WO2019165968A1 - 上行控制信息的传输方法、接收方法、终端、基站及装置 - Google Patents

上行控制信息的传输方法、接收方法、终端、基站及装置 Download PDF

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Publication number
WO2019165968A1
WO2019165968A1 PCT/CN2019/076261 CN2019076261W WO2019165968A1 WO 2019165968 A1 WO2019165968 A1 WO 2019165968A1 CN 2019076261 W CN2019076261 W CN 2019076261W WO 2019165968 A1 WO2019165968 A1 WO 2019165968A1
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Prior art keywords
control information
uplink control
transmission
transmission resource
transmission resources
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PCT/CN2019/076261
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English (en)
French (fr)
Inventor
高雪娟
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电信科学技术研究院有限公司
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Application filed by 电信科学技术研究院有限公司 filed Critical 电信科学技术研究院有限公司
Priority to US16/977,203 priority Critical patent/US11546894B2/en
Priority to KR1020207026740A priority patent/KR20200120731A/ko
Priority to EP19761118.9A priority patent/EP3761735B1/en
Priority to KR1020237029997A priority patent/KR20230130774A/ko
Publication of WO2019165968A1 publication Critical patent/WO2019165968A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0613Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
    • H04B7/0615Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
    • H04B7/0619Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
    • H04B7/0621Feedback content
    • H04B7/0626Channel coefficients, e.g. channel state information [CSI]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0026Transmission of channel quality indication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0028Formatting
    • H04L1/0031Multiple signaling transmission
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/004Arrangements for detecting or preventing errors in the information received by using forward error control
    • H04L1/0072Error control for data other than payload data, e.g. control data
    • H04L1/0073Special arrangements for feedback channel
    • 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
    • H04L1/1607Details of the supervisory signal
    • H04L1/1671Details of the supervisory signal the supervisory signal being transmitted together with control information
    • 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]
    • H04L1/1819Hybrid protocols; Hybrid automatic repeat request [HARQ] with retransmission of additional or different redundancy
    • 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
    • H04L1/1829Arrangements specially adapted for the receiver end
    • H04L1/1861Physical mapping arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • 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
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • H04L5/0057Physical resource allocation for CQI
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/56Allocation or scheduling criteria for wireless resources based on priority criteria
    • H04W72/566Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient
    • H04W72/569Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient of the traffic information

Definitions

  • the present disclosure relates to the field of communications technologies, and in particular, to a method, a receiving method, a terminal, a base station, and a device for transmitting uplink control information.
  • the format of the NR PUCCH (Physical Uplink Control Channel) format includes: format0, format 1, format 2, format 3, and format 4. A total of five PUCCH formats are used. .
  • the PUCCH formats 0 and 1 can carry 1 to 2 bits of UCI (Uplink Control Information) transmission, and the PUCCH formats 2, 3, and 4 can carry more than 2 bits of UCI transmission; PUCCH formats 0 and 2 belong to short PUCCH, occupy 1 Up to 2 symbol transmissions, PUCCH format 1, 3, 4 belong to a long PUCCH and can occupy 4 to 14 symbol transmissions.
  • UCI Uplink Control Information
  • SR Service Request
  • PUCCH format 0 or 1 PUCCH format 0 or 1.
  • the high layer signaling pre-configures the transmission period and offset of the SR, and according to the transmission period and offset, the transmission opportunity of the SR can be determined.
  • the PUCCH format transmission SR is pre-configured to the SR using the high layer signaling, and is not transmitted if it is a negative SR (ie, a negative SR).
  • HARQ-ACK Hybrid Automatic Repeat request-ACK
  • the HARQ-ACK is 1 or 2 bits, it is configured to use PUCCH format 0 or 1 to transmit; when the HARQ-ACK exceeds 2 bits, one of a plurality of PUCCH resource sets pre-configured to the terminal is selected according to the number of bits, where Each of the PUCCH resource sets corresponds to a range of the number of bits, and the DCI (Downlink Control Information) used by the PDCCH (Physical Downlink Control Channel) corresponding to the HARQ-ACK is selected in the selected PUCCH resource set.
  • the HARQ-ACK resource indication field in the format selects one PUCCH resource, and transmits HARQ-ACK on the selected PUCCH resource.
  • the channel CSI may be configured to use PUCCH format 2 or 3 or 4 transmission, and the period CSI to be transmitted is channel-coded and rate-matched, and then mapped to PUCCH resources other than pilots for transmission.
  • HARQ-ACK can be transmitted using NR PUCCH format 0 or 1 or 2 or 3 or 4
  • SR can be transmitted using NR PUCCH format 0 or 1
  • periodic CSI can be transmitted using NR PUCCH format 2 or 3 or 4.
  • the PUCCH related parameters of different UCIs are independently configured, and the transmission resources of different UCIs and the used PUCCH format are independently configured; for example, as shown in FIG.
  • the purpose of the disclosure is to provide a method for transmitting uplink control information, a receiving method, a terminal, a base station, and a device, so as to solve the problem that the uplink control information is not explicitly transmitted when the transmission resources of different uplink control information overlap in the time domain in the prior art.
  • Method problem is to provide a method for transmitting uplink control information, a receiving method, a terminal, a base station, and a device, so as to solve the problem that the uplink control information is not explicitly transmitted when the transmission resources of different uplink control information overlap in the time domain in the prior art.
  • an embodiment of the present disclosure provides a method for transmitting uplink control information, including:
  • the first uplink control information and the at least one second uplink control information are simultaneously transmitted on the first transmission resource;
  • the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the step of simultaneously transmitting the first uplink control information and the at least one second uplink control information on the first transmission resource includes:
  • the step of simultaneously transmitting the first uplink control information and the at least one second uplink control information on the first transmission resource includes:
  • the transmitting method further includes:
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the embodiment of the present disclosure further provides a method for receiving uplink control information, including:
  • the first uplink control information and the at least one second uplink control information are simultaneously received on the first transmission resource;
  • the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the step of simultaneously receiving the first uplink control information and the at least one second uplink control information on the first transmission resource includes:
  • the step of simultaneously receiving the first uplink control information and the at least one second uplink control information on the first transmission resource includes:
  • the method further includes: before the step of receiving the first uplink control information and the at least one second uplink control information on the first transmission resource, the method further includes:
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • An embodiment of the present disclosure further provides a terminal, including: a transceiver, a memory, a processor, and a computer program stored on the memory and operable on the processor; the processor is configured to read a program in the memory , perform the following process:
  • the transceiver is configured to simultaneously transmit the first uplink control information and the at least one second on the first transmission resource.
  • Uplink control information where the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the transceiver is further configured to:
  • the transceiver is further configured to:
  • the processor is further configured to:
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the embodiment of the present disclosure further provides an apparatus for transmitting uplink control information, including:
  • a first resource determining module configured to determine a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information
  • a transmitting module configured to simultaneously transmit the first uplink control information and the at least one second on the first transmission resource when the first transmission resource and the at least two second transmission resources overlap in a time domain
  • Uplink control information where the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • Embodiments of the present disclosure also provide a computer readable storage medium storing a computer program thereon, the computer program being executed by a processor to implement the steps of the method of transmitting uplink control information as described above.
  • An embodiment of the present disclosure further provides a base station, including: a transceiver, a memory, a processor, and a computer program stored on the memory and operable on the processor; the processor is configured to read a program in the memory Performing the following process: determining a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information;
  • the transceiver is configured to simultaneously receive the first uplink control information and the at least one second on the first transmission resource.
  • Uplink control information where the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the transceiver is further configured to:
  • the transceiver is further configured to:
  • the processor is further configured to:
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the embodiment of the present disclosure further provides an apparatus for receiving uplink control information, including:
  • a second resource determining module configured to determine a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information
  • a receiving module when the first transmission resource overlaps with the at least two second transmission resources in the time domain, simultaneously receiving the first uplink control information and the at least one second uplink on the first transmission resource The control information, where the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the embodiment of the present disclosure further provides a computer readable storage medium storing a computer program, the computer program being executed by a processor to implement the steps of the method of receiving uplink control information as described above.
  • the receiving method, the terminal, the base station, and the apparatus for transmitting uplink control information in the embodiment of the present disclosure when the first transmission resource and the at least two second transmission resources overlap in the time domain, the first The first uplink control information and the at least one second uplink control information are simultaneously transmitted on the transmission resource.
  • the embodiment of the present disclosure provides a clear method for transmitting uplink control information to ensure normal operation of the system.
  • 1 is a schematic diagram showing transmission of a plurality of uplink control information in the prior art
  • FIG. 2 is a flow chart showing the steps of a method for transmitting uplink control information provided by some embodiments of the present disclosure
  • FIG. 3 is a flow chart showing the steps of a method for receiving uplink control information according to some embodiments of the present disclosure
  • FIG. 4 is a schematic diagram showing the transmission and reception of uplink control information in the first example provided by some embodiments of the present disclosure
  • Example 5 is a second schematic diagram of transmission and reception of uplink control information in Example 1 according to some embodiments of the present disclosure
  • FIG. 6 is a schematic diagram showing the transmission and reception of uplink control information in Example 2 according to some embodiments of the present disclosure
  • FIG. 7 is a second schematic diagram of transmission and reception of uplink control information in Example 2 according to some embodiments of the present disclosure.
  • FIG. 8 is a schematic diagram showing transmission and reception of uplink control information in Example 3 according to some embodiments of the present disclosure.
  • FIG. 9 is a schematic structural diagram of a terminal and a base station according to some embodiments of the present disclosure.
  • FIG. 10 is a schematic structural diagram of an apparatus for transmitting uplink control information according to some embodiments of the present disclosure.
  • FIG. 11 is a schematic structural diagram of an apparatus for receiving uplink control information according to some embodiments of the present disclosure.
  • some embodiments of the present disclosure provide a method for transmitting uplink control information, including:
  • Step 21 Determine a first transmission resource of the first uplink control information and a second transmission resource of the second uplink control information.
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information HARQ-ACK, channel state information CSI or scheduling request SR;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information HARQ - ACK, channel state information CSI or scheduling request SR.
  • Step 22 When the first transmission resource overlaps with the at least two second transmission resources in the time domain, the first uplink control information and the at least one second uplink control information are simultaneously transmitted on the first transmission resource.
  • the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the symbol occupied by the first transmission resource is large.
  • the corresponding PUCCH is a long PUCCH, and may occupy 4 to 14 symbols.
  • the second transmission resource occupies a small symbol because the first transmission resource overlaps with the at least two second transmission resources in the time domain.
  • the second transmission resource is a PUCCH resource
  • the corresponding PUCCH is a short PUCCH.
  • the first transmission resource and the second transmission resource are both transmission resources of the long PUCCH, but the time domain length of the first transmission resource is greater than the time domain length of the second transmission resource.
  • the first transmission resource occupies 14 symbols in the time domain, and the second transmission resource occupies 4 symbols in the time domain, etc.; of course, the first transmission resource and the second transmission resource are both short PUCCH transmission resources.
  • the time domain length of the first transmission resource is greater than the time domain length of the second transmission resource.
  • the first transmission resource occupies 2 symbols in the time domain, and the second transmission resource occupies 1 symbol in the time domain.
  • the at least two second transmission resources that overlap with the first transmission resource in the time domain may be transmission resources of multiple transmissions of the same type of second uplink control information, or may be different types of second uplink control.
  • the transmission resources corresponding to the information For example, when the second uplink control information is CSI, the second transmission resource may be different transmission opportunities determined according to different periods of the CSI configuration, or two CSI transmission opportunities in the same transmission period (for example, the period is shorter);
  • the second uplink control information is the SR
  • the second transmission resource may be different transmission opportunities determined according to different periods of the SR configuration, and each transmission opportunity may correspond to a different SR configuration, or may be the same SR configuration (corresponding to If the second uplink control information is HARQ-ACK, the second transmission resource may be according to the HARQ-ACK resource indication in different DCIs.
  • the different symbol positions determined by the field For example, when the second uplink control information is CSI, the second transmission resource may be different transmission opportunities determined according to different periods of the CSI configuration, or two
  • step 22 includes:
  • Step 221 The first uplink control information and the at least two second uplink control information respectively carried on the at least two second transmission resources are simultaneously transmitted on the first transmission resource.
  • step 22 includes:
  • Step 222 Simultaneously transmit, on the first transmission resource, the first uplink control information, and one of the at least two second uplink control information respectively carried on the at least two second transmission resources, a preset second uplink. Control information.
  • the number of second transmission resources that overlap with the first transmission resource in the time domain is two.
  • two transmission methods are provided: the first transmission method is, in the first transmission The first uplink control information and the two second uplink control information are simultaneously transmitted on the resource, where the two uplink control information are two uplink control information on the two overlapping second transmission resources, and the second transmission method is Transmitting the first uplink control information and the preset second uplink control information on the first transmission resource, where the preset second uplink control information is in the two second uplink control information on the two overlapping second transmission resources.
  • An uplink control message is, in the first transmission The first uplink control information and the two second uplink control information are simultaneously transmitted on the resource, where the two uplink control information are two uplink control information on the two overlapping second transmission resources.
  • the transmitting method further includes:
  • Determining that the first uplink control information and the second uplink control information are simultaneously transmitted That is, before the step 22, the terminal needs to determine whether the first uplink control information and the second uplink control information are simultaneously transmitted. If the first uplink control information and the second uplink control information are simultaneously transmitted, proceed to step 22; otherwise, only transmit the first Uplink control information or only second uplink control information.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay in the at least two second uplink control information respectively carried on the at least two second transmission resources; that is, according to the processing time, the Before the first transmission resource is transmitted, the second uplink control information is prepared, and the second uplink control information is the second uplink control information that meets the processing delay, for example, encoding or mapping the first uplink control information.
  • the second uplink control information that can be obtained before is the second uplink control information that meets the processing delay.
  • the foregoing second uplink control information that meets the processing delay may be one or more.
  • the information may be further determined according to other conditions.
  • the second uplink control information is selected; the other conditions include: the priority of the second uplink control information or the order of the second uplink control information, and are not specifically limited herein; of course, the priority may not be further combined with other priorities.
  • the plurality of second uplink control information that meets the processing delay is simultaneously transmitted with the first uplink control information.
  • the method for transmitting uplink control information provided by the foregoing embodiment of the present disclosure, when the first transmission resource and the at least two second transmission resources overlap in the time domain, on the first transmission resource. Simultaneously transmitting the first uplink control information and the at least one second uplink control information; some embodiments of the present disclosure provide a clear method for transmitting uplink control information to ensure normal operation of the system.
  • some embodiments of the present disclosure further provide a method for receiving uplink control information, including:
  • Step 31 Determine a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information.
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information HARQ-ACK, channel state information CSI or scheduling request SR;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information HARQ - ACK, channel state information CSI or scheduling request SR.
  • Step 32 When the first transmission resource overlaps with the at least two second transmission resources in the time domain, the first uplink control information and the at least one second uplink control information are simultaneously received on the first transmission resource.
  • the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the symbol occupied by the first transmission resource is large.
  • the corresponding PUCCH is a long PUCCH, and may occupy 4 to 14 symbols.
  • the second transmission resource occupies a small symbol because the first transmission resource overlaps with the at least two second transmission resources in the time domain.
  • the second transmission resource is a PUCCH resource
  • the corresponding PUCCH is a short PUCCH.
  • the first transmission resource and the second transmission resource are both transmission resources of the long PUCCH, but the time domain length of the first transmission resource is greater than the time domain length of the second transmission resource.
  • the first transmission resource occupies 14 symbols in the time domain, and the second transmission resource occupies 4 symbols in the time domain, etc.; of course, the first transmission resource and the second transmission resource are both short PUCCH transmission resources.
  • the time domain length of the first transmission resource is greater than the time domain length of the second transmission resource.
  • the first transmission resource occupies 2 symbols in the time domain, and the second transmission resource occupies 1 symbol in the time domain.
  • the at least two second transmission resources that overlap with the first transmission resource in the time domain may be transmission resources of multiple transmissions of the same type of second uplink control information, or may be different types of second uplink control.
  • the transmission resources corresponding to the information For example, when the second uplink control information is CSI, the second transmission resource may be different transmission opportunities determined according to different periods of the CSI configuration, or two CSI transmission opportunities in the same transmission period (for example, the period is shorter);
  • the second uplink control information is the SR
  • the second transmission resource may be different transmission opportunities determined according to different periods of the SR configuration, and each transmission opportunity may correspond to a different SR configuration, or may be the same SR configuration (corresponding to If the second uplink control information is HARQ-ACK, the second transmission resource may be according to the HARQ-ACK resource indication in different DCIs.
  • the different symbol positions determined by the field For example, when the second uplink control information is CSI, the second transmission resource may be different transmission opportunities determined according to different periods of the CSI configuration, or two
  • step 32 includes:
  • Step 321 Receive, on the first transmission resource, the first uplink control information and the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • step 32 includes:
  • Step 322 Receive, on the first transmission resource, the first uplink control information and one of the at least two second uplink control information respectively carried on the at least two second transmission resources Control information.
  • the number of second transmission resources that overlap with the first transmission resource in the time domain is two.
  • two receiving methods are provided: the first receiving method is, in the first transmission Receiving, by the resource, the first uplink control information and the two second uplink control information, where the two uplink control information are two uplink control information on the two overlapping second transmission resources, and the second receiving method is Receiving, by the first transmission resource, the first uplink control information and the preset second uplink control information, where the preset second uplink control information is the two second uplink control information on the two overlapping second transmission resources.
  • An uplink control message is, in the first transmission Receiving, by the resource, the first uplink control information and the two second uplink control information, where the two uplink control information are two uplink control information on the two overlapping second transmission resources.
  • the method further includes:
  • Determining that the first uplink control information and the second uplink control information are simultaneously transmitted That is, before the step 32, the base station needs to determine whether the first uplink control information and the second uplink control information are simultaneously transmitted. If the first uplink control information and the second uplink control information are simultaneously transmitted, proceed to step 32; otherwise, receive only the first Uplink control information or only second uplink control information.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay in the at least two second uplink control information respectively carried on the at least two second transmission resources; that is, according to the processing time, the Before the first transmission resource is transmitted, the second uplink control information is prepared, and the second uplink control information is the second uplink control information that meets the processing delay, for example, encoding or mapping the first uplink control information.
  • the second uplink control information that can be obtained before is the second uplink control information that meets the processing delay.
  • the foregoing second uplink control information that meets the processing delay may be one or more.
  • the information may be further determined according to other conditions.
  • the second uplink control information is selected; the other conditions include: the priority of the second uplink control information or the order of the second uplink control information, which is not specifically limited herein; of course, the other priorities may not be further combined.
  • the plurality of second uplink control information that meets the processing delay is simultaneously transmitted with the first uplink control information.
  • some embodiments of the present disclosure provide a clear method for receiving uplink control information to ensure normal operation of the system.
  • the first uplink control information UCI is HARQ-ACK
  • the second uplink control information UCI is SR.
  • the HARQ-ACK (abbreviated as AN in FIG. 4) is transmitted using PUCCH format 3 or 4, that is, the transmission resource of the HARQ-ACK is a PUCCH format 3 or 4 resource, and it is assumed that each PUCCH format 3 or 4 resource is occupied. 8 symbols are transmitted; the SR uses PUCCH format 0 transmission, that is, the transmission resource of the SR is a PUCCH format 0 resource, and it is assumed that one PUCCH format 0 resource occupies 2 symbol transmissions.
  • transmission resources of two SRs such as PUCCH-1 and PUCCH-2 shown in FIG. 4 and FIG. 5
  • transmission resources of HARQ-ACK such as PUCCH-0 shown in FIG. 4 and FIG. 5
  • the HARQ-ACK and the SR are transmitted simultaneously using the transmission resource of the HARQ-ACK (ie, the first transmission resource).
  • the X-bit SR and the HARQ-ACK are simultaneously transmitted on the transmission resource of the HARQ-ACK by joint coding.
  • X is K is the number of overlapping SR configurations in the time domain, or K is the number of SR configurations configured for the terminal, that is, whether the SR is a positive SR or a negative SR, the X bits need to be transmitted. SR. then:
  • the first implementation manner is as follows: As shown in FIG. 4, the HARQ-ACK and all overlapping SRs are simultaneously transmitted on the transmission resource of the HARQ-ACK. It is assumed that the two SRs in which the HARQ-ACK overlaps are the SR transmission opportunities of the two SR configurations, and the terminal simultaneously transmits the SR and the HARQ-ACK on the PUCCH format 3 or 4 resources of the HARQ-ACK (PUCCH-0), for example, adopting the X-bit SR.
  • the method of co-coding with HARQ-ACK where X is determined according to the number of SR configurations configured to the terminal, that is, the X-bit SR includes SRs of two SR configurations; and, for example, in the order of SR configuration numbers, in X bits 1 bit corresponds to an SR configuration, and if the 1 bit is 1 or 0, the SR configured by the SR is positive or negative, and if the HARQ-ACK is prepared for processing (for example, channel coding), it is not known whether the transmission resource of an SR is available. For a positive SR, it is assumed to be a negative SR. It should be noted that the terminal does not need to transmit the PUCCH on the resources of the SR.
  • the base station side receives the X-bit SR and the corresponding HARQ-ACK simultaneously on the PUCCH format 3 or 4 resources of the HARQ-ACK (PUCCH-0) according to the manner of the terminal, and can correspond to the X-bit SR according to each SR configuration.
  • the SR feedback status of multiple SR configurations is obtained at the same time.
  • the second implementation manner is as follows: As shown in FIG. 5, the HARQ-ACK and the partially overlapping SR are simultaneously transmitted on the transmission resource of the HARQ-ACK. For example, always select the SR on the first SR transmission resource, or select the SR with the highest priority among the multiple SRs (for example, the service type corresponding to different SR configurations, feedback period, etc., assuming that the selection result is the first one) SR).
  • the terminal simultaneously transmits the SR and HARQ-ACK on the first SR transmission resource on the PUCCH format 3 or 4 resource of the HARQ-ACK (PUCCH-0).
  • the method of jointly coding the X1 bit SR and the HARQ-ACK is adopted, where X1 is determined according to the number of SR configurations configured to the terminal in the SR transmission opportunity where the PUCCH-1 is located; if the HARQ-ACK is prepared for processing (For example, channel coding), if it is not known whether a certain SR's transmission resource is a positive SR, it is assumed to be a negative SR; it should be noted that the terminal does not need to transmit the PUCCH on the SR resource.
  • the base station side receives the X1 bit SR and the corresponding HARQ-ACK simultaneously on the PUCCH format 3 or 4 resource of the HARQ-ACK (PUCCH-0) according to the manner of the terminal, and determines the X1 bit SR according to the agreed rule.
  • the first uplink control information in the foregoing example 1 is replaced by the CSI, but it is required to determine whether the CSI and the SR are simultaneously transmitted according to the configuration of the high layer signaling.
  • the operation of the above example one is performed; if it is not supported, only one of them is transmitted, for example, the SR is selected, and the CSI is discarded.
  • one SR in the above example one is replaced with a HARQ-ACK, and the HARQ-ACK is configured to occupy two symbol transmissions using the PUCCH format 2 The same applies.
  • an uplink control information may be selected according to the priority of the type of the uplink control information. For example, if the priority of the HARQ-ACK is higher than the SR, the HARQ-ACK is selected and the SR is discarded.
  • the method for transmitting the second uplink control information and the first uplink control information may also select an uplink control information according to the priority of the type of the uplink control information. For example, if the SR priority is higher than the CSI, the SR is selected and the CSI is discarded.
  • the first uplink control information UCI is HARQ-ACK
  • the second uplink control information UCI is CSI.
  • the HARQ-ACK (abbreviated as AN in FIG. 4) is transmitted using PUCCH format 3 or 4, that is, the transmission resource of the HARQ-ACK is a PUCCH format 3 or 4 resource, and it is assumed that each PUCCH format 3 or 4 resource is occupied. 8 symbols are transmitted;
  • CSI uses PUCCH format 2 transmission, that is, the transmission resource of the CSI is a PUCCH format 2 resource, and it is assumed that one PUCCH format 2 resource occupies 2 symbol transmissions.
  • CSI transmission resources such as PUCCH-1 and PUCCH-2 shown in FIG. 6 and FIG. 7
  • HARQ-ACK transmission resources such as PUCCH-0 shown in FIG. 6 and FIG. 7
  • the time domain overlaps and determines that CSI and HARQ-ACK are simultaneously transmitted according to the configuration of the high layer signaling.
  • the HARQ-ACK transmission resource ie, the first transmission resource
  • the HARQ-ACK transmission resource is used to simultaneously transmit the HARQ-ACK and the CSI.
  • CSI and HARQ-ACK are simultaneously transmitted on the HARQ-ACK resources by joint coding or independent coding, then:
  • the first implementation manner is as follows: As shown in FIG. 6, the HARQ-ACK and all the CSIs overlapping therewith are simultaneously transmitted on the transmission resource of the HARQ-ACK.
  • the terminal simultaneously transmits 2 CSIs (A1+A2 bits of CSI) and HARQ-ACKs on the PUCCH format 3 or 4 resources of the HARQ-ACK (PUCCH-0), if the HARQ-ACK is not ready for processing (eg, channel coding)
  • Obtaining the CSI on the transmission resource of a CSI is assumed to be the placeholder information, for example, a preset value (all 0s or all 1s); the terminal does not need to transmit the PUCCH on the transmission resource of the CSI; wherein, A1
  • the number of A2 bits may be the same or different.
  • the base station simultaneously receives two CSIs and corresponding HARQ-ACKs on the PUCCH format 3 or 4 resources of the HARQ-ACK (PUCCH-0) in the same manner as the terminal, and can obtain two CSI feedbacks simultaneously, where different CSIs may be Corresponding to different service types, it may also have different configuration types.
  • the second implementation manner is as follows: As shown in FIG. 7, the HARQ-ACK and the partially overlapping CSI are simultaneously transmitted on the transmission resource of the HARQ-ACK. For example, always select CSI on the first CSI transmission resource, or select one CSI with the highest priority among multiple CSIs (for example, according to the configuration type of the CSI, the corresponding service, etc., assuming that the selection result is the first CSI), or Selecting CSI in a plurality of CSIs that can obtain the CSI specific information when the HARQ-ACK performs transmission preparation (for example, channel coding) (because the CSI needs to perform channel coding together with the HARQ-ACK, it is necessary to know accurate CSI information before encoding, However, the measurement resources of the CSI and the time required for the CSI measurement may not be sufficient to obtain the actual CSI at the time of channel coding of the HARQ-ACK, assuming that the selection result is the first CSI).
  • the terminal simultaneously transmits the selected CSI (A1 bit CSI) and HARQ-ACK on the PUCCH format 3 or 4 resources of the HARQ-ACK (PUCCH-0), and the terminal does not need to transmit the PUCCH on the transmission resource of the CSI.
  • the base station receives the selected CSI and the corresponding HARQ-ACK simultaneously on the PUCCH format 3 or 4 resources of the HARQ-ACK (PUCCH-0) in the same manner as the terminal, and determines the CSI of the transmission according to the same rule as the terminal side. Which CSI transmits the CSI on the resource.
  • the HARQ-ACK in the foregoing example 2 is used in the same manner as the CSI exchange location, that is, the first UCI is assumed to be CSI, and the second UCI is HARQ-ACK, where the HARQ-ACK can be configured to use PUCCH format 0 when transmitting. The same applies. Further, when the first UCI is the CSI and the second UCI is the HARQ-ACK, the same applies when replacing one HARQ-ACK with the SR. In this case, if a second uplink control information is selected, the first The method of transmitting the uplink control information at the same time may also select a UCI according to the priority of the type of the uplink control information. For example, if the HARQ-ACK priority is higher than the SR, the HARQ-ACK is selected, and the SR is discarded.
  • the first uplink control information is HARQ-ACK
  • the second uplink control information is SR.
  • the HARQ-ACK (referred to as AN in FIG. 8) is transmitted in PUCCH format 1, that is, the transmission resource of the HARQ-ACK is a PUCCH format 1 resource, and it is assumed that each PUCCH format 1 resource occupies 8 symbol transmissions; the SR uses PUCCH format 0 transmission. That is, the transmission resource of the SR is a PUCCH format 0 resource, and it is assumed that one PUCCH format 0 resource occupies two symbol transmissions.
  • the HARQ-ACK and the SR overlapping with it are simultaneously transmitted on the transmission resource of the HARQ-ACK. For example, always select the SR on the first SR transmission resource, or select the SR with the highest priority among the multiple SRs (for example, the service type corresponding to different SR configurations, feedback period, etc., assuming that the selection result is the first one) SR).
  • the terminal simultaneously transmits the SR and the HARQ-ACK on the PUCCH format 1 resource of the HARQ-ACK (PUCCH-0), and implicitly expresses the existence of a certain SR transmission by the cyclic shift transmission HARQ-ACK corresponding to the selected SR. If the HARQ-ACK does not know whether the transmission resource of a certain SR is a positive SR when performing preparation processing (for example, channel coding), it is assumed to be a negative SR; the terminal does not need to transmit the PUCCH on the resources of the SR.
  • preparation processing for example, channel coding
  • the base station side receives the HARQ-ACK on the PUCCH format 1 resource (PUCCH-0) of the HARQ-ACK according to the manner of the terminal, and determines which SR is simultaneously transmitted according to the cyclic shift resource used for receiving the HARQ-ACK, and Whether the SR is positive.
  • PUCCH format 1 resource PUCCH-0
  • the HARQ-ACK and the plurality of overlapping SRs may be simultaneously transmitted on the HARQ-ACK resource, in one manner, the correspondence between the combined state of the multiple SRs and the corresponding cyclic shift is defined in advance.
  • the terminal uses the cyclic shift transmission HARQ-ACK corresponding to the combined state of the multiple SRs to implicitly express the states of the multiple SRs, for example, the first SR is 1 (for example, represents a positive SR), and the second SR is 0 ( For example, the negative SR) is used to transmit the HARQ-ACK on the transmission resource of the HARQ-ACK by using a cyclic shift corresponding to the combined state 10 of the SR, and the base station applies the same mapping manner to determine that the terminal transmits more.
  • the first SR is 1 (for example, represents a positive SR)
  • the second SR is 0 (
  • the negative SR) is used to transmit the HARQ-ACK on the transmission resource of the HARQ-ACK by using a cyclic shift corresponding to the combined state 10 of the SR, and the base station applies the same mapping manner to determine that the terminal transmits more.
  • the specific state of each SR in the SR is to logically operate the feedback states of multiple SRs, such as logical AND OR logical, to obtain a combined SR and HARQ-ACK in HARQ-
  • the ACK resources are transmitted simultaneously, and the specific transmission method is the same as the above example 3.
  • the HARQ-ACK in the foregoing example 3 is used in the same manner as the SR switching position, that is, the first UCI is an SR, and the second UCI is a HARQ-ACK.
  • the foregoing manner is also applicable, that is, a HARQ-ACK and an SR may be selected.
  • the resources of the SR are simultaneously transmitted, and multiple HARQ-ACKs may be simultaneously transmitted on the resources of the SR together with the SR, or multiple HARQ-ACKs may be logically operated and then transmitted together with the SR on the resources of the SR, where
  • the SR state is implicitly expressed on the resources of the SR by cyclically shifting the HARQ-ACK corresponding to different SR states.
  • the first uplink control is simultaneously transmitted on the first transmission resource.
  • Information and at least one second uplink control information provide clear transmission and reception methods of uplink control information to ensure normal operation of the system.
  • some embodiments of the present disclosure further provide a terminal, including: a transceiver 920, a memory 910, a processor 900, and a computer program stored on the memory 910 and executable on the processor 900.
  • the processor 900 is configured to read a program in the memory 910 and perform the following process:
  • the transceiver 920 is configured to simultaneously transmit the first uplink control information and the at least one part on the first transmission resource.
  • the second uplink control information is the uplink control information carried on the at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the transceiver 920 is further configured to:
  • the transceiver 920 is further configured to:
  • the processor 900 is further configured to:
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the first uplink control is simultaneously transmitted on the first transmission resource.
  • Information and at least one second uplink control information provide a clear method of transmitting uplink control information to ensure normal operation of the system.
  • the terminal provided by some embodiments of the present disclosure is a terminal capable of performing the foregoing method for transmitting uplink control information, and all embodiments of the foregoing method for transmitting uplink control information are applicable to the terminal, and both can achieve the same or Similar benefits.
  • some embodiments of the present disclosure further provide an apparatus for transmitting uplink control information, including:
  • the first resource determining module 100 is configured to determine a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information;
  • the transmitting module 110 is configured to simultaneously transmit the first uplink control information and the at least one part on the first transmission resource when the first transmission resource and the at least two second transmission resources overlap in the time domain.
  • the second uplink control information is the uplink control information carried on the at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the transmitting module includes:
  • the first transmission submodule is configured to simultaneously transmit the first uplink control information and the at least two second uplink control information respectively carried on the at least two second transmission resources on the first transmission resource.
  • the transmitting module includes:
  • a second transmission submodule configured to simultaneously transmit the first uplink control information and one of the at least two second uplink control information respectively carried on the at least two second transmission resources on the first transmission resource
  • the second uplink control information is preset.
  • the device further includes:
  • the second determining module is configured to determine that the first uplink control information and the second uplink control information are simultaneously transmitted.
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the first uplink control is simultaneously transmitted on the first transmission resource.
  • Information and at least one second uplink control information provide a clear method of transmitting uplink control information to ensure normal operation of the system.
  • the apparatus for transmitting uplink control information provided by some embodiments of the present disclosure is a transmission apparatus for performing uplink control information of the foregoing method for transmitting uplink control information, and all embodiments of the foregoing method for transmitting uplink control information are applicable. The same or similar benefits can be achieved with the transmission device.
  • Some embodiments of the present disclosure also provide a computer readable storage medium storing a computer program, the computer program being executed by a processor to implement the method for transmitting uplink control information as described above.
  • the computer readable storage medium such as a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
  • some embodiments of the present disclosure further provide a base station, including: a transceiver 920, a memory 910, a processor 900, and a computer program stored on the memory 910 and executable on the processor 900.
  • the processor 900 is configured to read a program in the memory 910, and perform the following processes: determining a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information;
  • the transceiver 920 is configured to simultaneously receive the first uplink control information and at least one part on the first transmission resource.
  • the second uplink control information is the uplink control information carried on the at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the transceiver 920 is further configured to:
  • the transceiver 920 is further configured to:
  • the processor 900 is further configured to:
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the first uplink control is simultaneously received on the first transmission resource.
  • Information and at least one second uplink control information provide clear method of receiving uplink control information to ensure normal operation of the system.
  • the base station provided by some embodiments of the present disclosure is a base station capable of performing the foregoing method for receiving uplink control information, and all embodiments of the foregoing method for receiving uplink control information are applicable to the base station, and all can reach the same or Similar benefits.
  • some embodiments of the present disclosure further provide an apparatus for receiving uplink control information, including:
  • a second resource determining module 111 configured to determine a first transmission resource of the first uplink control information, and a second transmission resource of the second uplink control information
  • the receiving module 112 is configured to receive the first uplink control information and the at least one second simultaneously on the first transmission resource when the first transmission resource overlaps with the at least two second transmission resources in the time domain.
  • Uplink control information, where the at least one second uplink control information is uplink control information carried on at least two second transmission resources that overlap with the first transmission resource in the time domain.
  • the receiving module includes:
  • the first receiving submodule is configured to receive, on the first transmission resource, the first uplink control information and the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the receiving module includes:
  • a second receiving submodule configured to receive, on the first transmission resource, one of the first uplink control information and the at least two second uplink control information respectively carried on the at least two second transmission resources
  • the second uplink control information is preset.
  • the device further includes:
  • the first determining module is configured to determine that the first uplink control information and the second uplink control information are simultaneously transmitted.
  • the first uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request;
  • the second uplink control information is: hybrid automatic repeat request acknowledgement information, channel state information, or a scheduling request.
  • the preset second uplink control information is determined according to at least one of the following manners:
  • the preset second uplink control information is the first second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the last second uplink control information of the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is a second uplink control information with the highest priority among the at least two second uplink control information respectively carried on the at least two second transmission resources;
  • the preset second uplink control information is the second uplink control information that meets the processing delay among the at least two second uplink control information respectively carried on the at least two second transmission resources.
  • the first uplink control is simultaneously received on the first transmission resource.
  • Information and at least one second uplink control information provide clear method of receiving uplink control information to ensure normal operation of the system.
  • the apparatus for receiving the uplink control information provided by some embodiments of the present disclosure is the apparatus for receiving the uplink control information of the method for receiving the uplink control information, and all the embodiments of the method for receiving the uplink control information are applicable. The same or similar benefits can be achieved with the receiving device.
  • Some embodiments of the present disclosure also provide a computer readable storage medium storing a computer program, the computer program being executed by a processor to implement the method for receiving uplink control information as described above. Each process can achieve the same technical effect. To avoid repetition, it will not be repeated here.
  • the computer readable storage medium such as a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.

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Abstract

本公开提供一种上行控制信息的传输方法、接收方法、终端、基站及装置,该传输方法:确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。

Description

上行控制信息的传输方法、接收方法、终端、基站及装置
相关申请的交叉引用
本申请主张在2018年3月1日在中国提交的中国专利申请号No.201810172420.6的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及通信技术领域,尤其是指一种上行控制信息的传输方法、接收方法、终端、基站及装置。
背景技术
在NR(New RAT,新空口)系统中,定义了NR PUCCH(Physical Uplink Control Channel,物理上行控制信道)格式format包括:format0、format 1、format 2、format 3以及format 4,共5种PUCCH format。其中,PUCCH format 0和1可以承载1~2比特UCI(Uplink Control Information,上行控制信息)传输,PUCCH format2、3和4可以承载大于2比特UCI传输;PUCCH format 0和2属于短PUCCH,占用1到2个符号传输,PUCCH format 1、3、4属于长PUCCH,可占用4到14个符号传输。
SR(Scheduling Request,调度请求)可以使用PUCCH format 0或1传输。高层信令预先配置SR的传输周期和偏移,根据传输周期和偏移,可以确定SR的传输机会。在SR的传输机会中,如果存在正SR(即positive SR),则使用高层信令预先配置给SR一个PUCCH format传输SR,如果为负SR(即negative SR),则不传输。
HARQ-ACK(Hybrid Automatic Repeat request-ACK混合自动重传请求确认)可以使用这5中format中的任何一种。当HARQ-ACK为1或2比特时,被配置使用PUCCH format 0或1传输;当HARQ-ACK超过2比特时,根据比特数在预先配置给终端的多个PUCCH资源集合中选择一个,其中,每个PUCCH资源集合对应一个比特数范围,在选择的PUCCH资源集合中,根据HARQ-ACK对应的PDCCH(Physical Downlink Control Channel,物理下行控制信道) 所使用的DCI(Downlink Control Information,下行控制信息)格式中的HARQ-ACK资源指示域选择一个PUCCH资源,在该选择的PUCCH资源上传输HARQ-ACK。
周期CSI(Channel State Information,信道状态信息)可以配置使用PUCCH format 2或3或4传输,将待传输的周期CSI经过信道编码和速率匹配后,映射到除了导频以外的PUCCH资源上进行传输。
综上,随着移动通信业务需求的发展变化,ITU(International Telecommunication Union,国际电信联盟)和3GPP等组织都开始研究新的无线通信系统(例如5G NR,5 Generation New RAT)。目前5G NR中,HARQ-ACK可以使用NR PUCCH format 0或1或2或3或4传输,SR可以使用NR PUCCH format 0或1传输,周期CSI可以使用NR PUCCH format 2或3或4传输。在NR系统中,不同UCI的PUCCH相关参数独立配置,不同的UCI的传输资源和所使用的PUCCH格式独立配置;例如,如图1所示,当一种UCI在PUCCH上传输所占用的符号个数较大时,可能会在该UCI的传输时域范围内存在另一种UCI的多次传输,由于终端在一个载波上的一个上行时刻只能传输一个PUCCH,此时如何传输UCI还没有明确方法。
发明内容
本公开的目的在于提供一种上行控制信息的传输方法、接收方法、终端、基站及装置,以解决现有技术中不同上行控制信息的传输资源在时域上存在重叠时上行控制信息没有明确传输方法的问题。
为了解决上述问题,本公开实施例提供一种上行控制信息的传输方法,包括:
确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
其中,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
其中,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
其中,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息的步骤之前,所述传输方法还包括:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。
其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
其中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
本公开实施例还提供一种上行控制信息的接收方法,包括:
确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所 述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
其中,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
其中,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
其中,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息的步骤之前,所述方法还包括:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。
其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
其中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
本公开实施例还提供一种终端,包括:收发机、存储器、处理器及存储 在所述存储器上并可在所述处理器上运行的计算机程序;所述处理器用于读取存储器中的程序,执行下列过程:
确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,所述收发机用于在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
其中,所述收发机还用于:
在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
其中,所述收发机还用于:
在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
其中,所述处理器还用于:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。
其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
其中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
本公开实施例还提供一种上行控制信息的传输装置,包括:
第一资源确定模块,用于确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
传输模块,用于当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
本公开实施例还提供一种计算机可读存储介质,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如上所述的上行控制信息的传输方法的步骤。
本公开实施例还提供一种基站,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序;所述处理器用于读取存储器中的程序,执行下列过程:确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,所述收发机用于在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
其中,所述收发机还用于:
在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
其中,所述收发机还用于:
在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
其中,所述处理器还用于:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。
其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
其中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
本公开实施例还提供一种上行控制信息的接收装置,包括:
第二资源确定模块,用于确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
接收模块,用于所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
本公开实施例还提供一种计算机可读存储介质,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如上所述的上行控制信息的接收方法的步骤。
本公开的上述技术方案至少具有如下有益效果:
本公开实施例的上行控制信息的传输方法、接收方法、终端、基站及装置中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时, 在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;本公开实施例给出了明确的上行控制信息的传输方法,保证系统的正常工作。
附图说明
图1表示现有技术中多个上行控制信息的传输原理图;
图2表示本公开一些实施例提供的上行控制信息的传输方法的步骤流程图;
图3表示本公开一些实施例提供的上行控制信息的接收方法的步骤流程图;
图4表示本公开一些实施例提供的示例一中上行控制信息的传输及接收原理图之一;
图5表示本公开一些实施例提供的示例一中上行控制信息的传输及接收原理图之二;
图6表示本公开一些实施例提供的示例二中上行控制信息的传输及接收原理图之一;
图7表示本公开一些实施例提供的示例二中上行控制信息的传输及接收原理图之二;
图8表示本公开一些实施例提供的示例三中上行控制信息的传输及接收原理图;
图9表示本公开一些实施例提供的终端及基站的结构示意图;
图10表示本公开一些实施例提供的上行控制信息的传输装置的结构示意图;
图11表示本公开一些实施例提供的上行控制信息的接收装置的结构示意图。
具体实施方式
为使本公开要解决的技术问题、技术方案和优点更加清楚,下面将结合附图及具体实施例进行详细描述。
如图2所示,本公开一些实施例提供一种上行控制信息的传输方法,包括:
步骤21,确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源。
本步骤中,所述第一上行控制信息为:混合自动重传请求确认信息HARQ-ACK、信道状态信息CSI或者调度请求SR;所述第二上行控制信息为:混合自动重传请求确认信息HARQ-ACK、信道状态信息CSI或者调度请求SR。
步骤22,所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
可选的,第一传输资源所占用的符号较大,例如第一传输资源为PUCCH资源时,其对应的PUCCH为长PUCCH,可占用4到14个符号。而由于第一传输资源与至少两个第二传输资源在时域上存在重叠,故第二传输资源所占用的符号较小;例如第二传输资源为PUCCH资源时,其对应的PUCCH为短PUCCH,可占用1到2个符号;当然也不排除,第一传输资源和第二传输资源都是长PUCCH的传输资源,但第一传输资源的时域长度大于第二传输资源的时域长度,例如第一传输资源在时域上占用14个符号,一个第二传输资源在时域上占用4个符号等;当然也不排除,第一传输资源和第二传输资源都是短PUCCH的传输资源,但第一传输资源的时域长度大于第二传输资源的时域长度,例如第一传输资源在时域上占用2个符号,一个第二传输资源在时域上占用1个符号等。
需要说明的是,在时域上与第一传输资源存在重叠的至少两个第二传输资源可以是同一种第二上行控制信息的多次传输的传输资源,也可以是不同种第二上行控制信息分别对应的传输资源。例如第二上行控制信息为CSI时,第二传输资源可以是根据CSI配置的不同周期确定的不同传输机会,或者是同一个传输周期下的两个CSI传输机会(比如周期配的比较短);又例如第二上行控制信息为SR时,第二传输资源可以是根据SR配置的不同周期确定的不同传输机会,每个传输机会可以对应不同的SR配置,当然也可以是同一个 SR配置(对应同一个周期)下的多个SR传输机会(比如周期配的比较短);又例如第二上行控制信息为HARQ-ACK时,第二传输资源可以是根据不同的DCI中的HARQ-ACK资源指示域确定的不同的符号位置。
可选的,本公开的上述实施例中,步骤22包括:
步骤221,在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
或者,步骤22包括:
步骤222,在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
例如,在时域上与第一传输资源存在重叠的第二传输资源的个数为2个,在本公开一些实施例提供两种传输方法:第一种传输方法为,在所述第一传输资源上同时传输第一上行控制信息和2个第二上行控制信息,该2个上行控制信息为重叠的2个第二传输资源上的2个上行控制信息;第二种传输方法为,在所述第一传输资源上同时传输第一上行控制信息和一个预设第二上行控制信息,该预设第二上行控制信息为重叠的2个第二传输资源上的2个第二上行控制信息中的一个上行控制信息。
进一步的,本公开的上述实施例中,步骤22之前,所述传输方法还包括:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。即步骤22之前,终端需判断第一上行控制信息和第二上行控制信息是否同时传输,若第一上行控制信息和第二上行控制信息同时传输,则继续执行步骤22;否则,仅传输第一上行控制信息或者仅传输第二上行控制信息。
可选的,本公开的上述实施例中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的 至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息;即按照处理时间确定可以在所述第一传输资源传输之前完成传输准备的第二上行控制信息,相应的第二上行控制信息为满足处理时延的第二上行控制信息,例如在所述第一上行控制信息进行编码或映射之前可以获得的第二上行控制信息为满足处理时延的第二上行控制信息。
需要说明的是,上述满足处理时延的第二上行控制信息可以是一个也可以是多个,当满足处理时延的第二上行控制信息的数量为多个时,可进一步依据其他条件来从中选择一个第二上行控制信息;其他条件包括:第二上行控制信息的优先级或者第二上行控制信息的排列顺序等,在此不作具体限定;当然,也可以不进一步结合其他优先级,而将满足处理时延的多个第二上行控制信息与第一上行控制信息同时传输。
综上,本公开的上述实施例提供的上行控制信息的传输方法中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的传输方法,保证系统的正常工作。
如图3所示,本公开一些实施例还提供一种上行控制信息的接收方法,包括:
步骤31,确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源。
本步骤中,所述第一上行控制信息为:混合自动重传请求确认信息HARQ-ACK、信道状态信息CSI或者调度请求SR;所述第二上行控制信息为:混合自动重传请求确认信息HARQ-ACK、信道状态信息CSI或者调度请求SR。
步骤32,所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
可选的,第一传输资源所占用的符号较大,例如第一传输资源为PUCCH资源时,其对应的PUCCH为长PUCCH,可占用4到14个符号。而由于第一传输资源与至少两个第二传输资源在时域上存在重叠,故第二传输资源所占用的符号较小;例如第二传输资源为PUCCH资源时,其对应的PUCCH为短PUCCH,可占用1到2个符号;当然也不排除,第一传输资源和第二传输资源都是长PUCCH的传输资源,但第一传输资源的时域长度大于第二传输资源的时域长度,例如第一传输资源在时域上占用14个符号,一个第二传输资源在时域上占用4个符号等;当然也不排除,第一传输资源和第二传输资源都是短PUCCH的传输资源,但第一传输资源的时域长度大于第二传输资源的时域长度,例如第一传输资源在时域上占用2个符号,一个第二传输资源在时域上占用1个符号等。
需要说明的是,在时域上与第一传输资源存在重叠的至少两个第二传输资源可以是同一种第二上行控制信息的多次传输的传输资源,也可以是不同种第二上行控制信息分别对应的传输资源。例如第二上行控制信息为CSI时,第二传输资源可以是根据CSI配置的不同周期确定的不同传输机会,或者是同一个传输周期下的两个CSI传输机会(比如周期配的比较短);又例如第二上行控制信息为SR时,第二传输资源可以是根据SR配置的不同周期确定的不同传输机会,每个传输机会可以对应不同的SR配置,当然也可以是同一个SR配置(对应同一个周期)下的多个SR传输机会(比如周期配的比较短);又例如第二上行控制信息为HARQ-ACK时,第二传输资源可以是根据不同的DCI中的HARQ-ACK资源指示域确定的不同的符号位置。
可选的,本公开的上述实施例中,步骤32包括:
步骤321,在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
或者,步骤32包括:
步骤322,在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
例如,在时域上与第一传输资源存在重叠的第二传输资源的个数为2个, 在本公开一些实施例提供两种接收方法:第一种接收方法为,在所述第一传输资源上同时接收第一上行控制信息和2个第二上行控制信息,该2个上行控制信息为重叠的2个第二传输资源上的2个上行控制信息;第二种接收方法为,在所述第一传输资源上同时接收第一上行控制信息和一个预设第二上行控制信息,该预设第二上行控制信息为重叠的2个第二传输资源上的2个第二上行控制信息中的一个上行控制信息。
进一步的,本公开的上述实施例中,步骤32之前,所述方法还包括:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。即步骤32之前,基站需判断第一上行控制信息和第二上行控制信息是否同时传输,若第一上行控制信息和第二上行控制信息同时传输,则继续执行步骤32;否则,仅接收第一上行控制信息或者仅接收第二上行控制信息。
可选的,本公开的上述实施例中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息;即按照处理时间确定可以在所述第一传输资源传输之前完成传输准备的第二上行控制信息,相应的第二上行控制信息为满足处理时延的第二上行控制信息,例如在所述第一上行控制信息进行编码或映射之前可以获得的第二上行控制信息为满足处理时延的第二上行控制信息。
需要说明的是,上述满足处理时延的第二上行控制信息可以是一个也可以是多个,当满足处理时延的第二上行控制信息的数量为多个时,可进一步依据其他条件来从中选择一个第二上行控制信息;其他条件包括:第二上行控制信息的优先级或者第二上行控制信息的排列顺序等,在此不作具体限定; 当然,也可以不进一步结合其他优先级,而将满足处理时延的多个第二上行控制信息与第一上行控制信息同时传输。
综上,本公开的上述实施例提供的上行控制信息的接收方法中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的接收方法,保证系统的正常工作。
为了更详细的对本公开一些实施例提供的上行控制信息的传输方法和接收方法进行描述,下面结合附图和示例对本公开一些实施例进行具体描述。
示例一
如图4及图5所示,第一上行控制信息UCI为HARQ-ACK,第二上行控制信息UCI为SR。其中,HARQ-ACK(图4中将HARQ-ACK简称为AN)使用PUCCH format 3或4传输,即HARQ-ACK的传输资源为PUCCH format 3或4资源,假设每个PUCCH format 3或4资源占用8个符号传输;SR使用PUCCH format 0传输,即SR的传输资源为PUCCH format 0资源,假设1个PUCCH format 0资源占用2个符号传输。
假设存在两个SR的传输资源(如图4及图5中所示的PUCCH-1和PUCCH-2)与HARQ-ACK的传输资源(如图4及图5中所示的PUCCH-0)在时域上重叠,此时确定使用HARQ-ACK的传输资源(即第一传输资源)同时传输HARQ-ACK和SR。例如,X比特SR与HARQ-ACK通过联合编码在HARQ-ACK的传输资源上同时传输。其中,X为
Figure PCTCN2019076261-appb-000001
K为时域上存在重叠的SR配置的个数,或者K为配置给终端的SR配置的个数,即不论SR为正SR(positive SR)还是负SR(negative SR),都需要传输X比特SR。则:
第一种实施方式为:如图4所示,在HARQ-ACK的传输资源上同时传输HARQ-ACK和所有与之重叠的SR。假设HARQ-ACK重叠的两个SR分别为两种SR配置的SR传输机会,终端在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时传输SR和HARQ-ACK,例如采用X比特SR与HARQ-ACK联合编码的方式,其中X根据配置给终端的SR配置的个数确定,即X比特SR包含了两种SR配置的SR;再例如,按照SR配置编号的顺序,X比特中的1比 特对应一个SR配置,通过该1比特为1或0表达该SR配置的SR为positive还是negative,如果在HARQ-ACK进行准备处理(例如信道编码)时无法获知某个SR的传输资源上是否为positive SR,则假设为negative SR。需要说明的是,终端在SR的资源上则不需要传输PUCCH了。
基站侧按照同终端的方式,在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时接收X比特SR和对应的HARQ-ACK,则可以根据每个SR配置与X比特SR的对应关系同时获得多个SR配置的SR反馈状态。
第二种实施方式为:如图5所示,在HARQ-ACK的传输资源上同时传输HARQ-ACK和部分与之重叠的SR。例如总是选择第一个SR传输资源上的SR,或选择多个SR中优先级最高的一个SR(例如根据不同的SR配置所对应的业务类型,反馈周期等,假设选择结果为第一个SR)。终端在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时传输第一个SR传输资源上的SR和HARQ-ACK。例如采用X1比特SR与HARQ-ACK联合编码的方式,其中X1是根据配置给终端的在PUCCH-1所在的SR传输机会中重叠的SR配置的个数确定的;如果在HARQ-ACK进行准备处理(例如信道编码)时无法获知某个SR的传输资源上是否为positive SR,则假设为negative SR;需要说明的是,终端在SR的资源上则不需要传输PUCCH了。
基站侧按照同终端的方式,在HARQ-ACK的PUCCH format 3或4资源上(PUCCH-0)同时接收X1比特SR和对应的HARQ-ACK,则可以根据约定的规则,确定该X1比特SR为PUCCH-1所在的SR传输机会中的SR的状态。
需要说明的是,作为另一种实施方式,将上述示例一中的第一上行控制信息替换为CSI同样适用,但需要根据高层信令的配置判断是否支持CSI与SR同时传输,如果支持则按照上述示例一的方式操作;如果不支持则只传输其中一种,例如选择SR,丢弃CSI。在将上述示例一中的第一上行控制信息替换为CSI的基础上,进一步的,将上述示例一中的一个SR替换为HARQ-ACK,且HARQ-ACK被配置使用PUCCH format2占用2个符号传输时,同样适用,此时,如果采用选择一个预设第二上行控制信息与第一上行控制信息同时传输的方法,还可以根据上行控制信息的类型的优先级选择一种上行控制信息。例如HARQ-ACK的优先级高于SR,则选择HARQ-ACK,丢弃SR。
需要说明的是,作为另一种实施方式,将上述示例中的一个SR替换为CSI,且CSI被配置使用PUCCH format2占用2个符号传输时,同样适用,此时,如果采用选择一个预设第二上行控制信息与第一上行控制信息同时传输的方法,还可以根据上行控制信息的类型的优先级选择一种上行控制信息,例如SR优先级高于CSI,则选择SR,丢弃CSI。
示例二
如图6及图7所示,第一上行控制信息UCI为HARQ-ACK,第二上行控制信息UCI为CSI。其中,HARQ-ACK(图4中将HARQ-ACK简称为AN)使用PUCCH format 3或4传输,即HARQ-ACK的传输资源为PUCCH format 3或4资源,假设每个PUCCH format 3或4资源占用8个符号传输;CSI使用PUCCH format 2传输,即CSI的传输资源为PUCCH format 2资源,假设1个PUCCH format 2资源占用2个符号传输。
假设存在两个CSI的传输资源(如图6及图7中所示的PUCCH-1和PUCCH-2)与HARQ-ACK的传输资源(如图6及图7中所示的PUCCH-0)在时域上重叠,并根据高层信令的配置确定支持CSI和HARQ-ACK同时传输,此时确定使用HARQ-ACK的传输资源(即第一传输资源)同时传输HARQ-ACK和CSI。例如CSI与HARQ-ACK通过联合编码或独立编码在HARQ-ACK的资源上同时传输,则:
第一种实施方式为:如图6所示,在HARQ-ACK的传输资源上同时传输HARQ-ACK和所有与之重叠的CSI。终端在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时传输2个CSI(A1+A2比特的CSI)和HARQ-ACK,如果在HARQ-ACK进行准备处理(例如信道编码)时无法获知某个CSI的传输资源上的CSI,则假设为占位信息,例如为预设的值(全0或全1等);终端在CSI的传输资源上则不需要传输PUCCH了;其中,A1和A2比特数可能相同,也可能不同,当A1=A2时,A1比特CSI和A2比特CSI的具体内容可能相同,也可能不同。
基站按照同终端的方式,在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时接收2个CSI和对应的HARQ-ACK,则可以同时获得2个CSI反馈,其中不同的CSI可能是对应不同业务类型的,也可能是具有不同的配 置类型的。
第二种实施方式为:如图7所示,在HARQ-ACK的传输资源上同时传输HARQ-ACK和部分与之重叠的CSI。例如总是选择第一个CSI传输资源上的CSI,或选择多个CSI中优先级最高的一个CSI(例如根据CSI的配置类型,对应的业务等,假设选择结果为第一个CSI),或选择多个CSI中能够在HARQ-ACK进行传输准备(例如信道编码)时获得该CSI具体信息的CSI(因为CSI需要与HARQ-ACK一同进行信道编码时,需要在编码之前知道准确的CSI信息,但CSI的测量资源以及CSI测量所需要的时间可能不足以达到在HARQ-ACK进行信道编码的时刻能够获取实际的CSI,假设选择结果为第一个CSI)。终端在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时传输选择的CSI(A1比特CSI)和HARQ-ACK,终端在CSI的传输资源上则不需要传输PUCCH了。
基站按照同终端的方式,在HARQ-ACK的PUCCH format3或4资源上(PUCCH-0)同时接收选择的CSI和对应的HARQ-ACK,则可以按照与终端侧相同规则,确定该传输的CSI为哪个CSI传输资源上的CSI。
需要说明的是,上述示例二中HARQ-ACK与CSI交换位置同样使用,即假设第一UCI为CSI,第二UCI为HARQ-ACK,其中HARQ-ACK可以被配置使用PUCCH format 0传输时上述方式同样适用。进一步的,在假设第一UCI为CSI,第二UCI为HARQ-ACK的基础上,将一个HARQ-ACK替换为SR时,同样适用,此时,如果采用选择一个第二上行控制信息与第一上行控制信息同时传输的方法,还可能根据上行控制信息的类型的优先级选择一种UCI,例如HARQ-ACK优先级高于SR,则选择HARQ-ACK,丢弃SR。
示例三
如图8所示,第一上行控制信息为HARQ-ACK,第二上行控制信息为SR。其中,HARQ-ACK(图8简称为AN)使用PUCCH format 1传输,即HARQ-ACK的传输资源为PUCCH format 1资源,假设每个PUCCH format 1资源占用8个符号传输;SR使用PUCCH format 0传输,即SR的传输资源为PUCCH format 0资源,假设1个PUCCH format 0资源占用2个符号传输。
假设存在两个SR的传输资源(如图8中所示的PUCCH-1和PUCCH-2)与 HARQ-ACK的传输资源(如图8中所示的PUCCH-0)在时域上重叠,此时确定使用HARQ-ACK的传输资源(即第一传输资源)同时传输HARQ-ACK和SR,例如通过选择的SR对应的循环移位传输HARQ-ACK来隐式表达同时存在某个SR传输。
则,如图8所示,在HARQ-ACK的传输资源上同时传输HARQ-ACK和部分与之重叠的SR。例如总是选择第一个SR传输资源上的SR,或选择多个SR中优先级最高的一个SR(例如根据不同的SR配置所对应的业务类型,反馈周期等,假设选择结果为第一个SR)。
终端在HARQ-ACK的PUCCH format 1资源上(PUCCH-0)同时传输SR和HARQ-ACK,并通过选择的SR对应的循环移位传输HARQ-ACK来隐式表达同时存在某个SR传输。如果在HARQ-ACK进行准备处理(例如信道编码)时无法获知某个SR的传输资源上是否为positive SR,则假设为negative SR;终端在SR的资源上则不需要传输PUCCH了。
基站侧按照同终端的方式,在HARQ-ACK的PUCCH format 1资源(PUCCH-0)上接收HARQ-ACK,并根据接收到HARQ-ACK所使用的循环移位资源确定同时传输了哪个SR,以及该SR是否为positive。
当然,此时也可以在HARQ-ACK的资源上同时传输HARQ-ACK以及多个与之重叠的SR,一种方式为,预先定义多个SR的组合状态与对应的循环移位的对应关系,终端采用与多个SR的组合状态对应的循环移位传输HARQ-ACK,从而隐式表达多个SR的状态,例如第一个SR为1(例如表示positive SR),第二个SR为0(例如表示negative SR),使用预先约定或配置的与SR的组合状态10相对应的循环移位在HARQ-ACK的传输资源上传输HARQ-ACK,基站适用同样的映射方式,可以确定终端传输的多个SR中的每个SR的具体状态;另一种方式为,将多个SR的反馈状态进行逻辑运算,例如逻辑与或逻辑或,将得到的一个合并后的SR与HARQ-ACK在HARQ-ACK的资源上同时传输,具体传输方式同上述示例三。
需要说明的是,上述示例三中HARQ-ACK与SR交换位置同样使用,即假设第一UCI为SR,第二UCI为HARQ-ACK时上述方式同样适用,即可以选择一个HARQ-ACK与SR在SR的资源上同时传输,也可以将多个HARQ-ACK与SR 一起在SR的资源上同时传输,或者,将多个HARQ-ACK进行逻辑运算之后与SR一起在SR的资源上同时传输,其中,在SR的资源上通过对应不同SR状态的循环移位传输HARQ-ACK来隐式表达SR状态。
综上,本公开的上述实施例中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的传输及接收方法,保证系统的正常工作。
如图9所示,本公开一些实施例还提供一种终端,包括:收发机920、存储器910、处理器900及存储在所述存储器910上并可在所述处理器900上运行的计算机程序;所述处理器900用于读取存储器910中的程序,执行下列过程:
确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,所述收发机920用于在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
可选的,本公开的上述实施例中,所述收发机920还用于:
在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
可选的,本公开的上述实施例中,所述收发机920还用于:
在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
可选的,本公开的上述实施例中,所述处理器900还用于:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。
可选的,本公开的上述实施例中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
可选的,本公开的上述实施例中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
综上,本公开的上述实施例中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的传输方法,保证系统的正常工作。
需要说明的是,本公开一些实施例提供的终端是能够执行上述上行控制信息的传输方法的终端,则上述上行控制信息的传输方法的所有实施例均适用于该终端,且均能达到相同或相似的有益效果。
如图10所示,本公开一些实施例还提供一种上行控制信息的传输装置,包括:
第一资源确定模块100,用于确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
传输模块110,用于当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
可选的,本公开的上述实施例中,所述传输模块包括:
第一传输子模块,用于在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
可选的,本公开的上述实施例中,所述传输模块包括:
第二传输子模块,用于在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
可选的,本公开的上述实施例中,所述装置还包括:
第二确定模块,用于确定所述第一上行控制信息和所述第二上行控制信息同时传输。
可选的,本公开的上述实施例中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
可选的,本公开的上述实施例中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
综上,本公开的上述实施例中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的传输方法,保证系统的正常工作。
需要说明的是,本公开一些实施例提供的上行控制信息的传输装置是能 够执行上述上行控制信息的传输方法的上行控制信息的传输装置,则上述上行控制信息的传输方法的所有实施例均适用于该传输装置,且均能达到相同或相似的有益效果。
本公开一些实施例还提供一种计算机可读存储介质,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如上所述的上行控制信息的传输方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,所述的计算机可读存储介质,如只读存储器(Read-Only Memory,简称ROM)、随机存取存储器(Random Access Memory,简称RAM)、磁碟或者光盘等。
如图9所示,本公开一些实施例还提供一种基站,包括:收发机920、存储器910、处理器900及存储在所述存储器910上并可在所述处理器900上运行的计算机程序;所述处理器900用于读取存储器910中的程序,执行下列过程:确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,所述收发机920用于在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
可选的,本公开的上述实施例中,所述收发机920还用于:
在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
可选的,本公开的上述实施例中,所述收发机920还用于:
在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
可选的,本公开的上述实施例中,所述处理器900还用于:
确定所述第一上行控制信息和所述第二上行控制信息同时传输。
可选的,本公开的上述实施例中,所述第一上行控制信息为:混合自动 重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
可选的,本公开的上述实施例中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
综上,本公开的上述实施例中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的接收方法,保证系统的正常工作。
需要说明的是,本公开一些实施例提供的基站是能够执行上述上行控制信息的接收方法的基站,则上述上行控制信息的接收方法的所有实施例均适用于该基站,且均能达到相同或相似的有益效果。
如图11所示,本公开一些实施例还提供一种上行控制信息的接收装置,包括:
第二资源确定模块111,用于确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
接收模块112,用于所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
可选的,本公开的上述实施例中,所述接收模块包括:
第一接收子模块,用于在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
可选的,本公开的上述实施例中,所述接收模块包括:
第二接收子模块,用于在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
可选的,本公开的上述实施例中,所述装置还包括:
第一确定模块,用于确定所述第一上行控制信息和所述第二上行控制信息同时传输。
可选的,本公开的上述实施例中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
可选的,本公开的上述实施例中,所述预设第二上行控制信息按照下述至少一种方式确定:
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
综上,本公开的上述实施例中,当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;本公开一些实施例给出了明确的上行控制信息的接收方法,保证系统的正常工作。
需要说明的是,本公开一些实施例提供的上行控制信息的接收装置是能够执行上述上行控制信息的接收方法的上行控制信息的接收装置,则上述上行控制信息的接收方法的所有实施例均适用于该接收装置,且均能达到相同或相似的有益效果。
本公开一些实施例还提供一种计算机可读存储介质,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如上所述的上行控制信息的接收方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,所述的计算机可读存储介质,如只读存储器(Read-Only Memory,简称ROM)、随机存取存储器(Random Access Memory,简称RAM)、磁碟或者光盘等。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。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(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本公开各个实施例所述的方法。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本公开的保护之内。
以上所述是本公开的一些实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本公开所述原理的前提下,还可以做出若干改进和 润饰,这些改进和润饰也应视为本公开的保护范围。

Claims (28)

  1. 一种上行控制信息的传输方法,包括:
    确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
    所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
  2. 根据权利要求1所述的传输方法,其中,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
    在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
  3. 根据权利要求1所述的传输方法,其中,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
    在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
  4. 根据权利要求1所述的传输方法,其中,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息的步骤之前,所述传输方法还包括:
    确定所述第一上行控制信息和所述第二上行控制信息同时传输。
  5. 根据权利要求1所述的传输方法,其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
    所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
  6. 根据权利要求3所述的传输方法,其中,所述预设第二上行控制信息按照下述至少一种方式确定:
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的 至少两个第二上行控制信息中的第一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
  7. 一种上行控制信息的接收方法,包括:
    确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
    所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
  8. 根据权利要求7所述的接收方法,其中,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
    在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
  9. 根据权利要求7所述的接收方法,其中,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息的步骤,包括:
    在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
  10. 根据权利要求7所述的接收方法,其中,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息的步骤之前,所述方法还包括:
    确定所述第一上行控制信息和所述第二上行控制信息同时传输。
  11. 根据权利要求7所述的接收方法,其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
    所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
  12. 根据权利要求9所述的接收方法,其中,所述预设第二上行控制信息按照下述至少一种方式确定:
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
  13. 一种终端,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序;其中,
    所述处理器用于读取存储器中的程序,执行下列过程:
    确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
    所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,所述收发机用于在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
  14. 根据权利要求13所述的终端,其中,所述收发机还用于:
    在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
  15. 根据权利要求13所述的终端,其中,所述收发机还用于:
    在所述第一传输资源上同时传输所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
  16. 根据权利要求13所述的终端,其中,所述处理器还用于:
    确定所述第一上行控制信息和所述第二上行控制信息同时传输。
  17. 根据权利要求13所述的终端,其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
    所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
  18. 根据权利要求15所述的终端,其中,所述预设第二上行控制信息按照下述至少一种方式确定:
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
  19. 一种上行控制信息的传输装置,包括:
    第一资源确定模块,用于确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
    传输模块,用于当所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时传输所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
  20. 一种计算机可读存储介质,其中,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如权利要求1至6中任一项所述的上行控制信息的传输方法的步骤。
  21. 一种基站,包括:收发机、存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序;其中,
    所述处理器用于读取存储器中的程序,执行下列过程:确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
    所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,所述收发机用于在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
  22. 根据权利要求21所述的基站,其中,所述收发机还用于:
    在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息。
  23. 根据权利要求21所述的基站,其中,所述收发机还用于:
    在所述第一传输资源上同时接收所述第一上行控制信息以及所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的一个预设第二上行控制信息。
  24. 根据权利要求21所述的基站,其中,所述处理器还用于:
    确定所述第一上行控制信息和所述第二上行控制信息同时传输。
  25. 根据权利要求21所述的基站,其中,所述第一上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求;
    所述第二上行控制信息为:混合自动重传请求确认信息、信道状态信息或者调度请求。
  26. 根据权利要求23所述的基站,其中,所述预设第二上行控制信息按照下述至少一种方式确定:
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的第一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中的最后一个第二上行控制信息;
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的至少两个第二上行控制信息中优先级最高的一个第二上行控制信息;以及,
    所述预设第二上行控制信息为所述至少两个第二传输资源上分别承载的 至少两个第二上行控制信息中满足处理时延的第二上行控制信息。
  27. 一种上行控制信息的接收装置,包括:
    第二资源确定模块,用于确定第一上行控制信息的第一传输资源,以及第二上行控制信息的第二传输资源;
    接收模块,用于所述第一传输资源与至少两个第二传输资源在时域上存在重叠时,在所述第一传输资源上同时接收所述第一上行控制信息以及至少一个第二上行控制信息;其中,所述至少一个第二上行控制信息为在时域上与所述第一传输资源存在重叠的至少两个第二传输资源上承载的上行控制信息。
  28. 一种计算机可读存储介质,其中,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如权利要求7至12中任一项所述的上行控制信息的接收方法的步骤。
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