WO2021013022A1 - 信息传输方法及装置 - Google Patents

信息传输方法及装置 Download PDF

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Publication number
WO2021013022A1
WO2021013022A1 PCT/CN2020/102219 CN2020102219W WO2021013022A1 WO 2021013022 A1 WO2021013022 A1 WO 2021013022A1 CN 2020102219 W CN2020102219 W CN 2020102219W WO 2021013022 A1 WO2021013022 A1 WO 2021013022A1
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WO
WIPO (PCT)
Prior art keywords
type
uci
pucch resource
pucch
transmission
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PCT/CN2020/102219
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English (en)
French (fr)
Inventor
司倩倩
高雪娟
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大唐移动通信设备有限公司
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Publication of WO2021013022A1 publication Critical patent/WO2021013022A1/zh

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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
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • H04L5/0055Physical resource allocation for ACK/NACK
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/004Arrangements for detecting or preventing errors in the information received by using forward error control
    • H04L1/0056Systems characterized by the type of code used
    • H04L1/0064Concatenated codes
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0078Avoidance of errors by organising the transmitted data in a format specifically designed to deal with errors, e.g. location
    • H04L1/0079Formats for control data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • 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
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1812Hybrid protocols; Hybrid automatic repeat request [HARQ]

Definitions

  • This application relates to the field of communication technology, and in particular to information transmission methods and devices.
  • NR physical uplink control channel (PUCCH) formats formats (formats) 0, 1, 2, 3, 4 are defined, including 5 PUCCH formats.
  • PUCCH formats 0 and 1 can carry 1 to 2 bits of UCI (Uplink Control Information, uplink control information) transmission, and PUCCH formats 2, 3, and 4 can carry more than 2 bits of UCI transmission.
  • Hybrid Automatic Repeat Request-Acknowledge Character (HARQ-ACK) can use any of these 5 PUCCH formats.
  • the terminal selects one of multiple PUCCH resource sets pre-configured for the terminal according to the number of HARQ-ACK bits, where each PUCCH resource set corresponds to a bit number range.
  • the scheduling request (Scheduling Request, SR) can be transmitted using PUCCH format 0 or 1, and the used PUCCH resources are configured by high-level signaling.
  • Periodic channel state information (Channel State Information, CSI) can be configured to use PUCCH format 2 or 3 or 4 for transmission, and the used PUCCH resources are configured by high-level signaling.
  • the multiplexing transmission is performed according to the following method:
  • HARQ-ACK is transmitted on the PUCCH resource of SR when active SR, and HARQ-ACK is transmitted on PUCCH resource of HARQ-ACK when passive SR ;
  • SR including positive and negative SR
  • HARQ-ACK are both placed on HARQ-ACK resources for transmission
  • the PUCCH corresponding to the HARQ-ACK of SPS PDSCH (Physical Downlink Shared Channel) overlaps the PUCCH carrying CSI
  • the SPS HARQ-ACK is transferred to the PUCCH resource corresponding to the CSI and multiplexed with the CSI for transmission.
  • the PUCCH resource is configured A set is selected from the set, and then a PUCCH resource is determined from the selected set according to the PUCCH resource indication field in the DCI for scheduling the PDSCH, which is used to carry HARQ-ACK and CSI at the same time.
  • the embodiments of this application provide an information transmission method and device to implement multiple time-division multiplexed PUCCH resources carrying HARQ-ACK and PUCCH resources used to carry CSI/SR when overlapping UCI multiplexed transmission to ensure the NR system Transmission performance.
  • an information transmission method provided by an embodiment of the present application includes:
  • the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • multiplexing the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the first type of UCI and the second type of UCI are multiplexed in the finally determined PUCCH resource Transmission on the Internet, including:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • an information transmission method provided in an embodiment of the present application includes:
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the multiplexing of the UCI of the first type and the UCI of the second type for transmission on the finally determined PUCCH resource specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission, Specifically:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • an information transmission device provided in an embodiment of the present application includes:
  • Memory used to store program instructions
  • the processor is used to call the program instructions stored in the memory and execute according to the obtained program:
  • the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the processor multiplexes the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission, which specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined by the processor in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the processor multiplexes the first type of UCI and the second type of UCI in the finally determined Transmission on PUCCH resources, including:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • an information transmission device provided in an embodiment of the present application includes:
  • Memory used to store program instructions
  • the processor is used to call the program instructions stored in the memory and execute according to the obtained program:
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the multiplexing of the UCI of the first type and the UCI of the second type for transmission on the finally determined PUCCH resource specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission, Specifically:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • another information transmission device provided in an embodiment of the present application includes:
  • a determining unit configured to determine that multiple time division multiplexed first physical uplink control channel PUCCH resources that need to carry the first type of uplink control information UCI overlap with second PUCCH resources that need to carry the second type of UCI;
  • the transmission unit is configured to multiplex the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the transmission unit multiplexes the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission, which specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined by the transmission unit in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the transmission module multiplexes the first type UCI and the second type UCI in the finally determined PUCCH resource. Transmission on PUCCH resources, including:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • another information transmission device provided in an embodiment of the present application includes:
  • a determining unit configured to determine that multiple time division multiplexed first physical uplink control channel PUCCH resources that need to carry the first type of uplink control information UCI overlap with second PUCCH resources that need to carry the second type of UCI;
  • the receiving unit is configured to receive the UCI of the first type and the UCI of the second type that are multiplexed on the finally determined PUCCH resource for transmission.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the multiplexing of the UCI of the first type and the UCI of the second type for transmission on the finally determined PUCCH resource specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission, Specifically:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • Another embodiment of the present application provides a computing device, which includes a memory and a processor, wherein the memory is used to store program instructions, and the processor is used to call the program instructions stored in the memory, according to the obtained program Perform any of the above methods.
  • Another embodiment of the present application provides a computer storage medium that stores computer-executable instructions, and the computer-executable instructions are used to make the computer execute any of the above methods.
  • Figures 1 to 6 are schematic diagrams of overlapping resources of multiple PUCCHs carrying HARQ-ACK and one PUCCH carrying SR provided in Embodiment 1 of the application;
  • FIGS. 7 to 12 are schematic diagrams of overlapping resources of multiple PUCCHs carrying HARQ-ACK and one PUCCH carrying SR provided by Embodiment 2 of the application;
  • FIG. 13 is a schematic diagram of overlapping resources of multiple PUCCHs carrying HARQ-ACK and one PUCCH carrying SR provided in Embodiment 3 of the application;
  • FIG. 14 is a schematic flowchart of an information transmission method on the terminal side according to an embodiment of the application.
  • 15 is a schematic flowchart of an information transmission method on the network side according to an embodiment of the application.
  • 16 is a schematic structural diagram of an information transmission device on the terminal side according to an embodiment of the application.
  • FIG. 17 is a schematic structural diagram of an information transmission device on the network side according to an embodiment of the application.
  • 18 is a schematic structural diagram of an information transmission device on the terminal side according to an embodiment of the application.
  • FIG. 19 is a schematic structural diagram of an information transmission device on the network side according to an embodiment of the application.
  • the embodiments of this application provide an information transmission method and device to implement multiple time-division multiplexed PUCCH resources carrying HARQ-ACK and PUCCH resources used to carry CSI/SR when overlapping UCI multiplexed transmission to ensure the NR system Transmission performance.
  • the method and the device are based on the same application conceived. Since the principles of the method and the device to solve the problem are similar, the implementation of the device and the method can be referred to each other, and the repetition will not be repeated.
  • the applicable system may be the Global System of Mobile Communication (GSM) system, Code Division Multiple Access (CDMA) system, and Wideband Code Division Multiple Access (WCDMA) general packet Wireless service (General Packet Radio Service, GPRS) system, Long Term Evolution (LTE) system, LTE Frequency Division Duplex (FDD) system, LTE Time Division Duplex (TDD), General Mobile system (Universal Mobile Telecommunication System, UMTS), Worldwide Interoperability For Microwave Access (WiMAX) system, 5G system, 5G NR system, etc.
  • GSM Global System of Mobile Communication
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • General Packet Radio Service General Packet Radio Service
  • LTE Long Term Evolution
  • FDD Frequency Division Duplex
  • TDD Time Division Duplex
  • UMTS General Mobile system
  • WiMAX Worldwide Interoperability For Microwave Access
  • the terminal device involved in the embodiments of the present application may be a device that provides voice and/or data connectivity to a user, a handheld device with a wireless connection function, or other processing devices connected to a wireless modem.
  • the name of the terminal equipment may be different.
  • the terminal equipment may be called User Equipment (UE).
  • Wireless terminal devices can communicate with one or more core networks via RAN (Radio Access Network).
  • the wireless terminal devices can be mobile terminal devices, such as mobile phones (or "cellular" phones) and mobile phones.
  • the computer of the terminal device for example, may be a portable, pocket-sized, handheld, built-in computer or vehicle-mounted mobile device, which exchanges language and/or data with the wireless access network.
  • Wireless terminal equipment can also be referred to as system, subscriber unit, subscriber station, mobile station, mobile station, remote station, access point (access point) , Remote terminal equipment (remote terminal), access terminal equipment (access terminal), user terminal equipment (user terminal), user agent (user agent), user device (user device), which are not limited in the embodiments of the present application.
  • the network device involved in the embodiment of the present application may be a base station, and the base station may include multiple cells.
  • a base station may also be called an access point, or may refer to a device in an access network that communicates with a wireless terminal device through one or more sectors on an air interface, or other names.
  • the network device can be used to convert the received air frame and Internet Protocol (IP) packets to each other, and act as a router between the wireless terminal device and the rest of the access network, where the rest of the access network can include the Internet Protocol (IP) communication network.
  • IP Internet Protocol
  • the network equipment can also coordinate the attribute management of the air interface.
  • the network equipment involved in the embodiments of this application may be a network equipment (Base Transceiver Station, BTS) in the Global System for Mobile Communications (GSM) or Code Division Multiple Access (CDMA). ), it can also be a network equipment (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or an evolved network equipment in a Long Term Evolution (LTE) system (evolutional Node B, eNB or e-NodeB), the 5G base station in the 5G network architecture (Next Generation System), can also be Home evolved Node B (HeNB), relay node (relay node), home base station ( Femto), pico base station (pico), etc., are not limited in the embodiment of the present application.
  • BTS Base Transceiver Station
  • GSM Global System for Mobile Communications
  • CDMA Code Division Multiple Access
  • NodeB Wide-band Code Division Multiple Access
  • LTE Long Term Evolution
  • Next Generation System Next Generation System
  • HeNB Home evolved Node B
  • relay node relay node
  • a final PUCCH which can be a PUCCH used to carry CSI/SR, or a PUCCH used to carry HARQ-ACK
  • the multiple time-division multiplexed PUCCHs carrying HARQ-ACK that is, among multiple PUCCHs, each PUCCH carries HARQ-ACK, and these PUCCHs are time-division multiplexed.
  • the overlapping of the multiple time-division multiplexed PUCCH carrying HARQ-ACK and the PUCCH carrying CSI/SR includes:
  • Multiple time division multiplexed PUCCH carrying HARQ-ACK and PUCCH used to carry CSI/SR have at least one symbol overlap in the time domain;
  • a PUCCH carrying HARQ-ACK (the PUCCH format is format 2 or format 3 or format 4) and the PUCCH resource used to carry CSI/SR have at least one symbol overlap in the time domain, and according to the HARQ-ACK
  • the total number of ACK and CSI/SR bits selects a new PUCCH resource to carry the HARQ-ACK and CSI/SR, and the new PUCCH resource and another PUCCH resource carrying HARQ-ACK are at least in the time domain There is an overlap of symbols.
  • the multiplexing of UCI information carried by all channels with overlapping resources on one PUCCH resource (that is, the finally determined PUCCH resource) for transmission specifically includes:
  • the finally determined PUCCH resource is a PUCCH resource used to carry HARQ-ACK;
  • the finally determined PUCCH resource is a PUCCH resource used to carry CSI/SR;
  • the UCI information carried by all channels overlapping the resources are concatenated according to the following sequence (concatenation means that multiple information bits are connected in a prescribed order Generate a long bit sequence together):
  • CSI part 2 and other UCI information are independently coded (different information respectively)
  • Encoding corresponding to joint coding, joint coding refers to coding together after different information is concatenated
  • the finally determined PUCCH resource is the PUCCH resource of SR and format 1 is used, then:
  • the modulation method is Binary Phase Shift Keying (Binary Phase Shift Keying). Keying, BPSK) or Quadrature Phase Shift Keying (Quadrature Phase Shift Keying, QPSK) modulation;
  • the combination method may be based on codeword combination, for example, combining and combining feedback information of the same codeword transmitted in different time slots;
  • the combination method may be based on HARQ-ACK codebook combination, for example, combining the information of each HARQ-ACK codebook (only applicable to the case of 2 TDM HARQ-ACK PUCCH);
  • the modulation method is BPSK, QPSK, 8PSK (8 Phase Shift Keying, 8 Phase Shift Keying). ), 16PSK (16 Phase Shift Keying, 16 Phase Shift Keying), 16 Quadrature Amplitude Modulation (QAM), 64QAM, 256QAM, 512QAM modulation, etc.
  • the finally determined PUCCH resource is a PUCCH resource carrying HARQ-ACK, it is specifically determined in the following manner:
  • multiplexed transmission is determined according to the PUCCH resource indication (PUCCH Resource Indication, PRI) information field contained in the last DCI corresponding to the HARQ-ACK carried by the multiple time division multiplexed PUCCH carrying HARQ-ACK.
  • PUCCH resource indication PUCCH Resource Indication, PRI
  • the PUCCH resource for multiplex transmission is determined according to the PRI information field contained in the last DCI corresponding to the HARQ-ACK carried by the last PUCCH of the multiple time-division multiplexed PUCCHs carrying HARQ-ACK.
  • the PUCCH resource carrying the first HARQ-ACK (represented as HARQ-ACK-1) uses PUCCH format 2/3/4 (the PF in Figures 1 to 13 all represent the PUCCH format).
  • the PUCCH resource of the second HARQ-ACK (represented as HARQ-ACK-2) uses PUCCH format 0/1/2/3/4, and the PUCCH resource carrying SR uses PUCCH format 0/1, which carries HARQ-ACK-
  • the PUCCH resource of 1 is ahead of the PUCCH resource carrying the SR, and there is overlap between the PUCCH resource carrying the SR and the two PUCCH resources carrying HARQ-ACK;
  • Case b Refer to Figure 2.
  • the PUCCH resource carrying HARQ-ACK-1 uses PUCCH format 2/3/4
  • the PUCCH resource carrying HARQ-ACK-2 uses PUCCH format 0/1/2/3/4.
  • the PUCCH resource of SR uses PUCCH format 0/1, where the PUCCH resource carrying HARQ-ACK-1 is ahead of the PUCCH resource carrying SR, and the PUCCH resource carrying SR only overlaps with the first PUCCH resource carrying HARQ-ACK;
  • Case c See Figure 3, PUCCH resources carrying HARQ-ACK-1 use PUCCH format 2/3/4, PUCCH resources carrying HARQ-ACK-2 use PUCCH format 0/1/2/3/4, carrying The PUCCH resource of SR uses PUCCH format 0/1, where the PUCCH resource carrying SR is ahead of the PUCCH resource carrying HARQ-ACK-1, and the PUCCH resource carrying SR only overlaps with the first PUCCH resource carrying HARQ-ACK;
  • Case d See Figure 4, PUCCH resources carrying HARQ-ACK-1 use PUCCH format 2/3/4, PUCCH resources carrying HARQ-ACK-2 use PUCCH format 0/1/2/3/4,
  • the PUCCH resource of SR uses PUCCH format 1, where the PUCCH resource carrying SR is ahead of the PUCCH resource carrying HARQ-ACK-1, and the PUCCH resource carrying SR and two PUCCH resources carrying HARQ-ACK overlap;
  • Case e Refer to Figure 5, PUCCH resources carrying HARQ-ACK-1 use PUCCH format 1, PUCCH resources carrying HARQ-ACK-2 use PUCCH format 0/1/2/3/4, PUCCH resources carrying SR PUCCH format 1 is used, where the PUCCH resource carrying HARQ-ACK-1 is ahead of the PUCCH resource carrying SR, and the PUCCH resource carrying SR and two PUCCH resources carrying HARQ-ACK overlap;
  • Case f See Figure 6, PUCCH resource carrying HARQ-ACK-1 uses PUCCH format 1, PUCCH resource carrying HARQ-ACK-2 uses PUCCH format 0/1/2/3/4, PUCCH resource carrying SR PUCCH format 1 is used, where the PUCCH resource carrying SR is ahead of the PUCCH resource carrying HARQ-ACK-1, and the PUCCH resource carrying SR and two PUCCH resources carrying HARQ-ACK overlap;
  • a, b, c, and e first determine a PUCCH resource set according to the total number of bits of the first HARQ-ACK-1 and SR, and according to the PRI contained in the last DCI in the DCI corresponding to HARQ-ACK-1
  • the information field selects a HARQ-ACK resource in the PUCCH resource set.
  • the newly selected HARQ-ACK resource overlaps with the PUCCH resource of HARQ-ACK-2, then according to HARQ-ACK-1, HARQ-ACK-2 and The total number of SR bits re-determine a PUCCH resource set, and then according to the last DCI in the DCI corresponding to HARQ-ACK-1 and HARQ-ACK-2 (or only according to the last DCI in the DCI corresponding to HARQ-ACK-2)
  • the included PRI information field determines to use one resource in the finally determined PUCCH resource set to transmit the HARQ-ACK-1, HARQ-ACK-2 and SR;
  • the terminal simultaneously transmits the HARQ-ACK-1, HARQ-ACK-2 and SR in the finally selected resource, and the transmitted bit sequence is HARQ-ACK-1, HARQ-ACK-2 and SR.
  • Case a Refer to Figure 7, PUCCH format 0/1 carrying SPS HARQ-ACK, PUCCH format 0/1/2/3/4 carrying dynamic HARQ-ACK, PUCCH format 2/3/4 for PUCCH resources carrying CSI , Where the PUCCH resource carrying SPS HARQ-ACK is ahead of the PUCCH resource carrying CSI, and the PUCCH resource carrying CSI and two PUCCH resources carrying HARQ-ACK overlap;
  • Case b Refer to Figure 8, PUCCH format 0/1 carrying SPS HARQ-ACK, PUCCH format 0/1/2/3/4 carrying dynamic HARQ-ACK, PUCCH format 2/3/4 for PUCCH resources carrying CSI , Where the PUCCH resource carrying dynamic HARQ-ACK is ahead of the PUCCH resource carrying CSI, and the PUCCH resource carrying CSI and two PUCCH resources carrying HARQ-ACK overlap;
  • Case c Refer to Figure 9, two PUCCH formats 0/1/2/3/4 carrying dynamic HARQ-ACK, PUCCH resources carrying CSI use PUCCH format 2/3/4, and the first one carrying dynamic HARQ-ACK
  • the PUCCH resource of is ahead of the PUCCH resource carrying CSI, and the PUCCH resource carrying CSI and the two PUCCH resources carrying HARQ-ACK overlap;
  • Case d referring to Figure 10, the difference from case a is that the PUCCH resource carrying CSI is ahead of the PUCCH resource carrying SPS HARQ-ACK;
  • Case e referring to Figure 11, the difference from case b is that the PUCCH resource carrying CSI is ahead of the PUCCH resource carrying dynamic HARQ-ACK;
  • Case f Referring to Figure 12, the difference from case c is that the PUCCH resource carrying CSI is ahead of the first PUCCH resource carrying dynamic HARQ-ACK;
  • a PUCCH resource set is re-determined according to the total number of bits of all HARQ-ACK and CSI , And then determine, according to the PRI information field contained in the last DCI in all DCIs corresponding to all HARQ-ACKs, to use one resource in the finally determined PUCCH resource set to transmit all HARQ-ACKs and CSI;
  • a, d, e, and f directly determine a PUCCH resource set according to the total number of bits of all HARQ-ACK and CSI, and then according to the last DCI in the DCI corresponding to all HARQ-ACKs in the PUCCH resource set
  • the included PRI information field determines one of the resources to transmit all HARQ-ACK and CSI.
  • the terminal simultaneously transmits all the HARQ-ACK and CSI in the finally selected resource, and the transmitted bit sequence is HARQ-ACK carried by the first PUCCH, HARQ-ACK and CSI carried by the second PUCCH .
  • the terminal first determines a PUCCH resource set according to the number of bits of all UCI, assuming that the UE is configured There are 4 HARQ-ACK PUCCH resource sets, the first PUCCH resource set corresponds to 1 to 2 bits, the second PUCCH resource set corresponds to 3 to 11 bits, the third PUCCH resource set corresponds to 12 to 50 bits, and the fourth The PUCCH resource set corresponds to 51-100 bits.
  • the PUCCH resource of HARQ-ACK-1 corresponds to carrying 5-bit HARQ-ACK
  • the PUCCH resource of HARQ-ACK-2 corresponds to carrying 20-bit HARQ-ACK
  • the PUCCH resource of SR corresponds to carrying 1-bit SR
  • the PUCCH resource of CSI corresponds to carrying 10 Bit CSI
  • the total number of UCI bits is 36 bits
  • the UE selects the third PUCCH resource set.
  • the third PUCCH resource in the third PUCCH resource set is used to transmit all UCI information, and UCI performs
  • the sequence of concatenation is HARQ-ACK-1, HARQ-ACK-2, SR, and CSI part 1. These information are jointly coded after concatenation. If CSI also contains CSI part 2, then CSI part 2 is performed independently on PUCCH. Encoding and mapping.
  • an information transmission method provided by an embodiment of the present application includes:
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • multiplexing the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the first type of UCI and the second type of UCI are multiplexed in the finally determined PUCCH resource Transmission on the Internet, including:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • an information transmission method provided by an embodiment of the present application includes:
  • S201 Determine that multiple time division multiplexed first physical uplink control channel PUCCH resources that need to carry the first type of uplink control information UCI overlap with second PUCCH resources that need to carry the second type of UCI;
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the multiplexing of the UCI of the first type and the UCI of the second type for transmission on the finally determined PUCCH resource specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission, Specifically:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • the above-mentioned network-side information transmission method provided by the embodiment of this application is based on the same concept as the terminal-side information transmission method of the above-mentioned embodiment of this application. It is applied to the various implementation manners provided in the above-mentioned embodiment and can be applied to this embodiment. In the example, I won't repeat it here.
  • an information transmission device provided by an embodiment of the present application includes:
  • the memory 620 is used to store program instructions
  • the processor 600 is configured to call the program instructions stored in the memory, and execute according to the obtained program:
  • the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the processor multiplexes the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission, which specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined by the processor in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the processor multiplexes the first type of UCI and the second type of UCI in the finally determined Transmission on PUCCH resources, including:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • the transceiver 610 is configured to receive and send data under the control of the processor 600.
  • the bus architecture may include any number of interconnected buses and bridges. Specifically, one or more processors represented by the processor 600 and various circuits of the memory represented by the memory 620 are linked together.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, power management circuits, etc., which are all known in the art, and therefore, no further descriptions are provided herein.
  • the bus interface provides the interface.
  • the transceiver 610 may be a plurality of elements, that is, including a transmitter and a receiver, and provide a unit for communicating with various other devices on a transmission medium.
  • the user interface 630 may also be an interface capable of connecting externally and internally with the required equipment.
  • the connected equipment includes but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the processor 600 is responsible for managing the bus architecture and general processing, and the memory 620 can store data used by the processor 600 when performing operations.
  • the processor 600 may be a CPU (central embedded device), an ASIC (Application Specific Integrated Circuit, application-specific integrated circuit), FPGA (Field-Programmable Gate Array, field programmable gate array) or CPLD (Complex Programmable Logic Device) , Complex programmable logic device).
  • CPU central embedded device
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array, field programmable gate array
  • CPLD Complex Programmable Logic Device
  • Complex programmable logic device Complex programmable logic device
  • the above-mentioned terminal-side information transmission device provided in the embodiments of this application is based on the same concept as the terminal-side information transmission method in the above-mentioned embodiments of this application, and can be applied to various implementations on the terminal side provided in the above-mentioned embodiments. In this embodiment, it will not be repeated here.
  • an information transmission device provided in an embodiment of the present application includes:
  • the memory 520 is used to store program instructions
  • the processor 500 is configured to call the program instructions stored in the memory, and execute according to the obtained program:
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the multiplexing of the UCI of the first type and the UCI of the second type for transmission on the finally determined PUCCH resource specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission, Specifically:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • the transceiver 510 is configured to receive and send data under the control of the processor 500.
  • the bus architecture may include any number of interconnected buses and bridges. Specifically, one or more processors represented by the processor 500 and various circuits of the memory represented by the memory 520 are linked together.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, power management circuits, etc., which are all known in the art, and therefore, no further descriptions are provided herein.
  • the bus interface provides the interface.
  • the transceiver 510 may be a plurality of elements, that is, including a transmitter and a transceiver, and provide a unit for communicating with various other devices on a transmission medium.
  • the processor 500 is responsible for managing the bus architecture and general processing, and the memory 520 can store data used by the processor 500 when performing operations.
  • the processor 500 can be a central processor (CPU), an application specific integrated circuit (ASIC), a field programmable gate array (Field-Programmable Gate Array, FPGA) or a complex programmable logic device (Complex Programmable Logic Device). , CPLD).
  • CPU central processor
  • ASIC application specific integrated circuit
  • FPGA field programmable gate array
  • FPGA field programmable gate array
  • CPLD complex programmable logic device
  • the above-mentioned network-side information transmission device provided in the embodiments of this application is based on the same concept as the network-side information transmission method of the above-mentioned embodiments of this application, and can be applied to the various implementations on the network side provided in the above-mentioned embodiments. In this embodiment, it will not be repeated here.
  • another information transmission device provided by an embodiment of the present application includes:
  • the determining unit 11 is configured to determine that multiple time-division multiplexed first physical uplink control channel PUCCH resources that need to carry the first type of uplink control information UCI overlap with the second PUCCH resources that need to carry the second type of UCI;
  • the transmission unit 12 is configured to multiplex the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the transmission unit multiplexes the UCI of the first type and the UCI of the second type on the finally determined PUCCH resource for transmission, which specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined by the transmission unit in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the transmission module multiplexes the first type UCI and the second type UCI in the finally determined PUCCH resource. Transmission on PUCCH resources, including:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • the above-mentioned terminal-side information transmission device provided in the embodiments of this application is based on the same concept as the terminal-side information transmission method in the above-mentioned embodiments of this application, and can be applied to various implementations on the terminal side provided in the above-mentioned embodiments. In this embodiment, it will not be repeated here.
  • another information transmission device provided in an embodiment of the present application includes:
  • the determining unit 21 is configured to determine that multiple time-division multiplexed first physical uplink control channel PUCCH resources that need to carry the first type of uplink control information UCI overlap with second PUCCH resources that need to carry the second type of UCI;
  • the receiving unit 22 is configured to receive the UCI of the first type and the UCI of the second type that are multiplexed for transmission on the finally determined PUCCH resource.
  • the UCI of the first type includes a hybrid automatic repeat request response
  • the second type of UCI includes a scheduling request SR and/or channel state information CSI.
  • the first PUCCH resource overlaps the second PUCCH resource and includes at least one of the following contents:
  • the first PUCCH resource and the second PUCCH resource overlap by at least one symbol in the time domain;
  • One of the first PUCCH resources of format 2 or format 3 or format 4 has at least one symbol overlap with the second PUCCH resource in the time domain, and the new PUCCH resource and the other first PUCCH resource There is at least one symbol overlap in the time domain, wherein the new PUCCH is a new PUCCH selected according to the total number of bits of the first type of UCI and the second type of UCI to carry the first Type UCI and PUCCH of the second type UCI.
  • the finally determined PUCCH resource is a HARQ-ACK PUCCH resource
  • the finally determined PUCCH resource is the second PUCCH resource.
  • the multiplexing of the UCI of the first type and the UCI of the second type for transmission on the finally determined PUCCH resource specifically includes:
  • the second type of UCI includes a scheduling request SR, cascade the SRs;
  • the second type of UCI includes the first part of the channel state information CSI, concatenate the first part of the CSI;
  • the second type of UCI includes the second part of the CSI
  • the second part of the CSI and other UCIs are encoded independently, and the other UCIs are all except the first type of UCI and the second type of UCI.
  • the finally determined PUCCH resource of HARQ-ACK is determined in the following manner:
  • the PRI information field included in the last DCI corresponding to the UCI of the first type to be carried by a PUCCH determines the PUCCH resource used for multiplexing transmission of the UCI of the first type and the UCI of the second type.
  • the finally determined PUCCH resource is a PUCCH resource of SR and PUCCH format 1 is used, then the UCI of the first type and the UCI of the second type are multiplexed on the finally determined PUCCH resource for transmission, Specifically:
  • the two UCIs of the first type of time division multiplexing are sequentially transmitted according to the transmission time. Concatenate sequentially, and then modulate by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the first type of UCI. Transmission on PUCCH resources;
  • the two time division multiplexed UCIs of the first type are combined to obtain 2 bits Information, and then modulated by QPSK to obtain a modulation symbol.
  • the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI Transmission; or
  • the UCI of the second type is SR
  • two time division multiplexed UCIs of the first type are subjected to high-order modulation to obtain A modulation symbol, when the SR is an active SR, the modulation symbol is mapped to the PUCCH resource of the SR for transmission, otherwise the modulation symbol is mapped to the PUCCH resource of the first type of UCI for transmission.
  • the above-mentioned network-side information transmission device provided in the embodiments of this application is based on the same concept as the network-side information transmission method of the above-mentioned embodiments of this application, and can be applied to the various implementations on the network side provided in the above-mentioned embodiments. In this embodiment, it will not be repeated here.
  • each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated unit can be implemented in the form of hardware or software functional unit.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
  • the technical solution of this application essentially or the part that contributes to the existing technology or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium , Including a number of instructions to make a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor (processor) execute all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other media that can store program code .
  • the embodiments of the present application provide a computing device, and the computing device may specifically be a desktop computer, a portable computer, a smart phone, a tablet computer, a personal digital assistant (Personal Digital Assistant, PDA), etc.
  • the computing device may include a central processing unit (CPU), a memory, an input/output device, etc.
  • the input device may include a keyboard, a mouse, a touch screen, etc.
  • an output device may include a display device, such as a liquid crystal display (Liquid Crystal Display, LCD), Cathode Ray Tube (CRT), etc.
  • the memory may include read-only memory (ROM) and random access memory (RAM), and provides the processor with program instructions and data stored in the memory.
  • ROM read-only memory
  • RAM random access memory
  • the memory may be used to store the program of any of the methods provided in the embodiment of the present application.
  • the processor calls the program instructions stored in the memory, and the processor is configured to execute any of the methods provided in the embodiments of the present application according to the obtained program instructions.
  • the embodiment of the present application provides a computer storage medium for storing computer program instructions used by the device provided in the foregoing embodiment of the present application, which includes a program for executing any method provided in the foregoing embodiment of the present application.
  • the computer storage medium may be any available medium or data storage device that can be accessed by the computer, including but not limited to magnetic storage (such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.), optical storage (such as CD, DVD, BD, HVD, etc.), and semiconductor memory (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid state drive (SSD)), etc.
  • magnetic storage such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.
  • optical storage such as CD, DVD, BD, HVD, etc.
  • semiconductor memory such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid state drive (SSD)
  • the method provided in the embodiments of the present application can be applied to terminal equipment, and can also be applied to network equipment.
  • the terminal equipment can also be called User Equipment (User Equipment, referred to as "UE"), Mobile Station (Mobile Station, referred to as “MS”), Mobile Terminal (Mobile Terminal), etc.
  • UE User Equipment
  • MS Mobile Station
  • Mobile Terminal Mobile Terminal
  • the terminal can It has the ability to communicate with one or more core networks via a Radio Access Network (RAN).
  • RAN Radio Access Network
  • the terminal can be a mobile phone (or called a "cellular" phone), or a mobile computer, etc.
  • the terminal may also be a portable, pocket-sized, handheld, built-in computer or vehicle-mounted mobile device.
  • the network device may be a base station (for example, an access point), which refers to a device that communicates with a wireless terminal through one or more sectors on an air interface in an access network.
  • the base station can be used to convert received air frames and IP packets into each other, and act as a router between the wireless terminal and the rest of the access network, where the rest of the access network can include an Internet Protocol (IP) network.
  • IP Internet Protocol
  • the base station can also coordinate the attribute management of the air interface.
  • the base station may be a base station (BTS, Base Transceiver Station) in GSM or CDMA, a base station (NodeB) in WCDMA, or an evolved base station (NodeB or eNB or e-NodeB, evolutional NodeB) in LTE. B), or it can also be gNB in the 5G system.
  • BTS Base Transceiver Station
  • NodeB base station
  • eNB evolved base station
  • e-NodeB evolutional NodeB
  • the processing flow of the above method can be implemented by a software program, which can be stored in a storage medium, and when the stored software program is called, the above method steps are executed.
  • the technical solution provided by the embodiments of the present application when multiple time-division multiplexed PUCCH carrying HARQ-ACK and PUCCH carrying CSI/SR resources overlap, the UCI information carried by all overlapping channels is duplicated It is used for transmission on a PUCCH resource of HARQ-ACK, and the PUCCH resource used for multiplexing transmission is determined according to the last of all DCIs corresponding to HARQ-ACK. Therefore, the embodiment of this application provides multiple time-division multiplexed bearers The UCI multiplexing transmission method when the HARQ-ACK PUCCH and the PUCCH used to carry CSI/SR resources overlap, to ensure the transmission performance of the NR system.
  • the embodiments of the present application can be provided as methods, systems, or computer program products. Therefore, the present application may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, this application 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, optical storage, etc.) containing computer-usable program codes.
  • a computer-usable storage media including but not limited to disk storage, 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

本申请公开了信息传输方法及装置,用以实现多个时分复用的承载HARQ-ACK的PUCCH资源和用于承载CSI/SR的PUCCH资源重叠时的UCI复用传输,保证NR系统的传输性能。本申请实施例提供的一种信息传输方法,包括:确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。

Description

信息传输方法及装置
相关申请的交叉引用
本申请要求在2019年07月19日提交中国专利局、申请号为201910656646.8、申请名称为“信息传输方法及装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及通信技术领域,尤其涉及信息传输方法及装置。
背景技术
在NR(New Radio,新空口)系统中,定义了NR物理上行链路控制信道(Physical Uplink Control Channel,PUCCH)格式(format)0、1、2、3、4共5种PUCCH format,其中,format 0和1的PUCCH可以承载1~2比特UCI(Uplink Control Information,上行控制信息)传输,PUCCH format 2、3和4可以承载大于2比特UCI传输。混合自动重传请求应答(Hybrid Automatic Repeat Request-Acknowledge Character,HARQ-ACK)可以使用这5种PUCCH format中的任何一种。终端根据HARQ-ACK的比特数在预先配置给终端的多个PUCCH资源集合中选择一个,其中,每个PUCCH资源集合对应一个比特数范围。调度请求(Scheduling Request,SR)可以使用PUCCH format 0或1传输,所使用的PUCCH资源由高层信令配置。周期信道状态信息(Channel State Information,CSI)可以配置使用PUCCH format 2或3或4传输,所使用的PUCCH资源由高层信令配置。
在NR版本15(R15)系统中,承载CSI/SR的PUCCH与一个承载HARQ-ACK的PUCCH发生资源重叠时,根据如下的方法进行复用传输:
当承载SR的PUCCH与承载HARQ-ACK的PUCCH格式0重叠时,通过HARQ-ACK的PUCCH资源复用传输SR和HARQ-ACK;
当承载SR的PUCCH格式0与承载HARQ-ACK的PUCCH格式1重叠时,丢弃SR;
当承载SR的PUCCH格式1与承载HARQ-ACK的PUCCH格式1重叠时,积极SR时HARQ-ACK放在SR的PUCCH资源上传输,消极SR时HARQ-ACK放在HARQ-ACK的PUCCH资源上传输;
当承载SR的PUCCH与承载HARQ-ACK的PUCCH格式2/3/4重叠时,SR(包括积极的和消极的SR)和HARQ-ACK都放在HARQ-ACK的资源上进行传输;
当承载SPS(Semi-Persistent Scheduling,半永久性调度/半静态调度)HARQ-ACK,即对应SPS PDSCH(Physical Downlink Shared Channel,物理下行链路共享信道)的HARQ-ACK的PUCCH与承载CSI的PUCCH重叠时,将SPS HARQ-ACK转移到CSI对应的PUCCH资源上与CSI复用传输。当承载动态的(dynamic)HARQ-ACK(即对应具有对应的DCI调度的PDSCH的HARQ-ACK)的PUCCH与承载CSI的PUCCH重叠时,根据HARQ-ACK和CSI的比特数,在配置的PUCCH资源集合中选择一个集合,再根据调度PDSCH的DCI中的PUCCH资源指示域从选择的一个集合中确定出一个PUCCH资源,用于同时承载HARQ-ACK和CSI。
综上所述,在现有技术中,只存在一个HARQ-ACK的PUCCH资源和CSI/SR的PUCCH资源重叠的情况,并不存在多个时分复用的用于承载HARQ-ACK的PUCCH和一个用于承载SR/CSI的PUCCH资源重叠的情况,在Rel-16(版本16)中将支持一个时隙中传输多个时分复用的用于承载HARQ-ACK的PUCCH,因此当多个承载HARQ-ACK的PUCCH资源和用于承载SR/CSI的PUCCH资源重叠时,目前还没有解决方案。
发明内容
本申请实施例提供了信息传输方法及装置,用以实现多个时分复用的承载HARQ-ACK的PUCCH资源和用于承载CSI/SR的PUCCH资源重叠时的 UCI复用传输,保证NR系统的传输性能。
在终端侧,本申请实施例提供的一种信息传输方法,包括:
确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
通过该方法,确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,从而提供了多个时分复用的承载HARQ-ACK的PUCCH资源和用于承载CSI/SR的PUCCH资源重叠时的UCI复用传输方法,保证了NR系统的传输性能。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一 PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极 的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
相应地,在网络侧,本申请实施例提供的一种信息传输方法,包括:
确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述 新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用 PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
在终端侧,本申请实施例提供的一种信息传输装置,包括:
存储器,用于存储程序指令;
处理器,用于调用所述存储器中存储的程序指令,按照获得的程序执行:
确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述处理器将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是所述处理器通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择 PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述处理器将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
相应地,在网络侧,本申请实施例提供的一种信息传输装置,包括:
存储器,用于存储程序指令;
处理器,用于调用所述存储器中存储的程序指令,按照获得的程序执行:
确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI 的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类 型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
在终端侧,本申请实施例提供的另一种信息传输装置,包括:
确定单元,用于确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
传输单元,用于将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述传输单元将所述第一类型的UCI和所述第二类型的UCI复 用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是所述传输单元通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述传输模块将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类 型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
相应地,在网络侧,本申请实施例提供的另一种信息传输装置,包括:
确定单元,用于确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
接收单元,用于接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则 最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类 型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
本申请另一实施例提供了一种计算设备,其包括存储器和处理器,其中,所述存储器用于存储程序指令,所述处理器用于调用所述存储器中存储的程序指令,按照获得的程序执行上述任一种方法。
本申请另一实施例提供了一种计算机存储介质,所述计算机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所述计算机执行上述任一种方法。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简要介绍,显而易见地,下面描述中的附图仅是本申请的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1~图6为本申请实施例1提供的多个承载HARQ-ACK的PUCCH和一 个承载SR的PUCCH资源重叠示意图;
图7~图12为本申请实施例2提供的多个承载HARQ-ACK的PUCCH和一个承载SR的PUCCH资源重叠示意图;
图13为本申请实施例3提供的多个承载HARQ-ACK的PUCCH和一个承载SR的PUCCH资源重叠示意图;
图14为本申请实施例提供的终端侧的一种信息传输方法的流程示意图;
图15为本申请实施例提供的网络侧的一种信息传输方法的流程示意图;
图16为本申请实施例提供的终端侧的一种信息传输装置的结构示意图;
图17为本申请实施例提供的网络侧的一种信息传输装置的结构示意图;
图18为本申请实施例提供的终端侧的一种信息传输装置的结构示意图;
图19为本申请实施例提供的网络侧的一种信息传输装置的结构示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,并不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施例中“和/或”,描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
本申请实施例提供了信息传输方法及装置,用以实现多个时分复用的承载HARQ-ACK的PUCCH资源和用于承载CSI/SR的PUCCH资源重叠时的UCI复用传输,保证NR系统的传输性能。
其中,方法和装置是基于同一申请构思的,由于方法和装置解决问题的原理相似,因此装置和方法的实施可以相互参见,重复之处不再赘述。
本申请实施例提供的技术方案可以适用于多种系统,尤其是5G系统。例如适用的系统可以是全球移动通讯(Global System of Mobile Communication, GSM)系统、码分多址(Code Division Multiple Access,CDMA)系统、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)通用分组无线业务(General Packet Radio Service,GPRS)系统、长期演进(Long Term Evolution,LTE)系统、LTE频分双工(Frequency Division Duplex,FDD)系统、LTE时分双工(Time Division Duplex,TDD)、通用移动系统(Universal Mobile Telecommunication System,UMTS)、全球互联微波接入(Worldwide Interoperability For Microwave Access,WiMAX)系统、5G系统以及5G NR系统等。这多种系统中均包括终端设备和网络设备。
本申请实施例涉及的终端设备,可以是指向用户提供语音和/或数据连通性的设备,具有无线连接功能的手持式设备、或连接到无线调制解调器的其他处理设备。在不同的系统中,终端设备的名称可能也不相同,例如在5G系统中,终端设备可以称为用户设备(User Equipment,UE)。无线终端设备可以经RAN(Radio Access Network,无线接入网)与一个或多个核心网进行通信,无线终端设备可以是移动终端设备,如移动电话(或称为“蜂窝”电话)和具有移动终端设备的计算机,例如,可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语言和/或数据。例如,个人通信业务(Personal Communication Service,PCS)电话、无绳电话、会话发起协议(Session Initiated Protocol,SIP)话机、无线本地环路(Wireless Local Loop,WLL)站、个人数字助理(Personal Digital Assistant,PDA)等设备。无线终端设备也可以称为系统、订户单元(subscriber unit)、订户站(subscriber station),移动站(mobile station)、移动台(mobile)、远程站(remote station)、接入点(access point)、远程终端设备(remote terminal)、接入终端设备(access terminal)、用户终端设备(user terminal)、用户代理(user agent)、用户装置(user device),本申请实施例中并不限定。
本申请实施例涉及的网络设备,可以是基站,该基站可以包括多个小区。根据具体应用场合不同,基站又可以称为接入点,或者可以是指接入网中在空中接口上通过一个或多个扇区与无线终端设备通信的设备,或者其它名称。 网络设备可用于将收到的空中帧与网际协议(Internet Protocol,IP)分组进行相互转换,作为无线终端设备与接入网的其余部分之间的路由器,其中接入网的其余部分可包括网际协议(IP)通信网络。网络设备还可协调对空中接口的属性管理。例如,本申请实施例涉及的网络设备可以是全球移动通信系统(Global System for Mobile Communications,GSM)或码分多址接入(Code Division Multiple Access,CDMA)中的网络设备(Base Transceiver Station,BTS),也可以是带宽码分多址接入(Wide-band Code Division Multiple Access,WCDMA)中的网络设备(NodeB),还可以是长期演进(Long Term Evolution,LTE)系统中的演进型网络设备(evolutional Node B,eNB或e-NodeB)、5G网络架构(Next Generation System)中的5G基站,也可是家庭演进基站(Home evolved Node B,HeNB)、中继节点(relay node)、家庭基站(femto)、微微基站(pico)等,本申请实施例中并不限定。
下面结合说明书附图对本申请各个实施例进行详细描述。需要说明的是,本申请实施例的展示顺序仅代表实施例的先后顺序,并不代表实施例所提供的技术方案的优劣。
本申请实施例提供的技术方案中,当多个时分复用的承载HARQ-ACK的PUCCH和用于承载CSI或SR的PUCCH资源重叠时,将所有的发生资源重叠的信道需要承载的上行控制信息(UCI),复用在一个最终确定的PUCCH(可以是用于承载CSI/SR的PUCCH,也可以是用于承载HARQ-ACK的PUCCH)资源上进行传输。其中,所述多个时分复用的承载HARQ-ACK的PUCCH,即多个PUCCH中,每一PUCCH均承载HARQ-ACK,这些PUCCH时分复用。
可选地,所述多个时分复用的承载HARQ-ACK的PUCCH和用于承载CSI/SR的PUCCH资源重叠包括:
多个时分复用的承载HARQ-ACK的PUCCH和用于承载CSI/SR的PUCCH资源在时域上至少存在一个符号的重叠;
一个承载HARQ-ACK的PUCCH(该PUCCH的格式为格式2或格式3 或格式4)和用于承载CSI/SR的PUCCH资源在时域上至少存在一个符号的重叠,并且,根据所述HARQ-ACK和CSI/SR的总比特数选择了一个新的PUCCH资源用于承载所述HARQ-ACK和CSI/SR,所述新的PUCCH资源和另一个承载HARQ-ACK的PUCCH资源在时域上至少存在一个符号的重叠。
可选地,所述将所有的资源重叠的信道承载的UCI信息复用在一个PUCCH资源(即最终确定的PUCCH资源)上进行传输,具体包括;
如果多个时分复用的HARQ-ACK中至少包含一个动态HARQ-ACK(即对应于动态PDSCH传输的HARQ-ACK),所述最终确定的PUCCH资源为用于承载HARQ-ACK的PUCCH资源;
如果多个时分复用的HARQ-ACK均为SPS HARQ-ACK(即对应于SPS PDSCH传输的HARQ-ACK)或者多个时分复用的承载HARQ-ACK的PUCCH均使用PUCCH格式0/1,则所述最终确定的PUCCH资源为用于承载CSI/SR的PUCCH资源;
如果所述最终确定的PUCCH资源为HARQ-ACK/CSI的PUCCH资源,则根据如下顺序将所有的资源重叠的信道承载的UCI信息进行级联(级联就是多种信息比特按照规定的顺序连在一起生成一个长比特序列):
多个时分复用的HARQ-ACK根据对应的PUCCH时间先后顺序进行级联;
如果存在SR,将SR放在HARQ-ACK信息之后进行级联;
如果存在CSI的第一部分(part 1),将CSI part 1信息放在HARQ-ACK/SR信息之后进行级联;
如果存在CSI的第二部分(part 2),则CSI part 2和其它的UCI信息(所述所有的重叠信道承载的UCI信息中除了CSI part 2之外的信息)进行独立编码(不同的信息分别进行编码,和联合编码对应的,联合编码是指不同信息级联之后一同进行编码);
如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用格式1,则:
如果多个HARQ-ACK信息的总比特数不大于2,则所述多个HARQ-ACK 信息调制后映射在SR的PUCCH资源上传输;所述调制方式为二相相移键控(Binary Phase Shift Keying,BPSK)或者正交相移键控(Quadrature Phase Shift Keying,QPSK)调制;
如果多个HARQ-ACK信息的总比特数大于2,则:
将多个HARQ-ACK信息进行合并后得到1或者2比特信息,调制后映射在SR的PUCCH资源上传输;
具体的,合并方式可以是基于码字的合并,例如对不同时隙中传输的相同码字的反馈信息进行与合并;
或者,合并方式可以是基于HARQ-ACK码本的合并,例如将每个HARQ-ACK码本信息进行合并(仅适用于2个TDM HARQ-ACK PUCCH的情况);
或者,通过高阶调制方式将多个HARQ-ACK信息调制为一个调制符号,映射在SR的PUCCH资源上传输,所述调制方式为BPSK、QPSK、8PSK(8 Phase Shift Keying,8移相键控)、16PSK(16 Phase Shift Keying,16移相键控)、16正交幅度调制(Quadrature Amplitude Modulation,QAM)、64QAM、256QAM、512QAM调制等。
所述最终确定的PUCCH资源为一个承载HARQ-ACK的PUCCH资源时,具体通过如下方式确定:
根据所有的重叠信道承载的UCI信息比特总数选择一个对应的PUCCH资源集合;
在所述PUCCH资源集合中根据所述多个时分复用的承载HARQ-ACK的PUCCH承载的HARQ-ACK对应的最后一个DCI包含的PUCCH资源指示(PUCCH Resource Indication,PRI)信息域确定复用传输的PUCCH资源;或者
在所述PUCCH资源集合中根据所述多个时分复用的承载HARQ-ACK的PUCCH中的最后一个PUCCH承载的HARQ-ACK对应的最后一个DCI包含的PRI信息域确定复用传输的PUCCH资源。
实施例1:
假设两个承载HARQ-ACK的PUCCH和一个承载SR的PUCCH资源重叠,如图1~图6所示:
情况a:参见图1,承载第一HARQ-ACK(表示为HARQ-ACK-1)的PUCCH资源使用了PUCCH格式2/3/4(附图1~13中的PF均表示PUCCH格式),承载第二HARQ-ACK(表示为HARQ-ACK-2)的PUCCH资源使用了PUCCH格式0/1/2/3/4,承载SR的PUCCH资源使用了PUCCH格式0/1,其中承载HARQ-ACK-1的PUCCH资源超前于承载SR的PUCCH资源,承载SR的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
情况b:参见图2,承载HARQ-ACK-1的PUCCH资源使用了PUCCH格式2/3/4,承载HARQ-ACK-2的PUCCH资源使用了PUCCH格式0/1/2/3/4,承载SR的PUCCH资源使用了PUCCH格式0/1,其中承载HARQ-ACK-1的PUCCH资源超前于承载SR的PUCCH资源,承载SR的PUCCH资源仅和第一个承载HARQ-ACK的PUCCH资源存在重叠;
情况c:参见图3,承载HARQ-ACK-1的PUCCH资源使用了PUCCH格式2/3/4,承载HARQ-ACK-2的PUCCH资源使用了PUCCH格式0/1/2/3/4,承载SR的PUCCH资源使用了PUCCH格式0/1,其中承载SR的PUCCH资源超前于承载HARQ-ACK-1的PUCCH资源,承载SR的PUCCH资源仅和第一个承载HARQ-ACK的PUCCH资源存在重叠;
情况d:参见图4,承载HARQ-ACK-1的PUCCH资源使用了PUCCH格式2/3/4,承载HARQ-ACK-2的PUCCH资源使用了PUCCH格式0/1/2/3/4,承载SR的PUCCH资源使用了PUCCH格式1,其中承载SR的PUCCH资源超前于承载HARQ-ACK-1的PUCCH资源,承载SR的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
情况e:参见图5,承载HARQ-ACK-1的PUCCH资源使用了PUCCH格式1,承载HARQ-ACK-2的PUCCH资源使用了PUCCH格式0/1/2/3/4,承载SR的PUCCH资源使用了PUCCH格式1,其中承载HARQ-ACK-1的PUCCH 资源超前于承载SR的PUCCH资源,承载SR的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
情况f:参见图6,承载HARQ-ACK-1的PUCCH资源使用了PUCCH格式1,承载HARQ-ACK-2的PUCCH资源使用了PUCCH格式0/1/2/3/4,承载SR的PUCCH资源使用了PUCCH格式1,其中承载SR的PUCCH资源超前于承载HARQ-ACK-1的PUCCH资源,承载SR的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
对于上述情况a、b、c和e,首先根据第一个HARQ-ACK-1和SR的总比特数确定一个PUCCH资源集合,根据HARQ-ACK-1对应的DCI中最后一个DCI所包含的PRI信息域在所述PUCCH资源集合中选择一个HARQ-ACK资源,如果新选择的HARQ-ACK资源和HARQ-ACK-2的PUCCH资源重叠,则再根据HARQ-ACK-1、HARQ-ACK-2和SR的总比特数重新确定一个PUCCH资源集合,再根据HARQ-ACK-1、HARQ-ACK-2对应的DCI中最后一个DCI(或者仅根据HARQ-ACK-2对应的DCI中最后一个DCI)所包含的PRI信息域确定使用最后确定的PUCCH资源集合中的一个资源来传输所述HARQ-ACK-1、HARQ-ACK-2和SR;
对于上述情况d和f,直接根据HARQ-ACK-1、HARQ-ACK-2和SR的总比特数重新确定一个PUCCH资源集合,再根据HARQ-ACK-1、HARQ-ACK-2对应的DCI中最后一个DCI(或者仅根据HARQ-ACK-2对应的DCI中最后一个DCI)所包含的PRI信息域确定使用确定的PUCCH资源集合中的一个资源来传输所述HARQ-ACK-1、HARQ-ACK-2和SR;
对于上述所有情况,终端在最终选择的资源中同时传输所述HARQ-ACK-1、HARQ-ACK-2和SR,所传输的比特顺序为HARQ-ACK-1、HARQ-ACK-2和SR。
实施例2:
假设两个承载HARQ-ACK的PUCCH和一个承载CSI的PUCCH资源重叠,如图7~图12所示:
情况a:参见图7,承载SPS HARQ-ACK的PUCCH格式0/1,承载动态HARQ-ACK的PUCCH格式0/1/2/3/4,承载CSI的PUCCH资源使用PUCCH格式2/3/4,其中承载SPS HARQ-ACK的PUCCH资源超前于承载CSI的PUCCH资源,承载CSI的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
情况b:参见图8,承载SPS HARQ-ACK的PUCCH格式0/1,承载动态HARQ-ACK的PUCCH格式0/1/2/3/4,承载CSI的PUCCH资源使用PUCCH格式2/3/4,其中承载动态HARQ-ACK的PUCCH资源超前于承载CSI的PUCCH资源,承载CSI的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
情况c:参见图9,两个承载动态HARQ-ACK的PUCCH格式0/1/2/3/4,承载CSI的PUCCH资源使用PUCCH格式2/3/4,其中第一个承载动态HARQ-ACK的PUCCH资源超前于承载CSI的PUCCH资源,承载CSI的PUCCH资源和两个承载HARQ-ACK的PUCCH资源都存在重叠;
情况d:参见图10,和情况a的区别为承载CSI的PUCCH资源超前于承载SPS HARQ-ACK的PUCCH资源;
情况e:参见图11,和情况b的区别为承载CSI的PUCCH资源超前于承载动态HARQ-ACK的PUCCH资源;
情况f:参见图12,和情况c的区别为承载CSI的PUCCH资源超前于第一个承载动态HARQ-ACK的PUCCH资源;
对于上述情况b和c,首先根据第一个HARQ-ACK和CSI的总比特数确定一个PUCCH资源集合,根据第一个HARQ-ACK对应的DCI中最后一个DCI所包含的PRI信息域在所述PUCCH资源集合中选择一个HARQ-ACK资源,如果新选择的HARQ-ACK资源和第二个HARQ-ACK的PUCCH资源重叠,则再根据所有HARQ-ACK和CSI的总比特数重新确定一个PUCCH资源集合,再根据所有HARQ-ACK对应的DCI中最后一个DCI所包含的PRI信息域确定使用最后确定的PUCCH资源集合中的一个资源来传输所述所有 HARQ-ACK和CSI;
对于上述情况a、d、e和f,直接根据所有HARQ-ACK和CSI的总比特数重新确定一个PUCCH资源集合,在所述PUCCH资源集合中再根据所有HARQ-ACK对应的DCI中最后一个DCI所包含的PRI信息域确定其中一个资源来传输所述所有HARQ-ACK和CSI。
对于上述所有情况,终端在最终选择的资源中同时传输所述所有HARQ-ACK和CSI,所传输的比特顺序为第一个PUCCH承载的HARQ-ACK、第二个PUCCH承载的HARQ-ACK和CSI。
实施例3:
假设两个承载HARQ-ACK的PUCCH和一个承载CSI的PUCCH资源以及一个承载SR的PUCCH资源重叠,如图13所示,则终端首先根据所有UCI的比特数确定一个PUCCH资源集合,假设UE被配置了4个HARQ-ACK的PUCCH资源集合,第一个PUCCH资源集合对应1~2比特,第二个PUCCH资源集合对应3~11比特,第三个PUCCH资源集合对应12~50比特,第四个PUCCH资源集合对应51~100比特。当HARQ-ACK-1的PUCCH资源对应承载5比特HARQ-ACK,HARQ-ACK-2的PUCCH资源对应承载20比特HARQ-ACK,SR的PUCCH资源对应承载1比特SR,CSI的PUCCH资源对应承载10比特CSI,则总的UCI比特数为36比特,UE选择第三个PUCCH资源集合。假设HARQ-ACK-1、HARQ-ACK-2对应的DCI中最后一个DCI所包含的PRI信息指示为010,则使用第三个PUCCH资源集合中的第三个PUCCH资源传输所有UCI信息,UCI进行级联的顺序为HARQ-ACK-1、HARQ-ACK-2、SR和CSI part 1,这些信息在级联后进行联合编码,如果CSI还包含CSI part 2,则在PUCCH上CSI part 2独立进行编码和映射。
需要说明的是,在上述实施例1~3中仅给出了两个HARQ-ACK的PUCCH资源和CSI/SR的PUCCH资源重叠的情况,实际还可能存在多于两个HARQ-ACK的PUCCH资源和CSI/SR的PUCCH资源重叠的情况,当多于两个HARQ-ACK的PUCCH资源和CSI/SR的PUCCH资源重叠时,具体的复 用传输方法是类似的,本申请实施例提供的技术方案也包含了多于两个HARQ-ACK的PUCCH资源和CSI/SR的PUCCH资源重叠时UCI的复用传输方法。
综上所述,参见图14,在终端侧,本申请实施例提供的一种信息传输方法,包括:
S101、确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
S102、将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
通过该方法,确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,从而提供了多个时分复用的承载HARQ-ACK的PUCCH资源和用于承载CSI/SR的PUCCH资源重叠时的UCI复用传输方法,保证了NR系统的传输性能。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
相应地,参见图15,在网络侧,本申请实施例提供的一种信息传输方法,包括:
S201、确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
S202、接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符 号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多 个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
本申请实施例所提供的上述网络侧的信息传输方法,与本申请上述实施例的终端侧的信息传输方法基于同一构思,应用到上述实施例提供的各种实施方式,都可以应用到本实施例中,这里不再重述。
在终端侧,参见图16,本申请实施例提供的一种信息传输装置,包括:
存储器620,用于存储程序指令;
处理器600,用于调用所述存储器中存储的程序指令,按照获得的程序执 行:
确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述处理器将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是所述处理器通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述处理器将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
收发机610,用于在处理器600的控制下接收和发送数据。
其中,在图16中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器600代表的一个或多个处理器和存储器620代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机610可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元。针对不同的用户设备,用户接口630还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
处理器600负责管理总线架构和通常的处理,存储器620可以存储处理器600在执行操作时所使用的数据。
可选的,处理器600可以是CPU(中央处埋器)、ASIC(Application Specific Integrated Circuit,专用集成电路)、FPGA(Field-Programmable Gate Array,现场可编程门阵列)或CPLD(Complex Programmable Logic Device,复杂可编程逻辑器件)。
本申请实施例所提供的上述终端侧的信息传输装置,与本申请上述实施例的终端侧的信息传输方法基于同一构思,应用到上述实施例提供的终端侧的各种实施方式,都可以应用到本实施例中,这里不再重述。
相应地,参见图17,在网络侧,本申请实施例提供的一种信息传输装置,包括:
存储器520,用于存储程序指令;
处理器500,用于调用所述存储器中存储的程序指令,按照获得的程序执 行:
确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
收发机510,用于在处理器500的控制下接收和发送数据。
其中,在图17中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器500代表的一个或多个处理器和存储器520代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机510可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。处理器500负责管理总线架构和通常的处理,存储器520可以存储处理器500在执行操作时所使用的数据。
处理器500可以是中央处埋器(CPU)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或复杂可编程逻辑器件(Complex Programmable Logic Device,CPLD)。
本申请实施例所提供的上述网络侧的信息传输装置,与本申请上述实施例的网络侧的信息传输方法基于同一构思,应用到上述实施例提供的网络侧的各种实施方式,都可以应用到本实施例中,这里不再重述。
在终端侧,参见图18,本申请实施例提供的另一种信息传输装置,包括:
确定单元11,用于确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
传输单元12,用于将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述传输单元将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是所述传输单元通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述传输模块将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
本申请实施例所提供的上述终端侧的信息传输装置,与本申请上述实施例的终端侧的信息传输方法基于同一构思,应用到上述实施例提供的终端侧 的各种实施方式,都可以应用到本实施例中,这里不再重述。
在网络侧,参见图19,本申请实施例提供的另一种信息传输装置,包括:
确定单元21,用于确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
接收单元22,用于接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
可选地,所述第一类型的UCI,包括混合自动重传请求应答;
所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
可选地,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
可选地,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
可选地,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
可选地,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
可选地,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射 在第一类型的UCI的PUCCH资源上传输;或者
如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
本申请实施例所提供的上述网络侧的信息传输装置,与本申请上述实施例的网络侧的信息传输方法基于同一构思,应用到上述实施例提供的网络侧的各种实施方式,都可以应用到本实施例中,这里不再重述。
需要说明的是,本申请实施例中对单元的划分是示意性的,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式。另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
本申请实施例提供了一种计算设备,该计算设备具体可以为桌面计算机、便携式计算机、智能手机、平板电脑、个人数字助理(Personal Digital Assistant,PDA)等。该计算设备可以包括中央处理器(Center Processing Unit,CPU)、存储器、输入/输出设备等,输入设备可以包括键盘、鼠标、触摸屏等,输出 设备可以包括显示设备,如液晶显示器(Liquid Crystal Display,LCD)、阴极射线管(Cathode Ray Tube,CRT)等。
存储器可以包括只读存储器(ROM)和随机存取存储器(RAM),并向处理器提供存储器中存储的程序指令和数据。在本申请实施例中,存储器可以用于存储本申请实施例提供的任一所述方法的程序。
处理器通过调用存储器存储的程序指令,处理器用于按照获得的程序指令执行本申请实施例提供的任一所述方法。
本申请实施例提供了一种计算机存储介质,用于储存为上述本申请实施例提供的装置所用的计算机程序指令,其包含用于执行上述本申请实施例提供的任一方法的程序。
所述计算机存储介质可以是计算机能够存取的任何可用介质或数据存储设备,包括但不限于磁性存储器(例如软盘、硬盘、磁带、磁光盘(MO)等)、光学存储器(例如CD、DVD、BD、HVD等)、以及半导体存储器(例如ROM、EPROM、EEPROM、非易失性存储器(NAND FLASH)、固态硬盘(SSD))等。
本申请实施例提供的方法可以应用于终端设备,也可以应用于网络设备。
其中,终端设备也可称之为用户设备(User Equipment,简称为“UE”)、移动台(Mobile Station,简称为“MS”)、移动终端(Mobile Terminal)等,可选的,该终端可以具备经无线接入网(Radio Access Network,RAN)与一个或多个核心网进行通信的能力,例如,终端可以是移动电话(或称为“蜂窝”电话)、或具有移动性质的计算机等,例如,终端还可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置。
网络设备可以为基站(例如,接入点),指接入网中在空中接口上通过一个或多个扇区与无线终端通信的设备。基站可用于将收到的空中帧与IP分组进行相互转换,作为无线终端与接入网的其余部分之间的路由器,其中接入网的其余部分可包括网际协议(IP)网络。基站还可协调对空中接口的属性管理。例如,基站可以是GSM或CDMA中的基站(BTS,Base Transceiver Station), 也可以是WCDMA中的基站(NodeB),还可以是LTE中的演进型基站(NodeB或eNB或e-NodeB,evolutional Node B),或者也可以是5G系统中的gNB等。本申请实施例中不做限定。
上述方法处理流程可以用软件程序实现,该软件程序可以存储在存储介质中,当存储的软件程序被调用时,执行上述方法步骤。
综上所述,本申请实施例提供的技术方案,当多个时分复用的承载HARQ-ACK的PUCCH和用于承载CSI/SR的PUCCH资源重叠时,将所有的重叠信道承载的UCI信息复用在一个HARQ-ACK的PUCCH资源上进行传输,根据所有HARQ-ACK对应的DCI中的最后一个确定复用传输使用的PUCCH资源,因此,本申请实施例给出了多个时分复用的承载HARQ-ACK的PUCCH和用于承载CSI/SR的PUCCH资源重叠时的UCI复用传输方法,保证了NR系统的传输性能。
本领域内的技术人员应明白,本申请的实施例可提供为方法、系统、或计算机程序产品。因此,本申请可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本申请可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本申请是参照根据本申请实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器 中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离本申请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及其等同技术的范围之内,则本申请也意图包含这些改动和变型在内。

Claims (31)

  1. 一种信息传输方法,其特征在于,该方法包括:
    确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
    将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
  2. 根据权利要求1所述的方法,其特征在于,所述第一类型的UCI,包括混合自动重传请求应答;
    所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
  3. 根据权利要求1所述的方法,其特征在于,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
    所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
    一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
  4. 根据权利要求1所述的方法,其特征在于,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
    如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
  5. 根据权利要求1所述的方法,其特征在于,将所述第一类型的UCI 和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
    将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
    如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
    如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
    如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
  6. 根据权利要求4所述的方法,其特征在于,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
    根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
    在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
  7. 根据权利要求4所述的方法,其特征在于,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
    如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符 号映射在第一类型的UCI的PUCCH资源上传输;
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
  8. 一种信息传输方法,其特征在于,该方法包括:
    确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
    接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
  9. 根据权利要求8所述的方法,其特征在于,所述第一类型的UCI,包括混合自动重传请求应答;
    所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
  10. 根据权利要求8所述的方法,其特征在于,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
    所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
    一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述 新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
  11. 根据权利要求8所述的方法,其特征在于,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
    如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
  12. 根据权利要求8所述的方法,其特征在于,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
    将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
    如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
    如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
    如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
  13. 根据权利要求11所述的方法,其特征在于,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
    根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
    在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
  14. 根据权利要求11所述的方法,其特征在于,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
    如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
  15. 一种信息传输装置,其特征在于,该装置包括:
    存储器,用于存储程序指令;
    处理器,用于调用所述存储器中存储的程序指令,按照获得的程序执行:
    确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
    将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
  16. 根据权利要求15所述的装置,其特征在于,所述第一类型的UCI,包括混合自动重传请求应答;
    所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
  17. 根据权利要求15所述的装置,其特征在于,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
    所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
    一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
  18. 根据权利要求15所述的装置,其特征在于,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
    如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
  19. 根据权利要求15所述的装置,其特征在于,所述处理器将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
    将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
    如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
    如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
    如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和 其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
  20. 根据权利要求18所述的装置,其特征在于,所述最终确定的HARQ-ACK的PUCCH资源是所述处理器通过如下方式确定的:
    根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
    在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
  21. 根据权利要求18所述的装置,其特征在于,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述处理器将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
    如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得 到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
  22. 一种信息传输装置,其特征在于,该装置包括:
    存储器,用于存储程序指令;
    处理器,用于调用所述存储器中存储的程序指令,按照获得的程序执行:
    确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
    接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
  23. 根据权利要求22所述的装置,其特征在于,所述第一类型的UCI,包括混合自动重传请求应答;
    所述第二类型的UCI,包括调度请求SR和/或信道状态信息CSI。
  24. 根据权利要求22所述的装置,其特征在于,所述第一PUCCH资源与所述第二PUCCH资源重叠,至少包括下列内容之一:
    所述第一PUCCH资源和所述第二PUCCH资源在时域上至少存在一个符号的重叠;
    一个格式2或格式3或格式4的所述第一PUCCH资源,与所述第二PUCCH资源在时域上至少存在一个符号的重叠,并且,新的PUCCH资源与另一个所述第一PUCCH资源在时域上至少存在一个符号的重叠,其中,所述新的PUCCH,为根据所述第一类型的UCI和所述第二类型的UCI的总比特数重新选择的用于承载所述第一类型的UCI和所述第二类型的UCI的PUCCH。
  25. 根据权利要求22所述的装置,其特征在于,如果所述第一类型的UCI中至少包含一个动态HARQ-ACK,则最终确定的PUCCH资源为HARQ-ACK的PUCCH资源;
    如果所述第一类型的UCI中均为SPS HARQ-ACK,或者多个所述第一 PUCCH均使用PUCCH格式0或格式1,则最终确定的PUCCH资源为所述第二PUCCH资源。
  26. 根据权利要求22所述的装置,其特征在于,所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输,具体包括:
    将多个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联;
    如果所述第二类型的UCI包括调度请求SR,则将SR进行级联;
    如果所述第二类型的UCI包括信道状态信息CSI的第一部分,则将CSI的第一部分进行级联;
    如果所述第二类型的UCI包括CSI的第二部分,则将CSI的第二部分和其他UCI进行独立编码,所述其他UCI为所述第一类型的UCI和第二类型的UCI中除了所述CSI的第二部分之外的UCI。
  27. 根据权利要求25所述的装置,其特征在于,所述最终确定的HARQ-ACK的PUCCH资源是通过如下方式确定的:
    根据所述第一类型的UCI和所述第二类型的UCI的总比特数,选择PUCCH资源集合;
    在所述PUCCH资源集合中,根据多个所述第一PUCCH承载的第一类型的UCI对应的最后一个下行控制信息DCI包含的PRI信息域,或者,根据多个所述第一PUCCH中的最后一个PUCCH需要承载的第一类型的UCI对应的最后一个DCI包含的PRI信息域,确定用于对所述第一类型的UCI和所述第二类型的UCI进行复用传输的PUCCH资源。
  28. 根据权利要求25所述的装置,其特征在于,如果所述最终确定的PUCCH资源为SR的PUCCH资源且使用PUCCH格式1,则所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上传输,具体包括:
    如果所述多个时分复用的第一类型的UCI总比特数等于2,所述第二类 型的UCI为SR,则将两个时分复用的所述第一类型的UCI,根据传输时间先后顺序进行级联,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行合并得到2比特信息,然后通过QPSK调制后得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输;或者
    如果所述多个时分复用的第一类型的UCI总比特数大于2,所述第二类型的UCI为SR,则将两个时分复用的所述第一类型的UCI进行高阶调制得到一个调制符号,当该SR为积极的SR时,将该调制符号映射在SR的PUCCH资源上传输,否则将该调制符号映射在第一类型的UCI的PUCCH资源上传输。
  29. 一种信息传输装置,其特征在于,该装置包括:
    确定单元,用于确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
    传输单元,用于将所述第一类型的UCI和所述第二类型的UCI复用在最终确定的PUCCH资源上进行传输。
  30. 一种信息传输装置,其特征在于,该装置包括:
    确定单元,用于确定多个时分复用的需要承载第一类型的上行控制信息UCI的第一物理上行链路控制信道PUCCH资源与需要承载第二类型的UCI的第二PUCCH资源重叠;
    接收单元,用于接收复用在最终确定的PUCCH资源上进行传输的所述第一类型的UCI和所述第二类型的UCI。
  31. 一种计算机存储介质,其特征在于,所述计算机存储介质存储有计 算机可执行指令,所述计算机可执行指令用于使所述计算机执行权利要求1至7任一项所述的方法,或所述计算机可执行指令用于使所述计算机执行权利要求8至14任一项所述的方法。
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Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113543330B (zh) * 2020-04-22 2022-12-09 北京紫光展锐通信技术有限公司 信道资源的传输方法及设备
CN113207186B (zh) * 2021-03-22 2022-08-05 中国信息通信研究院 一种上行控制信息的复用方法和设备
CN115225198A (zh) * 2021-04-16 2022-10-21 大唐移动通信设备有限公司 Uci的级联确定方法、装置、终端及网络侧设备
WO2023206233A1 (en) * 2022-04-28 2023-11-02 Qualcomm Incorporated Multiplexing techniques for simultaneous uplink control channel transmissions on a single component carrier
WO2023236100A1 (en) * 2022-06-08 2023-12-14 Qualcomm Incorporated Uplink control information multiplexing across different transmission reception points

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011019795A1 (en) * 2009-08-13 2011-02-17 Interdigital Patent Holdings, Inc. Multiplexing uplink l1/l2 control and data
CN104429015A (zh) * 2012-08-03 2015-03-18 英特尔公司 信道状态信息和混合自动重复请求-确认信息的多路复用

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3499772A1 (en) * 2009-10-19 2019-06-19 Samsung Electronics Co., Ltd. Transmission diversity and multiplexing for harq-ack signals in communication systems
KR101782645B1 (ko) * 2010-01-17 2017-09-28 엘지전자 주식회사 무선 통신 시스템에서 상향링크 제어 정보 전송 방법 및 장치
KR101802756B1 (ko) * 2010-04-05 2017-11-29 엘지전자 주식회사 무선 통신 시스템에서 제어 정보의 전송 방법 및 장치
CN109995481B (zh) * 2017-12-29 2020-10-09 电信科学技术研究院 一种上行控制信息的传输方法及装置
CN109996337B (zh) * 2017-12-29 2021-06-29 大唐移动通信设备有限公司 一种上行控制信息的传输方法及装置
CN109995485B (zh) * 2017-12-29 2021-05-11 电信科学技术研究院 一种上行控制信息的传输方法及装置
CN109995484B (zh) * 2017-12-29 2021-01-22 电信科学技术研究院 一种数据传输、接收方法、终端及基站
CN110022190B (zh) * 2018-01-08 2021-03-05 电信科学技术研究院 一种上行控制信息的传输方法及装置
WO2019136706A1 (en) * 2018-01-12 2019-07-18 Zte Corporation Methods and systems for uplink control channel transmission
CN114340008A (zh) * 2019-01-11 2022-04-12 华为技术有限公司 上行控制信息复用的方法和装置

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011019795A1 (en) * 2009-08-13 2011-02-17 Interdigital Patent Holdings, Inc. Multiplexing uplink l1/l2 control and data
CN104429015A (zh) * 2012-08-03 2015-03-18 英特尔公司 信道状态信息和混合自动重复请求-确认信息的多路复用

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
NOKIA, NOKIA SHANGHAI BELL: "PUCCH Resource Allocation and PUCCH Transmit Diversity", 3GPP DRAFT; R1-1716146_PUCCH RESOURCE ALLOCATION AND PUCCH TRANSMIT DIVERSITY, 3RD GENERATION PARTNERSHIP PROJECT (3GPP), MOBILE COMPETENCE CENTRE ; 650, ROUTE DES LUCIOLES ; F-06921 SOPHIA-ANTIPOLIS CEDEX ; FRANCE, vol. RAN WG1, no. Nagoya, Japan; 20170918 - 20170921, 11 September 2017 (2017-09-11), Mobile Competence Centre ; 650, route des Lucioles ; F-06921 Sophia-Antipolis Cedex ; France, XP051329314 *

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