WO2022237298A1 - 信息传输方法、装置及存储介质 - Google Patents

信息传输方法、装置及存储介质 Download PDF

Info

Publication number
WO2022237298A1
WO2022237298A1 PCT/CN2022/080469 CN2022080469W WO2022237298A1 WO 2022237298 A1 WO2022237298 A1 WO 2022237298A1 CN 2022080469 W CN2022080469 W CN 2022080469W WO 2022237298 A1 WO2022237298 A1 WO 2022237298A1
Authority
WO
WIPO (PCT)
Prior art keywords
ack
harq
priority
target
low
Prior art date
Application number
PCT/CN2022/080469
Other languages
English (en)
French (fr)
Inventor
沈姝伶
高雪娟
司倩倩
Original Assignee
大唐移动通信设备有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 大唐移动通信设备有限公司 filed Critical 大唐移动通信设备有限公司
Publication of WO2022237298A1 publication Critical patent/WO2022237298A1/zh

Links

Images

Classifications

    • 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]
    • 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
    • H04L5/0055Physical resource allocation for ACK/NACK
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • H04L5/0096Indication of changes in allocation
    • H04L5/0098Signalling of the activation or deactivation of component carriers, subcarriers or frequency bands
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation

Definitions

  • the present disclosure relates to the field of communication technologies, and in particular, to an information transmission method, device and storage medium.
  • HARQ-ACK Hybrid Automatic Repeat reQuest-ACKnowledge
  • UCI uplink control information
  • the existing solution configures the spatial combination of HARQ-ACK for the terminal according to the uplink channel type.
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK use The same spatial combination configuration cannot guarantee the transmission performance of HARQ-ACK with different priorities on the premise of reducing the total number of bits of HARQ-ACK with different priorities.
  • Embodiments of the present disclosure provide an information transmission method, device, and storage medium to solve the problem in the prior art that the transmission performance of HARQ-ACK with different priorities cannot be guaranteed under the premise of reducing the total number of bits of HARQ-ACK with different priorities. technical problem.
  • an embodiment of the present disclosure provides an information transmission method, including:
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the All low-priority HARQ-ACKs are spatially combined to generate a HARQ-ACK codebook
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK, then do not perform spatial combination on the high-priority HARQ-ACK Combining, spatially combining the low-priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, the high-priority HARQ-ACK and the low-priority HARQ-ACK ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK Both perform spatial combination to generate a HARQ-ACK codebook
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, then do not perform spatial combination on the high-priority HARQ-ACK Space combining, performing space combining on the low priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the high-priority HARQ-ACK and The low-priority HARQ-ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel,
  • the low-priority HARQ-ACK performs spatial combination and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK , to generate a HARQ-ACK codebook;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • an embodiment of the present disclosure provides an information transmission method, which is characterized in that it includes:
  • the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK, send target information to the terminal; the target information is used to indicate whether the terminal separately Space combining of high-level HARQ-ACK and low-priority HARQ-ACK;
  • the HARQ-ACK codebook is generated by the terminal based on the target information
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the HARQ-ACK codebook is parsed in a manner that both the high-priority HARQ-ACK and the low-priority HARQ-ACK are spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK
  • the target information includes the first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined;
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner of spatially combining both the HARQ-ACK and the low-priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the HARQ-ACK codebook is parsed in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information, and the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or,
  • the second information instructs the terminal to perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, according to the high-priority HARQ-ACK and the
  • the HARQ-ACK codebook is parsed in a manner of spatially combining all the low-priority HARQ-ACKs.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the HARQ-ACK code is parsed in a manner of spatially combining the target priority HARQ-ACK Book;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK When independent coding is adopted, and the number of bits contained in the independently coded target priority HARQ-ACK codebook does not exceed the second threshold, the HARQ- ACK codebook;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • an embodiment of the present disclosure provides a terminal, including a memory, a transceiver, and a processor;
  • the memory is used to store computer programs; the transceiver is used to send and receive data under the control of the processor; the processor is used to read the computer programs in the memory and perform the following operations:
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the All low-priority HARQ-ACKs are spatially combined to generate a HARQ-ACK codebook
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK, then do not perform spatial combination on the high-priority HARQ-ACK Combining, spatially combining the low-priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, the high-priority HARQ-ACK and the low-priority HARQ-ACK ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK Both perform spatial combination to generate a HARQ-ACK codebook
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, then do not perform spatial combination on the high-priority HARQ-ACK Space combining, performing space combining on the low priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the high-priority HARQ-ACK and The low-priority HARQ-ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel,
  • the low-priority HARQ-ACK performs spatial combination and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK , to generate a HARQ-ACK codebook;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • an embodiment of the present disclosure provides a network side device, including a memory, a transceiver, and a processor;
  • the memory is used to store computer programs; the transceiver is used to send and receive data under the control of the processor; the processor is used to read the computer programs in the memory and perform the following operations:
  • the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK, send target information to the terminal; the target information is used to indicate whether the terminal separately Space combining of high-level HARQ-ACK and low-priority HARQ-ACK;
  • the HARQ-ACK codebook is generated by the terminal based on the target information
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the HARQ-ACK codebook is parsed in a manner that both the high-priority HARQ-ACK and the low-priority HARQ-ACK are spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK
  • the target information includes the first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined;
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner of spatially combining both the HARQ-ACK and the low-priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the HARQ-ACK codebook is parsed in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information, and the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or,
  • the second information instructs the terminal to perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, according to the high-priority HARQ-ACK and the
  • the HARQ-ACK codebook is parsed in a manner of spatially combining all the low-priority HARQ-ACKs.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the analyzing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the HARQ-ACK code is parsed in a manner of spatially combining the target priority HARQ-ACK Book;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK When independent coding is adopted, and the number of bits contained in the independently coded target priority HARQ-ACK codebook does not exceed the second threshold, the HARQ- ACK codebook;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • an information transmission device including:
  • the first receiving module is configured to receive the target information sent by the network side device when the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK;
  • a determining module configured to determine whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information.
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the All low-priority HARQ-ACKs are spatially combined to generate a HARQ-ACK codebook
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK, then do not perform spatial combination on the high-priority HARQ-ACK Combining, spatially combining the low-priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, the high-priority HARQ-ACK and the low-priority HARQ-ACK ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK Both perform spatial combination to generate a HARQ-ACK codebook
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it also includes:
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, then do not perform spatial combination on the high-priority HARQ-ACK Space combining, performing space combining on the low priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the high-priority HARQ-ACK and The low-priority HARQ-ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel,
  • the low-priority HARQ-ACK performs spatial combination and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK , to generate a HARQ-ACK codebook;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • an information transmission device including:
  • the sending module is configured to send target information to the terminal when the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK; the target information is used to indicate the terminal Whether to spatially combine high-priority HARQ-ACK and low-priority HARQ-ACK;
  • the second receiving module is configured to receive the HARQ-ACK codebook sent by the terminal on the target uplink channel; the HARQ-ACK codebook is generated by the terminal based on the target information;
  • a parsing module configured to parse the HARQ-ACK codebook based on the target information.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the HARQ-ACK codebook is parsed in a manner that both the high-priority HARQ-ACK and the low-priority HARQ-ACK are spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK
  • the target information includes the first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined;
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner of spatially combining both the HARQ-ACK and the low-priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the HARQ-ACK codebook is parsed in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information, and the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or,
  • the second information instructs the terminal to perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, according to the high-priority HARQ-ACK and the
  • the HARQ-ACK codebook is parsed in a manner of spatially combining all the low-priority HARQ-ACKs.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the HARQ-ACK code is parsed in a manner of spatially combining the target priority HARQ-ACK Book;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the analyzing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK When independent coding is adopted, and the number of bits contained in the independently coded target priority HARQ-ACK codebook does not exceed the second threshold, the HARQ- ACK codebook;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the embodiments of the present disclosure further provide a processor-readable storage medium, the processor-readable storage medium stores a computer program, and the computer program is used to enable the processor to execute the above-mentioned first aspect. Or the steps of the information transmission method described in the second aspect.
  • the information transmission method, device, and storage medium provided by the embodiments of the present disclosure, when HARQ-ACKs of different priorities are multiplexed and transmitted on the same uplink channel, independently configure whether to perform spatial combination of HARQ-ACKs of different priorities to ensure Under the premise of reducing the total number of bits of HARQ-ACK with different priorities, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • Fig. 1 is one of the schematic flow diagrams of the information transmission method provided by the embodiment of the present disclosure
  • Fig. 2 is a schematic diagram of multiplexing principles of non-combined HP HARQ-ACK and combined LP HARQ-ACK provided by an embodiment of the present disclosure
  • FIG. 3 is a schematic diagram of the combined HP HARQ-ACK and LP HARQ-ACK multiplexing principles provided by an embodiment of the present disclosure
  • Fig. 4 is a schematic diagram of multiplexing principles of non-combined HP HARQ-ACK and non-combined LP HARQ-ACK provided by an embodiment of the present disclosure
  • Fig. 5 is the second schematic flow diagram of the information transmission method provided by the embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • FIG. 7 is a schematic structural diagram of a network side device provided by an embodiment of the present disclosure.
  • Fig. 8 is one of the schematic structural diagrams of an information transmission device provided by an embodiment of the present disclosure.
  • FIG. 9 is a second structural schematic diagram of an information transmission device provided by an embodiment of the present disclosure.
  • the high-level signaling when the high-level signaling configures the UE to allow a Physical Downlink Shared Channel (PDSCH) reception to have up to two transport blocks (Transport block, TB), the high-level signaling can also configure the allowed space for the UE Combining (spatial bundling) parameters to instruct the UE to feed back only 1 bit (bit) HARQ-ACK for two TBs, thereby effectively reducing the number of HARQ-ACK feedback bits.
  • the parameter of whether to allow spatial bundling for HARQ-ACK is configured for an uplink channel, such as a physical uplink control channel (Physical Uplink Control Channel, PUCCH) or a physical uplink shared channel (Physical Uplink Shared Channel, PUSCH).
  • PUCCH Physical Uplink Control Channel
  • PUSCH Physical Uplink Shared Channel
  • UCI Uplink Control Information
  • HARQ-ACK will perform spatial bundling or will not perform spatial bundling.
  • HARQ-ACKs with different priorities have different requirements for reducing the number of bits and ensuring transmission performance.
  • the existing technology cannot reduce the performance impact caused by spatial bundling feedback on the premise of reducing the total number of bits of HARQ-ACKs with different priorities.
  • Hybrid Automatic Repeat reQuest-ACKnowledge is the feedback information of whether the PDSCH is correctly received by the UE to the base station.
  • the HARQ-ACK codebook is a HARQ-ACK feedback information sequence transmitted on a PUCCH or PUSCH.
  • NR supports HARQ-ACK spatial combination. Whether to use HARQ-ACK spatial combination on PUCCH and PUSCH is configured independently.
  • the high-level signaling configures a PDSCH for the UE to have up to two TBs
  • the high-level signaling does not configure the use of HARQ-ACK spatial combination
  • the UE feeds back 1bit HARQ-ACK for the two TBs; If the high-layer signaling configuration uses HARQ-ACK spatial combination, then use the "AND" operation to combine the HARQ-ACK bits of the two TBs and only feed back 1 bit HARQ-ACK.
  • HARQ-ACK is also divided into high-priority HARQ-ACK and low-priority HARQ-ACK, and the priority of HARQ-ACK is indicated by DCI for dynamically scheduling PDSCH or DCI for activating semi-static PDSCH.
  • DCI for dynamically scheduling PDSCH or DCI for activating semi-static PDSCH.
  • UCI includes HARQ-ACK, scheduling request (Scheduling Request, SR) and channel state information (Channel Situation Information, CSI), etc.
  • an uplink channel may simultaneously transmit high-priority HARQ-ACK and low-priority HARQ-ACK. If HARQ-ACK spatial combination is used in high-level signaling configuration, both high-priority HARQ-ACK and low-priority HARQ-ACK need to be spatially combined to compress feedback bits.
  • the UE is configured to combine HARQ-ACK slots according to the uplink channel type.
  • the high-priority HARQ-ACK and low-priority HARQ-ACK obey For the same spatial combining configuration, whether to perform spatial combining is determined according to the configuration of the uplink channel on the network side (both high-priority and low-priority HARQ-ACKs will perform spatial bundling or neither will perform spatial bundling), and there is no guarantee to reduce Under the premise of the total number of bits of HARQ-ACK with different priorities, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • an embodiment of the present disclosure proposes an information transmission method.
  • HARQ-ACKs of different priorities are multiplexed on the same uplink channel for transmission
  • HARQ-ACKs of different priorities can be independently configured whether to Spatial combination ensures that the transmission performance of HARQ-ACK with different priorities is satisfied under the premise of reducing the total number of bits of HARQ-ACK with different priorities.
  • FIG. 1 is one of the flow diagrams of the information transmission method provided by the embodiment of the present disclosure.
  • the embodiment of the application provides an information transmission method
  • the execution subject may be a terminal, such as a mobile phone.
  • the method includes:
  • Step 101 when the same target uplink channel multiplexes and transmits high-priority HARQ-ACK and low-priority HARQ-ACK, receive target information sent by the network side device.
  • the network side device first sends the target information to the terminal.
  • the terminal receives the target information sent by the network side device.
  • the target information may include different information according to different configuration methods.
  • the target information may include first information, where the first information is used to indicate whether to perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK respectively.
  • the target information may include second information, where the second information is used to indicate whether to perform spatial combination on the low-priority HARQ-ACK, and to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel.
  • the target information may include third information, where the third information is used to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel.
  • Step 102 Determine whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information.
  • the terminal after receiving the target information sent by the network side device, the terminal determines whether to perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information.
  • the target information includes first information. If the first information indicates that the terminal performs spatial combination on high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on low-priority HARQ-ACK, the terminal first performs high-priority HARQ-ACK Both ACK and low-priority HARQ-ACK are spatially combined to generate a HARQ-ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the target information includes second information. If the second information instructs the terminal to spatially combine low-priority HARQ-ACKs and instructs the terminal not to spatially combine HARQ-ACKs of the target uplink channel, the terminal first performs high-priority HARQ-ACK The HARQ-ACK does not perform spatial combination, and the low-priority HARQ-ACK is spatially combined to generate a HARQ-ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the target information includes the third information. If the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and that the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, the terminal first Determine whether the total number of bits included in the jointly coded HARQ-ACK codebook exceeds a first threshold, where the first threshold represents the bearing capacity of the target uplink channel at the target code rate.
  • the terminal does not perform spatial combination on high-priority HARQ-ACKs, but performs spatial combination on low-priority HARQ-ACKs to generate a HARQ-ACK codebook.
  • the HARQ-ACK codebook is sent on the target uplink channel.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the All low-priority HARQ-ACKs are spatially combined to generate a HARQ-ACK codebook
  • the target information includes first information, and the first information is used to indicate whether to perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK respectively.
  • the terminal first performs both high-priority HARQ-ACK and low-priority HARQ-ACK Perform spatial combination to generate a HARQ-ACK codebook. That is, when the first information indicates whether to perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK respectively, the terminal ignores the HARQ-ACK spatial combination configuration parameters for each uplink channel in the higher layer signaling. Moreover, when the high priority HARQ-ACKs are combined, it is necessary to ignore the configuration of whether to combine the low priority HARQ-ACKs, and ensure that the low priority obeys the high priority configuration and also perform the combination.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the first information to indicate whether the terminal performs spatial combination of high-priority HARQ-ACK and low-priority HARQ-ACK respectively, ensuring that the total number of bits of different priority HARQ-ACKs is reduced To meet the transmission performance of HARQ-ACK with different priorities.
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK, then do not perform spatial combination on the high-priority HARQ-ACK Combining, spatially combining the low-priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, the high-priority HARQ-ACK and the low-priority HARQ-ACK ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK Both perform spatial combination to generate a HARQ-ACK codebook
  • the target information includes first information, and the first information is used to indicate whether to perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK respectively.
  • the terminal ignores the HARQ-ACK spatial combination configuration parameter for each uplink channel in the high layer signaling. details as follows:
  • the terminal If the first information indicates that the terminal does not perform spatial combination on high-priority HARQ-ACK and instructs the terminal to perform spatial combination on low-priority HARQ-ACK, the terminal first does not perform spatial combination on high-priority HARQ-ACK, and performs spatial combination on low-priority HARQ-ACK.
  • the level HARQ-ACK is spatially combined to generate a HARQ-ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the terminal If the first information indicates that the terminal does not spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK, the terminal first does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, so that Generate a HARQ-ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the terminal If the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, the terminal first performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK to generate a HARQ - ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the first information to indicate whether the terminal performs spatial combination of high-priority HARQ-ACK and low-priority HARQ-ACK respectively, ensuring that the total number of bits of different priority HARQ-ACKs is reduced To meet the transmission performance of HARQ-ACK with different priorities.
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, then do not perform spatial combination on the high-priority HARQ-ACK Space combining, performing space combining on the low priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the target information includes second information
  • the second information is used to indicate whether to perform spatial combination on the low priority HARQ-ACK, and to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel . And it is determined whether to perform space combination with high priority according to the indication for the target uplink channel.
  • the terminal If the second information indicates that the terminal performs spatial combination on low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the terminal first does not perform spatial combination on high-priority HARQ-ACK, and performs spatial combination on low-priority HARQ-ACK.
  • the level HARQ-ACK is spatially combined to generate a HARQ-ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the second information to indicate whether the terminal performs spatial combination on low-priority HARQ-ACK, and whether to perform spatial combination on the HARQ-ACK of the target uplink channel, so as to ensure that HARQ-ACK with different priorities is reduced. Under the premise of the total number of ACK bits, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the high-priority HARQ-ACK and The low-priority HARQ-ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the target information includes second information
  • the second information is used to indicate whether to perform spatial combination on the low priority HARQ-ACK, and to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel . And it is determined whether to perform space combination with high priority according to the indication for the target uplink channel.
  • the terminal If the second information indicates that the terminal does not perform spatial combination on low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on HARQ-ACK of the target uplink channel, the terminal first performs high-priority HARQ-ACK and low-priority HARQ-ACK No spatial combination is performed to generate a HARQ-ACK codebook.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the second information to indicate whether the terminal performs spatial combination on low-priority HARQ-ACK, and whether to perform spatial combination on the HARQ-ACK of the target uplink channel, so as to ensure that HARQ-ACK with different priorities is reduced. Under the premise of the total number of ACK bits, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel,
  • the low-priority HARQ-ACK performs spatial combination and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK , to generate a HARQ-ACK codebook;
  • the target information includes second information
  • the second information is used to indicate whether to perform spatial combination on the low priority HARQ-ACK, and to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel . And it is determined whether to perform space combination with high priority according to the indication for the target uplink channel.
  • the terminal If the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK And instruct the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then the terminal first performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK to generate a HARQ-ACK codebook.
  • the terminal ignores the configuration parameters for the low-priority HARQ-ACK spatial combination in high-level signaling.
  • high priority HARQ-ACKs it is necessary to ignore the configuration of whether low priority HARQ-ACKs are combined, and ensure that the configuration of low priority obeys high priority and is also combined.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the second information to indicate whether the terminal performs spatial combination on low-priority HARQ-ACK, and whether to perform spatial combination on the HARQ-ACK of the target uplink channel, so as to ensure that HARQ-ACK with different priorities is reduced. Under the premise of the total number of ACK bits, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information, and the third information is used to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel.
  • the terminal first determines that the jointly coded HARQ-ACK codebook contains Whether the total number of bits exceeds the first threshold, and the first threshold represents the carrying capacity of the target uplink channel at the target code rate.
  • the terminal does not perform spatial combination on the high-priority HARQ-ACK, but performs spatial combination on the low-priority HARQ-ACK, so as to generate a HARQ-ACK codebook.
  • the HARQ-ACK codebook is sent on the target uplink channel.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the third information to indicate whether the terminal performs spatial combination of the HARQ-ACK of the target uplink channel, and combines the encoding methods of high-priority HARQ-ACK and low-priority HARQ-ACK to ensure that the Under the premise of the total number of bits of HARQ-ACK with different priorities, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information, and the third information is used to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel.
  • the terminal first determines that the jointly coded HARQ-ACK codebook contains Whether the total number of bits exceeds the first threshold, and the first threshold represents the carrying capacity of the target uplink channel at the target code rate.
  • the terminal does not perform spatial combination on high-priority HARQ-ACK, and does not perform spatial combination on low-priority HARQ-ACK, so as to generate a HARQ-ACK codebook.
  • the HARQ-ACK codebook is sent on the target uplink channel.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the third information to indicate whether the terminal performs spatial combination of the HARQ-ACK of the target uplink channel, and combines the encoding methods of high-priority HARQ-ACK and low-priority HARQ-ACK to ensure that the Under the premise of the total number of bits of HARQ-ACK with different priorities, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information, and the third information is used to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel.
  • the terminal first determines the independently coded target priority HARQ-ACK code Whether the number of bits contained in this document exceeds a second threshold, the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the terminal performs spatial combination on the target priority HARQ-ACK to generate a HARQ-ACK codebook.
  • the HARQ-ACK codebook is sent on the target uplink channel.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the third information to indicate whether the terminal performs spatial combination of the HARQ-ACK of the target uplink channel, and combines the encoding methods of high-priority HARQ-ACK and low-priority HARQ-ACK to ensure that the Under the premise of the total number of bits of HARQ-ACK with different priorities, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information, and the third information is used to indicate whether to perform spatial combination on the HARQ-ACK of the target uplink channel.
  • the terminal first determines the independently coded target priority HARQ-ACK code Whether the number of bits contained in this document exceeds a second threshold, the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the terminal does not perform spatial combination on the target priority HARQ-ACK to generate a HARQ-ACK codebook.
  • the HARQ-ACK codebook is sent on the target uplink channel.
  • the network side device receives the HARQ-ACK codebook sent by the terminal on the target uplink channel, and analyzes the HARQ-ACK codebook based on the target information.
  • the information transmission method provided by the embodiments of the present disclosure uses the third information to indicate whether the terminal performs spatial combination of the HARQ-ACK of the target uplink channel, and combines the encoding methods of high-priority HARQ-ACK and low-priority HARQ-ACK to ensure that the Under the premise of the total number of bits of HARQ-ACK with different priorities, the transmission performance of HARQ-ACK with different priorities is satisfied.
  • the new high-level signaling configures whether to perform spatial combination on high-priority HARQ-ACK and low-priority HARQ-ACK respectively.
  • high-level signaling does not configure spatial combination for high-priority HARQ-ACK, and configures spatial combination for low-priority HARQ-ACK.
  • the terminal needs to feed back HARQ-ACK to three PDSCHs in the current time slot slot n, among which the HARQ-ACK configured in the scheduling DCI corresponding to the PDSCH in slot n-3 and slot n-2 is a high priority Level, the HARQ-ACK configured in the scheduling DCI corresponding to the PDSCH in slot n-1 is low priority.
  • PDSCH #1 and PDSCH #2 correspond to 4-bit high-priority HARQ-ACKs.
  • Low-priority HARQ-ACKs need to be combined, and PDSCH#3 corresponds to 1-bit low-priority HARQ-ACK.
  • the HARQ-ACK with different priorities adopts a joint coding method, and similarly, an independent coding method can be used to generate two HARQ-ACK codebooks.
  • the uplink channel for transmitting the HARQ-ACK codebook in slot n may be PUCCH or PUSCH, which is not limited in this example.
  • the terminal ignores the parameter of whether to perform spatial combination according to channel configuration in the prior art.
  • HARQ-ACKs with different priorities generate a multiplexed HARQ-ACK codebook according to the spatial combination configuration. The process is similar to the above embodiment, and will not be described in detail.
  • the new high-level signaling configures whether to perform spatial combination on high-priority HARQ-ACK and low-priority HARQ-ACK respectively.
  • high-level signaling configures spatial combination for high-priority HARQ-ACK, and does not configure spatial combination for low-priority HARQ-ACK.
  • the HARQ-ACK configured in the scheduling DCI corresponding to the PDSCH in slot n-3 and slot n-2 has a high priority
  • the PDSCH in slot n-1 The HARQ-ACK configured in the corresponding scheduling DCI has a low priority.
  • PDSCH#1 and PDSCH#2 correspond to 2-bit high-priority HARQ-ACKs.
  • the low-priority HARQ-ACK is subject to the high-priority HARQ-ACK spatial combination configuration and combined, and PDSCH#3 corresponds to 1-bit low-priority HARQ-ACK.
  • the HARQ-ACK with different priorities adopts a joint coding method, and similarly, an independent coding method can be used to generate two HARQ-ACK codebooks.
  • the uplink channel for transmitting the HARQ-ACK codebook in slot n may be PUCCH or PUSCH, which is not limited in this example.
  • the terminal ignores the parameter of whether to perform spatial combination according to channel configuration in the prior art.
  • the high-layer signaling is different from the parameters configured for each uplink channel in the prior art, and can be used in combination with the parameters configured for each uplink channel. That is, the spatial combination parameter configured for each uplink channel is used to determine whether to perform spatial combination on the high-priority HARQ-ACK.
  • high-level signaling configures the PUCCH not to perform spatial combination based on the existing technology, and at this time, the high-priority HARQ-ACK does not perform spatial combination.
  • the low-priority HARQ-ACK determines whether to perform spatial combination based on newly added high-layer signaling.
  • the HARQ-ACK codebook is shown in FIG. 2 .
  • the new high-level signaling configures that low-priority HARQ-ACK does not perform spatial combination
  • the two priority HARQ-ACKs are multiplexed on the same uplink channel
  • the high-priority HARQ-ACK does not perform spatial combination
  • the low-priority HARQ -ACK does not perform spatial combination
  • the HARQ-ACK codebook is shown in Figure 4 .
  • the HARQ-ACK with different priorities adopts a joint coding method, and similarly, an independent coding method can be used to generate two HARQ-ACK codebooks.
  • configuring whether to perform spatial combination on the PUCCH based on the existing technology may be replaced with configuring whether to perform spatial combination on the PUSCH based on the existing technology.
  • the high-layer signaling is different from the parameters configured for each uplink channel in the prior art, and can be used in combination with the parameters configured for each uplink channel. That is, the spatial combination parameter configured for each uplink channel is used to determine whether to perform spatial combination on the high-priority HARQ-ACK.
  • high-level signaling configures the PUCCH for spatial combination based on the existing and technical configuration, and the high-priority HARQ-ACK performs spatial combination.
  • the low priority HARQ-ACK and high priority HARQ-ACK are multiplexed and transmitted on the same channel, the low priority HARQ-ACK will be combined according to the high priority HARQ-ACK spatial combination configuration, that is, the newly added
  • the high-level signaling configures the parameters of whether the low-priority HARQ-ACK performs spatial combination, and the HARQ-ACK codebook is shown in Figure 3 .
  • configuring whether to perform spatial combination on the PUCCH based on the existing technology may be replaced with configuring whether to perform spatial combination on the PUSCH based on the existing technology.
  • the terminal determines whether the HARQ-ACK needs to be spatially combined based on the parameters configured for each uplink channel based on high-level signaling. If spatial combination is required, According to the prior art, spatial combining is performed on the high-priority HARQ-ACK and the low-priority HARQ-ACK respectively.
  • high-level signaling configuration does not require spatial combining
  • high-priority HARQ-ACK does not need spatial combining
  • low-priority HARQ-ACK needs to further judge whether the total number of bits of HARQ-ACK exceeds the target code rate of the current uplink channel to determine whether space consolidation is required.
  • the low-priority HARQ-ACK does not need to be spatially combined; if Then the low-priority HARQ-ACK needs to be spatially combined.
  • O HP ACK is the number of bits of the high priority HARQ-ACK codebook
  • O LP ACK is the number of bits of the low priority HARQ-ACK codebook
  • O CRC is the number of CRC check bits
  • Q m is the modulation order
  • r is the target code rate for current channel transmission.
  • the terminal determines whether the HARQ-ACK needs to be spatially combined based on the parameters configured for each uplink channel based on high-level signaling. If spatial combination is required, According to the prior art, spatial combining is performed on the high-priority HARQ-ACK and the low-priority HARQ-ACK respectively.
  • both high-priority HARQ-ACK and low-priority HARQ-ACK need to further judge whether the corresponding HARQ-ACK bits exceed the current uplink channel allocation for this priority HARQ-ACK
  • the capacity of the resource under the target code rate is used to determine whether space consolidation is required.
  • low priority HARQ-ACK Taking low priority HARQ-ACK as an example, if Then the low-priority HARQ-ACK does not need to be spatially combined; if Then the low-priority HARQ-ACK needs to be spatially combined.
  • O LP ACK is the number of bits of the low priority HARQ-ACK codebook
  • O CRC is the number of CRC check bits
  • the number of frequency-domain RBs occupied by resources allocated for low-priority HARQ-ACK Configure the number of frequency-domain carriers corresponding to the next RB for the current PUCCH resource
  • the number of time-domain symbols occupied by resources allocated for low-priority HARQ-ACK Q m is the modulation order
  • r is the target code rate for low-priority HARQ-ACK transmission.
  • the premise of reducing the total number of bits of HARQ-ACKs of different priorities is ensured by independently configuring whether to perform spatial combination of HARQ-ACKs of different priorities To meet the transmission performance of HARQ-ACK with different priorities.
  • FIG. 5 is the second schematic flow diagram of the information transmission method provided by the embodiment of the present disclosure.
  • the embodiment of the present disclosure provides an information transmission method whose execution subject is a network-side device, such as a base station.
  • the method includes:
  • Step 501 When the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK, send target information to the terminal; the target information is used to indicate whether the terminal is separately The high priority HARQ-ACK and the low priority HARQ-ACK are spatially combined.
  • Step 502 Receive the HARQ-ACK codebook sent by the terminal on the target uplink channel; the HARQ-ACK codebook is generated by the terminal based on the target information.
  • Step 503 Analyze the HARQ-ACK codebook based on the target information.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the HARQ-ACK codebook is parsed in a manner that both the high-priority HARQ-ACK and the low-priority HARQ-ACK are spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK
  • the target information includes the first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined;
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner of spatially combining both the HARQ-ACK and the low-priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the HARQ-ACK codebook is parsed in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information, and the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or,
  • the second information instructs the terminal to perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, according to the high-priority HARQ-ACK and the
  • the HARQ-ACK codebook is parsed in a manner of spatially combining all the low-priority HARQ-ACKs.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the analyzing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the HARQ-ACK code is parsed in a manner of spatially combining the target priority HARQ-ACK Book;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK When independent coding is adopted, and the number of bits contained in the independently coded target priority HARQ-ACK codebook does not exceed the second threshold, the HARQ- ACK codebook;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the information transmission method provided by the embodiment of the present disclosure can refer to the above-mentioned embodiment of the information transmission method in which the execution subject is the terminal, and can achieve the same technical effect.
  • the same parts and beneficial effects are described in detail.
  • FIG. 6 is a schematic structural diagram of a terminal provided by an embodiment of the present disclosure. As shown in FIG. 6, the terminal includes a memory 620, a transceiver 600, and a processor 610:
  • the memory 620 is used to store computer programs; the transceiver 600 is used to send and receive data under the control of the processor 610; the processor 610 is used to read the computer programs in the memory 620 and perform the following operations:
  • the transceiver 600 is configured to receive and send data under the control of the processor 610 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 610 and various circuits of the memory represented by the memory 620 are linked together.
  • the bus architecture can also link together various other circuits such as peripherals, voltage regulators, and power management circuits, etc., which are well known in the art and therefore will not be further described herein.
  • the bus interface provides the interface.
  • Transceiver 600 may be a plurality of elements, including a transmitter and a receiver, providing means for communicating with various other devices over transmission media, including wireless channels, wired channels, fiber optic cables, etc. Transmission medium.
  • the user interface 630 may also be an interface capable of connecting externally and internally to required equipment, and the connected equipment includes but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the processor 610 is responsible for managing the bus architecture and general processing, and the memory 620 can store data used by the processor 610 when performing operations.
  • the processor 610 may be a CPU (Central Processing Unit), 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), and the processor can also adopt a multi-core architecture.
  • CPU Central Processing Unit
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array
  • Field Programmable Gate Array Field Programmable Gate Array
  • CPLD Complex Programmable Logic Device, complex programmable logic device
  • the processor is used to execute any one of the methods provided by the embodiments of the present disclosure according to the obtained executable instructions by calling the computer program stored in the memory.
  • the processor and memory may also be physically separated.
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the All low-priority HARQ-ACKs are spatially combined to generate a HARQ-ACK codebook
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK, then do not perform spatial combination on the high-priority HARQ-ACK Combining, spatially combining the low-priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, the high-priority HARQ-ACK and the low-priority HARQ-ACK ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK Both are spatially combined to generate a HARQ-ACK codebook
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, then do not perform spatial combination on the high-priority HARQ-ACK Space combining, performing space combining on the low priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the high-priority HARQ-ACK and The low-priority HARQ-ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel,
  • the low-priority HARQ-ACK performs spatial combination and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK , to generate a HARQ-ACK codebook;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • FIG. 7 is a schematic structural diagram of a network-side device provided by an embodiment of the present disclosure. As shown in FIG. 7 , the network-side device includes a memory 720, a transceiver 700, and a processor 710:
  • the memory 720 is used to store computer programs; the transceiver 700 is used to send and receive data under the control of the processor 710; the processor 710 is used to read the computer programs in the memory 720 and perform the following operations:
  • the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK, send target information to the terminal; the target information is used to indicate whether the terminal separately Space combining of high-level HARQ-ACK and low-priority HARQ-ACK;
  • the HARQ-ACK codebook is generated by the terminal based on the target information
  • the transceiver 700 is configured to receive and send data under the control of the processor 710 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 710 and various circuits of the memory represented by the memory 720 are linked together.
  • the bus architecture can also link together various other circuits such as peripherals, voltage regulators, and power management circuits, etc., which are well known in the art and therefore will not be further described herein.
  • the bus interface provides the interface.
  • Transceiver 700 may be a plurality of elements, including a transmitter and a receiver, providing a unit for communicating with various other devices over transmission media, including wireless channels, wired channels, optical cables, and other transmission media.
  • the processor 710 is responsible for managing the bus architecture and general processing, and the memory 720 may store data used by the processor 710 when performing operations.
  • the processor 710 can be a central processing unit (CPU), an application specific integrated circuit (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), the processor can also adopt a multi-core architecture.
  • CPU central processing unit
  • ASIC Application Specific Integrated Circuit
  • FPGA field programmable gate array
  • CPLD Complex Programmable Logic Device
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the HARQ-ACK codebook is parsed in a manner that both the high-priority HARQ-ACK and the low-priority HARQ-ACK are spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK
  • the target information includes the first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined;
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner of spatially combining both the HARQ-ACK and the low-priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the HARQ-ACK codebook is parsed in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information, and the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or,
  • the second information instructs the terminal to perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, according to the high-priority HARQ-ACK and the
  • the HARQ-ACK codebook is parsed in a manner of spatially combining all the low-priority HARQ-ACKs.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the HARQ-ACK code is parsed in a manner of spatially combining the target priority HARQ-ACK Book;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK When independent coding is adopted, and the number of bits contained in the independently coded target priority HARQ-ACK codebook does not exceed the second threshold, the HARQ- ACK codebook;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the above-mentioned network-side device provided by the embodiments of the present disclosure can implement all the method steps implemented by the above-mentioned method embodiment in which the execution subject is the network-side device, and can achieve the same technical effect, and no further description is given here in this embodiment.
  • the same parts and beneficial effects as those of the method embodiment will be described in detail.
  • Fig. 8 is one of the schematic structural diagrams of an information transmission device provided by an embodiment of the present disclosure. As shown in Fig. 8, an embodiment of the present disclosure provides an information transmission device, including a first receiving module 801 and a determining module 802, wherein:
  • the first receiving module 801 is configured to receive the target information sent by the network side device when the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK; the determination module 802 It is used to determine whether to perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information.
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the All low-priority HARQ-ACKs are spatially combined to generate a HARQ-ACK codebook
  • the target information includes first information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK, then do not perform spatial combination on the high-priority HARQ-ACK Combining, spatially combining the low-priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, the high-priority HARQ-ACK and the low-priority HARQ-ACK ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK
  • the high-priority HARQ-ACK and the low-priority HARQ-ACK Both perform spatial combination to generate a HARQ-ACK codebook
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, then do not perform spatial combination on the high-priority HARQ-ACK Space combining, performing space combining on the low priority HARQ-ACK to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel, the high-priority HARQ-ACK and The low-priority HARQ-ACKs are not spatially combined to generate a HARQ-ACK codebook;
  • the target information includes second information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or if the second information indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel,
  • the low-priority HARQ-ACK performs spatial combination and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, then performs spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK , to generate a HARQ-ACK codebook;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt joint coding, then determine the jointly coded HARQ -whether the total number of bits contained in the ACK codebook exceeds a first threshold; the first threshold represents the carrying capacity of the target uplink channel at a target code rate;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the target information includes third information; after determining whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK based on the target information, it further includes:
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high-priority HARQ-ACK and the low-priority HARQ-ACK adopt independent coding, determine the target of independent coding Whether the number of bits contained in the priority HARQ-ACK codebook exceeds a second threshold; the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK;
  • the above-mentioned information transmission device provided by the embodiments of the present disclosure can implement all the method steps implemented by the above-mentioned method embodiments in which the execution subject is the terminal, and can achieve the same technical effect, and no further description of the method and method in this embodiment will be made here. The same parts and beneficial effects of the embodiments are described in detail.
  • Fig. 9 is the second structural diagram of an information transmission device provided by an embodiment of the present disclosure. As shown in Fig. 9, an embodiment of the present disclosure provides an information transmission device, including a sending module 901, a second receiving module 902 and an analysis module 903, of which:
  • the sending module 901 is used to send target information to the terminal when the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK; the target information is used to indicate the terminal whether to spatially combine the high-priority HARQ-ACK and the low-priority HARQ-ACK; the second receiving module 902 is used to receive the HARQ-ACK codebook sent by the terminal on the target uplink channel; the HARQ- The ACK codebook is generated by the terminal based on the target information; the parsing module 903 is configured to parse the HARQ-ACK codebook based on the target information.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on the high-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK
  • the HARQ-ACK codebook is parsed in a manner that both the high-priority HARQ-ACK and the low-priority HARQ-ACK are spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and instructs the terminal to perform spatial combination on the low-priority HARQ-ACK
  • the target information includes the first information
  • the first information indicates that the terminal does not perform spatial combination on the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined;
  • the target information includes first information
  • the first information indicates that the terminal performs spatial combination on both the high-priority HARQ-ACK and the low-priority HARQ-ACK, according to the high-priority Parsing the HARQ-ACK codebook in a manner of spatially combining both the HARQ-ACK and the low-priority HARQ-ACK.
  • the analyzing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal performs spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information
  • the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and indicates that the terminal does not perform spatial combination on the HARQ-ACK of the target uplink channel
  • the HARQ-ACK codebook is parsed in a manner that neither the high-priority HARQ-ACK nor the low-priority HARQ-ACK is spatially combined.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes second information, and the second information indicates that the terminal does not perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, or,
  • the second information instructs the terminal to perform spatial combination on the low-priority HARQ-ACK and instructs the terminal to perform spatial combination on the HARQ-ACK of the target uplink channel, according to the high-priority HARQ-ACK and the
  • the HARQ-ACK codebook is parsed in a manner of spatially combining all the low-priority HARQ-ACKs.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the first threshold represents the carrying capacity of the target uplink channel at a target code rate.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK
  • the HARQ-ACK code is parsed in a manner of spatially combining the target priority HARQ-ACK Book;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the parsing the HARQ-ACK codebook based on the target information includes:
  • the target information includes third information, and the third information indicates that the terminal does not spatially combine the HARQ-ACK of the target uplink channel and the high priority HARQ-ACK and the low priority HARQ-ACK When independent coding is adopted, and the number of bits contained in the independently coded target priority HARQ-ACK codebook does not exceed the second threshold, the HARQ- ACK codebook;
  • the second threshold represents the bearing capacity of the target uplink channel at the target code rate on resources allocated for the target priority HARQ-ACK.
  • the above-mentioned information transmission device provided by the embodiments of the present disclosure can implement all the method steps implemented by the above-mentioned method embodiments in which the execution subject is the network-side device, and can achieve the same technical effect.
  • the same parts and beneficial effects as those of the method embodiment will be described in detail.
  • each functional unit in each embodiment of the present disclosure may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units.
  • the integrated unit is implemented in the form of a software function unit and sold or used as an independent product, it can be stored in a processor-readable storage medium.
  • the technical solution of the present disclosure is essentially or part of the contribution to the prior art, 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 several 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 methods described in various embodiments of the present disclosure.
  • the aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disc and other media that can store program codes. .
  • an embodiment of the present disclosure further provides a processor-readable storage medium, where the processor-readable storage medium stores a computer program, and the computer program is used to enable the processor to execute the information provided in the foregoing embodiments.
  • methods including:
  • the same target uplink channel multiplexes and transmits high-priority hybrid automatic repeat request confirmation HARQ-ACK and low-priority HARQ-ACK, send target information to the terminal; the target information is used to indicate whether the terminal separately
  • the high-level HARQ-ACK and the low-priority HARQ-ACK are spatially combined; the HARQ-ACK codebook sent by the terminal is received on the target uplink channel; the HARQ-ACK codebook is the terminal based on the target information generated; parsing the HARQ-ACK codebook based on the target information.
  • the processor-readable storage medium may be any available medium or data storage device that the processor can access, including but not limited to magnetic storage (such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.) , optical memory (such as CD, DVD, BD, HVD, etc.), and semiconductor memory (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state hard drive (SSD)), etc.
  • magnetic storage such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.
  • optical memory such as CD, DVD, BD, HVD, etc.
  • semiconductor memory such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state hard drive (SSD)
  • the applicable system may be a global system of mobile communication (GSM) system, a code division multiple access (CDMA) system, a wideband code division multiple access (WCDMA) general packet Wireless business (general packet radio service, GPRS) system, long term evolution (long term evolution, LTE) system, LTE frequency division duplex (frequency division duplex, FDD) system, LTE time division duplex (time division duplex, TDD) system, Long term evolution advanced (LTE-A) system, universal mobile telecommunications system (UMTS), worldwide interoperability for microwave access (WiMAX) system, 5G new air interface (New Radio, NR) system, etc.
  • GSM global system of mobile communication
  • CDMA code division multiple access
  • WCDMA wideband code division multiple access
  • GPRS general packet Wireless business
  • long term evolution long term evolution
  • LTE long term evolution
  • LTE frequency division duplex frequency division duplex
  • FDD frequency division duplex
  • TDD time division duplex
  • LTE-A Long term evolution advanced
  • the terminal device involved in the embodiments of the present disclosure may be a device that provides voice and/or data connectivity to users, 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 (User Equipment, UE).
  • the wireless terminal equipment can communicate with one or more core networks (Core Network, CN) via the radio access network (Radio Access Network, RAN), and the wireless terminal equipment can be a mobile terminal equipment, such as a mobile phone (or called a "cellular "telephones) and computers with mobile terminal equipment, such as portable, pocket, hand-held, computer built-in or vehicle-mounted mobile devices, which exchange language and/or data with the radio access network.
  • a mobile terminal equipment such as a mobile phone (or called a "cellular "telephones) and computers with mobile terminal equipment, such as portable, pocket, hand-held, computer built-in or vehicle-mounted mobile devices, which exchange language and/or data with the radio access network.
  • PCS Personal Communication Service
  • SIP Session Initiated Protocol
  • WLL Wireless Local Loop
  • PDA Personal Digital Assistant
  • Wireless terminal equipment can also be called system, subscriber unit, subscriber station, mobile station, mobile station, remote station, access point , remote terminal (remote terminal), access terminal (access terminal), user terminal (user terminal), user agent (user agent), and user device (user device), which are not limited in the embodiments of the present disclosure.
  • the network device involved in the embodiments of the present disclosure may be a base station, and the base station may include multiple cells that provide services for terminals.
  • the base station can also be called an access point, or it can be a device in the access network that communicates with the wireless terminal device through one or more sectors on the air interface, or other names.
  • the network device can be used to interchange received over-the-air frames with Internet Protocol (IP) packets and act as a router between the wireless terminal device and the rest of the access network, which can include the Internet Protocol (IP) communication network.
  • IP Internet Protocol
  • Network devices may also coordinate attribute management for the air interface.
  • the network equipment involved in the embodiments of the present disclosure may be a network equipment (Base Transceiver Station, BTS) in Global System for Mobile communications (GSM) or Code Division Multiple Access (Code Division Multiple Access, CDMA) ), it can also be a network device (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or it can be an evolved network device in a long-term evolution (long term evolution, LTE) system (evolutional Node B, eNB or e-NodeB), 5G base station (gNB) in the 5G network architecture (next generation system), can also be a home evolved base station (Home evolved Node B, HeNB), relay node (relay node) , a home base station (femto), a pico base station (pico), etc., are not limited in this embodiment of the present disclosure.
  • a network device may include a centralized unit (centralized unit, CU) node and a distributed unit (distributed unit, DU) node
  • MIMO transmission can be Single User MIMO (Single User MIMO, SU-MIMO) or Multi-User MIMO (Multiple User MIMO, MU-MIMO).
  • MIMO transmission can be 2D-MIMO, 3D-MIMO, FD-MIMO, or massive-MIMO, or diversity transmission, precoding transmission, or beamforming transmission, etc.
  • the embodiments of the present disclosure may be provided as methods, systems, or computer program products. Accordingly, the present disclosure can take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present disclosure may take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, optical storage, etc.) having computer-usable program code embodied therein.
  • processor-executable instructions may also be stored in a processor-readable memory capable of directing a computer or other programmable data processing device to operate in a specific manner, such that the instructions stored in the processor-readable memory produce a manufacturing product, the instruction device realizes the functions specified in one or more procedures of the flow chart and/or one or more blocks of the block diagram.
  • processor-executable instructions can also be loaded onto a computer or other programmable data processing device, causing a series of operational steps to be performed on the computer or other programmable device to produce a computer-implemented
  • the executed instructions provide steps for implementing the functions specified in the procedure or procedures of the flowchart and/or the block or blocks of the block diagrams.

Abstract

本公开实施例提供一种信息传输方法、装置及存储介质,所述方法包括:在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。本公开实施例提供的信息传输方法、装置及存储介质,在不同优先级的HARQ-ACK复用在同一上行信道传输时,通过分别对不同优先级的HARQ-ACK独立配置是否进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。

Description

信息传输方法、装置及存储介质
相关申请的交叉引用
本申请要求于2021年05月11日提交的申请号为202110513513.2,发明名称为“信息传输方法、装置及存储介质”的中国专利申请的优先权,其通过引用方式全部并入本文。
技术领域
本公开涉及通信技术领域,尤其涉及一种信息传输方法、装置及存储介质。
背景技术
针对高可靠低时延通信(Ultra-Reliable Low Latency Communication,URLLC),考虑到不同类型业务的传输优先级不同,定义了两级优先级,即高优先级(High Priority,HP)和低优先级(Low Priority,LP)。由此混合自动重传请求确认(Hybrid Automatic Repeat reQuest–ACKnowledge,HARQ-ACK)也分为高优先级HARQ-ACK和低优先级HARQ-ACK两种。
现有方案支持不同优先级的上行控制信息(Uplink Control Information,UCI)复用在同一个上行信道传输,一个上行信道可能同时传输高优先级的HARQ-ACK和低优先级HARQ-ACK。
现有方案对终端按照上行信道类型配置HARQ-ACK的空间合并,当不同优先级的HARQ-ACK复用在同一上行信道传输时,高优先级的HARQ-ACK和低优先级的HARQ-ACK采用相同的空间合并配置,无法保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
发明内容
本公开实施例提供一种信息传输方法、装置及存储介质,用以解决现有技术中无法保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能的技术问题。
第一方面,本公开实施例提供一种信息传输方法,包括:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不 进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级 HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
第二方面,本公开实施例提供一种信息传输方法,其特征在于,包括:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
基于所述目标信息解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级 HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
第三方面,本公开实施例提供一种终端,包括存储器,收发机,处理器;
存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并, 或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行 空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
第四方面,本公开实施例提供一种网络侧设备,包括存储器,收发机,处理器;
存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
基于所述目标信息解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述 低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包 括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
第五方面,本公开实施例提供一种信息传输装置,包括:
第一接收模块,用于在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
确定模块,用于基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空 间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确 定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空 间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级 HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
第六方面,本公开实施例提供一种信息传输装置,包括:
发送模块,用于在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
第二接收模块,用于在所述目标上行信道上接收所述终端发送的 HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
解析模块,用于基于所述目标信息解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级 HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包 括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
第七方面,本公开实施例还提供一种处理器可读存储介质,所述处理器可读存储介质存储有计算机程序,所述计算机程序用于使所述处理器执行如上所述第一方面或第二方面所述的信息传输方法的步骤。
本公开实施例提供的信息传输方法、装置及存储介质,在不同优先级的HARQ-ACK复用在同一上行信道传输时,通过分别对不同优先级的HARQ-ACK独立配置是否进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
附图说明
为了更清楚地说明本公开实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本公开的一些实施例,对于本领域普通技术人员来讲,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是本公开实施例提供的信息传输方法的流程示意图之一;
图2是本公开实施例提供的不合并的HP HARQ-ACK和合并的 LP HARQ-ACK复用原理示意图;
图3是本公开实施例提供的合并的HP HARQ-ACK和LP HARQ-ACK复用原理示意图;
图4是本公开实施例提供的不合并的HP HARQ-ACK和不合并的LP HARQ-ACK复用原理示意图;
图5是本公开实施例提供的信息传输方法的流程示意图之二;
图6是本公开实施例提供的一种终端的结构示意图;
图7是本公开实施例提供的一种网络侧设备的结构示意图;
图8是本公开实施例提供的一种信息传输装置的结构示意图之一;
图9是本公开实施例提供的一种信息传输装置的结构示意图之二。
具体实施方式
NR系统中,当高层信令为UE配置允许一个物理下行共享信道(Physical Downlink Shared Channel,PDSCH)reception最多有两个传输块(Transport block,TB)时,高层信令还可以该UE配置允许空间合并(spatial bundling)的参数以指示UE对两个TB反馈只1比特(bit)HARQ-ACK,从而有效降低HARQ-ACK反馈比特数。然而,目前是否允许对HARQ-ACK进行spatial bundling的参数是针对一种上行信道配置的,比如物理上行控制信道(Physical Uplink Control Channel,PUCCH)或者物理上行共享信道(Physical Uplink Shared Channel,PUSCH)。在Rel-17高可靠低时延通信(Ultra-Reliable Low Latency Communication,URLLC)研究过程中,会议结论允许多种不同优先级的上行控制信息(Uplink Control Information,UCI)复用在同一个上行信道进行传输。此时高优先级和低优先级的HARQ-ACK都会进行spatial bundling或者都不会进行spatial bundling。然而,不同优先 级的HARQ-ACK对降低比特数和保证传输性能的需求不同,现有技术无法实现在降低不同优先级HARQ-ACK总比特数的前提下减小spatial bundling反馈造成的性能影响。
混合自动重传请求确认(Hybrid Automatic Repeat reQuest–ACKnowledge,HARQ-ACK)是UE向基站传输的是否正确接收PDSCH的反馈信息。HARQ-ACK码本是在一个PUCCH或者PUSCH上传输的HARQ-ACK反馈信息序列。为了减小HARQ-ACK码本大小,NR支持HARQ-ACK空间合并。PUCCH和PUSCH上是否使用HARQ-ACK空间合并是独立配置的。对一个上行传输信道而言,当高层信令为UE配置一个PDSCH最多有两个TB时,如果高层信令没有配置使用HARQ-ACK空间合并,则UE对于两个TB分别反馈1bit HARQ-ACK;如果高层信令配置使用HARQ-ACK空间合并,则通过使用“与”操作将两个TB的HARQ-ACK比特合并只反馈1bit HARQ-ACK。
在Rel-16URLLC的研究过程中,考虑到不同类型业务的传输优先级不同,定义了两级优先级,即高优先级(High Priority,HP)和低优先级(Low Priority,LP)。由此HARQ-ACK也分为高优先级HARQ-ACK和低优先级HARQ-ACK两种,HARQ-ACK的优先级由动态调度PDSCH的DCI指示或者激活半静态PDSCH的DCI指示。Rel-16中仅支持相同优先级的多种UCI在同一个上行信道进行传输。UCI包括HARQ-ACK、调度请求(Scheduling Request,SR)和信道状态信息(Channel Situation Information,CSI)等。目前,Rel-17已经允许不同优先级的UCI复用在同一个上行信道传输时。因此,一个上行信道可能同时传输高优先级的HARQ-ACK和低优先级HARQ-ACK。如果高层信令配置采用HARQ-ACK空间合并,高优先级的HARQ-ACK和低优先级的HARQ-ACK都需要进行空间合并压缩反馈比特。
现有技术对UE按照上行信道类型配HARQ-ACK空置间合并,当不同优先级的HARQ-ACK复用在同一上行信道传输时,高优先级的HARQ-ACK和低优先级的HARQ-ACK服从相同的空间合并配置,都按照网络侧对该上行信道的配置确定是否进行空间合并(高优先级和低优先级的HARQ-ACK都会进行spatial bundling或者都不会进行spatial bundling),无法保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
基于上述技术问题,本公开实施例提出一种信息传输方法,该方法可以在不同优先级的HARQ-ACK复用在同一上行信道传输时,通过分别对不同优先级的HARQ-ACK独立配置是否进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
为使本公开实施例的目的、技术方案和优点更加清楚,下面将结合本公开实施例中的附图,对本公开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公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
图1是本公开实施例提供的信息传输方法的流程示意图之一,如图1所示,申请实施例提供一种信息传输方法,其执行主体可以为终端,例如,手机等。该方法包括:
步骤101、在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息。
具体地,在本公开实施例中,针对同一目标上行信道复用传输高优先级HARQ-ACK和低优先级HARQ-ACK的情况,网络侧设备首先向终端发送目标信息。
终端接收网络侧设备发送的目标信息。
该目标信息可以根据不同的配置方法包括不同的信息。
例如,该目标信息可以包括第一信息,该第一信息用于指示是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合。
再例如,该目标信息可以包括第二信息,该第二信息用于指示是否对低优先级HARQ-ACK进行空间合,以及指示是否对目标上行信道的HARQ-ACK进行空间合并。
再例如,该目标信息可以包括第三信息,该第三信息用于指示是否对目标上行信道的HARQ-ACK进行空间合并。
步骤102、基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
具体地,在本公开实施例中,终端接收到网络侧设备发送的目标信息之后,基于该目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
例如,目标信息包括第一信息,若该第一信息指示终端对高优先级HARQ-ACK进行空间合并且指示终端对低优先级HARQ-ACK不进行空间合并,则终端首先对高优先级HARQ-ACK和低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
再例如,目标信息包括第二信息,若该第二信息指示终端对低优先级HARQ-ACK进行空间合并且指示终端对目标上行信道的HARQ-ACK不进行空间合并,则终端首先对高优先级HARQ-ACK不进行空间合并,对低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
再例如,目标信息包括第三信息,若该第三信息指示终端对目标上行信道的HARQ-ACK不进行空间合并且高优先级HARQ-ACK和低优先级HARQ-ACK采用联合编码,则终端首先确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值,该第一阈值表征目标上行信道在目标码率下的承载容量。
若总比特数超过该第一阈值,则终端对高优先级HARQ-ACK不进行空间合并,对低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本。
最后,在目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,在不同优先级的HARQ-ACK复用在同一上行信道传输时,通过分别对不同优先级的HARQ-ACK独立配置是否进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第一信息,该第一信 息用于指示是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合。
若该第一信息指示终端对高优先级HARQ-ACK进行空间合并且指示终端对低优先级HARQ-ACK不进行空间合并,则终端首先对高优先级HARQ-ACK和低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本。即,当第一信息指示是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并时,终端忽略高层信令中针对每一上行信道的HARQ-ACK空间合并配置参数。并且,当高优先级HARQ-ACK进行合并的时候,需要忽略对低优先级是否进行合并的配置,保证低优先级服从高优先级的配置也进行合并。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第一信息指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低 优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第一信息,该第一信息用于指示是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合。
当第一信息指示是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并时,终端忽略高层信令中针对每一上行信道的HARQ-ACK空间合并配置参数。具体如下:
若该第一信息指示终端对高优先级HARQ-ACK不进行空间合并且指示终端对低优先级HARQ-ACK进行空间合并,则终端首先对高优先级HARQ-ACK不进行空间合并,对低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
若第一信息指示终端对高优先级HARQ-ACK和低优先级HARQ-ACK均不进行空间合并,则终端首先对高优先级HARQ-ACK和低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
若第一信息指示终端对高优先级HARQ-ACK和低优先级HARQ-ACK均进行空间合并,则终端首先对高优先级HARQ-ACK和低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第一信息指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第二信息,该第二信息用于指示是否对低优先级HARQ-ACK进行空间合并,以及指示是否对目标上行信道的HARQ-ACK进行空间合并。并根据针对目标上行信道的指示确定高优先级是否进行空间合并。
若第二信息指示终端对低优先级HARQ-ACK进行空间合并且指示终端对目标上行信道的HARQ-ACK不进行空间合并,则终端首先 对高优先级HARQ-ACK不进行空间合并,对低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第二信息指示终端是否对低优先级HARQ-ACK进行空间合,以及是否对目标上行信道的HARQ-ACK进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第二信息,该第二信息用于指示是否对低优先级HARQ-ACK进行空间合,以及指示是否对目标上行信道的HARQ-ACK进行空间合并。并根据针对目标上行信道的指示确定高优先级是否进行空间合并。
若第二信息指示终端对低优先级HARQ-ACK不进行空间合并且指示终端对目标上行信道的HARQ-ACK不进行空间合并,则终端首先对高优先级HARQ-ACK和低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码 本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第二信息指示终端是否对低优先级HARQ-ACK进行空间合,以及是否对目标上行信道的HARQ-ACK进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第二信息,该第二信息用于指示是否对低优先级HARQ-ACK进行空间合,以及指示是否对目标上行信道的HARQ-ACK进行空间合并。并根据针对目标上行信道的指示确定高优先级是否进行空间合并。
若第二信息指示终端对低优先级HARQ-ACK不进行空间合并且指示终端对目标上行信道的HARQ-ACK进行空间合并,或者,若第二信息指示终端对低优先级HARQ-ACK进行空间合并且指示终端对目标上行信道的HARQ-ACK进行空间合并,则终端首先对高优先级HARQ-ACK和低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本。即当第二信息指示终端对目标上行信道的HARQ-ACK进行空间合并时,终端忽略高层信令中针对低优先级HARQ-ACK空间合并配置参数。并且,当高优先级HARQ-ACK进 行合并的时候,需要忽略对低优先级是否进行合并的配置,保证低优先级服从高优先级的配置也进行合并。
然后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第二信息指示终端是否对低优先级HARQ-ACK进行空间合,以及是否对目标上行信道的HARQ-ACK进行空间合并,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第三信息,该第三信息用于指示是否对目标上行信道的HARQ-ACK进行空间合并。
若第三信息指示终端对目标上行信道的HARQ-ACK不进行空间合并且高优先级HARQ-ACK和低优先级HARQ-ACK采用联合编码,则终端首先确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值,第一阈值表征目标上行信道在目标码率下的承载容量。
若总比特数超过第一阈值,则终端对高优先级HARQ-ACK不进行空间合并,对低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本。
最后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第三信息指示终端是否对目标上行信道的HARQ-ACK进行空间合并,结合高优先级HARQ-ACK和低优先级HARQ-ACK的编码方式,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第三信息,该第三信息用于指示是否对目标上行信道的HARQ-ACK进行空间合并。
若第三信息指示终端对目标上行信道的HARQ-ACK不进行空间合并且高优先级HARQ-ACK和低优先级HARQ-ACK采用联合编码, 则终端首先确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值,第一阈值表征目标上行信道在目标码率下的承载容量。
若总比特数未超过第一阈值,则终端对高优先级HARQ-ACK不进行空间合并,对低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本。
最后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第三信息指示终端是否对目标上行信道的HARQ-ACK进行空间合并,结合高优先级HARQ-ACK和低优先级HARQ-ACK的编码方式,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第三信息,该第三信 息用于指示是否对目标上行信道的HARQ-ACK进行空间合并。
若第三信息指示终端对目标上行信道的HARQ-ACK不进行空间合并且高优先级HARQ-ACK和低优先级HARQ-ACK采用独立编码,则终端首先确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值,第二阈值表征目标上行信道为目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
若目标优先级HARQ-ACK的比特数超过第二阈值,则终端对目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本。
最后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第三信息指示终端是否对目标上行信道的HARQ-ACK进行空间合并,结合高优先级HARQ-ACK和低优先级HARQ-ACK的编码方式,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成 HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,在本公开实施例中,目标信息包括第三信息,该第三信息用于指示是否对目标上行信道的HARQ-ACK进行空间合并。
若第三信息指示终端对目标上行信道的HARQ-ACK不进行空间合并且高优先级HARQ-ACK和低优先级HARQ-ACK采用独立编码,则终端首先确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值,第二阈值表征目标上行信道为目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
若目标优先级HARQ-ACK的比特数未超过第二阈值,则终端对目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本。
最后在该目标上行信道上发送HARQ-ACK码本。
网络侧设备接收终端在该目标上行信道上发送的HARQ-ACK码本,并基于该目标信息解析HARQ-ACK码本。
本公开实施例提供的信息传输方法,通过第三信息指示终端是否对目标上行信道的HARQ-ACK进行空间合并,结合高优先级HARQ-ACK和低优先级HARQ-ACK的编码方式,保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
下面以几个具体的例子对上述各实施例中的信息传输方法进一步说明:
例1:
新增高层信令分别配置高优先级的HARQ-ACK和低优先级的HARQ-ACK是否进行空间合并。本例中,高层信令为高优先级HARQ-ACK没有配置空间合并,为低优先级HARQ-ACK配置空间合并。如图2所示,假设终端在当前时隙slot n内需要对三个PDSCH反馈HARQ-ACK,其中slot n-3和slot n-2内PDSCH对应的调度DCI 中配置的HARQ-ACK为高优先级,slot n-1内PDSCH对应的调度DCI中配置的HARQ-ACK为低优先级。
此时,当不同优先级的HARQ-ACK复用传输时,高优先级的HARQ-ACK不用合并,PDSCH#1和PDSCH#2对应4bit高优先级HARQ-ACK。低优先级的HARQ-ACK需要合并,PDSCH#3对应1bit低优先级HARQ-ACK。
本例中不同优先级的HARQ-ACK采用联合编码方式,同理可采用独立编码方式生成两个HARQ-ACK码本。
其中,slot n内传输HARQ-ACK码本的上行信道可以是PUCCH或者PUSCH,本例不做限制。当高层信令为终端按照不同优先级的HARQ-ACK配置是否进行空间合并时,终端忽略现有技术中按照信道配置是否进行空间合并的参数。
如果高层信令为高优先级HARQ-ACK和低优先级的HARQ-ACK同时配置或者不配置空间合并,不同优先级的HARQ-ACK根据空间合并配置生成复用后的HARQ-ACK码本,具体流程和上述实施例类似,不再详细说明。
例2:
新增高层信令分别配置高优先级的HARQ-ACK和低优先级的HARQ-ACK是否进行空间合并。本例中,高层信令为高优先级HARQ-ACK配置空间合并,为低优先级HARQ-ACK没有配置空间合并。假设终端在当前时隙内需要对三个PDSCH反馈HARQ-ACK,其中slot n-3和slot n-2内PDSCH对应的调度DCI中配置的HARQ-ACK为高优先级,slot n-1内PDSCH对应的调度DCI中配置的HARQ-ACK为低优先级。
此时,当不同优先级的HARQ-ACK复用传输时,高优先级的HARQ-ACK需要合并,PDSCH#1和PDSCH#2对应2bit高优先级HARQ-ACK。低优先级的HARQ-ACK服从高优先级HARQ-ACK空 间合并配置也进行合并,PDSCH#3对应1bit低优先级HARQ-ACK。
本例中不同优先级的HARQ-ACK采用联合编码方式,同理可采用独立编码方式生成两个HARQ-ACK码本。
其中,slot n内传输HARQ-ACK码本的上行信道可以是PUCCH或者PUSCH,本例不做限制。当高层信令为终端按照不同优先级的HARQ-ACK配置是否进行空间合并时,终端忽略现有技术中按照信道配置是否进行空间合并的参数。
例3:
新增高层信令配置低优先级的HARQ-ACK是否进行空间合并。该高层信令不同于现有技术中针对每种上行信道配置的参数,且可以和针对每种上行信道配置的参数组合使用。即,针对每种上行信道配置的空间合并参数用于确定高优先级HARQ-ACK是否进行空间合并。
本例中,高层信令基于现有及技术配置PUCCH不进行空间合并,此时高优先级的HARQ-ACK不进行空间合并。低优先级的HARQ-ACK基于新增高层信令确定是否进行空间合并。
如果新增高层信令配置低优先级HARQ-ACK进行空间合并,则两种优先级HARQ-ACK复用在同一上行信道传输时,高优先级HARQ-ACK不进行空间合并,低优先级HARQ-ACK进行空间合并。HARQ-ACK码本如图2所示。
如果新增高层信令配置低优先级HARQ-ACK不进行空间合并,则两种优先级HARQ-ACK复用在同一上行信道传输时,高优先级HARQ-ACK不进行空间合并,低优先级HARQ-ACK也不进行空间合并,HARQ-ACK码本如图4所示。
本例中不同优先级的HARQ-ACK采用联合编码方式,同理可采用独立编码方式生成两个HARQ-ACK码本。
同理本例中基于现有及技术配置PUCCH是否进行空间合并可替换为基于现有技术配置PUSCH是否进行空间合并。
例4:
新增高层信令配置低优先级的HARQ-ACK是否进行空间合并。该高层信令不同于现有技术中针对每种上行信道配置的参数,且可以和针对每种上行信道配置的参数组合使用。即,针对每种上行信道配置的空间合并参数用于确定高优先级HARQ-ACK是否进行空间合并。
本例中,高层信令基于现有及技术配置PUCCH进行空间合并,则高优先级的HARQ-ACK进行空间合并。
此时,如果低优先级的HARQ-ACK和高优先级的HARQ-ACK复用在同一信道传输,低优先级HARQ-ACK服从高优先级HARQ-ACK空间合并配置也进行合并,即忽略新增高层信令配置低优先级HARQ-ACK是否进行空间合并的参数,HARQ-ACK码本如图3所示。
同理本例中基于现有及技术配置PUCCH是否进行空间合并可替换为基于现有技术配置PUSCH是否进行空间合并。
例5:
当不同优先级的HARQ-ACK在同一个上行信道上采用联合编码方式传输时,终端基于高层信令基于针对每种上行信道配置的参数确定HARQ-ACK是否需要进行空间合并,如果需要空间合并,则按照现有技术对高优先级HARQ-ACK和低优先级HARQ-ACK分别进行空间合并。
如果高层信令配置不需要空间合并,则高优先级HARQ-ACK不需要进行空间合并,而低优先级的HARQ-ACK需要进一步通过判断HARQ-ACK总比特数是否超过当前上行信道在目标码率下的承载容量来确定是否需要进行空间合并。
例如,如果
Figure PCTCN2022080469-appb-000001
Figure PCTCN2022080469-appb-000002
则低优先级HARQ-ACK不需要进行空间合并;如果
Figure PCTCN2022080469-appb-000003
则低优先级HARQ-ACK需要进行空间合并。
其中,O HP ACK为高优先级HARQ-ACK码本的比特数,O LP ACK为低优先级HARQ-ACK码本的比特数,O CRC为CRC校验比特数,
Figure PCTCN2022080469-appb-000004
为PUCCH资源占用的频域RB数,
Figure PCTCN2022080469-appb-000005
为当前PUCCH资源配置下一个RB对应的频域载波数,
Figure PCTCN2022080469-appb-000006
为PUCCH资源占用的时域符号数,Q m为调制阶数,r为当前信道传输的目标码率。
例6:
当不同优先级的HARQ-ACK在同一个上行信道上采用独立编码方式传输时,终端基于高层信令基于针对每种上行信道配置的参数确定HARQ-ACK是否需要进行空间合并,如果需要空间合并,则按照现有技术对高优先级HARQ-ACK和低优先级HARQ-ACK分别进行空间合并。
如果高层信令配置不需要空间合并,则高优先级HARQ-ACK和低优先级的HARQ-ACK都需要进一步通过判断对应的HARQ-ACK比特数是否超过当前上行信道对该优先级HARQ-ACK分配的资源在目标码率下的承载容量来确定是否需要进行空间合并。
以低优先级HARQ-ACK为例,如果
Figure PCTCN2022080469-appb-000007
Figure PCTCN2022080469-appb-000008
则低优先级HARQ-ACK不需要进行空间合并;如果
Figure PCTCN2022080469-appb-000009
Figure PCTCN2022080469-appb-000010
则低优先级HARQ-ACK需要进行空间合并。
其中,O LP ACK为低优先级HARQ-ACK码本的比特数,O CRC为CRC校验比特数,
Figure PCTCN2022080469-appb-000011
为低优先级HARQ-ACK分配的资源占用的频域RB数,
Figure PCTCN2022080469-appb-000012
为当前PUCCH资源配置下一个RB对应的频域载波数,
Figure PCTCN2022080469-appb-000013
为低优先级HARQ-ACK分配的资源占用的时域符号数,Q m为调制阶数,r为低优先级HARQ-ACK传输的目标码率。
本发明在不同优先级的HARQ-ACK复用在同一上行信道传输时,通过分别对不同优先级的HARQ-ACK独立配置是否进行空间合并, 保证在降低不同优先级HARQ-ACK总比特数的前提下满足不同优先级HARQ-ACK的传输性能。
图5是本公开实施例提供的信息传输方法的流程示意图之二,如图5所示,本公开实施例提供一种信息传输方法,其执行主体为网络侧设备,例如,基站等。该方法包括:
步骤501、在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
步骤502、在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的。
步骤503、基于所述目标信息解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述 低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包 括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
具体来说,本公开实施例提供的信息传输方法,可参照上述执行主体为终端的信息传输方法实施例,且能够达到相同的技术效果,在此不再对本实施例中与上述相应方法实施例相同的部分及有益效果进行具体赘述。
图6是本公开实施例提供的一种终端的结构示意图,如图6所示,所述终端包括存储器620,收发机600,处理器610:
存储器620,用于存储计算机程序;收发机600,用于在所述处理器610的控制下收发数据;处理器610,用于读取所述存储器620 中的计算机程序并执行以下操作:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
具体地,收发机600,用于在处理器610的控制下接收和发送数据。
其中,在图6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610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600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,这些传输介质包括,这些传输介质包括无线信道、有线信道、光缆等传输介质。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610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610在执行操作时所使用的数据。
可选地,处理器610可以是CPU(中央处理器)、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),处理器也可以采用多核架构。
处理器通过调用存储器存储的计算机程序,用于按照获得的可执行指令执行本公开实施例提供的任一所述方法。处理器与存储器也可 以物理上分开布置。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK 码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空 间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
在此需要说明的是,本公开实施例提供的上述终端,能够实现上述执行主体为终端的方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及 有益效果进行具体赘述。
图7是本公开实施例提供的一种网络侧设备的结构示意图,如图7所示,所述网络侧设备包括存储器720,收发机700,处理器710:
存储器720,用于存储计算机程序;收发机700,用于在所述处理器710的控制下收发数据;处理器710,用于读取所述存储器720中的计算机程序并执行以下操作:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
基于所述目标信息解析所述HARQ-ACK码本。
具体地,收发机700,用于在处理器710的控制下接收和发送数据。
其中,在图7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710代表的一个或多个处理器和存储器720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700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,这些传输介质包括无线信道、有线信道、光缆等传输介质。处理器710负责管理总线架构和通常的处理,存储器720可以存储处理器710在执行操作时所使用的数据。
处理器710可以是中央处理器(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),处理器也可以采用多核架构。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按 照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述 目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
具体地,本公开实施例提供的上述网络侧设备,能够实现上述执行主体为网络侧设备的方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及有益效果进行具体赘述。
图8是本公开实施例提供的一种信息传输装置的结构示意图之一,如图8所示,本公开实施例提供一种信息传输装置,包括第一接收模块801和确定模块802,其中:
第一接收模块801用于在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;确定模块802用于基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本;
或者,还包括:
若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK 码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
可选地,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
在所述目标上行信道上发送所述HARQ-ACK码本。
具体地,本公开实施例提供的上述信息传输装置,能够实现上述执行主体为终端的方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及有益效果进行具体赘述。
图9是本公开实施例提供的一种信息传输装置的结构示意图之二,如图9所示,本公开实施例提供一种信息传输装置,包括发送模块901、第二接收模块902和解析模块903,其中:
发送模块901用于在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;第二接收模块902用于在所述目标上行信道上接收所述终端发送的HARQ-ACK 码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;解析模块903用于基于所述目标信息解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
或者,
在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包 括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编 码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
可选地,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
具体地,本公开实施例提供的上述信息传输装置,能够实现上述执行主体为网络侧设备的方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及有益效果进行具体赘述。
需要说明的是,本公开上述各实施例中对单元/模块的划分是示意性的,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,在本公开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,可以存储在一个处理器可读取存储介质中。基于这样的理解,本公开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)执行本公开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。
可选地,本公开实施例还提供一种处理器可读存储介质,所述处理器可读存储介质存储有计算机程序,所述计算机程序用于使所述处理器执行上述各实施例提供的方法,包括:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
或者包括:
在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;基于所述目标信息解析所述HARQ-ACK码本。
需要说明的是:所述处理器可读存储介质可以是处理器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。
另外需要说明的是:本公开实施例中术语“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。
本公开实施例中术语“多个”是指两个或两个以上,其它量词与之类似。
本公开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)系统、高级长期演进(long term evolution advanced,LTE-A)系统、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新空口(New Radio,NR)系统等。这多种系统中均包括终端设备和网络设备。系统中还可以包括核心网部分,例如演进的分组系统(Evloved Packet System,EPS)、5G系统(5GS)等。
本公开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等。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无线接入网(Radio Access Network,RAN)与一个或多个核心网(Core Network,CN)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),本公开实施例中并不限定。
本公开实施例涉及的网络设备,可以是基站,该基站可以包括多个为终端提供服务的小区。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)分组进行相互更换,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,本公开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(gNB),也可以是家庭演进基站(Home evolved Node B,HeNB)、中继节点(relay node)、家庭基站(femto)、微微基站(pico)等,本公开实施例中并不限定。在一些网络结构中,网络设备可以包括集中单元(centralized unit,CU)节点和分布单元(distributed unit,DU)节点,集中单元和分布单元也可以地理上分开布置。
网络设备与终端设备之间可以各自使用一或多根天线进行多输入多输出(Multi Input Multi Output,MIMO)传输,MIMO传输可以 是单用户MIMO(Single User MIMO,SU-MIMO)或多用户MIMO(Multiple User MIMO,MU-MIMO)。根据根天线组合的形态和数量,MIMO传输可以是2D-MIMO、3D-MIMO、FD-MIMO或massive-MIMO,也可以是分集传输或预编码传输或波束赋形传输等。
本领域内的技术人员应明白,本公开的实施例可提供为方法、系统、或计算机程序产品。因此,本公开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,本公开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。
本公开是参照根据本公开实施例的方法、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。应理解可由计算机可执行指令实现流程图和/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。可提供这些计算机可执行指令到通用计算机、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。
这些处理器可执行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处理器可读存储器中,使得存储在该处理器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。
这些处理器可执行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公开进行各种改动和变型而不脱离本公开的精神和范围。这样,倘若本公开的这些修改和变型属于本公开权利要求及其等同技术的范围之内,则本公开也意图包含这些改动和变型在内。

Claims (61)

  1. 一种信息传输方法,其特征在于,包括:
    在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
    基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
  2. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  3. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本;
    或者,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生 成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本;
    或者,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  4. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  5. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  6. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  7. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
    若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  8. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
    若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  9. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
    若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  10. 根据权利要求1所述的信息传输方法,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
    若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值, 则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  11. 一种信息传输方法,其特征在于,包括:
    在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
    在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
    基于所述目标信息解析所述HARQ-ACK码本。
  12. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  13. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    或者,
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述 高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
    或者,
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  14. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
  15. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
  16. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所 述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  17. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
  18. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
  19. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述 目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
  20. 根据权利要求11所述的信息传输方法,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
  21. 一种终端,其特征在于,包括存储器,收发机,处理器;
    存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
    在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
    基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
  22. 根据权利要求21所述的终端,其特征在于,所述目标信息 包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  23. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本;
    或者,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本;
    或者,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  24. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  25. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  26. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  27. 根据权利要求21所述的终端,其特征在于,所述目标信息 包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
    若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  28. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
    若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  29. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不 进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
    若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  30. 根据权利要求21所述的终端,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
    若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  31. 一种网络侧设备,其特征在于,包括存储器,收发机,处理器;
    存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
    在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
    在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
    基于所述目标信息解析所述HARQ-ACK码本。
  32. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  33. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    或者,
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
    或者,
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  34. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
  35. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
  36. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  37. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
  38. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
  39. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所 述HARQ-ACK码本;
    其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
  40. 根据权利要求31所述的网络侧设备,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
  41. 一种信息传输装置,其特征在于,包括:
    第一接收模块,用于在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,接收网络侧设备发送的目标信息;
    确定模块,用于基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并。
  42. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  43. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第一信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本;
    或者,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本;
    或者,还包括:
    若所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  44. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间 合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  45. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  46. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第二信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,若所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,则对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  47. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包 括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
    若所述总比特数超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  48. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,则确定联合编码的HARQ-ACK码本中包含的总比特数是否超过第一阈值;所述第一阈值表征所述目标上行信道在目标码率下的承载容量;
    若所述总比特数未超过所述第一阈值,则对所述高优先级HARQ-ACK不进行空间合并,对所述低优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  49. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
    若所述目标优先级HARQ-ACK的比特数超过所述第二阈值,则对所述目标优先级HARQ-ACK进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  50. 根据权利要求41所述的信息传输装置,其特征在于,所述目标信息包括第三信息;所述基于所述目标信息确定是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并之后,还包括:
    若所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,则确定独立编码的目标优先级HARQ-ACK码本中包含的比特数是否超过第二阈值;所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量;
    若所述目标优先级HARQ-ACK的比特数未超过所述第二阈值,则对所述目标优先级HARQ-ACK不进行空间合并,以生成HARQ-ACK码本;
    在所述目标上行信道上发送所述HARQ-ACK码本。
  51. 一种信息传输装置,其特征在于,包括:
    发送模块,用于在同一目标上行信道复用传输高优先级混合自动重传请求确认HARQ-ACK和低优先级HARQ-ACK的情况下,向终 端发送目标信息;所述目标信息用于指示终端是否分别对高优先级HARQ-ACK和低优先级HARQ-ACK进行空间合并;
    第二接收模块,用于在所述目标上行信道上接收所述终端发送的HARQ-ACK码本;所述HARQ-ACK码本是所述终端基于所述目标信息生成的;
    解析模块,用于基于所述目标信息解析所述HARQ-ACK码本。
  52. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK进行空间合并且指示终端对所述低优先级HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  53. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK不进行空间合并且指示终端对所述低优先级HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    或者,
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本;
    或者,
    在所述目标信息包括第一信息,且所述第一信息指示终端对所述 高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  54. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本。
  55. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK不进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均未进行空间合并的方式解析所述HARQ-ACK码本。
  56. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第二信息,且所述第二信息指示终端对所述低优先级HARQ-ACK不进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并,或者,所述第二信息指示终端对所述低优先级HARQ-ACK进行空间合并且指示终端对所述目标上行信道的HARQ-ACK进行空间合并的情况下,按照所述高优先级HARQ-ACK和所述低优先级HARQ-ACK均进行空间合并的方式解析所述HARQ-ACK码本。
  57. 根据权利要求51所述的信息传输装置,其特征在于,所述 基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
  58. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用联合编码,且联合编码的HARQ-ACK码本中包含的总比特数未超过第一阈值的情况下,按照所述高优先级HARQ-ACK未进行空间合并,所述低优先级HARQ-ACK为进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第一阈值表征所述目标上行信道在目标码率下的承载容量。
  59. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数超过第二阈值的情况下,按照所述目标优先级HARQ-ACK进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
  60. 根据权利要求51所述的信息传输装置,其特征在于,所述基于所述目标信息解析所述HARQ-ACK码本,包括:
    在所述目标信息包括第三信息,且所述第三信息指示终端对所述目标上行信道的HARQ-ACK不进行空间合并且所述高优先级HARQ-ACK和所述低优先级HARQ-ACK采用独立编码,且独立编码的目标优先级HARQ-ACK码本中包含的比特数未超过第二阈值的情况下,按照所述目标优先级HARQ-ACK未进行空间合并的方式解析所述HARQ-ACK码本;
    其中,所述第二阈值表征所述目标上行信道为所述目标优先级HARQ-ACK分配资源上在目标码率下的承载容量。
  61. 一种处理器可读存储介质,其特征在于,所述处理器可读存储介质存储有计算机程序,所述计算机程序用于使所述处理器执行权利要求1至20任一项所述的信息传输方法。
PCT/CN2022/080469 2021-05-11 2022-03-11 信息传输方法、装置及存储介质 WO2022237298A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202110513513.2 2021-05-11
CN202110513513.2A CN115333681B (zh) 2021-05-11 2021-05-11 信息传输方法、装置及存储介质

Publications (1)

Publication Number Publication Date
WO2022237298A1 true WO2022237298A1 (zh) 2022-11-17

Family

ID=83912829

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2022/080469 WO2022237298A1 (zh) 2021-05-11 2022-03-11 信息传输方法、装置及存储介质

Country Status (3)

Country Link
CN (1) CN115333681B (zh)
TW (1) TWI791393B (zh)
WO (1) WO2022237298A1 (zh)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2019096013A1 (en) * 2017-11-14 2019-05-23 Telefonaktiebolaget Lm Ericsson (Publ) Methods and devices for hybrid automatic repeat request acknowledgement/non-acknowledgement bundling
CN110661603A (zh) * 2018-06-29 2020-01-07 维沃移动通信有限公司 Pucch的传输方法、终端设备和网络设备
CN110945825A (zh) * 2019-11-08 2020-03-31 北京小米移动软件有限公司 反馈方法、反馈装置及存储介质
CN110972280A (zh) * 2018-09-28 2020-04-07 华为技术有限公司 一种资源配置方法、信息发送方法及装置
CN112449370A (zh) * 2019-08-30 2021-03-05 华为技术有限公司 定位的方法和通信装置

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110943805B (zh) * 2018-09-21 2021-06-04 电信科学技术研究院有限公司 一种harq-ack的传输方法、终端设备及网络设备
CN111314033B (zh) * 2018-12-25 2021-08-27 维沃移动通信有限公司 一种上行控制信息uci的传输方法及终端
AU2020207206A1 (en) * 2019-01-09 2021-07-29 Interdigital Patent Holdings, Inc. Methods, apparatus and systems for enhanced control signaling of ultra-reliable transmissions
US10868595B2 (en) * 2019-01-11 2020-12-15 Qualcomm Incorporated Enhanced feedback with a dynamic codebook
US10833814B2 (en) * 2019-01-11 2020-11-10 Lg Electronics Inc. Method related to a timing to transmit a feedback information in a wireless communication system
US11831438B2 (en) * 2019-04-09 2023-11-28 Samsung Electronics Co., Ltd Method and apparatus for transmission and reception of HARQ-ACK feedback in wireless communication system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2019096013A1 (en) * 2017-11-14 2019-05-23 Telefonaktiebolaget Lm Ericsson (Publ) Methods and devices for hybrid automatic repeat request acknowledgement/non-acknowledgement bundling
CN110661603A (zh) * 2018-06-29 2020-01-07 维沃移动通信有限公司 Pucch的传输方法、终端设备和网络设备
CN110972280A (zh) * 2018-09-28 2020-04-07 华为技术有限公司 一种资源配置方法、信息发送方法及装置
CN112449370A (zh) * 2019-08-30 2021-03-05 华为技术有限公司 定位的方法和通信装置
CN110945825A (zh) * 2019-11-08 2020-03-31 北京小米移动软件有限公司 反馈方法、反馈装置及存储介质

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
INTERDIGITAL, INC.: "UE HARQ-ACK Feedback enhancements", 3GPP TSG RAN WG1 #102-E R1-2006070, 28 August 2020 (2020-08-28), XP051915136 *

Also Published As

Publication number Publication date
TWI791393B (zh) 2023-02-01
CN115333681B (zh) 2024-05-07
TW202245530A (zh) 2022-11-16
CN115333681A (zh) 2022-11-11

Similar Documents

Publication Publication Date Title
WO2019095808A1 (zh) 非周期信道状态信息的传输方法、终端设备及网路设备
EP4231568A1 (en) Method for determining number of repeated transmissions of pucch, and terminal and base station
WO2021159857A1 (zh) 码本传输方法及装置
WO2022117102A1 (zh) 上行控制信息传输方法、接收方法、终端和网络设备
WO2022218157A1 (zh) 信道处理方法、装置及存储介质
WO2022117103A1 (zh) 上行控制信息传输方法、接收方法、终端和网络设备
WO2022083364A1 (zh) 状态参量处理方法及装置、网络设备
WO2022237298A1 (zh) 信息传输方法、装置及存储介质
KR20230088907A (ko) 데이터 전송 방법, 장치 및 기기
WO2021012285A1 (zh) 一种信息传输方法、电子设备及存储介质
WO2022116736A1 (zh) Uci复用的资源确定方法、装置及存储介质
WO2022206457A1 (zh) 信息传输方法、装置、设备以及存储介质
WO2023155729A1 (zh) 一种信息处理方法、装置及可读存储介质
WO2023045709A1 (zh) 动态数据传输方法、装置及存储介质
WO2023207397A1 (zh) 一种dci确定方法、设备及装置
WO2022218075A1 (zh) Uci的级联确定方法、装置、终端及网络侧设备
WO2022206364A1 (zh) Harq码本发送方法、接收方法、装置及存储介质
WO2023011626A1 (zh) 资源指示方法、终端、网络侧设备、装置和存储介质
CN114070482B (zh) 业务传输的处理方法、装置、网络侧设备及终端
WO2022152060A1 (zh) Harq-ack使能控制方法、装置、设备及存储介质
WO2024017389A1 (zh) 一种信息处理方法、装置及可读存储介质
WO2023134575A1 (zh) 物理下行控制信道pdcch监听方法、装置、设备以及存储介质
WO2023134703A1 (zh) Pusch传输方法、装置及存储介质
CN114124315B (zh) 信息反馈方法、信息接收方法、终端和网络设备
WO2022037674A1 (zh) 下行信道传输方法及装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 22806273

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE