WO2021031958A1 - 一种指示节能信息的方法、基站以及用户终端 - Google Patents
一种指示节能信息的方法、基站以及用户终端 Download PDFInfo
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- WO2021031958A1 WO2021031958A1 PCT/CN2020/108701 CN2020108701W WO2021031958A1 WO 2021031958 A1 WO2021031958 A1 WO 2021031958A1 CN 2020108701 W CN2020108701 W CN 2020108701W WO 2021031958 A1 WO2021031958 A1 WO 2021031958A1
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- H04W52/0216—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower using a pre-established activity schedule, e.g. traffic indication frame
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- H04W52/0229—Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Definitions
- the present disclosure relates to the field of communication technologies, and in particular to a method, base station, and user terminal for indicating energy saving information.
- the UE can obtain the minimum value of the cross-slot scheduling before decoding the scheduled PDCCH, so that the UE can turn off some transmission equipment, reduce the processing speed of the main components, and achieve the effect of energy saving.
- the current standard defines the use of Downlink Control Information (DCI) to carry energy saving information.
- DCI Downlink Control Information
- a target DCI carrying energy saving information is only used to indicate a cross-slot scheduling information, which will lead to an increase in DCI overhead and an increase in the power consumption of UE blind detection. It can be seen that although the energy saving effect can be achieved at present, the energy saving effect is not ideal.
- a method, a base station, and a user terminal for indicating energy saving information in the embodiments of the present disclosure are used to solve the technical problem that the energy saving effect is not ideal when the PDCCH is used as the energy saving channel to indicate the energy saving information of the UE.
- embodiments of the present disclosure provide a method for indicating energy saving information, which is applied to a base station, and the technical solution of the method is as follows:
- the first energy saving information is carried in the target DCI of the first time unit; wherein the first energy saving information is used to indicate at least one cross-slot scheduling information contained in the first time window, and the first time window includes all
- the first time unit is the starting point or at least one time unit starting from the time unit after the first time unit, and the cross-slot scheduling information includes at least one of first information and second information; wherein, The first information is used to indicate whether the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the time-domain resource allocation (TDRA) list.
- the minimum value of slot scheduling parameters is used to indicate whether the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the time-domain resource allocation (TDRA) list.
- the base station carries first energy-saving information in the target DCI of the first time unit, where the first energy-saving information is used to indicate that the first time unit is the starting point or the first time
- the time unit after the unit is at least one cross-slot scheduling information contained in at least one time unit of the starting point, and the target DCI is sent to the user terminal, so that a target DCI carrying energy saving information can indicate multiple cross-slot scheduling information ,
- a target DCI carrying energy saving information can indicate multiple cross-slot scheduling information
- the loss of the target DCI carrying energy saving information causes the increase in UE power consumption, and the need for more targets to carry energy saving information
- the DCI causes the technical problem of the target DCI overhead and the increase in power consumption of the UE blind detection, which reduces the UE power consumption and improves the energy saving effect.
- the minimum value of the cross-slot scheduling parameter includes at least one of the following:
- PDSCH physical layer downlink shared channel
- PUSCH physical layer uplink shared channel
- the minimum value of the time interval between CSI-RS reception and PDCCH reception associated with the SRS request is the minimum value of the time interval between CSI-RS reception and PDCCH reception associated with the SRS request.
- the target DCI includes downlink (DL) scheduling DCI, uplink (UL) scheduling DCI, and group-common DCI, used to carry energy saving information At least one of the DCI.
- DL downlink
- UL uplink
- group-common DCI used to carry energy saving information At least one of the DCI.
- the method further includes: if the first energy saving information is carried on DL scheduling DCI and/or UL scheduling DCI, determining The number of the target DCI is X; where X is less than or equal to the number of DL scheduling DCI or UL scheduling DCI included in one time unit.
- the fourth possible implementation manner of the first aspect it further includes:
- the second energy saving information is carried in the target DCI of the second time unit; wherein the second energy saving information is used to indicate at least one cross-slot scheduling information included in the second time window, and the second time window includes all
- the second time unit is the starting point or at least one time unit starting from the time unit after the second time unit; the relationship between the second time window and the first time window includes partial overlap, no overlap, and complete At least one of the overlaps;
- the method further includes:
- the active part bandwidth (BWP) of the first carrier used for data transmission in the scheduling DCI is configured as cross-slot scheduling, determining that the cross-slot scheduling parameter is the maximum value of the first time interval and the first parameter;
- the first carrier is a carrier set including at least one carrier, and the first time interval is used to indicate the time interval for switching the activated BWP of the first carrier from the first BWP to the second BWP, and the first The parameter is used to indicate the cross-slot scheduling parameter of the second BWP configuration.
- the sixth possible implementation manner of the first aspect further includes:
- the handover signaling is sent on the second carrier; wherein, the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used To indicate the activated BWP handover of the first carrier.
- embodiments of the present disclosure provide a method for indicating energy saving information, which is applied to a user terminal, and includes:
- the first energy saving information is used to indicate at least one cross-slot scheduling information included in a first time window, and the first time window Including at least one time unit starting from the first time unit or starting from a time unit after the first time unit, and the cross-slot scheduling information includes at least one of first information and second information ;
- the first information is used to indicate that the scheduling DCI is cross-slot scheduling or current slot scheduling
- the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the cross-slot scheduling parameter in the TDRA list The minimum value of
- determining at least one cross-slot scheduling information included in the first time window according to the target DCI includes:
- the cross-slot scheduling information is carried on the scheduling DCI
- the target DCI is downlink (DL) scheduling DCI and indicates the cross-slot scheduling information of uplink (UL) scheduling DCI, or the target DCI is UL scheduling DCI and indicates the cross-slot scheduling information of DL scheduling DCI, Then the user terminal falls back to this time slot scheduling.
- the target DCI is DL scheduling DCI and the cross-slot scheduling information of UL scheduling DCI is indicated, or the target DCI is UL scheduling DCI and the cross-slot scheduling information of DL scheduling DCI is indicated.
- the user terminal falls back to this time slot scheduling, so that the cross-slot scheduling information that needs to be indicated for the target DCI to be DL scheduling DCI is carried in the UL scheduling DCI, or the target DCI is the cross-slot scheduling that needs to be indicated for the UL scheduling DCI Information bears technical problems that cannot be indicated when DL scheduling DCI.
- the user terminal determines the cross-slot scheduling information according to the received target DCI that is closest in time.
- the third possible implementation manner of the second aspect it further includes:
- the user terminal receives the cross-slot scheduling parameter, and the cross-slot scheduling parameter is the first The maximum value of the time interval and the first parameter; wherein, the first time interval is used to indicate the time interval when the activated BWP of the first carrier is switched from the first BWP to the second BWP, and the first parameter is used for Represents the cross-slot scheduling parameter of the second BWP configuration of the first carrier.
- the fourth possible implementation manner of the second aspect further includes:
- the second carrier After the activated BWP of the first carrier ends data transmission, the second carrier receives handover signaling; wherein, the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used for Switch to the activated BWP indicating the first carrier;
- the activated BWP of the first carrier is switched from the first BWP to the second BWP.
- a base station including:
- the processing module is configured to carry first energy saving information in the target DCI of the first time unit; wherein, the first energy saving information is used to indicate at least one cross-slot scheduling information contained in the first time window, and the first The time window includes at least one time unit starting from the first time unit or a time unit after the first time unit, and the cross-slot scheduling information includes at least one of the first information and the second information One; wherein, the first information is used to indicate that the scheduling DCI is cross-slot scheduling or this time slot scheduling, and the second information is used to indicate the minimum value of cross-slot scheduling parameters or time domain resource allocation (TDRA) The minimum value of the cross-slot scheduling parameter in the list;
- TDRA time domain resource allocation
- the sending module is used to send the target DCI to the user terminal.
- the processing module is further configured to:
- the number of the target DCI is determined to be X; where X is less than or equal to the DL scheduling DCI contained in one time unit or The number of UL scheduled DCIs.
- the sending module is further configured to:
- the second energy saving information is carried in the target DCI of the second time unit; wherein the second energy saving information is used to indicate at least one cross-slot scheduling information included in the second time window, and the second time window includes all
- the second time unit is the starting point or at least one time unit starting from the time unit after the second time unit; the relationship between the second time window and the first time window includes partial overlap, no overlap, and complete At least one of the overlaps;
- the base station further includes a determining module for:
- the active part bandwidth (BWP) of the first carrier used for data transmission in the scheduling DCI is configured as cross-slot scheduling, determining that the cross-slot scheduling parameter is the maximum value of the first time interval and the first parameter;
- the first carrier is a carrier set including at least one carrier, and the first time interval is used to indicate the time interval for switching the activated BWP of the first carrier from the first BWP to the second BWP, and the first The parameter is used to indicate the cross-slot scheduling parameter of the second BWP configuration.
- the determining module is further configured to: after the activated BWP of the first carrier ends data transmission, perform Two carriers send handover signaling; wherein, the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used to instruct the activated BWP switch of the first carrier.
- embodiments of the present disclosure provide a user terminal, including:
- the receiving module is configured to receive the target DCI carrying the first energy-saving information sent by the base station in the first time unit; wherein the first energy-saving information is used to indicate at least one cross-slot scheduling information contained in the first time window, and
- the first time window includes at least one time unit starting from the first time unit or a time unit after the first time unit, and the cross-slot scheduling information includes first information and second information At least one of; wherein the first information is used to indicate that the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used to indicate the minimum value of cross-slot scheduling parameters or time domain resource allocation (TDRA) The minimum value of the cross-slot scheduling parameter in the list;
- TDRA time domain resource allocation
- the processing module is configured to determine at least one cross-slot scheduling information contained in the first time window according to the target DCI.
- the processing module is specifically configured to:
- the cross-slot scheduling information is carried on the scheduling DCI
- the target DCI is downlink (DL) scheduling DCI and indicates the cross-slot scheduling information of uplink (UL) scheduling DCI, or the target DCI is UL scheduling DCI and indicates the cross-slot scheduling information of DL scheduling DCI, Then the user terminal falls back to this time slot scheduling.
- the receiving module is further configured to:
- the user terminal determines the cross-slot scheduling information according to the received target DCI that is closest in time.
- the receiving module is further configured to:
- the user terminal receives the cross-slot scheduling parameter, and the cross-slot scheduling parameter is the first The maximum value of the time interval and the first parameter; wherein, the first time interval is used to indicate the time interval when the activated BWP of the first carrier is switched from the first BWP to the second BWP, and the first parameter is used for Represents the cross-slot scheduling parameter of the second BWP configuration of the first carrier.
- the processing module is further configured to:
- the second carrier After the activated BWP of the first carrier ends data transmission, the second carrier receives handover signaling; wherein, the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used for Switch to the activated BWP indicating the first carrier;
- the activated BWP of the first carrier is switched from the first BWP to the second BWP.
- an embodiment of the present disclosure provides a base station device for indicating energy saving information.
- the base station device includes a processor and a memory.
- the memory is configured to store a program executable by the processor, and the processor is configured to read Describe the program in the memory and execute the following steps:
- the first energy saving information is carried in the target DCI of the first time unit; wherein the first energy saving information is used to indicate at least one cross-slot scheduling information contained in the first time window, and the first time window includes all
- the first time unit is the starting point or at least one time unit starting from the time unit after the first time unit, and the cross-slot scheduling information includes at least one of first information and second information; wherein, The first information is used to indicate whether the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the time-domain resource allocation (TDRA) list.
- the minimum value of slot scheduling parameters is used to indicate whether the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the time-domain resource allocation (TDRA) list.
- the embodiments of the present disclosure provide a user terminal device for indicating energy saving information.
- the user terminal device includes a processor and a memory.
- the memory is used to store a program executable by the processor, and the processor is used to read Fetch the program in the memory and execute the following steps:
- the first energy saving information is used to indicate at least one cross-slot scheduling information included in a first time window, and the first time window Including at least one time unit starting from the first time unit or starting from a time unit after the first time unit, and the cross-slot scheduling information includes at least one of first information and second information ;
- the first information is used to indicate that the scheduling DCI is cross-slot scheduling or this time slot scheduling
- the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the time domain resource allocation (TDRA) list The minimum value of the cross-slot scheduling parameter;
- an embodiment of the present disclosure provides a storage medium that stores computer-executable instructions, and the computer-executable instructions are used to cause a computer to execute any one of the first aspect and the second aspect. step.
- FIG. 1 is a schematic structural diagram of a base station in an embodiment of the disclosure
- FIG. 2 is a flowchart of a method for indicating energy saving information on the base station side in an embodiment of the disclosure
- Figure 3 is a schematic structural diagram of a user terminal in an embodiment of the disclosure.
- FIG. 4 is a flowchart of a method for indicating energy saving information on the user terminal side in an embodiment of the disclosure
- Fig. 5 is a schematic structural diagram of a base station for indicating energy saving information in an embodiment of the disclosure
- FIG. 6 is a schematic structural diagram of a user terminal for indicating energy saving information in an embodiment of the disclosure
- Fig. 7 is a schematic structural diagram of a base station device indicating energy saving information in an embodiment of the disclosure.
- Fig. 8 is a schematic structural diagram of a user terminal device indicating energy saving information in an embodiment of the disclosure.
- At least one may mean one or at least two, for example, it may be one, two, three or more, and the embodiment of the present disclosure does not limit it.
- a target DCI carrying energy saving information is only used to indicate a cross-slot scheduling information and energy saving information is carried on the downlink (Downlink, DL) scheduling DCI and uplink (Uplink, UL) scheduling DCI, which can only be used to indicate respectively
- Cross-slot scheduling information on DL scheduling DCI and UL scheduling DCI will increase the overhead of DCI and increase the power consumption of UE blind detection. It can be seen that although the existing technology can achieve the effect of energy saving, the effect of energy saving is not ideal.
- the embodiments of the present disclosure provide a method for indicating energy saving information.
- the method carries first energy saving information in a target DCI of a first time unit, where the first energy saving information is used to indicate that the first time unit is the starting point or At least one cross-slot scheduling information contained in at least one time unit starting from the time unit after the first time unit, send the target DCI to the user terminal, so that one target DCI carrying energy saving information can indicate multiple cross-slots Scheduling information to solve the problem that a target DCI carrying energy saving information cannot indicate or ambiguous indication when indicating multiple cross-slot scheduling information.
- the loss of the target DCI carrying energy saving information causes the increase in UE power consumption and the need for more energy saving information.
- the target DCI leads to the technical problem of the target DCI overhead and the increase in power consumption of the UE blind detection, which reduces the UE power consumption and improves the energy saving effect.
- Figure 1 is a structure of a base station to which the method provided in the embodiment of the present disclosure is applicable.
- the method provided in the embodiment of the present disclosure can be applied to a variety of base stations. It should be understood that the base station shown in Figure 1 is applicable to the present disclosure.
- the detailed description of the base station to which the method provided in the embodiment is provided is not a limitation to the base station to which the method provided in the embodiment of the present disclosure can be applied.
- the base station shown in FIG. 1 includes a processor 101, a memory 102, a transceiver 103, and a bus interface 104.
- the processor 101, the memory 102, and the transceiver 103 are connected through a bus interface 104.
- the transceiver 101 is configured to send target downlink control information DCI carrying first energy saving information in a first time unit, send target downlink control information DCI carrying second energy saving information in a second time unit, and an indication message indicating a period for sending target DCI.
- the memory 102 is used to store program instructions.
- the processor 103 is configured to call the program instructions stored in the memory 102, and execute all steps included in the method for indicating energy saving information according to the obtained program instructions.
- an embodiment of the present disclosure provides a method for indicating energy saving information, and the method may be executed by the base station shown in FIG.
- the specific process of this method is described as follows.
- Step 201 Carry first energy saving information in the target DCI of the first time unit.
- the base station configures the relevant information of the first energy saving information, where the relevant information includes the cross-slot scheduling parameter, the minimum value of the cross-slot scheduling parameter, the cross-slot scheduling information, and the target carrying the energy saving information DCI, and then carry the first energy saving information in the target DCI of the first time unit, where the first energy saving information is used to indicate at least one cross-slot scheduling information included in the first time window, and the first time
- the window includes at least one time unit starting from the first time unit or starting from a time unit after the first time unit.
- the target DCI carrying energy saving information may include at least one of downlink (DL) scheduling DCI, uplink (UL) scheduling DCI, group-common DCI, and newly defined DCI for carrying energy saving information.
- DL scheduling DCI downlink
- UL scheduling DCI uplink
- group-common DCI group-common DCI
- newly defined DCI for carrying energy saving information.
- the number of target DCIs is determined to be X; where X is less than or equal to the DL scheduling DCI or UL scheduling DCI included in one time unit The number of.
- the number of DL scheduling DCI or UL scheduling DCI included in the first time unit is 4, it is determined that the number of target DCIs carrying the first energy saving information is less than or equal to 4.
- the cross-slot scheduling information includes at least one of first information and second information; where the first information is used to indicate whether the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used It indicates the minimum value of the cross-slot scheduling parameter or the minimum value of the cross-slot scheduling parameter in the Time Domain Resource Allocation (TDRA) list.
- TDRA Time Domain Resource Allocation
- cross-slot scheduling is performed for a specific carrier.
- the minimum value of the cross-slot scheduling parameter includes at least one of the following:
- PDSCH Physical Downlink Shared Channel
- PUSCH physical uplink shared channel
- CSI-RS Channel State Information-Reference Signal
- the minimum value of the time interval between CSI-RS reception and PDCCH reception associated with the SRS request is the minimum value of the time interval between CSI-RS reception and PDCCH reception associated with the SRS request.
- the first energy-saving information can directly indicate scheduling DCI for this time slot scheduling or cross-slot scheduling through the first information indicating cross-slot scheduling information, or by indicating the second cross-slot scheduling information.
- the information indirectly indicates the scheduling of DCI for this time slot or across time slots.
- the first energy saving information indicates the minimum value of the time interval between PDSCH transmission and PDCCH reception in the second information or the minimum value of the time interval K0 between PDCCH transmission and PDSCH reception is equal to A
- the minimum value of the time interval between PDCCH transmission and PUSCH reception, K2 is equal to B, where A and B are both positive integers, and the first information is determined to indicate that the scheduling of DCI is cross-slot scheduling ;
- the first energy saving information indicates the minimum value of the time interval between PDSCH transmission and PDCCH reception in the second information or the minimum value of the time interval between PDCCH transmission and PDSCH reception K0 is equal to A
- the difference between PUSCH transmission and PDCCH reception The minimum value of the time interval or the minimum value of the time interval K2 between PDCCH transmission and PUSCH reception is equal to B, where A is equal to zero and B is not less than zero, and the first information is determined to be used to indicate that the scheduling of DCI is cross-slot scheduling.
- the implementation described in the above embodiment is for a specific carrier.
- the choice of the carrier is not limited to the various situations listed above, or multiple carrier scheduling can be performed. Based on this situation, the In the disclosed embodiment, if the active part of the bandwidth BWP of the first carrier used for scheduling DCI for data transmission is configured as cross-slot scheduling, where the first carrier is a carrier set including at least one carrier, when the first carrier is activated BWP switching When the cross-slot scheduling is restricted, the problem of cross-slot scheduling may occur. Based on this problem, in the embodiment of the present disclosure, if the active part of the bandwidth BWP of the first carrier for scheduling DCI for data transmission is configured as cross-slot scheduling, the cross-slot scheduling is determined.
- the time slot scheduling parameter is the maximum value of the first time interval and the first parameter; where the first carrier is a carrier set including at least one carrier, and the first time interval is used to indicate that the activated BWP of the first carrier is determined by the first carrier.
- the time interval for switching the BWP to the second BWP, and the first parameter is used to indicate the cross-slot scheduling parameter configured by the second BWP.
- the handover signaling is sent on the second carrier, where the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used to indicate the second carrier.
- the activated BWP of one carrier is switched, according to the handover signaling, the activated BWP of the first carrier is switched from the first BWP to the second BWP.
- Step 202 Send the target DCI to the user terminal.
- the target DCI is an existing DCI in the existing standard, and if the target DCI is a DCI that is not in the current standard (that is, the newly defined DCI used to carry energy saving information as described above) ), it is determined that the period configured through static, semi-static, and dynamic signaling is the period for sending the target DCI to the user terminal; if the target DCI is an existing DCI in the current standard, it is determined that the existing DCI is the same The period is the period for sending the target DCI to the user terminal.
- the target DCI is an existing DCI in the current standard
- the existing DCI in the existing standard includes the DCI-format-0-0, DCI-format-0-1, DCI-format-1-0, DCI-format defined in the current 38.212 standard or the current 36.212 standard. format-1-1, DCI-format-2-0, DCI-format-2-1, DCI-format-2-3.
- the target DCI is a DCI in a format other than the DCI defined in the current 38.212 standard or the 36.212 standard, wherein the DCI in the other format, or the new DCI, may use a new radio network temporary identifier (Radio Network Tempory Identity (RNTI) scrambled DCI or DCI that defines a new information domain, for example, downlink DL scheduling DCI, uplink UL scheduling DCI, group-common DCI, newly defined DCI used to carry energy saving information. Then determine the period configured through static, semi-static, and dynamic signaling as the period for sending the target DCI to the user terminal;
- RNTI Radio Network Tempory Identity
- the target DCI is the DCI-format-0-0 defined in the current 38.212 standard, it is determined that the same cycle of the DCI-format-0-0 is the cycle of sending the target DCI to the user terminal.
- an indication message is generated, and the indication message and the target DCI are sent to the user terminal.
- the base station may continuously send multiple energy-saving information to the terminal device. If the time unit after the first time unit, for example, the second time unit, sends the target DCI carrying the second energy-saving information, the second energy-saving information Used to indicate at least one cross-slot scheduling information contained in the second time window, the second time window and the first time window may partially overlap, not overlap or completely overlap, if the second time window and the first time window are part of Overlapping or completely overlapping, the cross-slot scheduling information indicated by the first energy saving information and the cross-slot scheduling information indicated by the second energy saving information may be the same or different in the overlapping time windows.
- the second energy saving information is carried in the target DCI of the second time unit, where the second energy saving information is used to indicate at least one cross-slot scheduling information contained in the second time window,
- the second time window includes at least one time unit starting from the second time unit or a time unit after the second time unit as the starting point, and the relationship between the second time window and the first time window includes partial overlap, no overlap, and complete overlap
- a target DCI carrying energy saving information can indicate multiple cross-slot scheduling information, which solves the problem that a target DCI carrying energy saving information cannot indicate or ambiguous indication when indicating multiple cross-slot scheduling information.
- the loss of target DCI transmission of energy saving information leads to increased power consumption of the UE, and the need for more target DCI to carry energy saving information causes the cost of target DCI and the technical problem of increased power consumption of UE blind detection, which reduces UE power consumption and improves energy saving effect.
- Figure 3 is a structure of a user terminal to which the method provided by the embodiment of the present disclosure is applicable.
- the method provided by the embodiment of the present disclosure can be applied to a variety of user terminals.
- the user terminal shown in Figure 3 is a The detailed description of the user terminal to which the method provided in the embodiment of the present disclosure is applicable is not a limitation on the user terminal to which the method provided in the embodiment of the present disclosure can be applied.
- the user terminal shown in FIG. 3 includes a processor 301, a memory 302, a transceiver 303, and a bus interface 304.
- the processor 301, the memory 302, and the transceiver 303 are connected through a bus interface 304.
- the transceiver 301 is configured to receive the target DCI carrying the first energy saving information sent by the base station in the first time unit, the target DCI carrying the second energy saving information sent in the second time unit, and an indication message indicating the period of sending the target DCI by the base station.
- the memory 302 is used to store program instructions.
- the processor 303 is configured to call the program instructions stored in the memory 302, and execute all steps included in the method for indicating energy saving information according to the obtained program instructions.
- an embodiment of the present disclosure provides a method for indicating energy saving information, and the method may be executed by the user terminal shown in FIG. 3 above.
- the specific process of this method is described as follows.
- Step 401 Receive the target DCI carrying first energy saving information sent by the base station in the first time unit.
- the format of the target DCI carrying the first energy saving information may be the existing DCI in the existing standard or the DCI that is not in the current standard (that is, the newly defined DCI used to carry energy saving information as described above).
- the base station sends the target DCI in different periods. Based on this problem, in the embodiments of the present disclosure, if the target DCI is a DCI that is not in the current standard, the base station can send an indication message for indicating the period of sending the target DCI. If the target DCI is For the DCI already in the current standard, the indication message may not be sent in advance.
- the base station if it sends an indication message in advance, it receives the indication message sent by the base station, where the indication message is used to indicate the period at which the base station sends the target DCI carrying the first energy saving information in the first time unit, and then according to the period Receive the target DCI carrying the first energy saving information sent by the base station.
- the first energy saving information is used to indicate at least one cross-slot scheduling information contained in the first time window, and the first time window includes information starting from the first time unit or starting from the time unit after the first time unit.
- the cross-slot scheduling information includes at least one of first information and second information; wherein the first information is used to indicate whether the scheduling DCI is cross-slot scheduling or current-slot scheduling, and the second information is used for Indicates the minimum value of the cross-slot scheduling parameter or the minimum value of the cross-slot scheduling parameter in the TDRA list.
- Step 402 Determine, according to the target DCI, at least one cross-slot scheduling information contained in at least one time unit starting from the first time unit or a time unit after the first time unit.
- the cross-slot scheduling information is carried on the scheduling DCI. If the first energy saving information is carried on the DL scheduling DCI and the UL scheduling DCI, there will be cross-slots that can only be used to indicate the DL scheduling DCI and the UL scheduling DCI, respectively.
- the problem of scheduling information Based on this problem, in the embodiments of the present disclosure, if the target DCI is downlink DL scheduling DCI and indicates the cross-slot scheduling information of uplink UL scheduling DCI, or the target DCI is UL scheduling DCI and indicates the cross-slot scheduling information of DL scheduling DCI Scheduling information, the user terminal falls back to this time slot scheduling.
- the base station may continuously send multiple energy-saving information to the terminal device. If the target DCI carrying the second energy-saving information is sent in a time unit after the first time unit, for example, the second time unit,
- the second energy saving information is used to indicate at least one cross-slot scheduling information included in the second time window, and the second time window and the first time window may partially overlap, not overlap, or completely overlap.
- the target DCI carrying second energy saving information sent by the base station in the second time unit is received, where the second energy saving information is used to indicate at least one cross-slot scheduling included in the second time window Information, the second time window includes at least one time unit starting from a second time unit or a time unit after the second time unit;
- the user terminal determines the cross-slot scheduling information according to the received target DCI that is closest in time.
- the implementation described in the foregoing embodiment is described for a specific carrier.
- the selection of the carrier is not limited to the various situations listed above, and multiple carrier scheduling may also be performed.
- the active part bandwidth (BWP) of the first carrier for scheduling DCI for data transmission is configured as cross-slot scheduling, where the first carrier is a carrier set including at least one carrier.
- BWP active part bandwidth
- the user terminal receives the cross-slot scheduling parameter, the cross-slot scheduling parameter is the maximum value of the first time interval and the first parameter; where the first time interval is used to indicate the activated BWP of the first carrier The time interval for switching from the first BWP to the second BWP, the first parameter is used to indicate the cross-slot scheduling parameter of the second BWP configuration of the first carrier.
- the second carrier receives handover signaling, where the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used to indicate the second carrier.
- the activated BWP of one carrier is switched, according to the handover signaling, the activated BWP of the first carrier is switched from the first BWP to the second BWP.
- the embodiments of the present disclosure provide a base station for indicating energy saving information, and the base station is requested to be able to implement the functions corresponding to the aforementioned method for indicating energy saving information.
- the base station can be a hardware structure, a software module, or a hardware structure plus a software module.
- the base station can be realized by a chip system, and the chip system can be composed of a chip, or it can include a chip and other discrete devices. Referring to FIG. 5, the base station includes a processing module 501 and a sending module 502, where:
- Processing module 501 configured to carry first energy saving information in the target DCI of the first time unit; wherein the first energy saving information is used to indicate at least one cross-slot scheduling information contained in the first time window, and the first A time window includes at least one time unit starting from the first time unit or a time unit after the first time unit, and the cross-slot scheduling information includes the first information and the second information. At least one; wherein, the first information is used to indicate that the scheduling DCI is cross-slot scheduling or this time slot scheduling, and the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the cross-time in the TDRA list The minimum value of the slot scheduling parameter.
- the sending module 502 is used to send the target DCI to the user terminal.
- the processing module 501 is further configured to: if the first energy saving information is carried on DL scheduling DCI and/or UL scheduling DCI, determine that the number of target DCIs is X; wherein, The X is less than or equal to the number of DL scheduling DCI or UL scheduling DCI included in one time unit.
- the processing module 501 is further configured to: determine whether the target DCI is an existing DCI in the existing standard; if the target DCI is a DCI that is not in the current standard, determine to pass static The period of semi-static and dynamic signaling configuration is the period of sending the target DCI to the user terminal; if the target DCI is an existing DCI in the current standard, it is determined that the same period of the existing DCI is sending the target The period from the DCI to the user terminal; according to the period, an indication message is generated, and the indication message and the target DCI are sent to the user terminal.
- the sending module 502 is also used for:
- the second energy saving information is carried in the target DCI of the second time unit; wherein the second energy saving information is used to indicate at least one cross-slot scheduling information included in the second time window, and the second time window includes all
- the second time unit is the starting point or at least one time unit starting from the time unit after the second time unit; the relationship between the second time window and the first time window includes partial overlap, no overlap, and complete At least one of the overlaps;
- the base station further includes a determining module, configured to: if the active part bandwidth (BWP) of the first carrier used for data transmission in the scheduling DCI is configured as cross-slot scheduling, determine the The cross-slot scheduling parameter is the maximum value of the first time interval and the first parameter; wherein, the first carrier is a carrier set including at least one carrier, and the first time interval is used to indicate the time interval of the first carrier The time interval during which the activated BWP is switched from the first BWP to the second BWP, and the first parameter is used to indicate a cross-slot scheduling parameter configured by the second BWP.
- BWP active part bandwidth
- the determining module is further configured to: send handover signaling on the second carrier after the activated BWP of the first carrier ends data transmission; wherein, the second carrier is used for data scheduling A set of carriers including at least one carrier, and the handover signaling is used to indicate the activated BWP handover of the first carrier.
- the division of modules in the embodiments of the present disclosure is illustrative, and is only a logical function division. In actual implementation, there may be other division methods.
- the functional modules in the various embodiments of the present disclosure may be integrated into one process. In the device, it can also exist alone physically, or two or more modules can be integrated into one module.
- the above-mentioned integrated modules can be implemented in the form of hardware or software functional modules.
- embodiments of the present disclosure provide a user terminal for indicating energy-saving information, and the user terminal can implement the functions corresponding to the aforementioned method for indicating energy-saving information.
- the user terminal can be a hardware structure, a software module, or a hardware structure plus a software module.
- the user terminal may be implemented by a chip system, which may be composed of a chip, or may include a chip and other discrete devices. Please refer to FIG. 6, the user terminal includes a receiving module 601 and a processing module 602, where:
- Receiving module 601 used to receive a target DCI carrying first energy saving information sent by a base station in a first time unit; wherein the first energy saving information is used to indicate at least one cross-slot scheduling information contained in the first time window,
- the first time window includes at least one time unit starting from a first time unit or a time unit after the first time unit, and the cross-slot scheduling information includes at least one of the first information and the second information.
- the first information is used to indicate that the scheduling DCI is cross-slot scheduling or this time slot scheduling
- the second information is used to indicate the minimum value of the cross-slot scheduling parameter or the cross-slot in the TDRA list The minimum value of scheduling parameters;
- the processing module 602 is configured to determine at least one cross-slot scheduling information included in the first time window according to the target DCI.
- the receiving module 601 is specifically configured to: receive an indication message sent by the base station; wherein, the indication message is used to indicate a period for the base station to send the target DCI; The target DCI.
- the processing module 602 is further configured to: the cross-slot scheduling information is carried on the scheduling DCI; if the target DCI is a downlink (DL) scheduling DCI, and instructing the uplink (UL) scheduling DCI Or the target DCI is UL scheduling DCI and the cross-slot scheduling information of DL scheduling DCI is indicated, then the user terminal falls back to the current time slot scheduling.
- the target DCI is a downlink (DL) scheduling DCI, and instructing the uplink (UL) scheduling DCI
- the target DCI is UL scheduling DCI and the cross-slot scheduling information of DL scheduling DCI is indicated, then the user terminal falls back to the current time slot scheduling.
- the receiving module 601 is further used for:
- the user terminal determines the cross-slot scheduling information according to the received target DCI that is closest in time.
- the processing module 602 is further configured to: if the activated partial bandwidth (BWP) of the first carrier used for data transmission in the scheduling DCI is configured as cross-slot scheduling, the user terminal receives Cross-slot scheduling parameter, the cross-slot scheduling parameter is the maximum value of the first time interval and the first parameter; wherein, the first time interval is used to indicate that the activated BWP of the first carrier is determined by the first BWP The time interval for switching to the second BWP, where the first parameter is used to indicate the cross-slot scheduling parameter of the second BWP configuration of the first carrier.
- BWP activated partial bandwidth
- processing module 602 is further configured to:
- the second carrier After the activated BWP of the first carrier ends data transmission, the second carrier receives handover signaling; wherein, the second carrier is a carrier set including at least one carrier used for data scheduling, and the handover signaling is used for Switch to the activated BWP indicating the first carrier;
- the activated BWP of the first carrier is switched from the first BWP to the second BWP, and the first time interval is determined to be the time interval for switching from the first BWP to the second BWP.
- the division of modules in the embodiments of the present disclosure is illustrative, and is only a logical function division. In actual implementation, there may be other division methods.
- the functional modules in the various embodiments of the present disclosure may be integrated into one process. In the device, it can also exist alone physically, or two or more modules can be integrated into one module.
- the above-mentioned integrated modules can be implemented in the form of hardware or software functional modules.
- the base station device includes at least one processor 701 and a memory 702 connected to the at least one processor.
- the example does not limit the specific connection medium between the processor 701 and the memory 702.
- FIG. 7 is an example of the connection between the processor 701 and the memory 702 through the bus 700.
- the bus 700 is represented by a thick line in FIG. The connection between the two is only for schematic illustration, and is not limited thereto.
- the bus 700 can be divided into an address bus, a data bus, a control bus, etc. For ease of presentation, only a thick line is used in FIG. 7 to represent, but it does not mean that there is only one bus or one type of bus.
- the memory 702 stores instructions that can be executed by at least one processor 701, and the at least one processor 701 can execute the steps included in the aforementioned method for indicating energy saving information by calling the instructions stored in the memory 702.
- the processor 701 is the control center of the base station equipment, which can use various interfaces and lines to connect various parts of the entire base station equipment, and implement various functions of the base station equipment by executing instructions stored in the memory 702.
- the processor 701 may include one or more processing units, and the processor 701 may integrate an application processor and a modem processor.
- the application processor mainly processes the operating system, user interface, and application programs.
- the adjustment processor mainly deals with wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 701.
- the processor 701 and the memory 702 may be implemented on the same chip, and in some embodiments, they may also be implemented on separate chips.
- the memory 702 as a non-volatile computer-readable storage medium, can be used to store non-volatile software programs, non-volatile computer-executable programs, and modules.
- the memory 702 may include at least one type of storage medium, such as flash memory, hard disk, multimedia card, card-type memory, random access memory (Random Access Memory, RAM), static random access memory (Static Random Access Memory, SRAM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Electrically Erasable Programmable Read-Only Memory (EEPROM), magnetic memory, disk , CD, etc.
- the memory 702 is any other medium that can be used to carry or store desired program codes in the form of instructions or data structures and that can be accessed by a computer, but is not limited thereto.
- the memory 702 in the embodiment of the present disclosure may also be a circuit or any other device capable of realizing a storage function for storing program instructions and/or data.
- the processor 701 may be a general-purpose processor, such as a central processing unit (CPU), a digital signal processor, an application specific integrated circuit, a field programmable gate array or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, Implement or execute the methods, steps, and logical block diagrams disclosed in the embodiments of the present disclosure.
- the general-purpose processor may be a microprocessor or any conventional processor. The steps of the method for indicating energy saving information disclosed in combination with the embodiments of the present disclosure may be directly embodied as being executed by a hardware processor, or executed by a combination of hardware and software modules in the processor.
- the code corresponding to the method for indicating energy-saving information introduced in the foregoing embodiment can be solidified into the chip, so that the chip can execute the steps of the method for indicating energy-saving information during operation.
- the design and programming of the processor 701 is a technology well known to those skilled in the art, and will not be repeated here.
- the user terminal device includes at least one processor 801 and a memory 802 connected to the at least one processor.
- the disclosed embodiment does not limit the specific connection medium between the processor 801 and the memory 802.
- FIG. 8 takes the connection between the processor 801 and the memory 802 through the bus 800 as an example.
- the bus 800 is represented by thick lines in FIG.
- the connection between the components is only for schematic illustration, and is not limited thereto.
- the bus 800 can be divided into an address bus, a data bus, a control bus, etc. For ease of presentation, only one thick line is used in FIG. 8 to represent it, but it does not mean that there is only one bus or one type of bus.
- the memory 802 stores instructions that can be executed by at least one processor 801, and the at least one processor 801 can execute the steps included in the aforementioned method for indicating energy saving information by calling the instructions stored in the memory 802.
- the processor 801 is the control center of the user terminal device, which can use various interfaces and lines to connect various parts of the entire user terminal device, and implement various functions of the user terminal device by executing instructions stored in the memory 802.
- the processor 801 may include one or more processing units, and the processor 801 may integrate an application processor and a modem processor.
- the application processor mainly processes the operating system, user interface, and application programs.
- the adjustment processor mainly deals with wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 801.
- the processor 801 and the memory 802 may be implemented on the same chip, and in some embodiments, they may also be implemented on separate chips.
- the memory 802 can be used to store non-volatile software programs, non-volatile computer-executable programs, and modules.
- the memory 802 may include at least one type of storage medium, for example, may include flash memory, hard disk, multimedia card, card-type memory, random access memory (Random Access Memory, RAM), static random access memory (Static Random Access Memory, SRAM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Electrically Erasable Programmable Read-Only Memory (EEPROM), magnetic memory, disk , CD, etc.
- the memory 802 is any other medium that can be used to carry or store desired program codes in the form of instructions or data structures and can be accessed by a computer, but is not limited thereto.
- the memory 802 in the embodiment of the present disclosure may also be a circuit or any other device capable of realizing a storage function, for storing program instructions and/or data.
- the processor 801 may be a general-purpose processor, such as a central processing unit (CPU), a digital signal processor, an application specific integrated circuit, a field programmable gate array or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, Implement or execute the methods, steps, and logical block diagrams disclosed in the embodiments of the present disclosure.
- the general-purpose processor may be a microprocessor or any conventional processor. The steps of the method for indicating energy saving information disclosed in combination with the embodiments of the present disclosure may be directly embodied as being executed by a hardware processor, or executed by a combination of hardware and software modules in the processor.
- the code corresponding to the method for indicating energy-saving information introduced in the foregoing embodiment can be solidified into the chip, so that the chip can execute the steps of the method for indicating energy-saving information during operation.
- the design and programming of the processor 801 is a technology well known to those skilled in the art, and will not be repeated here.
- embodiments of the present disclosure also provide a storage medium that stores computer instructions, and when the computer instructions run on the computer, the computer executes the steps of the aforementioned method for indicating energy saving information.
- various aspects of the method for indicating energy saving information provided in the present disclosure may also be implemented in the form of a program product, which includes program code.
- the program product runs on a base station or a user terminal, the program code It is used to make the base station or the user terminal execute the steps in the method for indicating energy saving information according to various exemplary embodiments of the present disclosure described above in this specification.
- the embodiments of the present disclosure can be provided as methods, systems, or computer program products. Therefore, the present disclosure may adopt the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware. Moreover, the present disclosure may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
- a computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
- These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing equipment to work in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture including the instruction device.
- the device implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
- These computer program instructions can also be loaded on a computer or other programmable data processing equipment, so that a series of operation steps are executed on the computer or other programmable equipment to produce computer-implemented processing, so as to execute on the computer or other programmable equipment.
- the instructions provide steps for implementing functions specified in a flow or multiple flows in the flowchart and/or a block or multiple blocks in the block diagram.
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Abstract
Description
Claims (17)
- 一种指示节能信息的方法,应用于基站,其中,包括:在第一时间单元的目标下行控制信息DCI中携带第一节能信息;其中,所述第一节能信息用于指示第一时间窗口中包含的至少一个跨时隙调度信息,所述第一时间窗口包括以所述第一时间单元为起点或以所述第一时间单元之后的时间单元为起点的至少一个时间单元,所述跨时隙调度信息包括第一信息与第二信息中的至少一种;其中,所述第一信息用于指示调度DCI为跨时隙调度或者本时隙调度,所述第二信息用于指示跨时隙调度参数的最小值或者时域资源分配TDRA列表中的跨时隙调度参数的最小值;将所述目标DCI发送到用户终端。
- 如权利要求1所述的方法,其中,所述跨时隙调度参数的最小值包括以下至少一种:物理层下行共享信道PDSCH发送与物理层下行控制信道PDCCH接收之间的时间间隔的最小值;PDCCH发送与PDSCH接收之间的时间间隔的最小值;PDCCH发送与PDSCH发送之间的时间间隔的最小值;PDCCH接收与PDSCH接收之间的时间间隔的最小值;物理层上行共享信道PUSCH发送与PDCCH接收之间的时间间隔的最小值;PDCCH发送与PUSCH接收之间的时间间隔的最小值,PDCCH发送与PUSCH发送之间的时间间隔的最小值;PDCCH接收与PUSCH接收之间的时间间隔的最小值;PDCCH发送与非周期信道状态指示参考信号CSI-RS接收之间的时间间隔的最小值;非周期CSI-RS发送与PDCCH接收之间的时间间隔的最小值;非周期CSI-RS发送与PDCCH发送之间的时间间隔的最小值;非周期CSI-RS接收与PDCCH接收之间的时间间隔的最小值;PDCCH发送与探测参考信号SRS接收之间的时间间隔的最小值;SRS发送与PDCCH接收之间的时间间隔的最小值;SRS发送与PDCCH发送之间的时间间隔的最小值;SRS接收与PDCCH接收之间的时间间隔的最小值;PDCCH发送与SRS请求相关联的CSI-RS接收之间的时间间隔的最小值;SRS请求相关联的CSI-RS发送与PDCCH接收之间的时间间隔的最小值;SRS请求相关联的CSI-RS发送与PDCCH发送之间的时间间隔的最小值;SRS请求相关联的CSI-RS接收与PDCCH接收之间的时间间隔的最小值。
- 如权利要求1所述的方法,其中,所述目标DCI包括下行DL调度DCI,上行UL调度DCI,分组group-common DCI,用于承载节能信息的DCI中的至少一种。
- 如权利要求3所述的方法,其中,还包括:若所述第一节能信息承载在DL调度DCI和/或UL调度DCI上,则确定所述目标DCI的个数为X;其中,所述X小于或等于一个时间单元内包含的DL调度DCI或UL调度DCI的个数。
- 如权利要求1所述的方法,其中,还包括:在第二时间单元的目标DCI中携带第二节能信息;其中,所述第二节能信息用于指示第二时间窗口中包含的至少一个跨时隙调度信息,所述第二时间窗口包括以所述第二时间单元为起点或以所述第二时间单元之后的时间单元为起点的至少一个时间单元;所述第二时间窗口和所述第一时间窗口的关系包括部分重叠,不重叠,完全重叠中的至少一种;将所述第二时间单元的目标DCI发送到用户终端。
- 如权利要求2所述的方法,其中,还包括:若所述调度DCI用于数据传输的第一载波的激活部分带宽BWP配置为跨时隙调度,则确定所述跨时隙调度参数为第一时间间隔与第一参数中的最大值;其中,所述第一载波是包括至少一个载波的载波集合,所述第一时间间隔用于表示所述第一载波的激活BWP由第一BWP切换为第二BWP的时间间隔,所述第一参数用于表示所述第二BWP配置的跨时隙调度参数。
- 如权利要求6所述的方法,其中,还包括:在所述第一载波的激活BWP结束数据传输后,在第二载波发送切换信令;其中,所述第二载波是用于数据调度的包括至少一个载波的载波集合,所述切换信令用于指示第一载波的激活BWP切换。
- 一种指示节能信息的方法,应用于用户终端,其中,包括:接收基站在第一时间单元发送的携带第一节能信息的目标下行控制信息DCI;其中,所述第一节能信息用于指示第一时间窗口中包含的至少一个跨时隙调度信息,所述第一时间窗口包括以所述第一时间单元为起点或以所述第一时间单元之后的时间单元为起点的至少一个时间单元,所述跨时隙调度信息包括第一信息与第二信息中的至少一种;其中,所述第一信息用于指示调度DCI为跨时隙调度或者本时隙调度,所述第二信息用于指示跨时隙调度参数的最小值或者时域资源分配TDRA列表中的跨时隙调度参数的最小值;根据所述目标DCI确定第一时间窗口中包含的至少一个跨时隙调度信息。
- 如权利要求8所述的方法,其中,根据所述目标DCI确定第一时间窗口中包含的至少一个跨时隙调度信息包括:所述跨时隙调度信息承载在调度DCI上;若所述目标DCI为下行DL调度DCI,且指示上行UL调度DCI的跨时隙调度信息,或所述目标DCI为UL调度DCI,且指示DL调度DCI的跨时隙调度信息,则所述用户终端回退到本时隙调度。
- 如权利要求8所述的方法,其中,还包括:接收基站在第二时间单元发送的携带第二节能信息的目标DCI;其中,所述第二节能信息用于指示第二时间窗口中包含的至少一个跨时隙调度信息,所述第二时间窗口包括以所述第二时间单元为起点或以所述第二时间单元之后的时间单元为起点的至少一个时间单元;若所述第二时间窗口与所述第一时间窗口是部分重叠或者完全重叠,则所述用户终端根据接收到的时间上最近的目标DCI确定跨时隙调度信息。
- 如权利要求8所述的方法,其中,还包括:若所述调度DCI用于数据传输的第一载波的激活的部分带宽BWP配置为跨时隙调度,则所述用户终端接收跨时隙调度参数,所述跨时隙调度参数为第一时间间隔与第一参数中的最大值;其中,所述第一时间间隔用于表示所述第一载波的激活BWP由第一BWP切换为第二BWP的时间间隔,所述第一参数用于表示第一载波的第二BWP配置的跨时隙调度参数。
- 如权利要求11所述的方法,其中,还包括:在所述第一载波的激活BWP结束数据传输后,在第二载波接收切换信令;其中,所述第二载波是用于数据调度的包括至少一个载波的载波集合,所述切换信令用于指示第一载波的激活BWP切换;根据所述切换信令,将所述第一载波的激活BWP由第一BWP切换为第二BWP。
- 一种基站,其中,包括:处理模块,用于在第一时间单元的目标下行控制信息DCI中携带第一节能信息;其中,所述第一节能信息用于指示第一时间窗口中包含的至少一个跨时隙调度信息,所述第一时间窗口包括以所述第一时间单元为起点或以所述第一时间单元之后的时间单元为起点的至少一个时间单元,所述跨时隙调度信息包括第一信息与第二信息中的至少一种;其中,所述第一信息用于指示调度DCI为跨时隙调度或者本时隙调度,所述第二信息用于指 示跨时隙调度参数的最小值或者时域资源分配TDRA列表中的跨时隙调度参数的最小值;发送模块,用于将所述目标DCI发送到用户终端。
- 一种用户终端,其中,包括:接收模块,用于接收基站在第一时间单元发送的携带第一节能信息的目标下行控制信息DCI;其中,所述第一节能信息用于指示第一时间窗口中包含的至少一个跨时隙调度信息,所述第一时间窗口包括以所述第一时间单元为起点或以所述第一时间单元之后的时间单元为起点的至少一个时间单元,所述跨时隙调度信息包括第一信息与第二信息中的至少一种;其中,所述第一信息用于指示调度DCI为跨时隙调度或者本时隙调度,所述第二信息用于指示跨时隙调度参数的最小值或者时域资源分配TDRA列表中的跨时隙调度参数的最小值;处理模块,用于根据所述目标DCI确定第一时间窗口中包含的至少一个跨时隙调度信息。
- 一种指示节能信息的基站设备,其中,该基站设备包括处理器和存储器,所述存储器用于存储所述处理器可执行的程序,所述处理器用于读取所述存储器中的程序并执行如下步骤:在第一时间单元的目标下行控制信息DCI中携带第一节能信息;其中,所述第一节能信息用于指示第一时间窗口中包含的至少一个跨时隙调度信息,所述第一时间窗口包括以所述第一时间单元为起点或以所述第一时间单元之后的时间单元为起点的至少一个时间单元,所述跨时隙调度信息包括第一信息与第二信息中的至少一种;其中,所述第一信息用于指示调度DCI为跨时隙调度或者本时隙调度,所述第二信息用于指示跨时隙调度参数的最小值或者时域资源分配TDRA列表中的跨时隙调度参数的最小值;将所述目标DCI发送到用户终端。
- 一种指示节能信息的用户终端设备,其中,该用户终端设备包括处理器和存储器,所述存储器用于存储所述处理器可执行的程序,所述处理器用于读取所述存储器中的程序并执行如下步骤:接收基站在第一时间单元发送的携带第一节能信息的目标下行控制信息DCI;其中,所述第一节能信息用于指示第一时间窗口中包含的至少一个跨时隙调度信息,所述第一时间窗口包括以所述第一时间单元为起点或以所述第一时间单元之后的时间单元为起点的至少一个时间单元,所述跨时隙调度信息包括第一信息与第二信息中的至少一种;其中,所述第一信息用于指示调度DCI为跨时隙调度或者本时隙调度,所述第二信息用于指示跨时隙调度参数的最小值或者时域资源分配TDRA列表中的跨时隙调度参数的最小值;根据所述目标DCI确定第一时间窗口中包含的至少一个跨时隙调度信息。
- 一种存储介质,其中,所述存储介质存储有计算机可执行指令,所述计算机可执行指令用于使计算机执行权利要求1-12任一项所述的方法包括的步骤。
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| WO2022198570A1 (zh) * | 2021-03-25 | 2022-09-29 | 深圳传音控股股份有限公司 | 信号处理方法、设备及存储介质 |
| CN118540041A (zh) * | 2021-06-11 | 2024-08-23 | 北京小米移动软件有限公司 | 时域窗口确定方法、装置、用户设备、基站及存储介质 |
| CN115884331A (zh) * | 2022-04-29 | 2023-03-31 | 中兴通讯股份有限公司 | 时域节能方法、基站、信号调节装置及存储介质 |
| KR20230170348A (ko) * | 2022-06-10 | 2023-12-19 | 삼성전자주식회사 | 무선 통신 시스템에서 네트워크 전력감소 모드 동작을 위한 방법 및 장치 |
| EP4572493A1 (en) * | 2022-08-08 | 2025-06-18 | Lg Electronics, Inc. | Method, user equipment, processing device, and storage medium for receiving downlink signal, and method and base station for transmitting downlink signal |
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| EP4016909A4 (en) | 2022-09-21 |
| CN112399620B (zh) | 2022-08-09 |
| US20220286967A1 (en) | 2022-09-08 |
| KR20220047818A (ko) | 2022-04-19 |
| TW202110241A (zh) | 2021-03-01 |
| CN112399620A (zh) | 2021-02-23 |
| EP4016909A1 (en) | 2022-06-22 |
| TWI751656B (zh) | 2022-01-01 |
| CN115442909A (zh) | 2022-12-06 |
| CN115442909B (zh) | 2025-02-18 |
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