the filling block at the top of each arc represents a serving cell
  • the filling block at the top of the arc filled with diagonal lines represents a characteristic cell
  • the filling block at the top of the arc filled with crosshairs represents the target
  • the dashed arc with arrows represents the relationship between scheduling and being scheduled between two serving cells.
  • the fourth information in this application is used to determine the first monitoring frequency and the sum of the monitoring times, and the first monitoring frequency is equal to the target cell in this application and is used to schedule this application.
  • the number of monitoring times for the control signaling candidates of the characteristic cell in, the sum of the monitoring times is equal to the total number of monitoring times used for scheduling the control signaling candidates of the characteristic cell; the second in this application
  • the factor is linearly related to the ratio between the first monitoring times and the sum of the monitoring times.
  • the first monitoring frequency is a non-negative integer.
  • the first monitoring frequency is a positive integer.
  • the total number of monitoring times is a positive integer.
  • the sum of the monitoring times is a positive integer not less than the first monitoring times.
  • the fourth information is used to determine the first monitoring frequency and the sum of the monitoring frequency
  • the fourth information is used by the first node device in this application to determine the The first monitoring frequency and the sum of the monitoring frequency.
  • the fourth information is used to determine the first monitoring frequency and the sum of the monitoring frequency
  • the fourth information is used to explicitly indicate the first monitoring frequency and the total monitoring frequency. The total number of monitoring times.
  • the fourth information is used to determine the first monitoring frequency and the sum of the monitoring frequency
  • the fourth information is used to implicitly indicate the first monitoring frequency and the total number of monitoring The total number of monitoring times.
  • the fourth information is used to determine the first monitoring frequency and the sum of the monitoring frequency
  • the fourth information is used to indirectly indicate the first monitoring frequency and the The total number of monitoring times.
  • the fourth information includes Y sub-information blocks, and the Y is a positive integer greater than 1.
  • the Y sub-information blocks are respectively used to indicate Y monitoring times
  • the first monitoring times are Y1 monitoring times among the Y monitoring times
  • the sum of the monitoring times is the Y monitoring times.
  • the sum of Y2 monitoring times of Y1 is a positive integer not greater than Y
  • Y2 is a positive integer not greater than Y
  • any one of the Y monitoring times is a positive integer.
  • the fourth information includes the IE "PDCCH-Config" used to schedule the characteristic cell.
  • the fourth information includes the field "searchSpace” in the "PDCCH-Config” IE used to schedule the characteristic cell.
  • the fourth information is used to determine the number of monitoring times of each aggregation level (AL, Aggregation Level) control signaling candidate used to schedule the characteristic cell in the target cell, and
  • the first number of monitoring times is equal to the sum of the number of monitoring times of control signaling candidates for each aggregation level (AL, Aggregation Level) used to schedule the characteristic cell in the target cell.
  • the fourth information includes Y sub-information blocks, and the Y is a positive integer greater than 1.
  • the Y sub-information blocks are respectively used to indicate Y monitoring times
  • the first monitoring times are Y1 monitoring times out of the Y monitoring times
  • the Y1 monitoring times are respectively equal to those in the target cell
  • the monitoring times of the control signaling candidates in the Y1 search spaces used to schedule the characteristic cell the sum of the monitoring times is the sum of Y2 monitoring times in the Y monitoring times, and the Y2 monitoring
  • the times are respectively equal to the monitoring times of the control signaling candidates in the Y2 search spaces used to schedule the characteristic cell;
  • the Y1 is a positive integer not greater than the Y
  • the Y2 is not greater than the Y A positive integer; any one of the Y monitoring times is a positive integer.
  • the above sentence "the first number of monitoring times is equal to the number of monitoring times of the control signaling candidate used to schedule the characteristic cell in the target cell” includes the following meaning: the first number of monitoring times is equal to the number of The sum of the number of monitoring times of control signaling candidates of each aggregation level (AL, Aggregation Level) used to schedule the characteristic cell in the target cell.
  • A Aggregation Level
  • the above sentence "the first number of monitoring times is equal to the number of monitoring times of the control signaling candidate used to schedule the characteristic cell in the target cell” includes the following meaning: the first number of monitoring times is equal to the number of The number of monitoring times in the target cell that is used to schedule the control signaling candidates of the characteristic cell in the first time window.
  • the above sentence "the first number of monitoring times is equal to the number of monitoring times of the control signaling candidate used to schedule the characteristic cell in the target cell” includes the following meaning: the first number of monitoring times is equal to the number of The total number of monitoring times in the target cell that are used for scheduling control signaling candidates of the characteristic cell in the first time window.
  • the above sentence "the first number of monitoring times is equal to the number of monitoring times of the control signaling candidate used to schedule the characteristic cell in the target cell” includes the following meaning: the first number of monitoring times is equal to the number of The sum of the number of monitoring times of control signaling candidates used for scheduling each aggregation level (AL, Aggregation Level) of the characteristic cell in the first time window in the target cell.
  • A Aggregation Level
  • the above sentence "the total number of monitoring times is equal to the total number of monitoring times used for scheduling the control signaling candidates of the characteristic cell” includes the following meaning: the total number of monitoring times is equal to the total number of times used for scheduling The sum of the monitoring times of the control signaling candidates of each aggregation level (AL, Aggregation Level) of the characteristic cell.
  • AL Aggregation Level
  • the above sentence “the sum of the monitoring times is equal to the total monitoring times of the control signaling candidates used to schedule the characteristic cell” includes the following meaning: the sum of the monitoring times is equal to the first monitoring times And the second monitoring frequency, the second monitoring frequency is equal to the monitoring frequency of the control signaling candidate used for scheduling the characteristic cell in the characteristic cell.
  • the above sentence “the sum of the monitoring times is equal to the total monitoring times of the control signaling candidates used to schedule the characteristic cell” includes the following meaning: the sum of the monitoring times is equal to the first monitoring times And the second number of monitoring times, the second number of monitoring times is equal to the number of monitoring times in the characteristic cell that is used to schedule the control signaling candidate of the characteristic cell in the first time window.
  • the above sentence "the sum of the monitoring times is equal to the total monitoring times of the control signaling candidates used to schedule the characteristic cell” includes the following meaning: the sum of the monitoring times is equal to the first monitoring times The sum of the second monitoring frequency and the second monitoring frequency equal to the control signaling of each aggregation level (AL, Aggregation Level) used to schedule the characteristic cell in the first time window in the characteristic cell The sum of the optional monitoring times.
  • A Aggregation Level
  • the sentence "the second factor is linearly related to the ratio between the first monitoring frequency and the sum of the monitoring frequency” includes the following meaning: the second factor and the first monitoring frequency are summed The ratio between the sum of the monitoring times is linearly negatively correlated.
  • the sentence "the second factor is linearly related to the ratio between the first monitoring frequency and the sum of the monitoring frequency” includes the following meaning: the second factor is equal to 1 minus the first The difference in the ratio between the number of monitoring times and the sum of the number of monitoring times.
  • the second factor is linearly related to the ratio between the first monitoring times and the sum of the monitoring times.
  • represents the second factor
  • M 1 represents the first monitoring times
  • M total represents the sum of the monitoring times
  • Embodiment 15 illustrates a schematic diagram of the relationship between the first parameter and the first subcarrier interval according to an embodiment of the present application, as shown in FIG. 15.
  • the index of the scheduling subcarrier interval in the first column from the left, and the second column from the left represents X candidate parameters.
  • the index of the blackened subcarrier interval is the index of the first subcarrier interval, and the blackened index
  • the candidate parameter is the first parameter.
  • the first subcarrier interval in this application is one candidate subcarrier interval among X candidate subcarrier intervals, and the X is a positive integer greater than 1; the X candidates The subcarrier spacing corresponds to X candidate parameters one by one, and each candidate parameter in the X candidate parameters is a positive integer; the first parameter is that the first subcarrier spacing is in the X candidate parameters As for the corresponding candidate parameter, the first threshold in this application is equal to the rounded down value of the target value, and the first parameter is used to determine the target value.
  • any one of the X candidate sub-carrier intervals is equal to one of 15 kHz, 30 kHz, 60 kHz, and 120 kHz.
  • any one of the X candidate sub-carrier intervals is equal to one of 15 kHz, 30 kHz, 60 kHz, 120 kHz, and 240 kHz.
  • any one of the X candidate sub-carrier intervals is equal to a non-negative integer power of 2 of 15 kHz.
  • the X is equal to 4.
  • the X is greater than 4.
  • the X is not less than 4.
  • the X candidate subcarrier intervals are predefined (Predefined).
  • the X candidate subcarrier intervals are fixed (Fixed).
  • the X candidate subcarrier intervals are composed of all subcarrier intervals supported by the R17 version.
  • the X candidate subcarrier intervals are composed of all subcarrier intervals supported by the R16 version.
  • any two candidate subcarrier intervals in the X candidate subcarrier intervals are not equal.
  • any one of the X candidate parameters is the maximum number of times of PDCCH candidate (Candidate) monitoring in a time slot on a serving cell.
  • any two candidate parameters in the X candidate parameters are not equal.
  • two of the X candidate parameters are equal.
  • the X is equal to 4, and the X candidate parameters are 44, 36, 22, and 20, respectively.
  • any one of the X candidate parameters is a possible Value.
  • the target value is an integer.
  • the target value is a score.
  • the target value is a rational number.
  • the target value is a non-integer rational number.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: the target value is proportional to the first parameter.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: the first parameter is used by the first node device in this application to determine the target value.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: the target value is proportional to the first parameter, and the target value is different from the first parameter.
  • the ratio coefficient between the two is related to the target ratio value in this application.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: the target value is proportional to the first parameter, and the target value is different from the first parameter.
  • the ratio coefficient between the two is related to the first ability parameter in this application.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: the target value is proportional to the first parameter, and the target value is different from the first parameter.
  • the ratio coefficient between is equal to the product of the target ratio value in the application and the first ability parameter in the application.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: for the target ratio value in a given application and the first parameter in the given application Ability parameter, the target value is linearly related to the first parameter.
  • the above sentence "the first parameter is used to determine the target value” includes the following meanings: the target value is equal to the first parameter, the target ratio value in this application, The product of the three first ability parameters.
  • the above sentence "the first parameter is used to determine the target value” includes the following meaning: the first parameter is used to determine the target value through a functional operation.
  • the first node device in this application is not required to perform the target control signaling candidate on any one of the first subbands in the first time window
  • the number of monitoring times of the control signaling candidates included in the set exceeds the small value compared between the first threshold and the first parameter.
  • the first node device in this application is not required to be in the first time window in the first time window.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set on any one of the sub-bands in the sub-band set exceeds the small value compared between the first threshold and the first parameter .
  • the first node device in this application is not required to be in all serving cells.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set on any one of the first sub-band set in the first time window exceeds the first threshold and all the sub-bands. The small value of the comparison between the first parameters.
  • the first node device in this application is not required to perform the target control signaling candidate on any one of the first subbands in the first time window
  • the number of monitoring times of the control signaling candidates included in the set exceeds the small value compared between the first threshold and the first product, and the first product is equal to the difference between the first factor and the first parameter. The product between.
  • the first node device in this application is not required to be in all serving cells.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set on any one of the first sub-band set in the first time window exceeds the first threshold and all the sub-bands.
  • the small value compared between the first products, and the first product is equal to the product between the first factor and the first parameter.
  • the first node device in this application is not required to be in all serving cells.
  • the number of monitoring times of the control signaling candidates included in the target control signaling candidate set on any one of the first sub-band set in the first time window exceeds the first threshold and all the sub-bands. The small value of the comparison between the first parameters.
  • the corresponding scheduling cell belongs to each serving cell of the first cell subset described in this application, and the first The node device is not required to monitor the number of control signaling candidates included in the target control signaling candidate set on any one of the first sub-band set in the first time window to exceed The small value of the comparison between the first threshold and the first parameter.
  • the corresponding scheduling cell belongs to each serving cell of the second cell subset described in this application, and the first The node device is not required to monitor the number of control signaling candidates included in the target control signaling candidate set on any one of the first sub-band set in the first time window to exceed The small value compared between the first threshold and the first product, and the first product is equal to the product between the first factor and the first parameter.
  • the corresponding scheduling cell belongs to each serving cell of the second cell subset described in this application, and the first The node device is not required to monitor the number of control signaling candidates included in the target control signaling candidate set on any one of the first sub-band set in the first time window to exceed The small value of the comparison between the first threshold and the first parameter.
  • Embodiment 16 illustrates a schematic diagram of the relationship between the second factor and the second sum value according to an embodiment of the present application, as shown in FIG. 16.
  • the horizontal axis represents frequency
  • the block area at the top of each arc represents a serving cell
  • each vertical bar filled with diagonal lines represents a sub-carrier in the characteristic sub-band
  • each vertical bar filled with cross lines represents a sub-carrier in the characteristic sub-band.
  • the bar represents one sub-carrier included in one sub-band included in the first set of sub-bands.
  • the characteristic cell in this application includes a characteristic sub-band, the characteristic sub-band includes a positive integer number of sub-carriers, and the sub-carrier interval of any sub-carrier included in the characteristic sub-band is equal to the second sub-carrier. Carrier spacing, the first subcarrier spacing and the second subcarrier spacing in this application are not equal.
  • the above sentence "the characteristic cell includes a characteristic sub-band” includes the following meaning: the carrier corresponding to the characteristic cell includes a characteristic sub-band.
  • the above sentence "the characteristic cell includes a characteristic sub-band” includes the following meaning: the characteristic sub-band belongs to the characteristic cell.
  • the above sentence "the characteristic cell includes a characteristic sub-band” includes the following meaning: the characteristic sub-band belongs to a carrier corresponding to the characteristic cell.
  • the characteristic cell includes a characteristic sub-band
  • the characteristic sub-band is used for the characteristic cell.
  • the characteristic sub-band is an active BWP of the characteristic cell.
  • the characteristic sub-band is an inactive (Inactive) BWP of the characteristic cell.
  • the characteristic sub-band is the initial (Initial) BWP of the characteristic cell.
  • the characteristic sub-band is the default BWP of the characteristic cell.
  • the characteristic sub-band includes a positive integer number of subcarriers greater than one.
  • the characteristic sub-band includes a positive integer multiple of 12 sub-carriers.
  • the characteristic subband includes more than one subcarrier, and the subcarrier spacing (SCS, Subcarrier Spacing) of any two subcarriers included in the characteristic subband is equal.
  • SCS Subcarrier Spacing
  • the second sub-carrier spacing is equal to a non-negative integer power of 2 of 15 kHz.
  • the second sub-carrier interval is equal to one of 15 kHz, 30 kHz, 60 kHz, and 120 kHz.
  • the second subcarrier interval is greater than the first subcarrier interval.
  • the second subcarrier interval is smaller than the first subcarrier interval.
  • Embodiment 17 illustrates a structural block diagram of a processing device in the first node device of an embodiment, as shown in FIG. 17.
  • the first node device processing apparatus 1700 includes a first processor 1701 and a first receiver 1702.
  • the first processor 1701 includes the transmitter/receiver 456 (including the antenna 460) shown in Figure 4 of the present application, the transmitting processor 455, the receiving processor 452, and the controller/processor 490;
  • the first receiver 1702 includes the present application
  • the transmitter/receiver 456 including the antenna 460
  • the first processor 1701 receives first information, the first information is used to determine a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same A cell group; the first receiver 1702 monitors the control signaling candidates included in the target control signaling candidate set, and the target control signaling candidate set includes a positive integer number of control signaling candidates; where the first sub The frequency band set includes a positive integer number of sub-bands, the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set, and the frequency domain resources occupied by the first control signaling candidate It belongs to a sub-band included in the first sub-band set; the first time window includes the time domain resources occupied by any one control signaling candidate included in the target control signaling candidate set; the scheduling cell set includes A positive integer number of serving cells, the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs belongs to the scheduling cell set; the sub-carriers included in any one of
  • the first processor 1701 receives second information; wherein, the second information is used to determine a configuration cell group, and the configuration cell group includes a positive integer greater than 1 serving cells; the target cell belongs to The configured cell group, the characteristic cell belongs to the configured cell group, and the characteristic cell is a primary cell in the configured cell group; the scheduled cell set includes those scheduled by a serving cell included in the scheduling cell set Serving cell, the scheduled cell set includes a positive integer number of serving cells; any one serving cell included in the scheduled cell set belongs to the configured cell group, and any one serving cell included in the scheduled cell set belongs to all The configuration cell group is described.
  • a target ratio value is used to determine the first threshold, the target ratio value is a positive number not greater than 1, and the target ratio value is equal to one of the first ratio value and the second ratio value
  • the first ratio value is equal to the ratio between the first sum value and the first characteristic and value
  • the second ratio value is equal to the ratio between the second sum value and the second characteristic and value
  • the first A sum value is a positive number
  • the first characteristic sum value is a positive number not less than the first sum value
  • the second sum value is a positive number
  • the second characteristic sum value is not less than the second sum value Positive number of the value, the first ratio value and the second ratio value are not equal
  • at least one of whether the scheduling cell set includes the target cell, and whether the characteristic cell and the target cell are the same is used
  • the target ratio value is determined from between the first ratio value and the second ratio value.
  • the first processor 1701 receives third information; wherein, the third information is used to determine a first cell subset and a second cell subset, and the first cell subset includes a positive integer number of services
  • the second cell subset includes a positive integer number of serving cells; the number of serving cells belonging to the first cell subset included in the scheduled cell set in this application is equal to the first number.
  • the number of serving cells belonging to the second cell subset included in the scheduled cell set is equal to the second number; the first feature and value in this application and the second cell subset included
  • the number of serving cells is linearly related to the product of the first factor, and the first feature sum value is linearly related to the number of serving cells included in the first cell subset; the first sum value and the second number
  • the first factor is linearly related to the product of the first factor, and the first sum value is linearly related to the first number; the first factor is configurable, or the first factor is predefined.
  • the first feature sum value in this application is equal to the number of serving cells included in the configuration cell group in this application; the first sum value in this application is equal to all the serving cells in this application. The number of serving cells included in the scheduled cell set.
  • the second sum value in this application is equal to the first sum value in this application, and the first feature sum value in this application is the same as the second feature sum in this application.
  • the values are not equal; the difference between the second characteristic sum value and the first characteristic sum value is predefined, or the difference between the second characteristic sum value and the first characteristic sum value It is configurable.
  • the first processor 1701 receives fourth information; wherein, the fourth information is used to determine a second factor, the second factor is a positive number less than 1, and the second factor is used for Determine the second sum value in this application, the second sum value in this application and the first sum value in this application are not equal, the second feature and value in this application are the same as this application The first feature and value in are equal.
  • the fourth information in this application is used to determine the first monitoring times and the sum of the monitoring times, where the first monitoring times are equal to the target cell in this application and are used for scheduling in this application
  • the number of monitoring times of the control signaling candidates of the characteristic cell, and the sum of the monitoring times is equal to the total number of monitoring times used to schedule the control signaling candidates of the characteristic cell; the second factor in this application It is linearly related to the ratio between the first monitoring times and the sum of the monitoring times.
  • the first subcarrier interval is one of the X candidate subcarrier intervals, where X is a positive integer greater than 1, and the X candidate subcarrier intervals are each one One corresponds to X candidate parameters, each of the X candidate parameters is a positive integer; the first parameter is the candidate corresponding to the first subcarrier interval in the X candidate parameters Parameter, the first threshold is equal to a rounded down value of a target value, and the first parameter is used to determine the target value.
  • the characteristic cell includes a characteristic sub-band
  • the characteristic sub-band includes a positive integer number of sub-carriers
  • the sub-carrier interval of any one sub-carrier included in the characteristic sub-band is equal to the second sub-carrier interval
  • the The first subcarrier interval and the second subcarrier interval are not equal.
  • the first processor 1701 sends fifth information; wherein, the fifth information is used to indicate a first capability parameter, and the first capability parameter is a positive integer; the first capability parameter is used to determine The first threshold.
  • Embodiment 18 illustrates a structural block diagram of a processing device in a second node device of an embodiment, as shown in FIG. 18.
  • the second node device processing apparatus 1800 includes a second processor 1801 and a first transmitter 1802.
  • the second processor 1801 includes the transmitter/receiver 416 (including the antenna 460), the receiving processor 412, the transmitting processor 415, and the controller/processor 440 in Figure 4 of the present application;
  • the first transmitter 1802 includes the present application
  • the transmitter/receiver 416 including the antenna 460
  • the transmission processor 415 and the controller/processor 440 in FIG. 4 are shown.
  • the second processor 1801 sends first information, the first information is used to indicate a target cell, the target cell is used to schedule a characteristic cell, and the characteristic cell and the target cell belong to the same A cell group; the first transmitter 1802 determines the control signaling candidates included in the target control signaling candidate set, and the target control signaling candidate set includes a positive integer number of control signaling candidates; where the first sub The frequency band set includes a positive integer number of sub-bands, the first control signaling candidate is a control signaling candidate included in the target control signaling candidate set, and the frequency domain resources occupied by the first control signaling candidate It belongs to a sub-band included in the first sub-band set; the first time window includes the time domain resources occupied by any one control signaling candidate included in the target control signaling candidate set; the scheduling cell set includes A positive integer number of serving cells, the serving cell to which any one of the sub-bands included in the first set of sub-bands belongs belongs to the scheduling cell set; the sub-carriers included in any one of
  • the second processor 1801 sends second information; wherein, the second information is used to indicate a configuration cell group, and the configuration cell group includes a positive integer greater than 1 serving cells; the target cell belongs to The configured cell group, the characteristic cell belongs to the configured cell group, and the characteristic cell is a primary cell in the configured cell group; the scheduled cell set includes those scheduled by a serving cell included in the scheduling cell set Serving cell, the scheduled cell set includes a positive integer number of serving cells; any one serving cell included in the scheduled cell set belongs to the configured cell group, and any one serving cell included in the scheduled cell set belongs to all The configuration cell group is described.
  • a target ratio value is used to determine the first threshold, the target ratio value is a positive number not greater than 1, and the target ratio value is equal to one of the first ratio value and the second ratio value
  • the first ratio value is equal to the ratio between the first sum value and the first characteristic and value
  • the second ratio value is equal to the ratio between the second sum value and the second characteristic and value
  • the first A sum value is a positive number
  • the first characteristic sum value is a positive number not less than the first sum value
  • the second sum value is a positive number
  • the second characteristic sum value is not less than the second sum value Positive number of the value, the first ratio value and the second ratio value are not equal
  • at least one of whether the scheduling cell set includes the target cell, and whether the characteristic cell and the target cell are the same is used
  • the target ratio value is determined from between the first ratio value and the second ratio value.
  • the second processor 1801 sends third information; wherein, the third information is used to indicate the first cell subset and the second cell subset, and the first cell subset includes a positive integer number of services.
  • the second cell subset includes a positive integer number of serving cells; the number of serving cells belonging to the first cell subset included in the scheduled cell set in this application is equal to the first number.
  • the number of serving cells belonging to the second cell subset included in the scheduled cell set is equal to the second number; the first feature and value in this application and the second cell subset included The number of serving cells is linearly related to the product of the first factor, and the first feature and value in this application is linearly related to the number of serving cells included in the first cell subset; the first in this application The sum value and the second quantity are linearly related to the product of the first factor, and the first sum value in this application is linearly related to the first quantity; the first factor is configurable, or The first factor is predefined.
  • the first feature sum value in this application is equal to the number of serving cells included in the configuration cell group in this application; the first sum value in this application is equal to all the serving cells in this application. The number of serving cells included in the scheduled cell set.
  • the second sum value in this application is equal to the first sum value in this application, and the first feature sum value in this application is the same as the second feature sum in this application.
  • the values are not equal; the difference between the second feature and value in this application and the first feature and value in this application is predefined, or the second feature and value in this application is The difference between the first feature and the value in this application is configurable.
  • the second processor 1801 sends fourth information; wherein, the fourth information is used to indicate a second factor, the second factor is a positive number less than 1, and the second factor is used for Determine the second sum value in this application, the second sum value in this application and the first sum value in this application are not equal, the second feature and value in this application are the same as this application The first feature and value in are equal.
  • the fourth information in this application is used to indicate the first monitoring times and the sum of the monitoring times, and the first monitoring times are equal to the target cell in this application and are used for scheduling in this application.
  • the number of monitoring times for the control signaling candidates of the characteristic cell, and the sum of the monitoring times is equal to the total number of monitoring times used for scheduling the control signaling candidates of the characteristic cell in this application; the second factor It is linearly related to the ratio between the first monitoring times and the sum of the monitoring times.
  • the first subcarrier interval is one of the X candidate subcarrier intervals, where X is a positive integer greater than 1, and the X candidate subcarrier intervals are each one One corresponds to X candidate parameters, each of the X candidate parameters is a positive integer; the first parameter is the candidate corresponding to the first subcarrier interval in the X candidate parameters Parameter, the first threshold is equal to a rounded down value of a target value, and the first parameter is used to determine the target value.
  • the characteristic cell includes a characteristic sub-band
  • the characteristic sub-band includes a positive integer number of sub-carriers
  • the sub-carrier interval of any one sub-carrier included in the characteristic sub-band is equal to the second sub-carrier interval
  • the The first subcarrier interval and the second subcarrier interval are not equal.
  • the second processor 1801 receives fifth information; wherein, the fifth information is used to indicate a first capability parameter, and the first capability parameter is a positive integer; the first capability parameter is used to determine The first threshold.
  • each module unit in the above-mentioned embodiment can be realized in the form of hardware or software function module, and this application is not limited to the combination of software and hardware in any specific form.
  • the first node device or second node device or UE or terminal in this application includes, but is not limited to, mobile phones, tablets, notebooks, network cards, low-power devices, eMTC devices, NB-IoT devices, in-vehicle communication devices, aircraft, Airplanes, drones, remote control aircraft and other wireless communication equipment.
  • the base station equipment or base station or network side equipment in this application includes but not limited to macro cell base station, micro cell base station, home base station, relay base station, eNB, gNB, transmission and receiving node TRP, relay satellite, satellite base station, air base station, etc. Wireless communication equipment.

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Abstract

本申请公开了一种用于无线通信的节点中的方法和装置。节点接收第一信息并监测目标控制信令备选集合中的控制信令备选;所述第一信息确定目标小区,所述目标小区调度特征小区;第一控制信令备选在频域属于所述第一子频带集合中的子频带;第一时间窗在时域包括控制信令备选;所述第一子频带集合所包括的子频带所属的服务小区属于调度小区集合;所述第一子频带集合所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗;控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值。本申请提高调度信道性能。

Description

一种被用于无线通信的节点中的方法和装置 技术领域
本申请涉及无线通信系统中的传输方法和装置,尤其涉及无线通信中的多载波的传输方案和装置。
背景技术
未来无线通信系统的应用场景越来越多元化,不同的应用场景对系统提出了不同的性能要求。为了满足多种应用场景的不同的性能需求,在3GPP(3rd Generation Partner Project,第三代合作伙伴项目)RAN(Radio Access Network,无线接入网)#72次全会上决定对新空口技术(NR,New Radio)(或5G)进行研究,在3GPP RAN#75次全会上通过了新空口技术(NR,New Radio)的WI(Work Item,工作项目),开始对NR进行标准化工作。
为了能够适应多样的应用场景和满足不同的需求,在3GPP RAN#85次全会上还通过了NR下的动态频谱共享(Dynamic spectrum sharing,DSS)的WI和多空口双连接(Multi-Radio Dual-Connectivity,MR-DC)增强的WI用来支持更加灵活和高效的多载波通信。
发明内容
在多载波通信过程,比如载波聚合(CA,Carrier Aggregation)中,支持跨载波调度(Cross Carrier Scheduling)。在现有标准支持的网络中,比如R16及以前版本的LTE(Long Term Evolution,长时演进)和NR(New Radio,新空口),对于主载波(Primary Component Carrier,PCC)或者主小区(Primary Cell,Pcell)中的数据传输,只支持本载波的自调度,而不支持辅载波(Secondary Component Carrier,SCC)或者辅小区(Secondary Cell,Scell)作为调度载波的跨载波调度。在R17版本中的动态频谱共享的WI中决定支持辅载波对主载波的跨载波调度。
针对支持多载波传输的网络中的调度的问题,本申请公开了一种解决方案。需要说明的是,在本申请的的描述中,只是采用动态频谱共享作为一个典型应用场景或者例子;本申请也同样适用于面临相似问题的动态频谱共享之外的其它场景(比如其它多载波传输或者多信道传输,或者其它的对数据调度有特定要求的网络中),也可以取得类似动态频谱共享场景中的技术效果。此外,不同场景(包括但不限于动态频谱共享和多载波传输的场景)采用统一解决方案还有助于降低硬件复杂度和成本。在不冲突的情况下,本申请的第一节点设备中的实施例和实施例中的特征可以应用到第二节点设备中,反之亦然。特别的,对本申请中的术语(Terminology)、名词、函数、变量的解释(如果未加特别说明)可以参考3GPP的规范协议TS36系列、TS38系列、TS37系列中的定义。
本申请公开了一种用于无线通信中的第一节点中的方法,其特征在于,包括:
接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,根据所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,从而保证了当存在多个服务小区都可以调度一个服务小区的时 候,用户设备对PDCCH备选(Candidate)的监测次数不会超过用户设备的最大的盲检测的能力,保证了用户设备对PDCCH的正确接收。
作为一个实施例,根据所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,从而根据是否存在多个服务小区调度一个服务小区来设置用户设备对PDCCH备选(Candidate)的监测次数的最大值,在用户设备对PDCCH备选的监测次数不超过用户设备的最大的盲检测的能力情况下,不会过分限制了用户设备的最大监测次数,在保证了用户设备对PDCCH的正确接收的同时尽量降低PDCCH的阻塞概率(Blocking Probability),提高了PDCCH的传输性能。
根据本申请的一个方面,上述方法的特征在于,还包括:
接收第二信息;
其中,所述第二信息被用于确定配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
根据本申请的一个方面,上述方法的特征在于,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
根据本申请的一个方面,上述方法的特征在于,还包括:
接收第三信息;
其中,所述第三信息被用于确定第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
作为一个实施例,将所述被调度小区集合所包括的服务小区分为所述第一小区子集所包括的服务小区和所述第二小区子集所包括的服务小区,从而在存在多个服务小区调度一个服务小区时,在设置用户设备对PDCCH备选(Candidate)的监测次数的最大值时同时考虑每个服务小区的多个传输发射点(TRP,Transmit Receive Point)或者多个面板(Panel)的能力,从而保证了存在服务小区支持多个传输发射点(TRP,Transmit Receive Point)或者多个面板(Pannel)的能力时的PDCCH的正确接收。
根据本申请的一个方面,上述方法的特征在于,所述第一特征和值等于所述配置小区组所包括的服务小区的数量;所述第一和值等于所述被调度小区集合所包括的服务小区的数量。
根据本申请的一个方面,上述方法的特征在于,所述第二和值和所述第一和值相等,所述第一特征和值和所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
作为一个实施例,所述第二和值和所述第一和值相等并且所述第二特征和值和所述第一特征和值之间的差值是预定义的或可配置的,从而使得用户设备对PDCCH备选的监测能力的分布可以随着是否存在多个服务小区调度一个服务小区而变化,在保证了用户设备对PDCCH的正确接收的同时简化了PDCCH的设计,并且可以保证不同的应用场景复用相同的设计。
根据本申请的一个方面,上述方法的特征在于,还包括:
接收第四信息;
其中,所述第四信息被用于确定第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定所述第二和值,所述第二和值和所述第一和值不相等,所述第二特征和值和所述第一特征和值相等。
根据本申请的一个方面,上述方法的特征在于,所述第四信息被用于确定第一监测次数和监测次数总和,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
作为一个实施例,将所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关,保证了所分布的PDCCH盲检测的能力和所需求的PDCCH备选的数量相匹配,在保证PDCCH的正确接收的同时,实现的PDCCH的负载匹配,进一步降低了PDCCH的阻塞概率,提高了PDCCH的传输性能。
根据本申请的一个方面,上述方法的特征在于,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
根据本申请的一个方面,上述方法的特征在于,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
根据本申请的一个方面,上述方法的特征在于,还包括:
发送第五信息;
其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
本申请公开了一种用于无线通信中的第二节点中的方法,其特征在于,包括:
发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
根据本申请的一个方面,上述方法的特征在于,还包括:
发送第二信息;
其中,所述第二信息被用于指示配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
根据本申请的一个方面,上述方法的特征在于,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比 例值之间确定所述目标比例值。
根据本申请的一个方面,上述方法的特征在于,还包括:
发送第三信息;
其中,所述第三信息被用于指示第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
根据本申请的一个方面,上述方法的特征在于,所述第一特征和值等于所述配置小区组所包括的服务小区的数量;所述第一和值等于所述被调度小区集合所包括的服务小区的数量。
根据本申请的一个方面,上述方法的特征在于,所述第二和值和所述第一和值相等,所述第一特征和值和所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
根据本申请的一个方面,上述方法的特征在于,还包括:
发送第四信息;
其中,所述第四信息被用于指示第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定所述第二和值,所述第二和值和所述第一和值不相等,所述第二特征和值和所述第一特征和值相等。
根据本申请的一个方面,上述方法的特征在于,所述第四信息被用于指示第一监测次数和监测次数总和,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
根据本申请的一个方面,上述方法的特征在于,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
根据本申请的一个方面,上述方法的特征在于,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
根据本申请的一个方面,上述方法的特征在于,还包括:
接收第五信息;
其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
本申请公开了一种用于无线通信中的第一节点设备,其特征在于,包括:
第一处理机,接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
第一接收机,监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区 和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
本申请公开了一种用于无线通信中的第二节点设备,其特征在于,包括:
第二处理机,发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
第一发射机,确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,本申请中的方法具备如下优势:
-.采用本申请中的方法,保证了当存在多个服务小区都可以调度一个服务小区的时候,用户设备对PDCCH备选(Candidate)的监测次数不会超过用户设备的最大的盲检测的能力,保证了用户设备对PDCCH的正确接收。
-.本申请中的方法根据是否存在多个服务小区调度一个服务小区来设置用户设备对PDCCH备选(Candidate)的监测次数的最大值,在用户设备对PDCCH备选的监测次数不超过用户设备的最大的盲检测的能力情况下,不会过分限制了用户设备的最大监测次数,在保证了用户设备对PDCCH的正确接收的同时尽量降低PDCCH的阻塞概率(Blocking Probability),提高了PDCCH的传输性能。
-.采用本申请中的方法,在存在多个服务小区调度一个服务小区时,在设置用户设备对PDCCH备选(Candidate)的监测次数的最大值时同时考虑每个服务小区的多个传输发射点(TRP,Transmit Receive Point)或者多个面板(Pannel)的能力,从而保证了存在服务小区支持多个传输发射点(TRP,Transmit Receive Point)或者多个面板(Pannel)的能力时的PDCCH的正确接收。
-.采用本申请中的方法,使得用户设备对PDCCH备选的监测能力的分布可以随着是否存在多个服务小区调度一个服务小区而变化,在保证了用户设备对PDCCH的正确接收的同时简化了PDCCH的设计,并且可以保证不同的应用场景复用相同的设计。
-.本申请中的方法保证了所分布的PDCCH盲检测的能力和所需求的PDCCH备选的数量相匹配,在保证PDCCH的正确接收的同时,实现的PDCCH的负载匹配,进一步降低了PDCCH的阻塞概率,提高了PDCCH的传输性能。
附图说明
通过阅读参照以下附图中的对非限制性实施例所作的详细描述,本申请的其它特征、目的和优点将会变得更加明显:
图1示出了根据本申请的一个实施例的第一信息和目标控制信令备选集合所包括的控制信令备选的流程图;
图2示出了根据本申请的一个实施例的网络架构的示意图;
图3示出了根据本申请的一个实施例的用户平面和控制平面的无线协议架构的示意图;
图4示出了根据本申请的一个实施例的第一节点设备和第二节点设备的示意图;
图5示出了根据本申请的一个实施例的无线信号传输流程图;
图6示出了根据本申请的另一个实施例的无线信号传输流程图;
图7示出了根据本申请的另一个实施例的无线信号传输流程图;
图8示出了根据本申请的一个实施例的调度小区集合和被调度小区集合之间的关系的示意图;
图9示出了根据本申请的一个实施例的目标比例值的示意图;
图10示出了根据本申请的一个实施例的第一小区子集和第二小区子集之间的关系的示意图;
图11示出了根据本申请的一个实施例的第一特征和值和第一和值的示意图;
图12示出了根据本申请的一个实施例的第一特征和值和第二特征和值之间的关系的示意图;
图13示出了根据本申请的一个实施例的第二因子和第二和值之间的关系的示意图;
图14示出了根据本申请的一个实施例的第二因子的示意图;
图15示出了根据本申请的一个实施例的第一参数和第一子载波间隔之间的关系的示意图;
图16示出了根据本申请的一个实施例的第一子载波间隔和第二子载波间隔之间的关系的示意图;
图17示出了根据本申请的一个实施例的第一节点设备中的处理装置的结构框图;
图18示出了根据本申请的一个实施例的第二节点设备中的处理装置的结构框图。
具体实施方式
下文将结合附图对本申请的技术方案作进一步详细说明,需要说明的是,在不冲突的情况下,本申请的实施例和实施例中的特征可以任意相互组合。
实施例1
实施例1示例了根据本申请的一个实施例的第一信息和目标控制信令备选集合所包括的控制信令备选的流程图,如附图1所示。在附图1中,每个方框代表一个步骤,特别需要强调的是图中的各个方框的顺序并不代表所表示的步骤之间在时间上的先后关系。
在实施例1中,本申请中的第一节点设备在步骤101中接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;本申请中的第一节点设备在步骤102中监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,所述第一信息通过空中接口传输。
作为一个实施例,所述第一信息通过无线接口传输。
作为一个实施例,所述第一信息通过高层信令传输。
作为一个实施例,所述第一信息通过物理层信令传输。
作为一个实施例,所述第一信息包括了一个高层信令中的全部或部分。
作为一个实施例,所述第一信息包括了一个物理层信令中的全部或部分。
作为一个实施例,所述第一信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的全部或部分IE(Information Element,信息单元)。
作为一个实施例,所述第一信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的一个IE(Information Element,信息单元)中的全部或部分域(Field)。
作为一个实施例,所述第一信息包括了一个MAC(Medium Access Control,媒体接入控制)层信令中的全部或部分。
作为一个实施例,所述第一信息包括了一个系统信息块(SIB,System Information Block)中的全部或部分。
作为一个实施例,所述第一信息通过一个DL-SCH(Downlink Shared Channel,下行共享信道)传输。
作为一个实施例,所述第一信息通过一个PDSCH(Physical Downlink Shared Channel,物理下行共享信道)传输。
作为一个实施例,所述第一信息是小区特定的(Cell Specific)。
作为一个实施例,所述第一信息是用户设备特定的(UE-specific)。
作为一个实施例,所述第一信息是载波特有的(Carrier Specific)。
作为一个实施例,所述第一信息是每载波(Per Carrier)配置的。
作为一个实施例,所述第一信息是服务小区特有的(Serving Cell Specific)。
作为一个实施例,所述第一信息是每服务小区(Per Serving Cell)配置的。
作为一个实施例,所述第一信息包括一个DCI(Downlink Control Information)信令的全部或部分域(Field)。
作为一个实施例,所述第一信息属于一个RRC信令中的IE(Information Element,信息单元)“CrossCarrierSchedulingConfig”。
作为一个实施例,所述第一信息属于一个RRC信令中的IE(Information Element,信息单元)“ServingCellConfig”。
作为一个实施例,所述第一信息属于一个配置主小区(Primary Cell,Pcell)的RRC信令中的IE(Information Element,信息单元)“CrossCarrierSchedulingConfig”。
作为一个实施例,所述第一信息属于一个配置主小区(Primary Cell,Pcell)的RRC信令中的IE(Information Element,信息单元)“ServingCellConfig”。
作为一个实施例,所述第一信息包括一个RRC信令中的IE(Information Element,信息单元)“CrossCarrierSchedulingConfig”中的域(Field)“schedulingCellId”。
作为一个实施例,所述第一信息包括一个配置主小区(Primary Cell,Pcell)的RRC信令中的IE(Information Element,信息单元)“CrossCarrierSchedulingConfig”中的域(Field)“schedulingCellId”。
作为一个实施例,所述第一信息包括一个RRC信令中的IE(Information Element,信息单元)“CrossCarrierSchedulingConfig”中的域(Field)“schedulingCellInfo”。
作为一个实施例,所述第一信息包括一个RRC信令中的IE(Information Element,信息单元)“CrossCarrierSchedulingConfig”中的域(Field)“schedulingCellInfo”中的选择(CHOICE)“own”或者“other”。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被本申请中的所述第一节点设备用于确定所述目标小区。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于显式地指示所述目标小区。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于隐式地指示所述目标小区。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于间接地指示所述目标小区。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于指示所述目标小区的服务小区索引(Serving Cell Index,ServCellIndex)。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于指示所述目标小区和所述特征小区是否相同。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于指示所述目标小区和携带所述第一信息的信号所占用的频域资源所属服务小区是否相同。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于指示所述目标小区和所述特征小区是否相同;当所述目标小区和所述特征小区不相同时,所述第一信息还被用于指示所述目标小区的服务小区索引(Serving Cell Index)。
作为一个实施例,上述句子“所述第一信息被用于确定目标小区”包括以下含义:所述第一信息被用于指示所述目标小区和携带所述第一信息的信号所占用的频域资源所属的服务小区是否相同;当所述目标小区和携带所述第一信息的信号所占用的频域资源所属的服务小区不相同时,所述第一信息还被用于指示所述目标小区的服务小区索引(Serving Cell Index)。
作为一个实施例,一个服务小区调度另一个服务小区是指一个服务小区上传输的PDCCH(Physical  Downlink Control Channel,物理下行控制信道)调度另一个服务小区上的信号。
作为一个实施例,一个服务小区调度另一个服务小区是指一个服务小区上传输的PDCCH(Physical Downlink Control Channel,物理下行控制信道)调度另一个服务小区。
作为一个实施例,所述目标小区是一个服务小区(Serving Cell)。
作为一个实施例,所述目标小区对应一个组成载波(Component Carrier,CC)。
作为一个实施例,所述目标小区是载波聚合(CA,Carrier Aggregation)中的一个组成载波(Component Carrier)所对应的服务小区。
作为一个实施例,所述目标小区是载波聚合(CA,Carrier Aggregation)中的MCG(Master Cell Group,主小区组)中的一个服务小区(Serving Cell)。
作为一个实施例,所述目标小区是载波聚合(CA,Carrier Aggregation)中的SCG(Secondary Cell Group,辅小区组)中的一个服务小区(Serving Cell)。
作为一个实施例,所述目标小区是载波聚合(CA,Carrier Aggregation)中的MCG(Master Cell Group,主小区组)中的一个组成载波(Component Carrier)所对应的服务小区(Serving Cell)。
作为一个实施例,所述目标小区是载波聚合(CA,Carrier Aggregation)中的SCG(Secondary Cell Group,辅小区组)中的一个组成载波(Component Carrier)所对应的服务小区(Serving Cell)。
作为一个实施例,所述目标小区是主载波(Primary Component Carrier,PCC)所对应的服务小区(Serving Cell)。
作为一个实施例,所述目标小区是主小区(Primary Cell,Pcell)。
作为一个实施例,所述目标小区是特殊小区(Special Cell,Spcell)。
作为一个实施例,所述目标小区是辅载波(Secondary Component Carrier,SCC)所对应的服务小区(Serving Cell)。
作为一个实施例,所述目标小区是辅小区(Secondary Cell,Scell)。
作为一个实施例,所述特征小区是一个服务小区(Serving Cell)。
作为一个实施例,所述特征小区对应一个组成载波(Component Carrier,CC)。
作为一个实施例,所述特征小区是载波聚合(CA,Carrier Aggregation)中的一个组成载波(Component Carrier)所对应的服务小区。
作为一个实施例,所述特征小区是载波聚合(CA,Carrier Aggregation)中的MCG(Master Cell Group,主小区组)中的一个服务小区(Serving Cell)。
作为一个实施例,所述特征小区是载波聚合(CA,Carrier Aggregation)中的SCG(Secondary Cell Group,辅小区组)中的一个服务小区(Serving Cell)。
作为一个实施例,所述特征小区是载波聚合(CA,Carrier Aggregation)中的MCG(Master Cell Group,主小区组)中的一个组成载波(Component Carrier)所对应的服务小区(Serving Cell)。
作为一个实施例,所述特征小区是载波聚合(CA,Carrier Aggregation)中的SCG(Secondary Cell Group,辅小区组)中的一个组成载波(Component Carrier)所对应的服务小区(Serving Cell)。
作为一个实施例,所述特征小区是主载波(Primary Component Carrier,PCC)所对应的服务小区(Serving Cell)。
作为一个实施例,所述特征小区是主小区(Primary Cell,Pcell)。
作为一个实施例,所述特征小区是特殊小区(Special Cell,Spcell)。
作为一个实施例,所述特征小区是MCG中的主小区,或者所述特征小区是SCG中的主小区。
作为一个实施例,所述目标小区和所述特征小区相同。
作为一个实施例,所述目标小区和所述特征小区不相同。
作为一个实施例,携带所述第一信息的信号所占用的频域资源所属的服务小区和所述特征小区相同。
作为一个实施例,携带所述第一信息的信号所占用的频域资源所属的服务小区和所述特征小区不相同。
作为一个实施例,上述句子“所述目标小区被用于调度特征小区”包括以下含义:在所述目标小区上传输的PDCCH被用于调度所述特征小区上传输的信号。
作为一个实施例,上述句子“所述目标小区被用于调度特征小区”包括以下含义:当所述目标小区和 所述特征相同时,在所述目标小区上传输的PDCCH被用于自调度(Self-Schedule)所述特征小区上传输的信号;当所述目标小区和所述特征不相同时,在所述目标小区上传输的PDCCH被用于跨载波调度(Cross-Schedule)所述特征小区上传输的信号。
作为一个实施例,上述句子“所述目标小区被用于调度特征小区”包括以下含义:所述目标小区是所述特征小区的调度小区(Scheduling Cell)。
作为一个实施例,上述句子“所述目标小区被用于调度特征小区”包括以下含义:所述特征小区是所述目标小区的被调度小区(Scheduled Cell)。
作为一个实施例,所述特征小区和所述目标小区所属于的小区组是MCG。
作为一个实施例,所述特征小区和所述目标小区所属于的小区组是SCG。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)是通过对所述目标控制信令备选集合所包括的控制信令备选的解码(Decoding)实现的。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)是通过对所述目标控制信令备选集合所包括的控制信令备选的盲解码(Blind Decoding)实现的。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)是通过对所述目标控制信令备选集合所包括的控制信令备选的解码(decoding)和CRC校验实现的。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)是通过对所述目标控制信令备选集合所包括的控制信令备选的解码(decoding)和RNTI(Radio Network Temporary Identity,无线网络临时标识)加扰的CRC校验实现的。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)是基于所监测的DCI(Downlink Control Information)格式(Format(s))对所述目标控制信令备选集合所包括的控制信令备选的解码(Decoding)实现的。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)是基于所监测的DCI(Downlink Control Information)一个或多个格式(Format(s))对所述目标控制信令备选集合所包括的每个控制信令备选的解码(Decoding)实现的。
作为一个实施例,所述目标控制信令备选集合仅包括一个控制信令备选。
作为一个实施例,所述目标控制信令备选集合包括多于1个控制信令备选。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选占用正整数个CCE(Control Channel Element,控制信道单元)。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选占用正整数个在时频域的资源单元(RE,Resource Element)。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选在时频域占用时频资源。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选是物理下行控制信道(PDCCH,Physical Downlink Control Channel)备选(Candidate)。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选是监测的物理下行控制信道备选(Monitored PDCCH Candidate)。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选是采用一个DCI格式的物理下行控制信道(PDCCH,Physical Downlink Control Channel)备选(Candidate)。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选是可能携带特定的格式的DCI的时频资源集合。
作为一个实施例,当所述目标控制信令备选集合包括多于1个控制信令备选时,所述目标控制信令备选集合包括两个占用相同时频资源的控制信令备选。
作为一个实施例,当所述目标控制信令备选集合包括多于1个控制信令备选时,所述目标控制信令备选集合所包括任意两个控制信令备选所占用的时频资源不相同。
作为一个实施例,所述第一子频带集合仅包括1个子频带。
作为一个实施例,所述第一子频带集合包括多于1个子频带。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是带宽部分(BWP,Bandwidth Part)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是活跃的下行带宽部分(Active DL BWP,Active Downlink Bandwidth Part)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是在一个载波(Carrier)带宽中的具有相同的数理结构(Numerology)的连续的频域资源。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是在一个载波(Carrier)带宽中的具有相同的数理结构(Numerology)的频域连续的子载波(Subcarrier)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是在一个给定的载波(Carrier)上的对于给定的数理结构(Numerology)的包括连续的公共资源块(CRB,Common Resource Blocks)的公共资源块子集(Subset)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带所属的服务小区是所述第一子频带集合所包括的任意一个子频带所属的载波(Carrier)所对应的服务小区。
作为一个实施例,当所述第一子频带集合包括多于1个子频带时,所述第一子频带集合所包括的任意两个子频带分别属于两个不同的载波(Carrier)。
作为一个实施例,当所述第一子频带集合包括多于1个子频带时,所述第一子频带集合所包括的任意两个子频带分别属于两个不同的服务小区(Serving Cell)。
作为一个实施例,当所述第一子频带集合包括多于1个子频带时,所述第一子频带集合存在两个子频带分别属于相同的载波(Carrier)。
作为一个实施例,当所述第一子频带集合包括多于1个子频带时,所述第一子频带集合存在两个子频带分别属于相同的服务小区(Serving Cell)。
作为一个实施例,所述第一控制信令备选可以是所述目标控制信令备选集合所包括的任意一个控制信令备选。
作为一个实施例,所述第一控制信令备选是所述目标控制信令备选集合所包括的一个给定的控制信令备选。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个频带。
作为一个实施例,所述第一子频带集合所包括的一个频带包括所述目标控制信令备选集合所包括的一个控制信令备选所占用的频域资源。
作为一个实施例,所述第一子频带集合包括了所述目标控制信令备选集合中的所有的控制信令备选所占用的频域资源。
作为一个实施例,所述第一子频带集合包括了一个子频带不包括所述目标控制信令备选集合中的任何一个控制信令备选所占用的频域资源。
作为一个实施例,所述第一子频带集合包括任一个子频带都包括所述目标控制信令备选集合中的一个控制信令备选所占用的频域资源。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是可配置的。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是通过IE(Information Element,信息单元)“BWP-Downlink”配置的。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带是IE(Information Element,信息单元)“downlinkBWP-ToAddModList”所指示的一个BWP。
作为一个实施例,所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源是通过信令“SearchSpace”配置的。
作为一个实施例,所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源是通过信令“ControlResourceSet”配置的。
作为一个实施例,所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源是通过信令“SearchSpace”和信令“ControlResourceSet”配置的。
作为一个实施例,还包括:
接收第六信息;
其中,所述第六信息被用于确定所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带中的子载波的子载波间隔。
作为一个实施例,还包括:
接收第七信息;
其中,所述第七信息被用于确定所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源。
接收第七信息;
其中,所述第七信息被用于确定所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源所属的所述第一子频带集合中的子频带。
作为一个实施例,还包括:
接收第六信息;
接收第七信息;
其中,所述第六信息被用于确定所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带所包括的子载波的子载波间隔,所述第七信息被用于在所述第一子频带集合中的子频带中确定所述目标控制信令备选集合中的每个控制信令备选所占用的频域资源。
作为一个实施例,所述第一时间窗是一个时隙(Slot)。
作为一个实施例,所述第一时间窗是所述第一子载波间隔所对应的一个时隙(Slot)。
作为一个实施例,所述第一时间窗包括正整数个时域连续的OFDM(Orthogonal Frequency Division Multiplexing,正交频分复用)符号(Symbol)。
作为一个实施例,所述第一时间窗包括对应所述第一子载波间隔的正整数个时域连续的OFDM(Orthogonal Frequency Division Multiplexing,正交频分复用)符号(Symbol)。
作为一个实施例,所述第一时间窗是一个跨度(Span)。
作为一个实施例,所述第一时间窗是所述第一子载波间隔所对应的一个跨度(Span)。
作为一个实施例,所述第一时间窗是两个PDCCH时机(Occasion)中的最早的OFDM符号之间的时间间隔长度最小的时间间隔。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源属于所述第一时间窗。
作为一个实施例,所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源是所述第一时间窗中的一部分。
作为一个实施例,所述调度小区集合仅包括一个服务小区(Serving Cell)。
作为一个实施例,所述调度小区集合包括多于1个服务小区(Serving Cell)。
作为一个实施例,所述调度小区集合所包括的任意一个服务小区是激活(Activated)的小区。
作为一个实施例,所述调度小区集合包括一个服务小区是非激活(Deactivated)的小区。
作为一个实施例,所述调度小区集合所包括的任意一个服务小区包括活跃(Active)的BWP。
作为一个实施例,所述调度小区集合包括一个服务小区包括非活跃(Non-active)的BWP。
作为一个实施例,所述调度小区集合所包括的服务小区的数量和所述第一子频带集合所包括的子频带的数量相等。
作为一个实施例,所述调度小区集合所包括的服务小区的数量和所述第一子频带集合所包括的子频带的数量不相等。
作为一个实施例,上述句子“所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合”包括以下含义:所述调度小区集合包括了所述第一子频带集合所包括的任意一个子频带所属的服务小区。
作为一个实施例,上述句子“所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合”包括以下含义:所述调度小区集合仅包括了所述第一子频带集合所包括的子频带所属的服务小区。
作为一个实施例,所述调度小区集合还包括了所述第一子频带集合所包括的子频带所属的服务小区之外的服务小区。
作为一个实施例,上述句子“所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合”包括以下含义:所述第一子频带集合包括M个子频带,所述调度小区集合包括M个服务小区,所述M个服务小区分别包括所述M个子频带,所述M是正整数。
作为一个实施例,上述句子“所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合”包括以下含义:所述第一子频带集合包括M个子频带,所述调度小区集合包括M个服务小区,所述M个子频带分别是所述M个服务小区的BWP,所述M是正整数。
作为一个实施例,上述句子“所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合”包括以下含义:所述第一子频带集合包括M个子频带,所述调度小区集合包括M个服务小区,所述M个子频带分别属于所述M个服务小区,所述M是正整数。
作为一个实施例,上述句子“所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合”包括以下含义:所述第一子频带集合所包括的任意一个子频带所属的载波(Carrier)所对应的服务小区属于所述调度小区集合。
作为一个实施例,当所述第一子频带集合包括多于1个子频带的时候,所述第一子频带集合中的任意两个子频带包括子载波间隔(Subcarrier Spacing,SCS)相等的子载波(Subcarrier)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带所包括的任意一个子载波的子载波间隔等于所述第一子载波间隔。
作为一个实施例,所述第一子频带集合包括多于1个子载波,所述第一子频带集合所包括的任意两个子载波的子载波间隔相等。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带包括正整数个子载波(Subcarrier)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带包括12的正整数倍的子载波(Subcarrier)。
作为一个实施例,所述第一子频带集合所包括的任意一个子频带包括正整数个物理资源块(PRB,Physical Resource Block)。
作为一个实施例,所述第一子载波间隔等于15kHz、30kHz、60kHz、120kHz、240kHz中之一。
作为一个实施例,上述句子“所述第一子载波间隔被用于确定所述第一时间窗的时间长度”包括以下含义:所述第一子载波间隔被本申请中的所述第一节点设备用于确定所述第一时间窗的时间长度。
作为一个实施例,上述句子“所述第一子载波间隔被用于确定所述第一时间窗的时间长度”包括以下含义:所述第一时间窗是一个时隙(Slot),所述第一子载波间隔被用于确定一个子帧(Subframe)中所包括的时隙的数量,所述第一时间窗的时间长度等于一个子帧的长度和一个子帧中所包括的时隙的数量的比值。
作为一个实施例,上述句子“所述第一子载波间隔被用于确定所述第一时间窗的时间长度”包括以下含义:所述第一子载波间隔被用于确定所述第一时间窗所包括的每个OFDM符号的时间长度。
作为一个实施例,上述句子“所述第一子载波间隔被用于确定所述第一时间窗的时间长度”包括以下含义:所述第一子载波间隔的配置(Configuration)索引(Index)被用于确定所述第一时间窗的时间长度。
作为一个实施例,上述句子“所述第一子载波间隔被用于确定所述第一时间窗的时间长度”包括以下含义:所述第一子载波间隔根据对应关系被用于确定所述第一时间窗的时间长度。
作为一个实施例,上述句子“所述第一子载波间隔被用于确定所述第一时间窗的时间长度”包括以下含义:所述第一子载波间隔根据表格对应关系被用于确定所述第一时间窗的时间长度。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测(Monitoring)次数等于所述目标控制信令备选集合所包括的控制信令备选的数量。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数大于所述目标控制信令备选集合所包括的控制信令备选的数量。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数小于所述目标控制信令备选集合所包括的控制信令备选的数量。
作为一个实施例,针对所述目标控制信令备选集合所包括的一个控制信令备选的可能的最大的监测次数等于所监测的DCI格式(Format)的数量。
作为一个实施例,针对所述目标控制信令备选集合所包括的一个控制信令备选的可能的最大的监测次数等于所监测的DCI格式(Format)所包括的不同的DCI负载尺寸(Payload Size)的数量。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的最大监测次数不小于所述目标控制信令备选集合所包括的控制信令备选的数量。
作为一个实施例,针对所述目标控制信令备选集合所包括的每个控制信令备选可以至少执行一次监测(Monitoring)。
作为一个实施例,所述目标控制信令备选集合所包括的一个控制信令备选的一次监测是对所述目标控制信令备选集合所包括的一个控制信令备选的一次解码(Decoding)。
作为一个实施例,所述目标控制信令备选集合所包括的一个控制信令备选的一次监测是根据一个给定的DCI格式对所述目标控制信令备选集合所包括的一个控制信令备选的一次解码(Decoding)。
作为一个实施例,所述目标控制信令备选集合所包括的一个控制信令备选的一次监测是根据一个给定的DCI负载尺寸(Payload Size)对所述目标控制信令备选集合所包括的一个控制信令备选的一次解码(Decoding)。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数可以等于0。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数可以大于0。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数大于0。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数大于或者等于0。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数是指针对所述目标控制信令备选集合所包括的每个控制信令备选的监测的次数的总和。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数是指所述目标控制信令备选集合所包括的控制信令备选的总的监测的次数。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数是指所述目标控制信令备选集合所包括的控制信令备选的最大的可能的监测次数。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数是指针对所述目标控制信令备选集合所包括的每个控制信令备选的监测的次数的最大可能值。
作为一个实施例,在执行所述目标控制信令备选集合所包括的控制信令备选的监测的过程中,本申请中的所述第一节点设备可以提前终止(Early Termination)。
作为一个实施例,在执行所述目标控制信令备选集合所包括的控制信令备选的监测的过程中,本申请中的所述第一节点设备只监测所述目标控制信令备选集合中的部分控制信令备选。
作为一个实施例,所述第一阈值可以等于0。
作为一个实施例,所述第一阈值大于0。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数小于所述第一阈值。
作为一个实施例,所述目标控制信令备选集合所包括的控制信令备选的监测次数等于所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区和所述特征小区和所述目标小区是否相同一起被用于确定所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区被用于确定所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述特征小区和所述目标小区是否相同被用于确定所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被本申请中的所述第一节点设备用于确定所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一根据判决条件被用于确定所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一根据对应关系被用于确定所述第一阈值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值的计算方法。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值的计算公式。
作为一个实施例,当本申请中的所述第一节点设备在所述目标控制信令备选集合所包括的控制信令备选中检测到控制信令,所述检测到的控制信令被用于调度所述特征小区。
作为一个实施例,当本申请中的所述第一节点设备在所述目标控制信令备选集合所包括的控制信令备选中检测到控制信令,所述检测到的控制信令被用于调度所述特征小区之外的小区。
作为一个实施例,“所述调度小区集合是否包括所述目标小区”包括以下含义:所述调度小区集合是否被用于调度所述特征小区。
作为一个实施例,“所述调度小区集合是否包括所述目标小区”包括以下含义:所述调度小区集合是否包括被用于调度所述特征小区的服务小区。
作为一个实施例,“所述调度小区集合是否包括所述目标小区”包括以下含义:所述调度小区集合是否被用于跨载波调度所述特征小区。
作为一个实施例,“所述特征小区和所述目标小区是否相同”包括以下含义:所述特征小区和所述目标小区是否是同一个服务小区。
作为一个实施例,“所述特征小区和所述目标小区是否相同”包括以下含义:所述第一节点设备是否支持跨载波调度主小区(Primary Cell,PCell)。
作为一个实施例,“所述特征小区和所述目标小区是否相同”包括以下含义:所述第一节点设备是否支持跨载波调度辅小区组中的主小区(Primary SCG Cell,PSCell)。
作为一个实施例,“所述特征小区和所述目标小区是否相同”包括以下含义:所述第一节点设备是否支持跨载波调度特殊小区(Special Cell,Spcell)。
实施例2
实施例2示例了根据本申请的一个网络架构的示意图,如附图2所示。附图2说明了5G NR,LTE(Long-Term Evolution,长期演进)及LTE-A(Long-Term Evolution Advanced,增强长期演进)系统的网络架构200的图。5G NR或LTE网络架构200可称为5GS(5G System)/EPS(Evolved Packet System,演进分组系统)200某种其它合适术语。5GS/EPS 200可包括一个或一个以上UE(User Equipment,用户设备)201,NG-RAN(下一代无线接入网络)202,5GC(5G Core Network,5G核心网)/EPC(Evolved Packet Core,演进分组核心)210,HSS(Home Subscriber Server,归属签约用户服务器)/UDM(Unified Data Management,统一数据管理)220和因特网服务230。5GS/EPS可与其它接入网络互连,但为了简单未展示这些实体/接口。如图所示,5GS/EPS提供包交换服务,然而所属领域的技术人员将容易了解,贯穿本申请呈现的各种概念可扩展到提供电路交换服务的网络或其它蜂窝网络。NG-RAN包括NR/演进节点B(gNB/eNB)203和其它gNB(eNB)204。gNB(eNB)203提供朝向UE201的用户和控制平面协议终止。gNB(eNB)203可经由Xn/X2接口(例如,回程)连接到其它gNB(eNB)204。gNB(eNB)203也可称为基站、基站收发台、无线电基站、无线电收发器、收发器功能、基本服务集合(BSS)、扩展服务集合(ESS)、TRP(发送接收节点)或某种其它合适术语。gNB(eNB)203为UE201提供对5GC/EPC210的接入点。UE201的实例包括蜂窝式电话、智能电话、会话起始协议(SIP)电话、 膝上型计算机、个人数字助理(PDA)、卫星无线电、非地面基站通信、卫星移动通信、全球定位系统、多媒体装置、视频装置、数字音频播放器(例如,MP3播放器)、相机、游戏控制台、无人机、飞行器、窄带物联网设备、机器类型通信设备、陆地交通工具、汽车、可穿戴设备,或任何其它类似功能装置。所属领域的技术人员也可将UE201称为移动台、订户台、移动单元、订户单元、无线单元、远程单元、移动装置、无线装置、无线通信装置、远程装置、移动订户台、接入终端、移动终端、无线终端、远程终端、手持机、用户代理、移动客户端、客户端或某个其它合适术语。gNB(eNB)203通过S1/NG接口连接到5GC/EPC210。5GC/EPC210包括MME(Mobility Management Entity,移动性管理实体)/AMF(Authentication Management Field,鉴权管理域)/SMF(Session Management Function,会话管理功能)211、其它MME/AMF/SMF214、S-GW(Service Gateway,服务网关)/UPF(User Plane Function,用户面功能)212以及P-GW(Packet Date Network Gateway,分组数据网络网关)/UPF213。MME/AMF/SMF211是处理UE201与5GC/EPC210之间的信令的控制节点。大体上,MME/AMF/SMF211提供承载和连接管理。所有用户IP(Internet Protocal,因特网协议)包是通过S-GW/UPF212传送,S-GW/UPF212自身连接到P-GW/UPF213。P-GW提供UE IP地址分配以及其它功能。P-GW/UPF213连接到因特网服务230。因特网服务230包括运营商对应因特网协议服务,具体可包括因特网、内联网、IMS(IP Multimedia Subsystem,IP多媒体子系统)和包交换串流服务。
作为一个实施例,所述UE201对应本申请中的所述第一节点设备。
作为一个实施例,所述UE201支持多载波传输。
作为一个实施例,所述UE201支持辅载波跨载波调度主载波的传输。
作为一个实施例,所述gNB(eNB)201对应本申请中的所述第二节点设备。
作为一个实施例,所述gNB(eNB)201支持多载波传输。
作为一个实施例,所述gNB(eNB)201支持辅载波跨载波调度主载波的传输。
实施例3
实施例3示出了根据本申请的一个用户平面和控制平面的无线协议架构的实施例的示意图,如附图3所示。图3是说明用于用户平面350和控制平面300的无线电协议架构的实施例的示意图,图3用三个层展示用于第一节点设备(UE或gNB)和第二节点设备(gNB或UE)的控制平面300的无线电协议架构:层1、层2和层3。层1(L1层)是最低层且实施各种PHY(物理层)信号处理功能。L1层在本文将称为PHY301。层2(L2层)305在PHY301之上,且负责通过PHY301在第一节点设备与第二节点设备之间的链路。L2层305包括MAC(Medium Access Control,媒体接入控制)子层302、RLC(Radio Link Control,无线链路层控制协议)子层303和PDCP(Packet Data Convergence Protocol,分组数据汇聚协议)子层304,这些子层终止于第二节点设备处。PDCP子层304提供不同无线电承载与逻辑信道之间的多路复用。PDCP子层304还提供通过加密数据包而提供安全性,以及提供第二节点设备之间的对第一节点设备的越区移动支持。RLC子层303提供上部层数据包的分段和重组装,丢失数据包的重新发射以及数据包的重排序以补偿由于HARQ造成的无序接收。MAC子层302提供逻辑与传输信道之间的多路复用。MAC子层302还负责在第一节点设备之间分配一个小区中的各种无线电资源(例如,资源块)。MAC子层302还负责HARQ操作。控制平面300中的层3(L3层)中的RRC(Radio Resource Control,无线电资源控制)子层306负责获得无线电资源(即,无线电承载)且使用第二节点设备与第一节点设备之间的RRC信令来配置下部层。用户平面350的无线电协议架构包括层1(L1层)和层2(L2层),在用户平面350中用于第一节点设备和第二节点设备的无线电协议架构对于物理层351,L2层355中的PDCP子层354,L2层355中的RLC子层353和L2层355中的MAC子层352来说和控制平面300中的对应层和子层大体上相同,但PDCP子层354还提供用于上部层数据包的标头压缩以减少无线电发射开销。用户平面350中的L2层355中还包括SDAP(Service Data Adaptation Protocol,服务数据适配协议)子层356,SDAP子层356负责QoS流和数据无线承载(DRB,Data Radio Bearer)之间的映射,以支持业务的多样性。虽然未图示,但第一节点设备可具有在L2层355之上的若干上部层,包括终止于网络侧上的P-GW处的网络层(例如,IP层)和终止于连接的另一端(例如,远端UE、服务器等等)处的应用层。
作为一个实施例,附图3中的无线协议架构适用于本申请中的所述第一节点设备。
作为一个实施例,附图3中的无线协议架构适用于本申请中的所述第二节点设备。
作为一个实施例,本申请中的所述第一信息生成于所述RRC306。
作为一个实施例,本申请中的所述第一信息生成于所述MAC302或者MAC352。
作为一个实施例,本申请中的所述第一信息生成于所述PHY301或者PHY351。
作为一个实施例,本申请中的所述第二信息生成于所述RRC306。
作为一个实施例,本申请中的所述第二信息生成于所述MAC302或者MAC352。
作为一个实施例,本申请中的所述第二信息生成于所述PHY301或者PHY351。
作为一个实施例,本申请中的所述第三信息生成于所述RRC306。
作为一个实施例,本申请中的所述第三信息生成于所述MAC302或者MAC352。
作为一个实施例,本申请中的所述第三信息生成于所述PHY301或者PHY351。
作为一个实施例,本申请中的所述第四信息生成于所述RRC306。
作为一个实施例,本申请中的所述第四信息生成于所述MAC302或者MAC352。
作为一个实施例,本申请中的所述第四信息生成于所述PHY301或者PHY351。
作为一个实施例,本申请中的所述第五信息生成于所述RRC306。
作为一个实施例,本申请中的所述第五信息生成于所述MAC302或者MAC352。
实施例4
实施例4示出了根据本申请的一个第一节点设备和第二节点设备的示意图,如附图4所示。
在第一节点设备(450)中可以包括控制器/处理器490,数据源/缓存器480,接收处理器452,发射器/接收器456和发射处理器455,发射器/接收器456包括天线460。
在第二节点设备(410)中可以包括控制器/处理器440,数据源/缓存器430,接收处理器412,发射器/接收器416和发射处理器415,发射器/接收器416包括天线420。
在DL(Downlink,下行)中,上层包,比如本申请中的第一信息、第二信息、第三信息和第四信息所包括的高层信息提供到控制器/处理器440。控制器/处理器440实施L2层及以上层的功能。在DL中,控制器/处理器440提供包头压缩、加密、包分段和重排序、逻辑与输送信道之间的多路复用,以及基于各种优先级量度对第一节点设备450的无线电资源分配。控制器/处理器440还负责HARQ操作、丢失包的重新发射,和到第一节点设备450的信令,比如本申请中的第一信息、第二信息、第三信息和第四信息所包括的高层信息均在控制器/处理器440中生成。发射处理器415实施用于L1层(即,物理层)的各种信号处理功能,包括编码、交织、加扰、调制、功率控制/分配、预编码和物理层控制信令生成等,比如本申请中的第一信息、第二信息、第三信息和第四信息的物理层信号的生成在发射处理器415完成,当目标控制信令备选集合中存在所包括的控制信令备选被用于传输控制信令时,所传输的控制信令的生成在发射处理器415完成。生成的调制符号分成并行流并将每一流映射到相应的多载波子载波和/或多载波符号,然后由发射处理器415经由发射器416映射到天线420以射频信号的形式发射出去。在接收端,每一接收器456通过其相应天线460接收射频信号,每一接收器456恢复调制到射频载波上的基带信息,且将基带信息提供到接收处理器452。接收处理器452实施L1层的各种信号接收处理功能。信号接收处理功能包括对本申请中的第一信息、第二信息、第三信息和第四信息的物理层信号的接收和目标控制信令备选集合所包括的控制信令备选的监测,通过多载波符号流中的多载波符号进行基于各种调制方案(例如,二元相移键控(BPSK)、正交相移键控(QPSK))的解调,随后解扰,解码和解交织以恢复在物理信道上由第二节点设备410发射的数据或者控制,随后将数据和控制信号提供到控制器/处理器490。控制器/处理器490负责L2层及以上层,控制器/处理器490对本申请中的第一信息、第二信息、第三信息和第四信息进行解读。控制器/处理器可与存储程序代码和数据的存储器480相关联。存储器480可称为计算机可读媒体。
在上行(UL)传输中,数据源/缓存器480用来提供高层数据到控制器/处理器490。数据源/缓存器480表示L2层和L2层之上的所有协议层,控制器/处理器490通过基于第二节点410的无线电资源分配提供标头压缩、加密、包分段和重排序以及逻辑与传输信道之间的多路复用,来实施用于用户平面和控制平面的L2层协议。控制器/处理器490还负责HARQ操作、丢失包的重新发射,和到第二节点410的信令, 本申请中的第五信息在控制器/处理器490生成。发射处理器455实施用于L1层(即,物理层)的各种信号发射处理功能,携带第五信息的物理层信号在发射处理器455生成。信号发射处理功能包括序列生成(对于由序列生成的信号)、编码和交织以促进UE450处的前向错误校正(FEC)以及基于各种调制方案(例如,二元相移键控(BPSK)、正交相移键控(QPSK))对基带信号进行调制(对于由比特块生成的信号),将序列生成的信号或者调制符号分成并行流并将每一流映射到相应的多载波子载波和/或多载波符号,然后由发射处理器455经由发射器456映射到天线460以射频信号的形式发射出去。接收器416通过其相应天线420接收射频信号,每一接收器416恢复调制到射频载波上的基带信息,且将基带信息提供到接收处理器412。接收处理器412实施用于L1层(即,物理层)的各种信号接收处理功能,包括接收处理本申请中的携带本申请中的第五信息的物理层信号,信号接收处理功能包括获取多载波符号流,接着对多载波符号流中的多载波符号进行序列解相关或者基于各种调制方案(例如,二元相移键控(BPSK)、正交相移键控(QPSK))的解调,随后解码和解交织以恢复在物理信道上由第一节点设备450原始发射的数据和/或控制信号。随后将数据和/或控制信号提供到控制器/处理器440。在控制器/处理器440实施L2层的功能,包括读取本申请中的第五信息。控制器/处理器可与存储程序代码和数据的缓存器430相关联。缓存器430可以为计算机可读媒体。
作为一个实施例,所述第一节点设备450装置包括:至少一个处理器以及至少一个存储器,所述至少一个存储器包括计算机程序代码;所述至少一个存储器和所述计算机程序代码被配置成与所述至少一个处理器一起使用,所述第一节点设备450装置至少:接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,所述第一节点设备450装置包括:一种存储计算机可读指令程序的存储器,所述计算机可读指令程序在由至少一个处理器执行时产生动作,所述动作包括:接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,所述第二节点设备410装置包括:至少一个处理器以及至少一个存储器,所述至少一个存储器包括计算机程序代码;所述至少一个存储器和所述计算机程序代码被配置成与所述至少一个处理器一起使用。所述第二节点设备410装置至少:发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括 所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,所述第二节点设备410包括:一种存储计算机可读指令程序的存储器,所述计算机可读指令程序在由至少一个处理器执行时产生动作,所述动作包括:发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,所述第一节点设备450是一个用户设备(UE)。
作为一个实施例,所述第一节点设备450是一个支持多载传输的用户设备。
作为一个实施例,所述第一节点设备450是一个支持辅载波跨载波调度主载波的用户设备。
作为一个实施例,所述第二节点设备410是一个基站设备(gNB/eNB)。
作为一个实施例,所述第二节点设备410是一个支持多载波传输的基站设备。
作为一个实施例,所述第二节点设备410是一个支持辅载波跨载波调度主载波的基站设备。
作为一个实施例,接收器456(包括天线460),接收处理器452和控制器/处理器490被用于本申请中接收所述第一信息。
作为一个实施例,接收器456(包括天线460),接收处理器452和控制器/处理器490被用于本申请中接收所述第二信息。
作为一个实施例,接收器456(包括天线460),接收处理器452和控制器/处理器490被用于本申请中接收所述第三信息。
作为一个实施例,接收器456(包括天线460),接收处理器452和控制器/处理器490被用于本申请中接收所述第四信息。
作为一个实施例,发射器456(包括天线460),发射处理器455和控制器/处理器490被用于本申请中发送所述第五信息。
作为一个实施例,发射器416(包括天线420),发射处理器415和控制器/处理器440被用于发送本申请中的所述第一信息。
作为一个实施例,发射器416(包括天线420),发射处理器415和控制器/处理器440被用于发送本申请中的所述第二信息。
作为一个实施例,发射器416(包括天线420),发射处理器415和控制器/处理器440被用于发送本申请中的所述第三信息。
作为一个实施例,发射器416(包括天线420),发射处理器415和控制器/处理器440被用于发送本申请中的所述第四信息。
作为一个实施例,接收器416(包括天线420),接收处理器412和控制器/处理器440被用于接收本申请中的所述第五信息。
实施例5
实施例5示例了根据本申请的一个实施例的无线信号传输流程图,如附图5所示。在附图5中,第二节点设备N1是第一节点设备U2的服务小区的维持基站。特别说明的是本示例中的顺序并不限制本申请中的信号传输顺序和实施的顺序。
对于 第二节点设备N1,在步骤S11中接收第五信息,在步骤S12中发送第二信息,在步骤S13中发送第一信息,在步骤S14中发送第三信息,在步骤S15中发送第四信息,在步骤S16中确定目标控制信令备选集合所包括的控制信令备选。
对于 第一节点设备U2,在步骤S21中发送第五信息,在步骤S22中接收第二信息,在步骤S23中接收第一信息,在步骤S24中接收第三信息,在步骤S25中接收第四信息,在步骤S26中监测目标控制信令备选集合所包括的控制信令备选。
在实施例5中,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;所述目标控制信令备选集合包括正整数个控制信令备选;第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数;所述第二信息被用于确定配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组;目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值;所述第三信息被用于确定第一小区子集和第二小区子集;所述第四信息被用于确定第二因子;所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
作为一个实施例,所述第二信息通过空中接口传输。
作为一个实施例,所述第二信息通过无线接口传输。
作为一个实施例,所述第二信息通过高层信令传输。
作为一个实施例,所述第二信息通过物理层信令传输。
作为一个实施例,所述第二信息包括了一个高层信令中的全部或部分。
作为一个实施例,所述第二信息包括了一个物理层信令中的全部或部分。
作为一个实施例,所述第二信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的全部或部分IE(Information Element,信息单元)。
作为一个实施例,所述第二信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的一个IE(Information Element,信息单元)中的全部或部分域(Field)。
作为一个实施例,所述第二信息包括了一个MAC(Medium Access Control,媒体接入控制)层信令中的全部或部分。
作为一个实施例,所述第二信息包括了一个系统信息块(SIB,System Information Block)中的全部或部分。
作为一个实施例,所述第二信息通过一个DL-SCH(Downlink Shared Channel,下行共享信道)传输。
作为一个实施例,所述第二信息通过一个PDSCH(Physical Downlink Shared Channel,物理下行共享信道)传输。
作为一个实施例,所述第二信息是小区特定的(Cell Specific)。
作为一个实施例,所述第二信息是用户设备特定的(UE-specific)。
作为一个实施例,所述第二信息是载波特有的(Carrier Specific)。
作为一个实施例,所述第二信息是每载波(Per Carrier)配置的。
作为一个实施例,所述第二信息是服务小区特有的(Serving Cell Specific)。
作为一个实施例,所述第二信息是每服务小区(Per Serving Cell)配置的。
作为一个实施例,所述第二信息包括一个DCI(Downlink Control Information)信令的全部或部分域(Field)。
作为一个实施例,所述第二信息属于一个RRC信令中的IE(Information Element,信息单元)“CellGroupConfig”。
作为一个实施例,所述第二信息属于一个RRC信令中的IE(Information Element,信息单元)“CellGroupConfig”中的域“sCellToAddModList”。
作为一个实施例,所述第二信息属于一个RRC信令中的IE(Information Element,信息单元)“CellGroupConfig”中的域“sCellToReleaseList”。
作为一个实施例,所述第二信息和所述第一信息是通过两个不同的RRC信令携带的。
作为一个实施例,所述第二信息和所述第一信息是通过同一个RRC信令携带的。
作为一个实施例,所述第二信息和所述第一信息是通过同一个RRC信令中的两个不同的IE携带的。
作为一个实施例,所述第二信息和所述第一信息是通过同一个RRC信令中的同一个IE中的两个不同的域(Field)携带的。
作为一个实施例,上述句子“所述第二信息被用于确定配置小区组”包括以下含义:所述第二信息被本申请中的所述第一节点设备用于确定所述配置小区组。
作为一个实施例,上述句子“所述第二信息被用于确定配置小区组”包括以下含义:所述第二信息被用于显式地指示所述配置小区组。
作为一个实施例,上述句子“所述第二信息被用于确定配置小区组”包括以下含义:所述第二信息被用于隐式地指示所述配置小区组。
作为一个实施例,上述句子“所述第二信息被用于确定配置小区组”包括以下含义:所述第二信息被用于间接地指示所述配置小区组。
作为一个实施例,所述第三信息通过空中接口传输。
作为一个实施例,所述第三信息通过无线接口传输。
作为一个实施例,所述第三信息通过高层信令传输。
作为一个实施例,所述第三信息通过物理层信令传输。
作为一个实施例,所述第三信息包括了一个高层信令中的全部或部分。
作为一个实施例,所述第三信息包括了一个物理层信令中的全部或部分。
作为一个实施例,所述第三信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的全部或部分IE(Information Element,信息单元)。
作为一个实施例,所述第三信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的一个IE(Information Element,信息单元)中的全部或部分域(Field)。
作为一个实施例,所述第三信息包括了一个MAC(Medium Access Control,媒体接入控制)层信令中的全部或部分。
作为一个实施例,所述第三信息包括了一个系统信息块(SIB,System Information Block)中的全部或部分。
作为一个实施例,所述第三信息通过一个DL-SCH(Downlink Shared Channel,下行共享信道)传输。
作为一个实施例,所述第三信息通过一个PDSCH(Physical Downlink Shared Channel,物理下行共享信道)传输。
作为一个实施例,所述第三信息是小区特定的(Cell Specific)。
作为一个实施例,所述第三信息是用户设备特定的(UE-specific)。
作为一个实施例,所述第三信息是载波组特有的(Carrier Group Specific)。
作为一个实施例,所述第三信息是小区组特有的(Cell Group Specific)。
作为一个实施例,所述第三信息是载波特有的(Carrier Specific)。
作为一个实施例,所述第三信息是服务小区特有的(Serving Cell Specific)。
作为一个实施例,所述第三信息包括一个DCI(Downlink Control Information)信令的全部或部分域(Field)。
作为一个实施例,所述第三信息包括一个RRC信令中的IE(Information Element,信息单元)“PDCCH-Config”中的IE“ControlResourceSet”中的域“CORESETPoolIndex”。
作为一个实施例,所述第三信息包括一个RRC信令中的IE(Information Element,信息单元)“PDCCH-Config”。
作为一个实施例,所述第三信息包括一个RRC信令中的IE(Information Element,信息单元)“PDCCH-Config”中的IE“ControlResourceSet”。
作为一个实施例,所述第三信息和所述第一信息是通过两个不同的RRC信令携带的。
作为一个实施例,所述第三信息和所述第一信息是通过同一个RRC信令携带的。
作为一个实施例,所述第三信息和所述第一信息是通过同一个RRC信令中的两个不同的IE携带的。
作为一个实施例,所述第三信息和所述第一信息是通过同一个RRC信令中的同一个IE中的两个不同的域(Field)携带的。
作为一个实施例,所述第二信息和所述第三信息是通过两个不同的RRC信令携带的。
作为一个实施例,所述第二信息和所述第三信息是通过同一个RRC信令携带的。
作为一个实施例,所述第二信息和所述第三信息是通过同一个RRC信令中的两个不同的IE携带的。
作为一个实施例,所述第二信息和所述第三信息是通过同一个RRC信令中的同一个IE中的两个不同的域(Field)携带的。
作为一个实施例,上述句子“所述第三信息被用于确定第一小区子集和第二小区子集”包括以下含义:所述第三信息被本申请中的所述第一节点设备用于确定所述第一小区子集和所述第二小区子集。
作为一个实施例,上述句子“所述第三信息被用于确定第一小区子集和第二小区子集”包括以下含义:所述第三信息被用于确定所述第一小区子集所包括的每个服务小区所被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index),所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)都相等;所述第三信息被用于确定所述第二小区子集所包括的每个服务小区所被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index),所述第二小区子集所包括的每个服务小区所被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)都相等。
作为一个实施例,上述句子“所述第三信息被用于确定第一小区子集和第二小区子集”包括以下含义:所述第三信息被用于确定所述第一小区子集所包括的每个服务小区所被提供的控制资源集合(CORESET,Control Resource Set)的数量,所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等;所述第三信息被用于确定所述第二小区子集所包括的每个服务小区所被提供的控制资源集合(CORESET,Control Resource Set)的数量,所述第二小区子集所包括的每个服务小区所被提供的控制资源集合(CORESET,Control Resource Set)的数量相等。
作为一个实施例,上述句子“所述第三信息被用于确定第一小区子集和第二小区子集”包括以下含义:所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区;所述P个子信息块中的任意一个子信息块被用于确定所述P个服务小区中的对应的服务小区被提供的控制资源集合(CORESET,Control Resource Set);所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等,所述第二小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等。
作为一个实施例,上述句子“所述第三信息被用于确定第一小区子集和第二小区子集”包括以下含义:所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区;所述P个子信息块中的任意一个子信息块被用于确定所述P个服务小区中的对应的服务小区被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index);所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)都等于“0”,所述第二小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)都等于“1”。
作为一个实施例,所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区。
作为一个实施例,所述第四信息通过空中接口传输。
作为一个实施例,所述第四信息通过无线接口传输。
作为一个实施例,所述第四信息通过高层信令传输。
作为一个实施例,所述第四信息通过物理层信令传输。
作为一个实施例,所述第四信息包括了一个高层信令中的全部或部分。
作为一个实施例,所述第四信息包括了一个物理层信令中的全部或部分。
作为一个实施例,所述第四信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的全部或部分。
作为一个实施例,所述第四信息包括了一个MAC(Medium Access Control,媒体接入控制)层信令中的全部或部分。
作为一个实施例,所述第四信息通过一个DL-SCH(Downlink Shared Channel,下行共享信道)传输。
作为一个实施例,所述第四信息通过一个PDSCH(Physical Downlink Shared Channel,物理下行共享信道)传输。
作为一个实施例,所述第四信息是用户设备特定的(UE-specific)。
作为一个实施例,所述第四信息是载波特有的(Carrier Specific)。
作为一个实施例,所述第四信息是每载波(Per Carrier)配置的。
作为一个实施例,所述第四信息是服务小区特有的(Serving Cell Specific)。
作为一个实施例,所述第四信息是每服务小区(Per Serving Cell)配置的。
作为一个实施例,所述第四信息包括一个DCI(Downlink Control Information)信令的全部或部分域(Field)。
作为一个实施例,所述第三信息和所述第四信息是通过两个不同的RRC信令携带的。
作为一个实施例,所述第三信息和所述第四信息是通过同一个RRC信令携带的。
作为一个实施例,所述第三信息和所述第四信息是通过同一个RRC信令中的两个不同的IE携带的。
作为一个实施例,所述第三信息和所述第四信息是通过同一个RRC信令中的同一个IE中的两个不同的域(Field)携带的。
作为一个实施例,上述句子“所述第四信息被用于确定第二因子”包括以下含义:所述第四信息被本申请中的所述第一节点设备用于确定所述第二因子。
作为一个实施例,上述句子“所述第四信息被用于确定第二因子”包括以下含义:所述第四信息被用于显式地指示所述第二因子。
作为一个实施例,上述句子“所述第四信息被用于确定第二因子”包括以下含义:所述第四信息被用于隐式地指示所述第二因子。
作为一个实施例,上述句子“所述第四信息被用于确定第二因子”包括以下含义:所述第四信息被用于间接地指示所述第二因子。
作为一个实施例,“所述第四信息被用于确定第二因子”是通过本申请中的权利要求8实现的。
实施例6
实施例6示例了根据本申请的另一个实施例的无线信号传输流程图,如附图6所示。在附图6中,第二节点设备N3是第一节点设备U4的服务小区的维持基站。特别说明的是本示例中的顺序并不限制本申请中的信号传输顺序和实施的顺序。
对于 第二节点设备N3,在步骤S31中接收第五信息,在步骤S32中发送第二信息,在步骤S33中发送第一信息,在步骤S34中发送第三信息,在步骤S35中发送第四信息,在步骤S36中确定目标控制信令备选集合所包括的控制信令备选,在步骤S37中发送控制信令。
对于 第一节点设备U4,在步骤S41中发送第五信息,在步骤S42中接收第二信息,在步骤S43中接收第一信息,在步骤S44中接收第三信息,在步骤S45中接收第四信息,在步骤S46中监测目标控制信令备选集合所包括的控制信令备选。
在实施例6中,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;所述目标控制信令备选集合包括正整数个控制信令备选;第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数;所述第二信息被用于确定配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组;目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值;所述第三信息被用于确定第一小区子集和第二小区子集;所述第四信息被用于确定第二因子;所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值;所述控制信令占用所述目标控制信令备选集合所包括的一个控制信令备选。
作为一个实施例,所述第五信息通过空中接口传输。
作为一个实施例,所述第五信息通过无线接口传输。
作为一个实施例,所述第五信息通过高层信令传输。
作为一个实施例,所述第五信息通过物理层信令传输。
作为一个实施例,所述第五信息包括了一个高层信令中的全部或部分。
作为一个实施例,所述第五信息包括了一个物理层信令中的全部或部分。
作为一个实施例,所述第五信息包括了一个RRC(Radio Resource Control,无线资源控制)信令中的全部或部分。
作为一个实施例,所述第五信息包括了一个MAC(Medium Access Control,媒体接入控制)层信令中的全部或部分。
作为一个实施例,所述第五信息通过一个UL-SCH(Uplink Shared Channel,上行共享信道)传输。
作为一个实施例,所述第五信息通过一个PUSCH(Physical Uplink Shared Channel,物理上行共享信道)传输。
作为一个实施例,所述第五信息是用户设备特定的(UE-specific)。
作为一个实施例,所述第五信息是载波特有的(Carrier Specific)。
作为一个实施例,所述第五信息被用于指示本申请中的所述第一节点设备的能力。
作为一个实施例,所述第五信息被用于指示本申请中的所述第一节点设备的CA或者DC(Dual Connectivity,双连接)能力。
作为一个实施例,所述第五信息被用于指示本申请中的所述第一节点设备的盲检测能力。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionCA-r16”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionCA-r15”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionCA-r17”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionCA”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionNRDC”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionMCG-UE”。
作为一个实施例,所述第五信息包括IE“Phy-Parameters”中的域“pdcch-BlindDetectionSCG-UE”。
作为一个实施例,上述句子“所述第五信息被用于指示第一能力参数”包括以下含义:所述第五信息被本申请中的所述第一节点设备用于指示所述第一能力参数。
作为一个实施例,上述句子“所述第五信息被用于指示第一能力参数”包括以下含义:所述第五信息被用于显式地指示所述第一能力参数。
作为一个实施例,上述句子“所述第五信息被用于指示第一能力参数”包括以下含义:所述第五信息被用于隐式地指示所述第一能力参数。
作为一个实施例,上述句子“所述第五信息被用于指示第一能力参数”包括以下含义:所述第五信息被用于间接地指示所述第一能力参数。
作为一个实施例,所述第一能力参数是本申请中的所述第一节点设备所能支持的最大的盲解码(BD,Blind Decoding)次数的服务小区的数量。
作为一个实施例,所述第一能力参数是本申请中的所述第一节点设备在一个小区组(Cell Group)中所能支持的最大的盲解码(BD,Blind Decoding)次数的服务小区的数量。
作为一个实施例,所述第一能力参数是本申请中的所述第一节点设备在一个主小区组(Master Cell Group,MCG)中所能支持的最大的盲解码(BD,Blind Decoding)次数的服务小区的数量。
作为一个实施例,所述第一能力参数是本申请中的所述第一节点设备在一个辅小区组(Secondary Cell Group,SCG)中所能支持的最大的盲解码(BD,Blind Decoding)次数的服务小区的数量。
作为一个实施例,所述第一能力参数是服务小区的数量。
作为一个实施例,上述句子“所述第一能力参数被用于确定所述第一阈值”包括以下含义:本申请中的所述目标数值和所述第一能力参数成正比。
作为一个实施例,上述句子“所述第一能力参数被用于确定所述第一阈值”包括以下含义:所述第一阈值和所述第一能力参数成正比。
作为一个实施例,上述句子“所述第一能力参数被用于确定所述第一阈值”包括以下含义:所述第一能力参数、本申请中的所述目标比例值、本申请中的所述第一参数共同被用于确定所述第一阈值。
作为一个实施例,上述句子“所述第一能力参数被用于确定所述第一阈值”包括以下含义:所述第一能力参数、本申请中的所述目标比例值、本申请中的所述第一参数共同被用于确定本申请中的所述目标数值。
作为一个实施例,上述句子“所述第一能力参数被用于确定所述第一阈值”包括以下含义:所述第一能力参数、本申请中的所述目标比例值、本申请中的所述第一参数三者的乘积等于本申请中的所述目标数值。
作为一个实施例,上述句子“所述第一能力参数被用于确定所述第一阈值”是通过下式实现的:
Figure PCTCN2021075167-appb-000001
其中,
Figure PCTCN2021075167-appb-000002
代表所述第一阈值,
Figure PCTCN2021075167-appb-000003
代表所述目标数值,
Figure PCTCN2021075167-appb-000004
代表所述第 一参数,
Figure PCTCN2021075167-appb-000005
代表本申请中的所述目标比例值,
Figure PCTCN2021075167-appb-000006
代表本申请中的所述第一能力参数,μ代表所述第一子载波间隔的索引。
作为一个实施例,本申请中的所述配置小区组所包括的服务小区的数量大于所述第一能力参数。
作为一个实施例,本申请中的所述配置小区组所包括的服务小区的数量等于所述第一能力参数。
作为一个实施例,本申请中的所述配置小区组所包括的服务小区的数量小于所述第一能力参数。
作为一个实施例,本申请中的所述被调度小区集合所包括的服务小区的数量大于所述第一能力参数。
作为一个实施例,本申请中的所述被调度小区集合所包括的服务小区的数量等于所述第一能力参数。
作为一个实施例,本申请中的所述被调度小区集合所包括的服务小区的数量小于所述第一能力参数。
作为一个实施例,本申请中的所述第二数量和本申请中的所述第一因子之间的乘积和本申请中的所述第一数量的加和大于所述第一能力参数。
作为一个实施例,本申请中的所述第二数量和本申请中的所述第一因子之间的乘积和本申请中的所述第一数量的加和等于所述第一能力参数。
作为一个实施例,本申请中的所述第二数量和本申请中的所述第一因子之间的乘积和本申请中的所述第一数量的加和小于所述第一能力参数。
实施例7
实施例7示例了根据本申请的另一个实施例的无线信号传输流程图,如附图7所示。在附图7中,第二节点设备N5是第一节点设备U6的服务小区的维持基站。特别说明的是本示例中的顺序并不限制本申请中的信号传输顺序和实施的顺序。
对于 第二节点设备N5,在步骤S51中接收第五信息,在步骤S52中接收第九信息,在步骤S53中发送第八信息,在步骤S54中发送第二信息,在步骤S55中发送第六信息,在步骤S56中发送第三信息,在步骤S57中发送第七信息,在步骤S58中发送第四信息,在步骤S59中发送第十信息,在步骤S5a中确定目标控制信令备选集合所包括的控制信令备选。
对于 第一节点设备U6,在步骤S61中发送第五信息,在步骤S62中发送第九信息,在步骤S63中接收第八信息,在步骤S64中接收第二信息,在步骤S65中接收第六信息,在步骤S66中接收第三信息,在步骤S67中接收第七信息,在步骤S68中接收第四信息,在步骤S69中接收第十信息,在步骤S6a中监测目标控制信令备选集合所包括的控制信令备选
作为一个实施例,所述第六信息被用于确定本申请中的所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带中的子载波的子载波间隔。
作为一个实施例,所述第七信息被用于确定本申请中所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源。
作为一个实施例,所述第七信息被用于确定本申请中的所述目标控制信令备选集合中的每个控制信令备选所占用的时频资源所属的本申请中的所述第一子频带集合中的子频带。
作为一个实施例,所述第八信息被用于指示本申请中的所述第一因子。
作为一个实施例,所述第九信息被用于指示本申请中的所述第一因子。
作为一个实施例,所述第十信息被用于指示本申请中的所述第二特征和值和本申请中的所述第一特征和值之间的差值。
实施例8
实施例8示例了根据本申请的一个实施例的调度小区集合和被调度小区集合之间的关系的示意图,如附图8所示。在附图8中,横轴代表频率,每个圆弧顶的填充块代表配置小区组所包括的一个服务小区,每个从上到下的往左斜线填充的圆弧顶的填充块代表调度小区集合所包括的一个服务小区,每个从上到下的往右斜线填充的圆弧顶的填充块代表被调度小区集合所包括的一个服务小区,每个交叉线填充的圆弧顶的填充块代表同时属于调度小区集合和被调度小区集合的一个服务小区,带箭头的虚线弧线代表两个服务小区之间的调度与被调度的关系。
在实施例8中,本申请中的所述配置小区组包括大于1的正整数个服务小区;本申请中的所述目 标小区属于所述配置小区组,本申请中的所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括本申请中的所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
作为一个实施例,所述配置小区组是主小区组(MCG,Master Cell Group)。
作为一个实施例,所述配置小区组是辅小区组(SCG,Secondary Cell Group)。
作为一个实施例,所述配置小区组包括一个MAC实体(MAC entity)、关联到RLC实体(RLC entities)的一个逻辑信道集合(a set of logical channels)和一个包括主小区(Primary Cell,SpCell)和1或多个辅小区(Secondary Cell,Scell)的集合。
作为一个实施例,所述目标小区是所述配置小区组所包括的一个服务小区。
作为一个实施例,所述配置小区组包括所述目标小区。
作为一个实施例,所述特征小区是所述配置小区组所包括的一个服务小区。
作为一个实施例,所述配置小区组包括所述特征小区。
作为一个实施例,所述目标小区是所述配置小区组所包括的主小区(Primary Cell,Pcell)。
作为一个实施例,所述目标小区是所述配置小区组所包括的特殊小区(Special Cell,Spcell)。
作为一个实施例,所述目标小区是所述配置小区组所包括的辅小区(Secondary Cell,SCell)。
作为一个实施例,上述句子“所述特征小区是所述配置小区组中的主小区”包括以下含义:当所述配置小区组是主小区组(MCG)时,所述特征小区是所述配置小区组中的主小区(Primary Cell,Pcell);当所述配置小区组是辅小区组(SCG)时,所述特征小区是所述配置小区组中的主辅小区组小区(Primary SCG Cell,PSCell)。
作为一个实施例,上述句子“所述特征小区是所述配置小区组中的主小区”包括以下含义:所述特征小区是所述配置小区组所包括的特殊小区(Special Cell,Spcell)。
作为一个实施例,上述句子“所述特征小区是所述配置小区组中的主小区”包括以下含义:所述特征小区是所述配置小区组所包括的被本申请中的所述第一节点设备用于执行初始连接建立过程(initial connection establishment procedure)或发起连接重建立过程(connection re-establishment procedure)的服务小区。
作为一个实施例,上述句子“所述特征小区是所述配置小区组中的主小区”包括以下含义:所述特征小区是所述配置小区组所包括的被本申请中的所述第一节点设备用于在执行带有同步的重配置过程(Reconfiguration with Sync procedure)时的随机接入(Random Access)的服务小区。
作为一个实施例,上述句子“被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区”包括以下含义:所述被调度小区集合包括所述调度小区集合所包括的任意一个服务小区所调度的所有的服务小区。
作为一个实施例,上述句子“被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区”包括以下含义:所述被调度小区集合仅包括所述调度小区集合所包括的服务小区所调度的服务小区。
作为一个实施例,上述句子“被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区”包括以下含义:任意一个被所述调度小区集合所包括的服务小区所调度的服务小区属于所述被调度小区集合。
作为一个实施例,上述句子“被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区”包括以下含义:任意一个被所述调度小区集合所包括的服务小区所调度的服务小区组成所述被调度小区集合。
作为一个实施例,上述句子“被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区”包括以下含义:所述调度小区集合包括所述被调度小区集合所包括的任意一个服务小区的调度小区。
作为一个实施例,所述调度小区集合所包括的一个服务小区调度所述被调度小区所包括的一个服务小区是指:所述调度小区集合所包括的一个服务小区上传输的PDCCH调度所述被调度小区所包括的一个服务小区。
作为一个实施例,所述调度小区集合所包括的一个服务小区调度所述被调度小区所包括的一个服务小区是指:所述调度小区集合所包括的一个服务小区上传输的PDCCH调度在所述被调度小区所包括的一个服务小区上传输的信号。
作为一个实施例,当所述调度小区集合包括所述目标小区时,所述被调度小区集合包括所述特征小区。
作为一个实施例,当所述目标小区属于所述调度小区集合时,所述特征小区属于所述被调度小区集合。
作为一个实施例,所述调度小区集合所包括的任意一个服务小区是所述配置小区组所包括的一个服务小区。
作为一个实施例,所述被调度小区集合所包括的任意一个服务小区是所述配置小区组所包括的一个服务小区。
实施例9
实施例9示例了根据本申请的一个实施例的目标比例值的示意图,如附图9所示。在附图9中,每个矩形代表第一比例值,第二比例值和目标比例值中的之一,箭头代表计算过程。
在实施例9中,目标比例值被用于确定本申请中的所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;本申请中的所述调度小区集合是否包括本申请中的所述目标小区、本申请中的所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,所述目标比例值可以等于1。
作为一个实施例,所述目标比例值大于0。
作为一个实施例,所述目标比例值小于1。
作为一个实施例,所述第一比例值可以等于1。
作为一个实施例,所述第一比例值大于0。
作为一个实施例,所述第一比例值小于1。
作为一个实施例,所述第二比例值可以等于1。
作为一个实施例,所述第二比例值大于0。
作为一个实施例,所述第二比例值小于1。
作为一个实施例,上述句子“目标比例值被用于确定所述第一阈值”包括以下含义:本申请中的所述目标数值和所述目标比例值成正比。
作为一个实施例,上述句子“目标比例值被用于确定所述第一阈值”包括以下含义:所述目标比例值被本申请中的所述第一节点设备用于确定所述目标比例值。
作为一个实施例,上述句子“目标比例值被用于确定所述第一阈值”包括以下含义:所述第一阈值和所述目标比例值成正比。
作为一个实施例,上述句子“目标比例值被用于确定所述第一阈值”包括以下含义:所述目标比例值通过运算函数计算得到所述第一阈值。
作为一个实施例,上述句子“目标比例值被用于确定所述第一阈值”包括以下含义:所述目标比例值被用于确定中间数值,所述第一阈值是所述中间数值的向下取整值。
作为一个实施例,上述句子“目标比例值被用于确定所述第一阈值”包括以下含义:本申请中的所述目标比例值被用于确定本申请中的所述目标数值。
作为一个实施例,上述句子“所述目标比例值等于第一比例值、第二比例值中的之一”包括以下含义:所述目标比例值等于所述第一比例值,或者所述目标比例值等于所述第二比例值。
作为一个实施例,上述句子“所述目标比例值等于第一比例值、第二比例值中的之一”包括以下含义:所述目标比例值可能等于所述第一比例值。
作为一个实施例,上述句子“所述目标比例值等于第一比例值、第二比例值中的之一”包括以下含义: 所述目标比例值可能等于所述第二比例值。
作为一个实施例,所述第一和值和所述第二和值相等。
作为一个实施例,所述第一和值和所述第二和值不相等。
作为一个实施例,所述第一特征和值和所述第二特征和值相等。
作为一个实施例,所述第一特征和值和所述第二特征和值不相等。
作为一个实施例,所述第一特征和值大于所述第一和值。
作为一个实施例,所述第一特征和值等于所述第一和值。
作为一个实施例,所述第二特征和值大于所述第二和值。
作为一个实施例,所述第二特征和值等于所述第二和值。
作为一个实施例,所述第一比例值大于所述第二比例值。
作为一个实施例,所述第一比例值小于所述第二比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述调度小区集合是否包括所述目标小区以及所述特征小区和所述目标小区是否相同一起被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述调度小区集合是否包括所述目标小区被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述特征小区和所述目标小区是否相同被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被本申请中的所述第一节点设备用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一按照判决条件被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:当所述特征小区和所述目标小区相同时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合不包括所述目标小区时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合包括所述目标小区时,所述目标比例值等于所述第二比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:当所述特征小区和所述目标小区相同时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同时,所述目标比例值等于所述第二比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:当所述调度小区集合不包括所述目标小区时,所述目标比例值等于所述第一比例值;当所述调度小区集合包括所述目标小区时,所述目标比例值等于所述第二比例值。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小 区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一和值和所述第二和值是否相等。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一特征和值和所述第二特征和值是否相等。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:当所述特征小区和所述目标小区不相同时,所述第一特征和值和所述第二特征和值是不相等。
作为一个实施例,上述句子“所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值”包括以下含义:当所述调度小区集合包括所述目标小区时,所述第一和值和所述第二和值不相等。
实施例10
实施例10示例了根据本申请的一个实施例的第一小区子集和第二小区子集之间的关系的示意图,如附图10所示。在附图10中,横轴代表频率,每个圆弧顶的填充块代表一个服务小区,每个交叉线填充的圆弧顶的填充块代表第一小区子集中的一个服务小区,每个十字线填充的圆弧顶的填充块代表第二小区子集中的一个服务小区。
在实施例10中,本申请中的所述第一小区子集包括正整数个服务小区,本申请中的所述第二小区子集包括正整数个服务小区;本申请中的所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,本申请中的所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;本申请中的所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
作为一个实施例,所述第一小区子集所包括的任意一个服务小区只支持单TRP和单面板(Panel)。
作为一个实施例,所述第一小区子集所包括的服务小区没有被提供控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)。
作为一个实施例,所述第一小区子集所包括的服务小区仅被提供了一个控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)。
作为一个实施例,对应在所述第一小区子集所包括的每个服务小区上的所有的BWP上的所有的CORESET,本申请中的所述第一节点设备仅被提供了一个控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)。
作为一个实施例,在所述第一小区子集所包括的每个服务小区上的每个BWP上,本申请中的所述第一节点设备仅被提供了一个控制资源集合(CORESET,Control Resource Set)。
作为一个实施例,所述第二小区子集所包括的任意一个服务小区支持多于1个TRP。
作为一个实施例,所述第二小区子集所包括的任意一个服务小区支持多于1个面板(Panel)。
作为一个实施例,在所述第二小区子集所包括的每个服务小区上的任意一个BWP上,本申请中的所述第一节点设备被提供了多于一个控制资源集合(CORESET,Control Resource Set)。
作为一个实施例,在所述第二小区子集所包括的每个服务小区上的任意一个BWP上,本申请中的所述第一节点设备被提供了多于一个控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)。
作为一个实施例,在所述第二小区子集所包括的每个服务小区上的任意一个BWP上,本申请中的所述第一节点设备被提供了两个控制资源集合(CORESET,Control Resource Set)。
作为一个实施例,在所述第二小区子集所包括的每个服务小区上的任意一个BWP上,本申请中的所 述第一节点设备被提供了两个控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)。
作为一个实施例,在所述第二小区子集所包括的每个服务小区上的任意一个BWP上,本申请中的所述第一节点设备为一个CORESET提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)的值等于0,本申请中的所述第一节点设备为另一个CORESET提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)的值等于1。
作为一个实施例,在所述第二小区子集所包括的每个服务小区上的任意一个BWP上,本申请中的所述第一节点设备为第一CORESET提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)的值等于0,本申请中的所述第一节点设备为第二CORESET提供的控制资源集合(CORESET,Control Resource Set)资源池索引(CORESET Pool Index)的值等于1,所述第一CORESET和所述第二CORESET不相同。
作为一个实施例,所述第一数量是非负整数。
作为一个实施例,所述第二数量是非负整数。
作为一个实施例,所述第一数量可以等于0。
作为一个实施例,所述第二数量可以等于0。
作为一个实施例,所述第一数量大于0。
作为一个实施例,所述第二数量大于0。
作为一个实施例,所述被调度小区集合所包括的任意一个服务小区属于所述第一小区子集、所述第二小区子集中的之一。
作为一个实施例,所述被调度小区集合所包括的任意一个服务小区或者属于所述第一小区子集,或者属于所述第二小区子集。
作为一个实施例,所述被调度小区集合包括一个服务小区既不属于所述第一小区子集,也不属于所述第二小区子集。
作为一个实施例,所述第一因子等于1。
作为一个实施例,所述第一因子不等于1。
作为一个实施例,上述句子“所述第一因子是可配置的”包括以下含义:所述第一因子是被申请中的所述第二节点设备配置。
作为一个实施例,上述句子“所述第一因子是可配置的”包括以下含义:所述第一因子是被申请中的所述第一节点设备报告的。
作为一个实施例,上述句子“所述第一因子是可配置的”包括以下含义:所述第一处理机还接收第八信息,其中,所述第八信息被用于指示所述第一因子。
作为一个实施例,上述句子“所述第一因子是可配置的”包括以下含义:所述第一处理机还发送第九信息,其中,所述第九信息被用于指示所述第一因子。
作为一个实施例,上述句子“所述第一因子是预定义的”包括以下含义:所述第一因子等于一个固定的值。
作为一个实施例,上述句子“所述第一因子是预定义的”包括以下含义:所述第一因子等于1。
作为一个实施例,上述句子“所述第一因子是预定义的”包括以下含义:所述第一因子等于一个默认(Default)的值。
作为一个实施例,所述第一因子是盲检测(BD,Blind Decoding)因子(Factor)。
作为一个实施例,所述第一因子被用于确定盲检测次数可以增大的倍数。
作为一个实施例,所述第一小区子集所包括的任意一个服务小区属于所述配置小区组,所述第二小区子集所包括的任意一个服务小区属于所述配置小区组。
作为一个实施例,所述配置小区组包括所述第一小区子集所包括的任意一个服务小区,所述配置小区组包括所述第二小区子集所包括的任意一个服务小区。
作为一个实施例,上述句子“所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关”是通过 下式实现的:
Figure PCTCN2021075167-appb-000007
其中,Sum 1代表所述第一特征和值,
Figure PCTCN2021075167-appb-000008
代表所述第一小区子集所包括的服务小区的数量,
Figure PCTCN2021075167-appb-000009
代表所述第二小区子集所包括的服务小区的数量,γ代表所述第一因子。
作为一个实施例,上述句子“所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关”是通过下式实现的:
Figure PCTCN2021075167-appb-000010
其中,Sum 1代表所述第一特征和值,
Figure PCTCN2021075167-appb-000011
代表所述第一小区子集所包括的被配置了数理结构(Numerology)索引等于j的服务小区的数量,
Figure PCTCN2021075167-appb-000012
代表所述第一小区子集所包括的服务小区的数量,
Figure PCTCN2021075167-appb-000013
代表所述第二小区子集所包括的被配置了数理结构(Numerology)索引等于j的服务小区的数量,
Figure PCTCN2021075167-appb-000014
代表所述第二小区子集所包括的服务小区的数量,γ代表所述第一因子。
作为一个实施例,上述句子“所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关”包括以下含义:所述第一特征和值等于所述第二小区子集所包括的服务小区的数量与第一因子的乘积和所述第一小区子集所包括的服务小区的数量之间的加和。
作为一个实施例,上述句子“所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关”包括以下含义:所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性正相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性正相关。
作为一个实施例,上述句子“所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关”包括以下含义:所述第一和值等于所述第二数量与所述第一因子的乘积和所述第一数量之间的加和。
作为一个实施例,上述句子“所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关”包括以下含义:所述第一和值和所述第二数量与所述第一因子的乘积线性正相关,所述第一和值和所述第一数量线性正相关。
作为一个实施例,上述句子“所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关”是通过下式实现的:
Figure PCTCN2021075167-appb-000015
其中,Ω1代表所述第一和值,
Figure PCTCN2021075167-appb-000016
代表所述第一数量,
Figure PCTCN2021075167-appb-000017
代表所述第二数量,γ代表所述第一因子。
实施例11
实施例11示例了根据本申请的一个实施例的第一特征和值和第一和值的示意图,如附图11所示。在附图11中,横轴代表频率,每个圆弧顶的无填充块代表一个配置小区组中的被调度小区集合之外的一个服务小区,每个十字线填充的圆弧顶的填充块代表被调度小区集合中的一个服务小区。
在实施例11中,本申请中的所述第一特征和值等于本申请中的所述配置小区组所包括的服务小区的数量;本申请中的所述第一和值等于本申请中的所述被调度小区集合所包括的服务小区的数量。
作为一个实施例,所述配置小区组所包括的服务小区的数量等于所述被调度小区集合所包括的服务小区的数量。
作为一个实施例,所述配置小区组所包括的服务小区的数量不等于所述被调度小区集合所包括的服务小区的数量。
作为一个实施例,所述配置小区组所包括的服务小区的数量大于所述被调度小区集合所包括的服务小区的数量。
实施例12
实施例12示例了根据本申请的一个实施例的第一特征和值和第二特征和值之间的关系的示意图,如附图12所示。在附图12中,每个矩形代表第一比例值和第二比例值中的之一,箭头代表计算过程。
在实施例12中,本申请中的所述第二和值和本申请中的所述第一和值相等,本申请中的所述第一特征和值和本申请中的所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值是预定义的。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值是可配置的
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:在有的情况下所述第二特征和值和所述第一特征和值之间的差值是预定义的,在另外某些情况下,所述第二特征和值和所述第一特征和值之间的差值是可配置的。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值是固定的。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值在标准协议中硬编码的(Hard Coded)。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值等于1。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的”包括以下含义:所述第二特征和值比所述第一特征和值大1。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是预定义的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值等于一个默认的值。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值是被本申请中的所述第二节点设备配置。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:所述第二特征和值和所述第一特征和值之间的差值是被本申请中的所述第一节点设备报告的。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:本申请中的所述第一处理机接收第十信息,其中,所述第十信息被用于指示所述第二特征和值和所述第一特征和值之间的差值。
作为一个实施例,上述句子“所述第二特征和值和所述第一特征和值之间的差值是可配置的”包括以下含义:本申请中的所述第一处理机发送第十一信息,其中,所述第十一信息被用于指示所述第二特征和值和所述第一特征和值之间的差值。
实施例13
实施例13示例了根据本申请的一个实施例的第二因子和第二和值之间的关系的示意图,如附图13所 示。在附图13中,三个矩形框分别代表第一比例值、第二比例值和第二因子,箭头代表计算过程。
在实施例13中,本申请中的所述第四信息被用于确定第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定本申请中的所述第二和值,所述第二和值和本申请中的所述第一和值不相等,本申请中的所述第二特征和值和本申请中的所述第一特征和值相等。
作为一个实施例,上述句子“所述第二因子被用于确定所述第二和值”包括以下含义:所述第二因子被本申请中的所述第一节点设备用于确定所述第二和值。
作为一个实施例,上述句子“所述第二因子被用于确定所述第二和值”包括以下含义:所述第二因子被用于计算所述第二和值。
作为一个实施例,上述句子“所述第二因子被用于确定所述第二和值”包括以下含义:所述第二因子根据运算函数计算得到所述第二和值。
作为一个实施例,上述句子“所述第二因子被用于确定所述第二和值”包括以下含义:当本申请中的所述第一小区子集包括所述特征小区时,所述第二和值等于所述第一和值与所述第二因子之间的差值;当本申请中的所述第二小区子集包括所述特征小区时,所述第二和值等于所述第一和值减去本申请中的所述第一因子和所述第二因子之间的乘积的差值。
作为一个实施例,上述句子“所述第二因子被用于确定所述第二和值”是通过下面实现的:
当本申请中的所述第一小区子集包括所述特征小区时,
Ω 2=Ω 1
当本申请中的所述第二小区子集包括所述特征小区时,
Ω 2=Ω 1-γ·θ
其中,Ω 2代表所述第二和值,Ω 1代表所述第一和值,γ代表所述第一因子,θ代表所述第二因子。
作为一个实施例,上述句子“所述第二因子被用于确定所述第二和值”包括以下含义:所述第二和值等于所述第一和值与所述第二因子之间的差值。
实施例14
实施例14示例了根据本申请的一个实施例的第二因子的示意图,如附图14所示。在附图14中,横轴代表频率,每个圆弧顶的填充块代一个服务小区,斜线填充的圆弧顶的填充块代表特征小区,十字线填充的圆弧顶的填充块代表目标小区,带箭头的虚线弧线代表两个服务小区之间的调度与被调度的关系。
在实施例14中,本申请中的所述第四信息被用于确定第一监测次数和监测次数总和,所述第一监测次数等于本申请中的所述目标小区中被用于调度本申请中的所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;本申请中的所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
作为一个实施例,所述第一监测次数是非负整数。
作为一个实施例,所述第一监测次数是正整数。
作为一个实施例,所述监测次数总和是正整数。
作为一个实施例,所述监测次数总和是不小于所述第一监测次数的正整数。
作为一个实施例,上述句子“所述第四信息被用于确定第一监测次数和监测次数总和”包括以下含义:所述第四信息被本申请中的所述第一节点设备用于确定所述第一监测次数和所述监测次数总和。
作为一个实施例,上述句子“所述第四信息被用于确定第一监测次数和监测次数总和”包括以下含义:所述第四信息被用于显式地指示所述第一监测次数和所述监测次数总和。
作为一个实施例,上述句子“所述第四信息被用于确定第一监测次数和监测次数总和”包括以下含义:所述第四信息被用于隐式地指示所述第一监测次数和所述监测次数总和。
作为一个实施例,上述句子“所述第四信息被用于确定第一监测次数和监测次数总和”包括以下含义:所述第四信息被用于间接地指示所述第一监测次数和所述监测次数总和。
作为一个实施例,上述句子“所述第四信息被用于确定第一监测次数和监测次数总和”包括以下含义:所述第四信息包括Y个子信息块,所述Y是大于1的正整数,所述Y个子信息块分别被用于指示Y个监测次数,所述第一监测次数是所述Y个监测次数中的Y1个监测次数,所述监测次数总和是所述Y个监测 次数中的Y2个监测次数的和,所述Y1是不大于所述Y的正整数,所述Y2是不大于所述Y的正整数;所述Y个监测次数中的任意一个监测次数是正整数。
作为一个实施例,所述第四信息包括针被用于调度所述特征小区的IE“PDCCH-Config”。
作为一个实施例,所述第四信息包括针被用于调度所述特征小区的IE“PDCCH-Config”中的域(Field)“searchSpace”。
作为一个实施例,所述第四信息被用于确定所述目标小区中被用于调度所述特征小区的每个聚合等级(AL,Aggregation Level)的控制信令备选的监测次数,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的各个聚合等级(AL,Aggregation Level)的控制信令备选的监测次数的和。
作为一个实施例,上述句子“所述第四信息被用于确定第一监测次数和监测次数总和”包括以下含义:所述第四信息包括Y个子信息块,所述Y是大于1的正整数,所述Y个子信息块分别被用于指示Y个监测次数,所述第一监测次数是所述Y个监测次数中的Y1个监测次数,所述Y1个监测次数分别等于所述目标小区中被用于调度所述特征小区的Y1个搜索空间中的控制信令备选的监测次数;所述监测次数总和是所述Y个监测次数中的Y2个监测次数的和,所述Y2个监测次数分别等于被用于调度所述特征小区的Y2个搜索空间中的控制信令备选的监测次数;所述Y1是不大于所述Y的正整数,所述Y2是不大于所述Y的正整数;所述Y个监测次数中的任意一个监测次数是正整数。
作为一个实施例,上述句子“所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数”包括以下含义:所述第一监测次数等于所述目标小区中被用于调度所述特征小区的各个聚合等级(AL,Aggregation Level)的控制信令备选的监测次数的和。
作为一个实施例,上述句子“所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数”包括以下含义:所述第一监测次数等于所述目标小区中在所述第一时间窗中被用于调度所述特征小区的控制信令备选的监测次数。
作为一个实施例,上述句子“所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数”包括以下含义:所述第一监测次数等于所述目标小区中在所述第一时间窗中被用于调度所述特征小区的控制信令备选的总的监测次数。
作为一个实施例,上述句子“所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数”包括以下含义:所述第一监测次数等于所述目标小区中在所述第一时间窗中被用于调度所述特征小区的各个聚合等级(AL,Aggregation Level)的控制信令备选的监测次数的和。
作为一个实施例,上述句子“所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数”包括以下含义:所述监测次数总和等于被用于调度所述特征小区的各个聚合等级(AL,Aggregation Level)的控制信令备选的监测次数的和。
作为一个实施例,上述句子“所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数”包括以下含义:所述监测次数总和等于所述第一监测次数和第二监测次数的和,所述第二监测次数等于所述特征小区中被用于调度所述特征小区的控制信令备选的监测次数。
作为一个实施例,上述句子“所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数”包括以下含义:所述监测次数总和等于所述第一监测次数和第二监测次数的和,所述第二监测次数等于所述特征小区中在所述第一时间窗中被用于调度所述特征小区的控制信令备选的监测次数。
作为一个实施例,上述句子“所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数”包括以下含义:所述监测次数总和等于所述第一监测次数和第二监测次数的和,所述第二监测次数等于所述特征小区中在所述第一时间窗中被用于调度所述特征小区的各个聚合等级(AL,Aggregation Level)的控制信令备选的监测次数的和。
作为一个实施例,上述句子“所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关”包括以下含义:所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性负相关。
作为一个实施例,上述句子“所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关”包括以下含义:所述第二因子等于1减去所述第一监测次数和所述监测次数总和之间的比值的差。
作为一个实施例,“所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关”是通过下式实现的:
Figure PCTCN2021075167-appb-000018
其中,θ代表所述第二因子,M 1代表所述第一监测次数,M total代表所述监测次数总和。
实施例15
实施例15示例了根据本申请的一个实施例的第一参数和第一子载波间隔之间的关系的示意图,如附图15所示。在附图15中,左数第一列调度子载波间隔的索引,左数第二列代表X个备选参数,加黑的子载波间隔的索引是第一子载波间隔的索引,加黑的备选参数是第一参数。
在实施例15中,本申请中的所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,本申请中的所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
作为一个实施例,所述X个备选子载波间隔中的任意一个子载波间隔等于15kHz、30kHz、60kHz、120kHz中之一。
作为一个实施例,所述X个备选子载波间隔中的任意一个子载波间隔等于15kHz、30kHz、60kHz、120kHz,240kHz中之一。
作为一个实施例,所述X个备选子载波间隔中的任意一个子载波间隔等于15kHz的2的非负整数次幂。
作为一个实施例,所述X等于4。
作为一个实施例,所述X大于4。
作为一个实施例,所述X不小于4。
作为一个实施例,所述X个备选子载波间隔是预定义的(Predefined)。
作为一个实施例,所述X个备选子载波间隔是固定的(Fixed)。
作为一个实施例,所述X个备选子载波间隔是由R17版本所支持的所有的子载波间隔组成。
作为一个实施例,所述X个备选子载波间隔是由R16版本所支持的所有的子载波间隔组成。
作为一个实施例,所述X个备选子载波间隔中的任意两个备选子载波间隔不相等。
作为一个实施例,所述X个备选参数中的任意一个备选参数是一个服务小区上的一个时隙中的最大的PDCCH备选(Candidate)的监测次数。
作为一个实施例,所述X个备选参数中的任意两个备选参数不相等。
作为一个实施例,所述X个备选参数中存在两个备选参数相等。
作为一个实施例,所述X等于4,所述X个备选参数分别是44、36、22、20。
作为一个实施例,所述X个备选参数中的任意一个备选参数是一个可能的
Figure PCTCN2021075167-appb-000019
的值。
作为一个实施例,所述目标数值是一个整数。
作为一个实施例,所述目标数值是一个分数。
作为一个实施例,所述目标数值是一个有理数。
作为一个实施例,所述目标数值是一个非整数的有理数。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述目标数值和所述第一参数成正比。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述第一参数被本申请中的所述第一节点设备用于确定所述目标数值。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述目标数值和所述第一参数成正比,所述目标数值和所述第一参数之间的比例系数和本申请中的所述目标比例值有关。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述目标数值和所述第一参数成正比,所述目标数值和所述第一参数之间的比例系数和本申请中的所述第一能力参数有关。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述目标数值和所述第一参数成正比,所述目标数值和所述第一参数之间的比例系数等于被申请中的所述目标比例值和本申请中的所述第一能力参数之间的乘积。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:对于给定的申请中的所述目标比例值和给定的本申请中的所述第一能力参数,所述目标数值和所述第一参数线性相关。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述目标数值等于所述第一参数、本申请中的所述目标比例值、本申请中的所述第一能力参数三者的乘积。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”包括以下含义:所述第一参数通过函数运算被用于确定所述目标数值。
作为一个实施例,上述句子“所述第一参数被用于确定所述目标数值”是通过下式实现的:
Figure PCTCN2021075167-appb-000020
其中,
Figure PCTCN2021075167-appb-000021
代表所述第一阈值,
Figure PCTCN2021075167-appb-000022
代表所述目标数值,
Figure PCTCN2021075167-appb-000023
代表所述第一参数,
Figure PCTCN2021075167-appb-000024
代表本申请中的所述目标比例值,
Figure PCTCN2021075167-appb-000025
代表本申请中的所述第一能力参数,μ代表所述第一子载波间隔的索引。
作为一个实施例,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
作为一个实施例,对于本申请中的所述被调度小区集合所包括的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
作为一个实施例,对于同时属于本申请中的所述被调度小区集合和本申请中所述第一小区子集的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
作为一个实施例,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一乘积之间相比较的小值,所述第一乘积等于所述第一因子和所述第一参数之间的乘积。
作为一个实施例,对于同时属于本申请中的所述被调度小区集合和本申请中所述第二小区子集的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一乘积之间相比较的小值,所述第一乘积等于所述第一因子和所述第一参数之间的乘积。
作为一个实施例,对于同时属于本申请中的所述被调度小区集合和本申请中所述第二小区子集的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
作为一个实施例,对于本申请中的所述被调度小区集合所包括的,所对应的调度小区属于本申请中所述第一小区子集的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
作为一个实施例,对于本申请中的所述被调度小区集合所包括的,所对应的调度小区属于本申请中所述第二小区子集的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一乘积之间相比较的小值,所述第一乘积等于所述第一因子和所述第一参数之间的乘积。
作为一个实施例,对于本申请中的所述被调度小区集合所包括的,所对应的调度小区属于本申请中所述第二小区子集的每个服务小区,本申请中的所述第一节点设备不被要求在所述第一时间窗中在所述第一 子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
实施例16
实施例16示例了根据本申请的一个实施例的第二因子和第二和值之间的关系的示意图,如附图16所示。在附图16中,横轴代表频率,每个圆弧顶的块状区域代一个服务小区,每个斜线填充的竖条代表特征子频带中的一个子载波,每个交叉线填充的竖条代表第一子频带集合所包括的一个子频带中所包括的一个子载波。
在实施例16中,本申请中的所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,本申请中的所述第一子载波间隔和所述第二子载波间隔不相等。
作为一个实施例,上述句子“所述特征小区包括特征子频带”包括以下含义:所述特征小区所对应的载波(Carrier)包括特征子频带。
作为一个实施例,上述句子“所述特征小区包括特征子频带”包括以下含义:所述特征子频带属于所述特征小区。
作为一个实施例,上述句子“所述特征小区包括特征子频带”包括以下含义:所述特征子频带属于所述特征小区所对应的载波(Carrier)。
作为一个实施例,上述句子“所述特征小区包括特征子频带”包括以下含义:所述特征子频带被用于所述特征小区。
作为一个实施例,所述特征子频带是所述特征小区的活跃(Active)的BWP。
作为一个实施例,所述特征子频带是所述特征小区的非活跃(Inactive)的BWP。
作为一个实施例,所述特征子频带是所述特征小区的初始(Initial)的BWP。
作为一个实施例,所述特征子频带是所述特征小区的默认(Default)的BWP。
作为一个实施例,所述特征子频带包括大于1的正整数个子载波(Subcarrier)。
作为一个实施例,所述特征子频带包括12的正整数倍个子载波。
作为一个实施例,所述特征子频带包括多于1个子载波,所述特征子频带所包括的任意两个子载波的子载波间隔(SCS,Subcarrier Spacing)相等。
作为一个实施例,所述第二子载波间隔等于15kHz的2的非负整数次幂。
作为一个实施例,所述第二子载波间隔等于15kHz、30kHz、60kHz、120kHz中之一。
作为一个实施例,所述第二子载波间隔大于所述第一子载波间隔。
作为一个实施例,所述第二子载波间隔小于所述第一子载波间隔。
实施例17
实施例17示例了一个实施例的第一节点设备中的处理装置的结构框图,如附图17所示。在附图17中,第一节点设备处理装置1700包括第一处理机1701和第一接收机1702。第一处理机1701包括本申请附图4中的发射器/接收器456(包括天线460),发射处理器455,接收处理器452和控制器/处理器490;第一接收机1702包括本申请附图4中的发射器/接收器456(包括天线460),接收处理器452和控制器/处理器490。
在实施例17中,第一处理机1701接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;第一接收机1702监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所 包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,第一处理机1701接收第二信息;其中,所述第二信息被用于确定配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
作为一个实施例,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,第一处理机1701接收第三信息;其中,所述第三信息被用于确定第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;本申请中的所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,本申请中的所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;本申请中的所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
作为一个实施例,本申请中的所述第一特征和值等于本申请中的所述配置小区组所包括的服务小区的数量;本申请中的所述第一和值等于本申请中的所述被调度小区集合所包括的服务小区的数量。
作为一个实施例,本申请中的所述第二和值和本申请中的所述第一和值相等,本申请中的所述第一特征和值和本申请中的所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
作为一个实施例,第一处理机1701接收第四信息;其中,所述第四信息被用于确定第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定本申请中的所述第二和值,本申请中的所述第二和值和本申请中的所述第一和值不相等,本申请中的所述第二特征和值和本申请中的所述第一特征和值相等。
作为一个实施例,本申请中的所述第四信息被用于确定第一监测次数和监测次数总和,所述第一监测次数等于本申请中的所述目标小区中被用于调度本申请中的所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;本申请中的所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
作为一个实施例,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
作为一个实施例,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
作为一个实施例,第一处理机1701发送第五信息;其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
实施例18
实施例18示例了一个实施例的第二节点设备中的处理装置的结构框图,如附图18所示。在附图18中,第二节点设备处理装置1800包括第二处理机1801和第一发射机1802。第二处理机1801包括本申请附图4中的发射器/接收器416(包括天线460),接收处理器412,发射处理器415和控制器/处理器440;第一发射机1802包括本申请附图4中的发射器/接收器416(包括天线460),发射处理器415和控制器/处理器440。
在实施例18中,第二处理机1801发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;第一发射机1802确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
作为一个实施例,第二处理机1801发送第二信息;其中,所述第二信息被用于指示配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
作为一个实施例,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于所述第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
作为一个实施例,第二处理机1801发送第三信息;其中,所述第三信息被用于指示第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;本申请中的所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,本申请中的所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;本申请中的所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,本申请中的所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;本申请中的所述第一和值和所述第二数量与所述第一因子的乘积线性相关,本申请中的所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
作为一个实施例,本申请中的所述第一特征和值等于本申请中的所述配置小区组所包括的服务小区的数量;本申请中的所述第一和值等于本申请中的所述被调度小区集合所包括的服务小区的数量。
作为一个实施例,本申请中的所述第二和值和本申请中的所述第一和值相等,本申请中的所述第一特征和值和本申请中的所述第二特征和值不相等;本申请中的所述第二特征和值和本申请中的所述第一特征 和值之间的差值是预定义的,或者本申请中的所述第二特征和值和本申请中的所述第一特征和值之间的差值是可配置的。
作为一个实施例,第二处理机1801发送第四信息;其中,所述第四信息被用于指示第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定本申请中的所述第二和值,本申请中的所述第二和值和本申请中的所述第一和值不相等,本申请中的所述第二特征和值和本申请中的所述第一特征和值相等。
作为一个实施例,本申请中的所述第四信息被用于指示第一监测次数和监测次数总和,所述第一监测次数等于本申请中的所述目标小区中被用于调度本申请中的所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度本申请中的所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
作为一个实施例,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
作为一个实施例,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
作为一个实施例,第二处理机1801接收第五信息;其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可以通过程序来指令相关硬件完成,所述程序可以存储于计算机可读存储介质中,如只读存储器,硬盘或者光盘等。可选的,上述实施例的全部或部分步骤也可以使用一个或者多个集成电路来实现。相应的,上述实施例中的各模块单元,可以采用硬件形式实现,也可以由软件功能模块的形式实现,本申请不限于任何特定形式的软件和硬件的结合。本申请中的第一节点设备或者第二节点设备或者UE或者终端包括但不限于手机,平板电脑,笔记本,上网卡,低功耗设备,eMTC设备,NB-IoT设备,车载通信设备,飞行器,飞机,无人机,遥控飞机等无线通信设备。本申请中的基站设备或者基站或者网络侧设备包括但不限于宏蜂窝基站,微蜂窝基站,家庭基站,中继基站,eNB,gNB,传输接收节点TRP,中继卫星,卫星基站,空中基站等无线通信设备。
以上所述,仅为本申请的较佳实施例而已,并非用于限定本申请的保护范围。凡在本申请的精神和原则之内,所做的任何修改,等同替换,改进等,均应包含在本申请的保护范围之内。

Claims (60)

  1. 一种用于无线通信中的第一节点设备,其特征在于,包括:
    第一处理机,接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
    第一接收机,监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
    其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
  2. 根据权利要求1中所述的第一节点设备,其特征在于,所述第一处理机接收第二信息;其中,所述第二信息被用于确定配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
  3. 根据权利要求1或2中所述的第一节点设备,其特征在于,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
  4. 根据权利要求3中所述的第一节点设备,其特征在于,当所述特征小区和所述目标小区相同时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合不包括所述目标小区时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合包括所述目标小区时,所述目标比例值等于所述第二比例值。
  5. 根据权利要求3或4中所述的第一节点设备,其特征在于,所述第一处理机接收第三信息;其中,所述第三信息被用于确定第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
  6. 根据权利要求5中所述的第一节点设备,其特征在于,所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区;所述P个子信息块中的任意一个子信息块被用于确定所述P个服务小区中的对应的服务小区被提供的控制资源集合(CORESET,Control Resource Set);所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等,所述第二小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等。
  7. 根据权利要求3至6中任一权利要求中所述的第一节点设备,其特征在于,所述第一特征和值等于所述配置小区组所包括的服务小区的数量;所述第一和值等于所述被调度小区集合所包括的服务小区的数量。
  8. 根据权利要求3至7中任一权利要求中所述的第一节点设备,其特征在于,所述第二和值和所述第一和值相等,所述第一特征和值和所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
  9. 根据权利要求3至8中任一权利要求中的所述的第一节点设备,其特征在于,所述第一处理机接收第四信息;其中,所述第四信息被用于确定第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定所述第二和值,所述第二和值和所述第一和值不相等,所述第二特征和值和所述第一特征和值相等。
  10. 根据权利要求9中所述的第一节点设备,其特征在于,所述第四信息被用于确定第一监测次数和监测次数总和,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
  11. 根据权利要求1至10中任一权利要求所述的第一节点设备,其特征在于,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
  12. 根据权利要求11中所述的第一节点设备,其特征在于,对于所述被调度小区集合所包括的每个服务小区,所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
  13. 根据权利要求1至12中任一权利要求所述的第一节点设备,其特征在于,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
  14. 根据权利要求1至13中任一权利要求中所述的第一节点设备,其特征在于,所述第一处理机发送第五信息;其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
  15. 根据权利要求1至14中任一权利要求中所述的第一节点设备,其特征在于,所述第一处理机接收第六信息和第七信息;其中,所述第六信息被用于确定所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带所包括的子载波的子载波间隔,所述第七信息被用于在所述第一子频带集合中的子频带中确定所述目标控制信令备选集合中的每个控制信令备选所占用的频域资源;所述第一子频带集合所包括的任意一个子频带是带宽部分(BWP,Bandwidth Part);所述第一时间窗是所述第一子载波间隔所对应的一个跨度(Span)。
  16. 一种用于无线通信中的第二节点设备,其特征在于,包括:
    第二处理机,发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
    第一发射机,确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
    其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括 的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
  17. 根据权利要求16中所述的第二节点设备,其特征在于,所述第二处理机发送第二信息;其中,所述第二信息被用于指示配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
  18. 根据权利要求16或17中所述的第二节点设备,其特征在于,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
  19. 根据权利要求18中所述的第二节点设备,其特征在于,当所述特征小区和所述目标小区相同时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合不包括所述目标小区时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合包括所述目标小区时,所述目标比例值等于所述第二比例值。
  20. 根据权利要求18或19中所述的第二节点设备,其特征在于,所述第二处理机发送第三信息;其中,所述第三信息被用于指示第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
  21. 根据权利要求20中所述的第二节点设备,其特征在于,所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区;所述P个子信息块中的任意一个子信息块被用于确定所述P个服务小区中的对应的服务小区被提供的控制资源集合(CORESET,Control Resource Set);所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等,所述第二小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等。
  22. 根据权利要求18至21中任一权利要求中所述的第二节点设备,其特征在于,所述第一特征和值等于所述配置小区组所包括的服务小区的数量;所述第一和值等于所述被调度小区集合所包括的服务小区的数量。
  23. 根据权利要求18至22中任一权利要求中所述的第二节点设备,其特征在于,所述第二和值和所述第一和值相等,所述第一特征和值和所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
  24. 根据权利要求18至23中任一权利要求中的所述的第二节点设备,其特征在于,所述第二处理机发送第四信息;其中,所述第四信息被用于指示第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定所述第二和值,所述第二和值和所述第一和值不相等,所述第二特征和值 和所述第一特征和值相等。
  25. 根据权利要求24中所述的第二节点设备,其特征在于,所述第四信息被用于指示第一监测次数和监测次数总和,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
  26. 根据权利要求16至25中任一权利要求所述的第二节点设备,其特征在于,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
  27. 根据权利要求26中所述的第二节点设备,其特征在于,对于所述被调度小区集合所包括的每个服务小区,所述目标控制信令备选集合所包括的控制信令备选的监测者不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
  28. 根据权利要求16至27中任一权利要求所述的第二节点设备,其特征在于,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
  29. 根据权利要求16至28中任一权利要求中所述的第二节点设备,其特征在于,所述第二处理机接收第五信息;其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
  30. 根据权利要求16至29中任一权利要求中所述的第二节点设备,其特征在于,所述第二处理机发送第六信息和第七信息;其中,所述第六信息被用于指示所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带所包括的子载波的子载波间隔,所述第七信息被用于在所述第一子频带集合中的子频带中指示所述目标控制信令备选集合中的每个控制信令备选所占用的频域资源;所述第一子频带集合所包括的任意一个子频带是带宽部分(BWP,Bandwidth Part);所述第一时间窗是所述第一子载波间隔所对应的一个跨度(Span)。
  31. 一种用于无线通信中的第一节点中的方法,其特征在于,包括:
    接收第一信息,所述第一信息被用于确定目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
    监测目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
    其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
  32. 根据权利要求31中所述的方法,其特征在于,包括:
    接收第二信息;
    其中,所述第二信息被用于确定配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所 述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
  33. 根据权利要求31或32中所述的方法,其特征在于,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
  34. 根据权利要求33中所述的方法,其特征在于,当所述特征小区和所述目标小区相同时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合不包括所述目标小区时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合包括所述目标小区时,所述目标比例值等于所述第二比例值。
  35. 根据权利要求33或34中所述的方法,其特征在于,包括:
    接收第三信息;
    其中,所述第三信息被用于确定第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
  36. 根据权利要求35中所述的方法,其特征在于,所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区;所述P个子信息块中的任意一个子信息块被用于确定所述P个服务小区中的对应的服务小区被提供的控制资源集合(CORESET,Control Resource Set);所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等,所述第二小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等。
  37. 根据权利要求33至36中任一权利要求中所述的方法,其特征在于,所述第一特征和值等于所述配置小区组所包括的服务小区的数量;所述第一和值等于所述被调度小区集合所包括的服务小区的数量。
  38. 根据权利要求33至37中任一权利要求中所述的方法,其特征在于,所述第二和值和所述第一和值相等,所述第一特征和值和所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
  39. 根据权利要求33至38中任一权利要求中的所述的方法,其特征在于,包括:
    接收第四信息;
    其中,所述第四信息被用于确定第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定所述第二和值,所述第二和值和所述第一和值不相等,所述第二特征和值和所述第一特征和值相等。
  40. 根据权利要求39中所述的方法,其特征在于,所述第四信息被用于确定第一监测次数和监测次数总和,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
  41. 根据权利要求31至40中任一权利要求所述的方法,其特征在于,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一 子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
  42. 根据权利要求141中所述的方法,其特征在于,对于所述被调度小区集合所包括的每个服务小区,所述第一节点设备不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
  43. 根据权利要求31至42中任一权利要求所述的方法,其特征在于,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
  44. 根据权利要求31至43中任一权利要求中所述的方法,其特征在于,包括:
    发送第五信息;
    其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
  45. 根据权利要求31至44中任一权利要求中所述的方法,其特征在于,包括:
    接收第六信息和第七信息;
    其中,所述第六信息被用于确定所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带所包括的子载波的子载波间隔,所述第七信息被用于在所述第一子频带集合中的子频带中确定所述目标控制信令备选集合中的每个控制信令备选所占用的频域资源;所述第一子频带集合所包括的任意一个子频带是带宽部分(BWP,Bandwidth Part);所述第一时间窗是所述第一子载波间隔所对应的一个跨度(Span)。
  46. 一种用于无线通信中的第二节点中的方法,其特征在于,包括:
    发送第一信息,所述第一信息被用于指示目标小区,所述目标小区被用于调度特征小区,所述特征小区和所述目标小区属于同一个小区组;
    确定目标控制信令备选集合所包括的控制信令备选,所述目标控制信令备选集合包括正整数个控制信令备选;
    其中,第一子频带集合包括正整数个子频带,第一控制信令备选是所述目标控制信令备选集合所包括的一个控制信令备选,所述第一控制信令备选所占用的频域资源属于所述第一子频带集合所包括的一个子频带;第一时间窗包括所述目标控制信令备选集合所包括的任意一个控制信令备选所占用的时域资源;调度小区集合包括正整数个服务小区,所述第一子频带集合所包括的任意一个子频带所属的服务小区属于所述调度小区集合;所述第一子频带集合所包括的任意一个子频带所包括的子载波的子载波间隔等于第一子载波间隔;所述第一子载波间隔被用于确定所述第一时间窗的时间长度;所述目标控制信令备选集合所包括的控制信令备选的被监测次数不大于第一阈值,所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于确定所述第一阈值,所述第一阈值是非负整数。
  47. 根据权利要求46中所述的方法,其特征在于,包括:
    发送第二信息;
    其中,所述第二信息被用于指示配置小区组,所述配置小区组包括大于1的正整数个服务小区;所述目标小区属于所述配置小区组,所述特征小区属于所述配置小区组,所述特征小区是所述配置小区组中的主小区;被调度小区集合包括所述调度小区集合所包括的服务小区所调度的服务小区,所述被调度小区集合包括正整数个服务小区;所述调度小区集合所包括的任意一个服务小区属于所述配置小区组,所述被调度小区集合所包括的任意一个服务小区属于所述配置小区组。
  48. 根据权利要求46或47中所述的方法,其特征在于,目标比例值被用于确定所述第一阈值,所述目标比例值是不大于1的正数,所述目标比例值等于第一比例值、第二比例值中的之一;所述第一比例值等于第一和值与第一特征和值之间的比值,所述第二比例值等于第二和值与第二特征和值之间的比值;所述第一和值是正数,所述第一特征和值是不小于所述第一和值的正数,所述第二和值是正数,所述第二特征和值是不小于所述第二和值的正数,所述第一比例值和所述第二比例值 不相等;所述调度小区集合是否包括所述目标小区、所述特征小区和所述目标小区是否相同中至少之一被用于从所述第一比例值和所述第二比例值之间确定所述目标比例值。
  49. 根据权利要求48中所述的方法,其特征在于,当所述特征小区和所述目标小区相同时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合不包括所述目标小区时,所述目标比例值等于所述第一比例值;当所述特征小区和所述目标小区不相同并且所述调度小区集合包括所述目标小区时,所述目标比例值等于所述第二比例值。
  50. 根据权利要求48或49中所述的方法,其特征在于,包括:
    发送第三信息;
    其中,所述第三信息被用于指示第一小区子集和第二小区子集,所述第一小区子集包括正整数个服务小区,所述第二小区子集包括正整数个服务小区;所述被调度小区集合所包括的属于所述第一小区子集的服务小区的数量等于第一数量,所述被调度小区集合所包括的属于所述第二小区子集的服务小区的数量等于第二数量;所述第一特征和值和所述第二小区子集所包括的服务小区的数量与第一因子的乘积线性相关,所述第一特征和值和所述第一小区子集所包括的服务小区的数量线性相关;所述第一和值和所述第二数量与所述第一因子的乘积线性相关,所述第一和值和所述第一数量线性相关;所述第一因子是可配置的,或者所述第一因子是预定义的。
  51. 根据权利要求50中所述的方法,其特征在于,所述第三信息包括P个子信息块,所述P等于所述第一小区子集所包括的服务小区的数量和所述第二小区子集所包括的服务小区的数量之和;所述P个子信息块分别针对所述第一小区子集和所述第二小区子集所包括的P个服务小区;所述P个子信息块中的任意一个子信息块被用于确定所述P个服务小区中的对应的服务小区被提供的控制资源集合(CORESET,Control Resource Set);所述第一小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等,所述第二小区子集所包括的每个服务小区被提供的控制资源集合(CORESET,Control Resource Set)的数量相等。
  52. 根据权利要求48至51中任一权利要求中所述的方法,其特征在于,所述第一特征和值等于所述配置小区组所包括的服务小区的数量;所述第一和值等于所述被调度小区集合所包括的服务小区的数量。
  53. 根据权利要求48至52中任一权利要求中所述的方法,其特征在于,所述第二和值和所述第一和值相等,所述第一特征和值和所述第二特征和值不相等;所述第二特征和值和所述第一特征和值之间的差值是预定义的,或者所述第二特征和值和所述第一特征和值之间的差值是可配置的。
  54. 根据权利要求48至53中任一权利要求中的所述的方法,其特征在于,包括:
    发送第四信息;
    其中,所述第四信息被用于指示第二因子,所述第二因子是小于1的正数,所述第二因子被用于确定所述第二和值,所述第二和值和所述第一和值不相等,所述第二特征和值和所述第一特征和值相等。
  55. 根据权利要求54中所述的方法,其特征在于,所述第四信息被用于指示第一监测次数和监测次数总和,所述第一监测次数等于所述目标小区中被用于调度所述特征小区的控制信令备选的监测次数,所述监测次数总和等于被用于调度所述特征小区的控制信令备选的总的监测次数;所述第二因子和所述第一监测次数和所述监测次数总和之间的比值线性相关。
  56. 根据权利要求46至55中任一权利要求所述的方法,其特征在于,所述第一子载波间隔是X个备选子载波间隔中的一个备选子载波间隔,所述X是大于1的正整数;所述X个备选子载波间隔分别一一对应X个备选参数,所述X个备选参数中的每个备选参数是正整数;第一参数是所述第一子载波间隔在所述X个备选参数中所对应的备选参数,所述第一阈值等于目标数值的向下取整值,所述第一参数被用于确定所述目标数值。
  57. 根据权利要求56中所述的方法,其特征在于,对于所述被调度小区集合所包括的每个服务小区,所述目标控制信令备选集合所包括的控制信令备选的监测者不被要求在所述第一时间窗中在所述第一子频带集合中的任意一个子频带上的所述目标控制信令备选集合所包括的控制信令备选的监测次数超过所述第一阈值和所述第一参数之间相比较的小值。
  58. 根据权利要求46至57中任一权利要求所述的方法,其特征在于,所述特征小区包括特征子频带,所述特征子频带包括正整数个子载波,所述特征子频带所包括的任意一个子载波的子载波间隔等于第二子载波间隔,所述第一子载波间隔和所述第二子载波间隔不相等。
  59. 根据权利要求46至58中任一权利要求中所述的方法,其特征在于,包括:
    接收第五信息;
    其中,所述第五信息被用于指示第一能力参数,所述第一能力参数是正整数;所述第一能力参数被用于确定所述第一阈值。
  60. 根据权利要求46至59中任一权利要求中所述的方法,其特征在于,包括:
    发送第六信息和第七信息;
    其中,所述第六信息被用于指示所述第一子频带集合中的每个子频带和所述第一子频带集合中的每个子频带所包括的子载波的子载波间隔,所述第七信息被用于在所述第一子频带集合中的子频带中指示所述目标控制信令备选集合中的每个控制信令备选所占用的频域资源;所述第一子频带集合所包括的任意一个子频带是带宽部分(BWP,Bandwidth Part);所述第一时间窗是所述第一子载波间隔所对应的一个跨度(Span)。
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