WO2025035888A1 - Pucch功率控制参数确定方法、装置及存储介质 - Google Patents

Pucch功率控制参数确定方法、装置及存储介质 Download PDF

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Publication number
WO2025035888A1
WO2025035888A1 PCT/CN2024/095550 CN2024095550W WO2025035888A1 WO 2025035888 A1 WO2025035888 A1 WO 2025035888A1 CN 2024095550 W CN2024095550 W CN 2024095550W WO 2025035888 A1 WO2025035888 A1 WO 2025035888A1
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WIPO (PCT)
Prior art keywords
harq
ack
codebook
pucch
parameter
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PCT/CN2024/095550
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English (en)
French (fr)
Inventor
司倩倩
王俊伟
高雪娟
邢艳萍
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Datang Mobile Communications Equipment Co Ltd
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Datang Mobile Communications Equipment Co Ltd
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Publication of WO2025035888A1 publication Critical patent/WO2025035888A1/zh
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Classifications

    • 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
    • H04W72/0473Wireless resource allocation based on the type of the allocated resource the resource being transmission power
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signalling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W74/00Wireless channel access
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W74/00Wireless channel access
    • H04W74/002Transmission of channel access control information
    • H04W74/004Transmission of channel access control information in the uplink, i.e. towards network

Definitions

  • the present application relates to the field of communication technology, and in particular to a method, device and storage medium for determining a PUCCH power control parameter.
  • HARQ-ACK Hybrid Automatic Repeat Request-Acknowledgement
  • SPS Semi-Persistent Scheduling
  • the HARQ-ACK retransmission codebook when HARQ-ACK codebook retransmission is supported, if there is a HARQ-ACK codebook in the target retransmission time slot, the HARQ-ACK retransmission codebook will be cascaded after the HARQ-ACK codebook in the target retransmission time slot, so that two codebooks are cascaded in the target time slot: the initial codebook (HARQ-ACK codebook in the target retransmission time slot) + HARQ-ACK retransmission codebook.
  • the present application provides a method, device and storage medium for determining a PUCCH power control parameter.
  • a method for determining a PUCCH power control parameter is provided, which is applied to a terminal device, and the method includes:
  • a PUCCH power control parameter is determined according to the configuration of the terminal device and a codebook included in a physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH.
  • a PUCCH power control parameter determination device including a memory, a transceiver, and a processor:
  • a memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations:
  • a PUCCH power control parameter is determined according to the configuration of the terminal device and a codebook included in a physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH.
  • a PUCCH power control parameter determination device comprising:
  • a determination unit is used to determine a PUCCH power control parameter according to the configuration of the terminal device and a codebook included in a physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH.
  • a processor-readable storage medium stores a computer program, and the computer program is used to enable the processor to execute the method described in the embodiment of the first aspect of the present application.
  • the PUCCH power control parameter determination method, device and storage medium provided in the present application determine the PUCCH power control parameters by according to the configuration of the terminal device and the codebook contained in the physical uplink control channel PUCCH, wherein the PUCCH power control parameters are used to determine the power of the PUCCH, thereby solving the technical problem in the related art that it is unclear how to determine the power of the PUCCH in the case of codebook cascading.
  • FIG1 is a schematic diagram of a flow chart of a method for determining a PUCCH power control parameter according to a first embodiment of the present application
  • FIG2 is a schematic diagram of a flow chart of a method for determining a PUCCH power control parameter according to a second embodiment of the present application
  • FIG3 is a schematic diagram of a flow chart of a method for determining a PUCCH power control parameter according to a second embodiment of the present application
  • FIG4 is a schematic diagram of a flow chart of a method for determining a PUCCH power control parameter according to a fourth embodiment of the present application.
  • FIG5 is a schematic diagram of a flow chart of a method for determining a PUCCH power control parameter according to a fifth embodiment of the present application.
  • FIG6 is a schematic flow chart of a method for determining a PUCCH power control parameter according to a sixth embodiment of the present application.
  • FIG7 is a schematic flow chart of a method for determining a PUCCH power control parameter according to a seventh embodiment of the present application.
  • FIG8 is a schematic flow chart of a method for determining a PUCCH power control parameter according to an eighth embodiment of the present application.
  • FIG9 is a schematic flow chart of a method for determining a PUCCH power control parameter according to a ninth embodiment of the present application.
  • FIG10 is a schematic flow chart of a method for determining a PUCCH power control parameter according to the tenth embodiment of the present application.
  • FIG11 is a schematic flow chart of a method for determining a PUCCH power control parameter according to an eleventh embodiment of the present application.
  • FIG12 is a schematic flow chart of a method for determining a PUCCH power control parameter according to the twelfth embodiment of the present application.
  • FIG13 is a schematic diagram of the structure of a device for determining a PUCCH power control parameter according to the thirteenth embodiment of the present application.
  • FIG14 is a schematic diagram of the structure of a PUCCH power control parameter determination device provided according to the fourteenth embodiment of the present application.
  • the term "and/or” describes the association relationship of the associated objects, indicating that three relationships may exist.
  • a and/or B may represent: A exists alone, A and B exist at the same time, and B exists alone.
  • the character "/” generally indicates that the associated objects before and after are in an "or” relationship.
  • the term “plurality” refers to two or more than two, and other quantifiers are similar.
  • NR Rel-17 supports SPS HARQ-ACK delay, and the initial time slot of SPS HARQ-ACK feedback is determined based on K1.
  • the UCI (Uplink Control Information) multiplexing process of Rel-16 is first performed. If the SPS HARQ-ACK after multiplexing is transmitted using the resources configured by SPS-PUCCH-AN-List-r16 or n1PUCCH-AN, and this resource is invalid, the SPS HARQ-ACK configured with SPS HARQ-ACK delay is delayed. Based on the condition of delaying from the initial time slot, it is determined in turn whether the next time slot/sub-time slot is the target time slot until the target time slot is found. The delayed SPS HARQ-ACK feedback bit is attached to the initial HARQ-ACK bit in the target time slot. This method is applicable to Type-1 codebook and Type-2 codebook.
  • NR Rel-17 also supports HARQ-ACK codebook retransmission, that is, triggering the discarded HARQ-ACK to be retransmitted on PUCCH resources through DCI (Downlink Control Information).
  • DCI Downlink Control Information
  • the HARQ-ACK retransmission codebook is cascaded after the initial Type-1 or Type-2 codebook of the same priority.
  • the delayed SPS HARQ-ACK codebook will be appended to the HARQ-ACK retransmission codebook and the initial codebook, that is, three codebook information are cascaded in this time slot, in the order of initial/new codebook, HARQ-ACK retransmission codebook, and SPS delayed codebook.
  • the power adjustment value is calculated based on the UCI parameters carried by PUCCH. Specifically, for PUCCH format 2/3/4 and when the number of UCI bits is less than or equal to 11, the power adjustment value is calculated based on n HARQ-ACK , and for PUCCH format 2/3/4 and when the number of UCI bits is greater than 11, the power adjustment value is calculated based on O ACK .
  • n HARQ-ACK is the calculated number of HARQ-ACK bits
  • O ACK is the number of HARQ-ACK bits carried on PUCCH.
  • an embodiment of the present application provides a PUCCH power control parameter determination method, apparatus and storage medium, which are used to determine the PUCCH power control parameters based on the configuration of the terminal device and the codebook contained in the PUCCH, wherein the PUCCH power control parameters are used to determine the power of the PUCCH, thereby solving the technical problem in the related technology that it is unclear how to determine the power of the PUCCH in the case of codebook cascading.
  • the method and the device are based on the same application concept. Since the method and the device solve the problem in a similar principle, the implementation of the device and the method can refer to each other, and the repeated parts will not be repeated.
  • the applicable system can be the global mobile The global system of mobile communication (GSM) system, code division multiple access (CDMA) system, wideband code division multiple access (WCDMA) general packet radio service (GPRS) system, long term evolution (LTE) system, LTE frequency division duplex (FDD) system, LTE time division duplex (TDD) system, long term evolution advanced (LTE-A) system, universal mobile telecommunication system (UMTS), worldwide interoperability for microwave access (WiMAX) system, 5G new radio (NR) system, etc.
  • GSM global system of mobile communication
  • CDMA code division multiple access
  • WCDMA wideband code division multiple access
  • GPRS general packet radio service
  • LTE long term evolution
  • FDD LTE frequency division duplex
  • TDD LTE time division duplex
  • LTE-A long term evolution advanced
  • UMTS universal mobile telecommunication system
  • WiMAX worldwide interoperability for microwave access
  • NR new radio
  • the system can also include core network parts, such as Evolved
  • the terminal device involved in the embodiments of the present application may be a device that provides voice and/or data connectivity to a user, a handheld device with a wireless connection function, or other processing devices connected to a wireless modem.
  • the name of the terminal device may also be different.
  • the terminal device may be called a user equipment (UE).
  • the wireless terminal device can communicate with one or more core networks (CN) via a radio access network (RAN).
  • CN core networks
  • RAN radio access network
  • the wireless terminal device may be a mobile terminal device, such as a mobile phone (or "cellular" phone) and a computer with a mobile terminal device.
  • it may be a portable, pocket-sized, handheld, computer-built-in or vehicle-mounted mobile device that exchanges language and/or data with a radio access network.
  • a radio access network For example, Personal Communication Service (PCS) phones, cordless phones, Session Initiated Protocol (SIP) phones, Wireless Local Loop (WLL) stations, Personal Digital Assistant (PDA) and other devices.
  • Wireless terminal equipment can also be called system, subscriber unit, subscriber station, mobile station, mobile, remote station, access point, remote terminal equipment, access terminal equipment, user terminal equipment, user agent, user device, and can be selected according to actual needs in the embodiments of the present application.
  • the network device involved in the embodiments of the present application may be a base station, which may include multiple cells providing services to the terminal.
  • the base station may also be called an access point, or may be a device in the access network that communicates with the wireless terminal device through one or more sectors on the air interface, or other names.
  • the network device can be used to interchange received air frames with Internet Protocol (IP) packets, acting as a router between the wireless terminal device and the rest of the access network, wherein the rest of the access network may include an Internet Protocol (IP) communication network.
  • IP Internet Protocol
  • the network device can also coordinate the attribute management of the air interface.
  • the network equipment involved in the embodiments of the present application can be a network equipment (Base Transceiver Station, BTS) in the Global System for Mobile communications (GSM) or Code Division Multiple Access (CDMA), or a network equipment (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or an evolved network equipment (evolutional Node B, eNB or e-NodeB) in the long-term evolution (LTE) system, a 5G base station (gNB) in the 5G network architecture (next generation system), or a home evolved Node B (HeNB), a relay node, a home base station (femto), a pico base station (pico), etc.
  • BTS Base Transceiver Station
  • GSM Global System for Mobile communications
  • CDMA Code Division Multiple Access
  • NodeB Wide-band Code Division Multiple Access
  • evolutional Node B, eNB or e-NodeB evolved network equipment
  • LTE long-term evolution
  • gNB 5G base station
  • Network devices and terminal devices can each use one or more antennas for multiple input multiple output (MIMO) transmission.
  • MIMO transmission can be single user MIMO (SU-MIMO) or multi-user MIMO (MU-MIMO).
  • MIMO transmission can be 2D-MIMO, 3D-MIMO, FD-MIMO or massive-MIMO, or it can be diversity transmission, precoded transmission or beamforming transmission, etc.
  • FIG1 is a schematic flow chart of a method for determining a PUCCH power control parameter according to a first embodiment of the present application.
  • the PUCCH power control parameter determination method of the embodiment of the present application can be performed by the PUCCH power control parameter determination device provided in the embodiment of the present application.
  • the PUCCH power control parameter determination device can be an electronic device, or can be configured in an electronic device.
  • the electronic device can be any stationary or mobile computing device capable of data processing, such as a mobile computing device such as a laptop computer, a smart phone, a wearable device, or a stationary computing device such as a desktop computer, or a server, or other types of computing devices, etc., which can be selected according to actual needs in the embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 101 determining a PUCCH power control parameter according to the configuration of the terminal device and a codebook included in a physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH.
  • the configuration of the terminal device includes at least one of SPS delay and HARQ-ACK retransmission.
  • the codebook included in the PUCCH includes at least one of an initial transmission codebook, an SPS delay codebook, and a HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter may be determined based on the configuration of the terminal device and the codebook included in the PUCCH. For example, in the case where the terminal device is configured with SPS delay and/or HARQ-ACK retransmission, in response to HARQ-ACK being carried in PUCCH format 2/3/4 and the number of UCI feedback bits being greater than 2 and less than or equal to 11, the PUCCH power control parameter n HARQ-ACK may be determined based on the codebook transmission of HARQ-ACK on the PUCCH.
  • the PUCCH power control parameter determination method provided in the present application determines the PUCCH power control parameter by according to the configuration of the terminal device and the codebook contained in the physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH, thereby solving the technical problem in the related art that it is unclear how to determine the power of the PUCCH in the case of codebook cascading.
  • FIG. 1 is a flow chart of the PUCCH power control parameter determination method provided according to the second embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 201 when the configuration of the terminal device includes semi-persistent scheduling SPS delay, determine the PUCCH power control parameter according to the first hybrid automatic repeat request-determined HARQ-ACK parameter and the second HARQ-ACK parameter.
  • the codebook cascade situation of the codebook included in the PUCCH is that the PUCCH contains both the initial transmission codebook and the SPS delay codebook, among which the initial transmission codebook is the initial codebook, which refers to the initial HARQ-ACK bit in the target time slot.
  • both the initial transmission codebook and the SPS delayed codebook in PUCCH means that there is an initial HARQ-ACK bit in the target time slot, and the delayed SPS HARQ-ACK feedback bit needs to be appended after the initial HARQ-ACK bit in the target time slot.
  • the codebook transmission of HARQ-ACK on PUCCH may also have the following two situations:
  • Case 1 PUCCH only contains the SPS delayed codebook, that is, there is no initial HARQ-ACK bit in the target time slot, and only the delayed SPS HARQ-ACK feedback bit needs to be transmitted in the target time slot;
  • Case 2 PUCCH only contains the initial transmission codebook, that is, there are only initial HARQ-ACK bits in the target time slot, and there are no delayed SPS HARQ-ACK feedback bits.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value.
  • the value of the first fixed value can be selected according to actual needs in the embodiment of the present application.
  • the first fixed value can be set according to manual experience, for example, the first fixed value can be set to 0, or the first fixed value can be dynamically adjusted according to actual application requirements. In the embodiment of the present application, it can be selected according to actual needs.
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, and when the SPS delay codebook is not included in the PUCCH, the second HARQ-ACK parameter is a second fixed value.
  • the second HARQ-ACK parameter may be equal to the number of bits of the SPS delay codebook.
  • the value of the second fixed value can be selected according to actual needs in the embodiment of the present application.
  • the second fixed value can be set according to manual experience, for example, the second fixed value can be set to 0, or the second fixed value can be dynamically adjusted according to actual application requirements. In the embodiment of the present application, it can be selected according to actual needs.
  • the sum of the first HARQ-ACK parameter and the second HARQ-ACK parameter may be determined as the PUCCH power control parameter. Therefore, through the description of the values of the first HARQ-ACK parameter and the second HARQ-ACK parameter, it can be known that for the above-mentioned codebook cascade situation, since the PUCCH contains both the initial transmission codebook and the SPS delay codebook, the first HARQ-ACK parameter is determined based on the initial transmission codebook, and the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter and the second HARQ-ACK parameter; for the above-mentioned situation one, since the PUCCH only contains the SPS delay codebook, the first HARQ-ACK parameter is a first fixed value, and the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook.
  • the PUCCH power control parameter is the sum of the first fixed value and the second HARQ-ACK parameter; for the above-mentioned situation two, since the PUCCH only contains the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value, and the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook. The number is determined based on the initial transmission codebook, the second HARQ-ACK parameter is a second fixed value, and at this time, the PUCCH power control parameter is the sum of the first HARQ-ACK parameter and the second fixed value.
  • n HARQ-ACK 0 + O SPS can be used as n HARQ-ACK to determine the power of PUCCH. If the PUCCH contains an initial transmission codebook, n HARQ-ACK, 0 is determined based on the initial transmission codebook, otherwise n HARQ-ACK, 0 is equal to 0; if the PUCCH contains an SPS delay codebook, O SPS is equal to the number of bits of the SPS delay codebook, otherwise O SPS is equal to 0.
  • the PUCCH power control parameter determination method provided in the present application determines the PUCCH power control parameter by determining the HARQ-ACK parameter and the second HARQ-ACK parameter according to the first hybrid automatic repeat request when the configuration of the terminal device includes a semi-continuous scheduling SPS delay, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • FIG. 3 is a flow chart of the PUCCH power control parameter determination method provided according to the third embodiment of the present application.
  • the method for determining the PUCCH power control parameter may include the following steps 301 and 302 .
  • Step 301 When the configuration of the terminal device includes SPS delay and the PUCCH only includes the SPS delay codebook, determine the PUCCH power control parameter based on the number of bits of the SPS delay codebook.
  • the number of bits of the SPS delay codebook can be determined as the PUCCH power control parameter, that is, the PUCCH power control parameter is equal to the number of bits of the SPS delay codebook.
  • the first HARQ-ACK parameter is a first fixed value
  • the PUCCH power control parameter is the sum of the first fixed value and the second HARQ-ACK parameter
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook.
  • the PUCCH power control parameter is equal to 0 + the second HARQ-ACK parameter, that is, the PUCCH power control parameter is equal to the second HARQ-ACK parameter, that is, the PUCCH power control parameter is determined based on the number of bits of the SPS delay codebook, which is consistent with the scheme provided in this step; if the first fixed value is not 0, the PUCCH power control parameter is the sum of the first fixed value (non-zero value) and the second HARQ-ACK parameter, which is different from the scheme provided in this step.
  • Step 302 When the configuration of the terminal device includes SPS delay and the PUCCH includes an SPS delay codebook and an initial transmission codebook, a PUCCH power control parameter is determined based on the initial transmission codebook.
  • the PUCCH power control parameters can be determined directly based on the initial transmission codebook without considering the SPS delay codebook.
  • the scheme provided by the embodiment shown in Figure 2 can be continued to be used, that is, the first HARQ-ACK parameter is determined based on the initial transmission codebook, the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, and then the PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the second HARQ-ACK parameter.
  • n HARQ-ACK can be determined based on the codebook included in the PUCCH, thereby determining the power of the PUCCH.
  • O SPS can be used as n HARQ-ACK to determine the power of the PUCCH, where O SPS is equal to the number of bits of the SPS delay codebook; if the PUCCH includes both the SPS delay codebook and the initial transmission codebook, n HARQ-ACK can be determined according to the initial transmission codebook without considering the SPS delay codebook, or n HARQ-ACK, 0 can be determined according to the initial transmission codebook, O SPS is equal to the number of bits of the SPS delay codebook, and n HARQ-ACK, 0 +O SPS is used as n HARQ-ACK to determine the power of the PUCCH.
  • the method for determining the PUCCH power control parameters solves the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading by determining the PUCCH power control parameters based on the number of bits of the SPS delay codebook when the configuration of the terminal device includes SPS delay and the PUCCH only includes the SPS delay codebook, or by determining the PUCCH power control parameters based on the initial transmission codebook when the configuration of the terminal device includes SPS delay and the PUCCH includes the SPS delay codebook and the initial transmission codebook.
  • the PUCCH power control parameter n HARQ-ACK can be determined based on the codebook transmission of HARQ-ACK on PUCCH, thereby determining the power of PUCCH.
  • the specific method for determining n HARQ-ACK is as follows:
  • n HARQ-ACK, 0 + O SPS is used as n HARQ-ACK to determine the power of PUCCH.
  • n HARQ-ACK,0 is determined based on the initial transmission codebook, otherwise n HARQ-ACK,0 is equal to 0;
  • O SPS is equal to the number of bits in the SPS delay codebook; otherwise, O SPS is equal to 0.
  • Solution 2 Determine n HARQ-ACK based on the codebook included in the PUCCH, thereby determining the power of the PUCCH. Specifically:
  • n HARQ-ACK is equal to the number of bits in the SPS delay codebook
  • n HARQ-ACK is determined according to the initial transmission codebook, without considering the SPS delay codebook.
  • n HARQ-ACK, 0 is determined according to the initial transmission codebook, O SPS is equal to the number of bits in the SPS delay codebook, and n HARQ-ACK, 0 + O SPS is used as n HARQ-ACK to determine the power of PUCCH.
  • the UE when O ACK +O SR +O CSI carried by PUCCH ⁇ 11, the UE can determine the number of HARQ-ACK information bits used for PUCCH transmission power determination based on the above two schemes, that is, the PUCCH power control parameter n HARQ-ACK ; when O ACK +O SR +O CSI carried by PUCCH >11, the UE can determine the number of HARQ-ACK information bits O ACK used for PUCCH transmission power determination based on the total number of bits of the cascaded HARQ-ACK codebook.
  • n HARQ-ACK, 0 or n HARQ-ACK is determined based on the initial transmission codebook. If the initial transmission codebook is a Type-1 HARQ-ACK codebook, the n HARQ-ACK, 0 or n HARQ - ACK described here is as defined in section 9.1.2.1 or 16.5.1.1 of 3GPP TS38.213; if the initial transmission codebook is a Type-2 HARQ-ACK codebook, the n HARQ-ACK, 0 or n HARQ-ACK described here is as defined in section 9.1.3.1 or 9.1.3.3 or 16.5.2.1 of 3GPP TS38.213.
  • the PUCCH power control parameter n HARQ-ACK can be determined based on the codebook transmission of HARQ-ACK on PUCCH to ensure the PUCCH transmission performance in this case.
  • an embodiment of the present application provides a possible implementation method of a PUCCH power control parameter determination method
  • Figure 4 is a flow chart of the PUCCH power control parameter determination method provided according to the fourth embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 401 when the configuration of the terminal device includes HARQ-ACK retransmission, determine the PUCCH power control parameter according to the first HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the codebook cascade situation of the codebook included in the PUCCH is that the PUCCH contains both the initial transmission codebook and the HARQ-ACK retransmission codebook, wherein the initial transmission codebook is the initial codebook.
  • both the initial transmission codebook and the HARQ-ACK retransmission codebook in the PUCCH means that considering that there may be an initial Type-1 or Type-2 codebook in the target retransmission time slot where the HARQ-ACK retransmission codebook is located, the HARQ-ACK retransmission codebook is cascaded after the initial Type-1 or Type-2 codebook of the same priority.
  • the codebook transmission of HARQ-ACK on PUCCH may also have the following two situations:
  • Case 1 PUCCH only contains the HARQ-ACK retransmission codebook, that is, the target retransmission time slot where the HARQ-ACK retransmission codebook is located does not contain the initial Type-1 or Type-2 codebook, and only the HARQ-ACK retransmission codebook needs to be transmitted in the target retransmission time slot;
  • PUCCH only contains the initial transmission codebook, that is, only the initial Type-1 or Type-2 codebook exists in the target retransmission time slot, and there is no HARQ-ACK retransmission codebook.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a third fixed value.
  • the value of the first fixed value in this embodiment of the application can be selected according to actual needs.
  • the first fixed value can be set according to manual experience, for example, the first fixed value can be set to 0, or the first fixed value can be set to 1 according to actual application needs.
  • the fixed value is dynamically adjusted and can be selected according to actual needs in the embodiment of the present application.
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and when the HARQ-ACK retransmission codebook is not included in the PUCCH, the third HARQ-ACK parameter is a third fixed value.
  • the third HARQ-ACK parameter can be determined based on the HARQ-ACK retransmission codebook, or the third HARQ-ACK parameter can be equal to the number of bits of the HARQ-ACK retransmission codebook.
  • the value of the third fixed value can be selected according to actual needs in the embodiment of the present application.
  • the third fixed value can be set according to manual experience, for example, the third fixed value can be set to 0, or the third fixed value can be dynamically adjusted according to actual application requirements. In the embodiment of the present application, it can be selected according to actual needs.
  • the sum of the first HARQ-ACK parameter and the third HARQ-ACK parameter can be determined as the PUCCH power control parameter. Therefore, through the description of the values of the first HARQ-ACK parameter and the third HARQ-ACK parameter, it can be seen that for the above-mentioned codebook cascade, since the PUCCH contains both the initial transmission codebook and the HARQ-ACK retransmission codebook, the first HARQ-ACK parameter is determined based on the initial transmission codebook, and the third HARQ-ACK parameter is determined based on the number of bits in the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter and the third HARQ-ACK parameter; for the above-mentioned situation one, since the PUCCH only contains the HARQ-ACK retransmission codebook, the first HARQ-ACK parameter is determined based on the initial transmission codebook, and the third HARQ-ACK parameter is determined based on the number of bits in the HARQ-ACK retransmission codebook. If the PUCCH contains only the initial transmission codebook, the first HARQ-ACK parameter is the first fixed value, and the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is the sum of the first fixed value and the third HARQ-ACK parameter.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and the third HARQ-ACK parameter is the third fixed value.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter and the third fixed value.
  • n HARQ-ACK 0 +n HARQ-ACK, 1 or n HARQ-ACK, 0 +O retran
  • n HARQ-ACK 1 or n HARQ-ACK, 0 +O retran
  • n HARQ-ACK 0 is determined based on the initial transmission codebook, otherwise n HARQ-ACK, 0 is equal to 0; if the PUCCH contains a HARQ-ACK retransmission codebook, n HARQ-ACK, 1 is determined based on the HARQ-ACK retransmission codebook or O retran is equal to the number of bits of the HARQ-ACK retransmission codebook, otherwise n HARQ-ACK, 1 or O retran is equal to 0.
  • the PUCCH power control parameter determination method provided in the present application determines the PUCCH power control parameter according to the first HARQ-ACK parameter and the third HARQ-ACK parameter when the configuration of the terminal device includes HARQ-ACK retransmission, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • the previous embodiment describes a possible implementation method for determining PUCCH power control parameters when the configuration of the terminal device includes HARQ-ACK retransmission.
  • An embodiment of the present application provides another possible implementation method for determining PUCCH power control parameters when the configuration of the terminal device includes HARQ-ACK retransmission.
  • Figure 5 is a flow chart of the PUCCH power control parameter determination method provided according to the fifth embodiment of the present application.
  • the method for determining the PUCCH power control parameter may include the following steps 501 and 502 .
  • Step 501 When the configuration of the terminal device includes HARQ-ACK retransmission and the PUCCH only contains the HARQ-ACK retransmission codebook, determine the PUCCH power control parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter can be determined based on the HARQ-ACK retransmission codebook, or the number of bits of the HARQ-ACK retransmission codebook can be determined as the PUCCH power control parameter, that is, the PUCCH power control parameter is equal to the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is the sum of the first fixed value and the third HARQ-ACK parameter, wherein the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits in the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is equal to 0 + the third HARQ-ACK parameter, that is, the PUCCH power control parameter is equal to the third HARQ-ACK parameter, that is, the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits in the HARQ-ACK retransmission codebook, which is consistent with the solution provided in this step; ... If a fixed value is not 0, the PUCCH power control parameter is the sum of the first fixed value (non-zero value) and the third HARQ-ACK parameter, which is different from the solution provided in this step.
  • Step 502 When the configuration of the terminal device includes HARQ-ACK retransmission and the PUCCH includes a HARQ-ACK retransmission codebook and an initial transmission codebook, a PUCCH power control parameter is determined based on the initial transmission codebook.
  • the PUCCH power control parameters can be determined directly based on the initial transmission codebook without considering the HARQ-ACK retransmission codebook.
  • the scheme provided by the embodiment shown in Figure 4 can be continued to be used, that is, the first HARQ-ACK parameter is determined based on the initial transmission codebook, the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and then the PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the third HARQ-ACK parameter.
  • n HARQ-ACK can be determined based on the codebook included in the PUCCH, thereby determining the power of the PUCCH.
  • n HARQ-ACK, 1 or O retran can be used as n HARQ-ACK to determine the power of the PUCCH, wherein O SPS is used as n HARQ-ACK to determine the power of the PUCCH, wherein O SPS is equal to the number of bits of the SPS delay codebook;
  • n HARQ-ACK can be determined according to the initial transmission codebook, without considering the HARQ-ACK retransmission codebook, or n HARQ-ACK, 0 can be determined according to the initial transmission codebook, and n HARQ -ACK, 1 or O retran is equal to the number of bits of the HARQ-ACK retransmission codebook according to the HARQ-ACK retransmission codebook, and n HARQ-ACK, 0 +n HARQ-ACK
  • the method for determining the PUCCH power control parameter determines the PUCCH power control parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook when the configuration of the terminal device includes HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook, or determines the PUCCH power control parameter based on the initial transmission codebook when the configuration of the terminal device includes HARQ-ACK retransmission and the PUCCH includes the HARQ-ACK retransmission codebook and the initial transmission codebook, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • the PUCCH power control parameter n HARQ-ACK can be determined based on the codebook transmission of HARQ-ACK on PUCCH, thereby determining the power of PUCCH.
  • the specific method for determining n HARQ-ACK is as follows:
  • n HARQ-ACK, 0 + n HARQ-ACK, 1 or n HARQ-ACK, 0 + O retran is used as n HARQ-ACK to determine the power of PUCCH.
  • n HARQ-ACK,0 is determined based on the initial transmission codebook, otherwise n HARQ-ACK,0 is equal to 0;
  • n HARQ-ACK, 1 is determined based on the HARQ-ACK retransmission or O retran is equal to the number of bits of the HARQ-ACK retransmission codebook, otherwise n HARQ-ACK, 1 or O retran is equal to 0.
  • Solution 2 Determine n HARQ-ACK based on the codebook included in the PUCCH, thereby determining the power of the PUCCH. Specifically:
  • n HARQ-ACK is determined based on the HARQ-ACK retransmission codebook, or n HARQ-ACK is equal to the number of bits of the HARQ-ACK retransmission codebook;
  • the PUCCH contains both the HARQ-ACK retransmission codebook and the initial transmission codebook, then:
  • n HARQ-ACK is determined according to the initial transmission codebook, and the HARQ-ACK retransmission codebook is not considered.
  • Scheme 2-2 Determine n HARQ-ACK, 0 according to the initial transmission codebook, determine n HARQ-ACK, 1 according to the HARQ-ACK retransmission codebook, or O retran is equal to the number of bits in the HARQ-ACK retransmission codebook, and use n HARQ-ACK, 0 +n HARQ-ACK, 1 or n HARQ-ACK, 0 +O retran as n HARQ-ACK to determine the power of PUCCH.
  • the UE is configured with HARQ-ACK codebook retransmission and uses PUCCH format 2/3/4 to carry HARQ-ACK for transmission.
  • O ACK +O SR +O CSI carried by PUCCH ⁇ 11 the UE can determine the number of HARQ-ACK information bits used for PUCCH transmission power determination based on the above two schemes, that is, the PUCCH power control parameter n HARQ-ACK ; when O ACK +O SR +O CSI carried by PUCCH >11, the UE can determine the number of HARQ-ACK information bits O ACK used for PUCCH transmission power determination based on the total number of bits of the cascaded HARQ-ACK codebook.
  • n HARQ-ACK, 0 or n HARQ-ACK is determined based on the initial transmission codebook, and n HARQ-ACK, 1 or n HARQ-ACK is determined based on the retransmission codebook.
  • n HARQ-ACK, 0 , n HARQ-ACK, 1 or n HARQ-ACK described here is such as n HARQ-ACK defined in Section 9.1.2.1 or 16.5.1.1 of 3GPP TS38.213; if the initial transmission codebook is a Type-2 HARQ-ACK codebook, n HARQ-ACK, 0 , n HARQ-ACK, 1 or n HARQ-ACK described here is such as n HARQ-ACK defined in Section 9.1.3.1 or 9.1.3.3 or 16.5.2.1 of 3GPP TS38.213.
  • the PUCCH power control parameter n HARQ-ACK can be determined based on the codebook transmission of HARQ-ACK on PUCCH to ensure the PUCCH transmission performance in this case.
  • FIG. 6 is a flow chart of the PUCCH power control parameter determination method provided according to the sixth embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 601 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, determine the PUCCH power control parameter according to the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the codebook cascading conditions of the codebook included in the PUCCH include the following four conditions:
  • the PUCCH includes both the initial transmission codebook and the SPS delay codebook, wherein the initial transmission codebook is the initial codebook, which refers to the initial HARQ-ACK bits in the target time slot.
  • both the initial transmission codebook and the SPS delayed codebook in PUCCH means that there is an initial HARQ-ACK bit in the target time slot, and the delayed SPS HARQ-ACK feedback bit needs to be appended after the initial HARQ-ACK bit in the target time slot.
  • PUCCH includes both the initial transmission codebook and the HARQ-ACK retransmission codebook, where the initial transmission codebook is the initial codebook.
  • both the initial transmission codebook and the HARQ-ACK retransmission codebook in the PUCCH means that considering that there may be an initial Type-1 or Type-2 codebook in the target retransmission time slot where the HARQ-ACK retransmission codebook is located, the HARQ-ACK retransmission codebook is cascaded after the initial Type-1 or Type-2 codebook of the same priority.
  • PUCCH includes the initial transmission codebook, HARQ-ACK retransmission codebook and SPS delay codebook at the same time, among which the initial transmission codebook is the initial codebook.
  • PUCCH contains both the HARQ-ACK retransmission codebook and the SPS delayed codebook, that is, the target retransmission time slot where the HARQ-ACK retransmission codebook is located does not contain the initial Type-1 or Type-2 codebook, and the HARQ-ACK retransmission codebook is directly transmitted in the target retransmission time slot.
  • the delayed SPS HARQ-ACK codebook needs to be attached after the HARQ-ACK retransmission codebook.
  • the codebook transmission of HARQ-ACK on PUCCH may also have the following three situations:
  • PUCCH only contains the initial transmission codebook, that is, only the initial HARQ-ACK bits exist in the target time slot, and there is no delayed SPS HARQ-ACK codebook and/or HARQ-ACK retransmission codebook.
  • PUCCH contains only the SPS delayed codebook, that is, there is no initial HARQ-ACK bit in the target time slot.
  • the SPS HARQ-ACK feedback bits with transmission delay in the time slot are sufficient;
  • Case 7 PUCCH only contains the HARQ-ACK retransmission codebook, that is, the target retransmission time slot where the HARQ-ACK retransmission codebook is located does not contain the initial Type-1 or Type-2 codebook, and the delayed SPS HARQ-ACK codebook. It is only necessary to transmit the HARQ-ACK retransmission codebook in the target retransmission time slot.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value.
  • the value of the first fixed value can be selected according to actual needs in the embodiment of the present application.
  • the first fixed value can be set according to manual experience, for example, the first fixed value can be set to 0, or the first fixed value can be dynamically adjusted according to actual application requirements. In the embodiment of the present application, it can be selected according to actual needs.
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook.
  • the seventh HARQ-ACK parameter is a second fixed value.
  • the value of the second fixed value can be selected according to actual needs in the embodiment of the present application.
  • the second fixed value can be set according to manual experience, for example, the second fixed value can be set to 0, or the second fixed value can be dynamically adjusted according to actual application requirements. In the embodiment of the present application, it can be selected according to actual needs.
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the third HARQ-ACK parameter is a third fixed value.
  • the value of the third fixed value can be selected according to actual needs in the embodiment of the present application.
  • the third fixed value can be set according to manual experience, for example, the third fixed value can be set to 0, or the third fixed value can be dynamically adjusted according to actual application requirements. In the embodiment of the present application, it can be selected according to actual needs.
  • the sum of the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third HARQ-ACK parameter may be determined as the PUCCH power control parameter.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is a third fixed value.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third fixed value; for the above situation two, since the PUCCH contains both the initial transmission codebook and the HARQ-ACK retransmission codebook, the first HARQ-ACK parameter is determined based on the initial transmission codebook, the second HARQ-ACK parameter is the second fixed value, and the third HARQ-ACK parameter is the third fixed value.
  • the PUCCH power control parameter is determined by the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter, the second fixed value and the third HARQ-ACK parameter.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the first HARQ-ACK parameter is the first fixed value
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter is the sum of the first fixed value, the second HARQ-ACK parameter and the third HARQ-ACK parameter; for the above situation one, since the PUCCH only contains the initial transmission codebook, the first HARQ-ACK parameter is determined based on the initial transmission codebook, the second HARQ-ACK parameter is the second fixed value, and the third HARQ-ACK parameter is the third fixed value.
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter, the second fixed value and the third fixed value;
  • the first HARQ-ACK parameter is the first fixed value
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is the third fixed value.
  • the PUCCH power control parameter is the sum of the first fixed value, the second HARQ-ACK parameter and the third fixed value; for the above situation seven, since the PUCCH only contains the HARQ-ACK retransmission codebook, the first HARQ-ACK parameter is the first fixed value, the second HARQ-ACK parameter is the second fixed value, and the third HARQ-ACK parameter is based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook. At this time, the PUCCH power control parameter is the sum of the first fixed value, the second fixed value and the third HARQ-ACK parameter.
  • n HARQ-ACK 0
  • the second HARQ-ACK parameter is represented by O SPS
  • the third HARQ-ACK parameter is represented by n HARQ-ACK, 1 or O retran
  • the PUCCH power control parameter is represented by n HARQ-ACK
  • n HARQ-ACK, 0 +O SPS +n HARQ-ACK, 1 or n hARQ-ACK, 0 +O SPS +O retran can be used as n HARQ-ACK to determine the power of PUCCH.
  • n HARQ-ACK, 0 is determined based on the initial transmission codebook, otherwise n HARQ-ACK, 0 is equal to 0; if the PUCCH contains a HARQ-ACK retransmission codebook, n HARQ-ACK, 1 is determined based on the HARQ-ACK retransmission codebook or O retran is equal to the number of bits of the HARQ-ACK retransmission codebook, otherwise n HARQ-ACK, 1 or O retran is equal to 0; if the PUCCH contains an SPS delay codebook, O SPS is equal to the number of bits of the SPS delay codebook, otherwise O SPS is equal to 0.
  • the PUCCH power control parameter determination method provided in the present application determines the PUCCH power control parameter according to the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third HARQ-ACK parameter when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • FIG. 7 is a flow chart of the PUCCH power control parameter determination method provided according to the seventh embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 701 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, determine the PUCCH power control parameter according to the first HARQ-ACK parameter, the number of bits of the HARQ-ACK retransmission codebook, the number of bits of the SPS delay codebook, the first parameter and the second parameter.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook when the PUCCH includes the initial transmission codebook.
  • the first parameter and the second parameter are predefined or configured by high-level parameters.
  • the value range of the first parameter and the second parameter is [0, 1].
  • the product of the number of bits of the HARQ-ACK retransmission codebook and the first parameter can be determined as the first intermediate value
  • the product of the number of bits of the SPS delay codebook and the second parameter can be determined as the second intermediate value, thereby determining the sum of the first HARQ-ACK parameter, the first intermediate value, and the second intermediate value as the PUCCH power control parameter.
  • the calculation of determining the PUCCH power control parameter n HARQ-ACK is as follows:
  • n HARQ-ACK n HARQ-ACK, 0 + ⁇ *O retran + ⁇ *O SPS
  • n HARQ-ACK, 0 is determined based on the initial transmission codebook when the PUCCH includes the initial transmission codebook, ⁇ , ⁇ are parameters greater than or equal to 0 and less than or equal to 1, and may be predefined or configured by a high-level parameter.
  • the PUCCH power control parameter determination method determines the PUCCH power control parameter according to the first HARQ-ACK parameter, the number of bits of the HARQ-ACK retransmission codebook, the number of bits of the SPS delay codebook, the first parameter and the second parameter when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • the following describes a possible implementation method for determining PUCCH power control parameters when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, and the PUCCH only contains the SPS delay codebook or the PUCCH only contains the HARQ-ACK retransmission codebook.
  • FIG8 is a flow chart of a method for determining PUCCH power control parameters according to the eighth embodiment of the present application.
  • the method for determining the PUCCH power control parameter may include the following steps 801 and 802 .
  • Step 801 When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains the SPS delay codebook, determine the PUCCH power control parameter based on the number of bits of the SPS delay codebook.
  • the number of bits of the SPS delay codebook can be determined as the PUCCH power control parameter, that is, the PUCCH power control parameter, etc. The number of bits in the SPS delay codebook.
  • the first HARQ-ACK parameter is a first fixed value
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is a third fixed value
  • the PUCCH power control parameter is the sum of the first fixed value, the second HARQ-ACK parameter and the third fixed value.
  • the PUCCH power control parameter is equal to 0+the second HARQ-ACK parameter+0, that is, the PUCCH power control parameter is equal to the second HARQ-ACK parameter, that is, the PUCCH power control parameter is determined based on the number of bits of the SPS delay codebook, which is consistent with the scheme provided in this step; if the first fixed value and/or the third fixed value are not 0, the PUCCH power control parameter is the sum of the first fixed value (non-0 value), the second HARQ-ACK parameter and the third fixed value (non-0 value), which is different from the scheme provided in this step.
  • Step 802 When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains the HARQ-ACK retransmission codebook, determine the PUCCH power control parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter can be determined based on the HARQ-ACK retransmission codebook, or the number of bits of the HARQ-ACK retransmission codebook can be determined as the PUCCH power control parameter, that is, the PUCCH power control parameter is equal to the number of bits of the HARQ-ACK retransmission codebook.
  • the first HARQ-ACK parameter is a first fixed value
  • the second HARQ-ACK parameter is a second fixed value
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • the PUCCH power control parameter is the sum of the first fixed value, the second fixed value and the third HARQ-ACK parameter.
  • the PUCCH power control parameter is equal to 0+0+the third HARQ-ACK parameter, that is, the PUCCH power control parameter is equal to the third HARQ-ACK parameter, that is, the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits in the HARQ-ACK retransmission codebook, which is consistent with the scheme provided in this step; if the first fixed value and/or the second fixed value is not 0, the PUCCH power control parameter is the sum of the first fixed value (non-zero value), the second fixed value (non-zero value) and the third HARQ-ACK parameter, which is different from the scheme provided in this step.
  • the PUCCH power control parameter determination method determines the PUCCH power control parameter based on the number of bits of the SPS delay codebook when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the SPS delay codebook, or determines the PUCCH power control parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • a possible implementation method for determining PUCCH power control parameters when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH contains a HARQ-ACK retransmission codebook, an SPS delay codebook, and an initial transmission codebook is described below.
  • FIG9 is a flow chart of a method for determining PUCCH power control parameters according to the ninth embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 901 When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH contains a HARQ-ACK retransmission codebook, an SPS delay codebook and an initial transmission codebook, a PUCCH power control parameter is determined based on the initial transmission codebook.
  • the PUCCH power control parameters can be determined directly based on the initial transmission codebook without considering the HARQ-ACK retransmission codebook and the SPS delay codebook.
  • Step 902 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH contains a HARQ-ACK retransmission codebook, an SPS delay codebook and an initial transmission codebook, a first HARQ-ACK parameter is determined based on the initial transmission codebook, a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and a PUCCH power control parameter is determined based on at least one of the second HARQ-ACK parameter and the third HARQ-ACK parameter, as well as the first HARQ-ACK parameter.
  • the HARQ-ACK parameters determine the PUCCH power control parameters in the following three cases:
  • Case 1 Determine the PUCCH power control parameter based on the third HARQ-ACK parameter and the first HARQ-ACK parameter.
  • the third HARQ-ACK parameter can be determined based on the HARQ-ACK retransmission codebook, or the number of bits of the HARQ-ACK retransmission codebook can be determined as the third HARQ-ACK parameter, that is, the third HARQ-ACK parameter is equal to the number of bits of the HARQ-ACK retransmission codebook, and the first HARQ-ACK parameter can be determined based on the initial transmission codebook, so that the sum of the third HARQ-ACK parameter and the first HARQ-ACK parameter is determined as the PUCCH power control parameter.
  • Case 2 Determine the PUCCH power control parameter based on the second HARQ-ACK parameter and the first HARQ-ACK parameter.
  • the number of bits of the SPS delay codebook can be determined as the second HARQ-ACK parameter, that is, the second HARQ-ACK parameter is equal to the number of bits of the SPS delay codebook, and the first HARQ-ACK parameter can be determined based on the initial transmission codebook, so that the sum of the second HARQ-ACK parameter and the first HARQ-ACK parameter is determined as the PUCCH power control parameter.
  • Case three determining the PUCCH power control parameter based on the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the third HARQ-ACK parameter can be determined based on the HARQ-ACK retransmission codebook, or the number of bits of the HARQ-ACK retransmission codebook can be determined as the third HARQ-ACK parameter, that is, the third HARQ-ACK parameter is equal to the number of bits of the HARQ-ACK retransmission codebook, and the number of bits of the SPS delay codebook can be determined as the second HARQ-ACK parameter, that is, the second HARQ-ACK parameter is equal to the number of bits of the SPS delay codebook, and the first HARQ-ACK parameter can be determined based on the initial transmission codebook, so that the sum of the first HARQ-ACK parameter, the second HARQ-ACK parameter and the third HARQ-ACK parameter is determined as the PUCCH power control parameter.
  • the solution provided in the above-mentioned situation three is consistent with the solution provided in the embodiment shown in Figure 6 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH includes the initial transmission codebook, HARQ-ACK retransmission codebook and SPS delay codebook, but the above-mentioned situation one and situation two are different from the solution provided in the embodiment shown in Figure 6 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH includes the initial transmission codebook, HARQ-ACK retransmission codebook and SPS delay codebook.
  • the PUCCH power control parameter determination method determines the PUCCH power control parameter based on the initial transmission codebook when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH includes the HARQ-ACK retransmission codebook, the SPS delay codebook and the initial transmission codebook, or, when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH includes the HARQ-ACK retransmission codebook, the SPS delay codebook and the initial transmission codebook, determines the first HARQ-ACK parameter based on the initial transmission codebook, determines the second HARQ-ACK parameter based on the number of bits of the SPS delay codebook, determines the third HARQ-ACK parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and determines the PUCCH power control parameter based on at least one of the second HARQ-ACK parameter and the third
  • FIG10 is a flow chart of a method for determining PUCCH power control parameters according to the tenth embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 1001 When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the SPS delay codebook and the initial transmission codebook, determine the PUCCH power control parameter based on the initial transmission codebook.
  • the PUCCH power control parameters can be determined directly based on the initial transmission codebook without considering the SPS delay codebook.
  • Step 1002 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains an SPS delay codebook and an initial transmission codebook, a first HARQ-ACK parameter is determined based on the initial transmission codebook, a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, and a PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the second HARQ-ACK parameter.
  • a first HARQ-ACK parameter can be determined based on the initial transmission codebook, the number of bits of the SPS delay codebook can be determined as the second HARQ-ACK parameter, that is, the second HARQ-ACK parameter is equal to the number of bits of the SPS delay codebook, and then the sum of the first HARQ-ACK parameter and the second HARQ-ACK parameter is determined as the PUCCH power control parameter.
  • the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and
  • PUCCH only includes the SPS delay codebook and the initial transmission codebook
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is a third fixed value
  • the PUCCH power control parameter is the sum of the first HARQ-ACK parameter, the second HARQ-ACK parameter, and the third fixed value.
  • the PUCCH power control parameter is equal to n HARQ-ACK, 0 +O SPS +0, which is consistent with the scheme provided in this step; if the third fixed value is not 0, the PUCCH power control parameter is the sum of the first HARQ-ACK parameter, the second HARQ-ACK parameter, and the third fixed value (non-0 value), which is different from the scheme provided in this step.
  • the PUCCH power control parameter determination method determines the PUCCH power control parameter based on the initial transmission codebook when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the SPS delay codebook and the initial transmission codebook, or, when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the SPS delay codebook and the initial transmission codebook, determines the first HARQ-ACK parameter based on the initial transmission codebook, determines the second HARQ-ACK parameter based on the number of bits of the SPS delay codebook, and determines the PUCCH power control parameter based on the first HARQ-ACK parameter and the second HARQ-ACK parameter, thereby solving the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • the following describes a possible implementation method for determining PUCCH power control parameters when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains the HARQ-ACK retransmission codebook and the initial transmission codebook.
  • FIG11 is a flow chart of a method for determining PUCCH power control parameters according to the eleventh embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 1101 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains the HARQ-ACK retransmission codebook and the initial transmission codebook, determine the PUCCH power control parameter based on the initial transmission codebook.
  • the PUCCH power control parameters can be determined directly based on the initial transmission codebook without considering the HARQ-ACK retransmission codebook.
  • Step 1102. When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains a HARQ-ACK retransmission codebook and an initial transmission codebook, a first HARQ-ACK parameter is determined based on the initial transmission codebook, a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and a PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the third HARQ-ACK parameter.
  • a first HARQ-ACK parameter can be determined based on the initial transmission codebook
  • a third HARQ-ACK parameter can be determined based on the HARQ-ACK retransmission codebook, or the number of bits of the HARQ-ACK retransmission codebook can be determined as the third HARQ-ACK parameter, and then the sum of the first HARQ-ACK parameter and the third HARQ-ACK parameter is determined as the PUCCH power control parameter.
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook
  • the second HARQ-ACK parameter is the second fixed value
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • the PUCCH power control parameter is the sum of the first ARQ-ACK parameter, the second fixed value and the third HARQ-ACK parameter.
  • the PUCCH power control parameter is equal to n HARQ-ACK, 0 +0+n HARQ-ACK, 1 or n HARQ-ACK, 0 +0+O retran , which is consistent with the scheme provided in this step; if the second fixed value is not 0, the PUCCH power control parameter is the sum of the fifth HARQ-ACK parameter, the second fixed value (non-0 value) and the third HARQ-ACK parameter, which is different from the scheme provided in this step.
  • the PUCCH power control parameter determination method determines the PUCCH power control parameter based on the initial transmission codebook when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook and the initial transmission codebook, or, when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook and the initial transmission codebook, determines the first HARQ-ACK parameter based on the initial transmission codebook, determines the third HARQ-ACK parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and determines the PUCCH power control parameter based on the first HARQ-ACK parameter and the third HARQ-ACK parameter, so as to solve the technical problem in the related art that it is unclear how to determine the PUCCH power in the case of codebook cascading.
  • the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes A possible implementation method for determining PUCCH power control parameters in the case of HARQ-ACK retransmission codebook and initial transmission codebook is described.
  • FIG12 is a flow chart of a method for determining PUCCH power control parameters according to the twelfth embodiment of the present application.
  • the PUCCH power control parameter determination method may include the following steps:
  • Step 1201 when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains the HARQ-ACK retransmission codebook and the SPS delay codebook, determine the PUCCH power control parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the PUCCH power control parameter can be determined directly based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, without considering the SPS delay codebook.
  • the PUCCH power control parameter can be determined based on the HARQ-ACK retransmission codebook, or the number of bits of the HARQ-ACK retransmission codebook can be determined as the PUCCH power control parameter, that is, the PUCCH power control parameter is equal to the number of bits of the HARQ-ACK retransmission codebook.
  • Step 1202 When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook and the SPS delay codebook, determine the PUCCH power control parameter based on the number of bits of the SPS delay codebook.
  • the PUCCH power control parameter can be determined directly based on the number of bits of the SPS delay codebook without considering the HARQ-ACK retransmission codebook.
  • the number of bits of the SPS delay codebook can be determined as the PUCCH power control parameter, that is, the PUCCH power control parameter is equal to the number of bits of the SPS delay codebook.
  • Step 1203. When the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only contains a HARQ-ACK retransmission codebook and an SPS delay codebook, a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook, and a PUCCH power control parameter is determined based on the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the number of bits of the SPS delay codebook can be determined as a second HARQ-ACK parameter
  • the third HARQ-ACK parameter can be determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook can be determined as a third HARQ-ACK parameter
  • the sum of the second HARQ-ACK parameter and the third HARQ-ACK parameter is determined as the PUCCH power control parameter.
  • the first HARQ-ACK parameter is a first fixed value
  • the second HARQ-ACK parameter is based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • the PUCCH power control parameter is the sum of the first fixed value, the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the PUCCH power control parameter is equal to 0+O SPS +n HARQ-ACK, 1 or 0+O SPS +O retran , which is consistent with the scheme provided in this step; if the first fixed value is not 0, the PUCCH power control parameter is the sum of the first fixed value (non-zero value), the second HARQ-ACK parameter and the third HARQ-ACK parameter, which is different from the scheme provided in this step.
  • the present application provides a method for determining a PUCCH power control parameter, by determining the PUCCH power control parameter based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook and the SPS delay codebook, or, when the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH only includes the HARQ-ACK retransmission codebook and the SPS delay codebook, determining the PUCCH power control parameter based on the number of bits of the SPS delay codebook.
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • the PUCCH power control parameter is determined based on the second HARQ-ACK parameter and the third HARQ-ACK parameter, so as to solve the technical problem in the related art that it is unclear how to determine the power of the PUCCH in the case of codebook cascading.
  • the PUCCH power control parameter n HARQ-ACK can be determined based on the codebook transmission of HARQ- ACK on the PUCCH, thereby determining the power of the PUCCH.
  • the specific method for determining n HARQ-ACK is as follows:
  • Solution 1 Determine the PUCCH power control parameter n
  • the calculation of HARQ-ACK is as follows:
  • n HARQ-ACK,0 is determined based on the initial transmission codebook, otherwise n HARQ-ACK,0 is equal to 0;
  • n HARQ-ACK, 1 is determined based on the HARQ-ACK retransmission or O retran is equal to the number of bits in the HARQ-ACK retransmission codebook, otherwise n HARQ-ACK, 1 or O retran is equal to 0;
  • O SPS is equal to the number of bits in the SPS delay codebook; otherwise, O SPS is equal to 0.
  • n HARQ-ACK n HARQ-ACK, 0 + ⁇ *O retran + ⁇ *O SPS
  • n HARQ-ACK, 0 is determined based on the initial transmission codebook when the initial transmission codebook is included in the PUCCH;
  • O retran is the number of bits in the HARQ-ACK retransmission codebook
  • O SPS is the number of bits in the SPS delay codebook
  • ⁇ and ⁇ are parameters greater than or equal to 0 and less than or equal to 1, and may be predefined or configured by a high-level parameter.
  • Solution 3 Determine n HARQ-ACK based on the codebook included in the PUCCH, thereby determining the power of the PUCCH. Specifically:
  • n HARQ-ACK is equal to the number of bits in the SPS delay codebook
  • n HARQ-ACK is determined based on the HARQ-ACK retransmission codebook, or n HARQ-ACK is equal to the number of bits in the HARQ-ACK retransmission codebook;
  • Scheme 3-1 Determine n HARQ-ACK, 0 according to the initial transmission codebook, determine n HARQ-ACK, 1 according to the HARQ-ACK retransmission codebook, or O retran is equal to the number of bits of the HARQ-ACK retransmission codebook, O SPS is equal to the number of bits of the SPS delay codebook, and use n HARQ-ACK, 0 +n HARQ-ACK, 1 +O SPS or n HARQ-ACK, 0 +O retran +O SPS as n HARQ-ACK to determine the power of PUCCH.
  • n HARQ-ACK is determined according to the initial transmission codebook, without considering the HARQ-ACK retransmission codebook and the SPS delay codebook.
  • n HARQ-ACK 0 is determined according to the initial transmission codebook
  • n HARQ-ACK 1 is determined according to the HARQ-ACK retransmission codebook
  • O retran is equal to the number of bits in the HARQ-ACK retransmission codebook
  • n HARQ-ACK, 0 +n HARQ-ACK, 1 or n HARQ-ACK, 0 +O retran is used as n hARQ-ACK to determine the power of PUCCH;
  • Solution 3-4 Determine n HARQ-ACK, 0 according to the initial transmission codebook, O SPS is equal to the number of bits in the SPS delay codebook, and use n HARQ-ACK, 0 + O SPS as n HARQ-ACK to determine the power of PUCCH.
  • n HARQ-ACK is determined according to the initial transmission codebook, without considering the SPS delay codebook.
  • Solution 4-2 Determine n HARQ-ACK, 0 according to the initial transmission codebook, O SPS is equal to the number of bits in the SPS delay codebook, and use n HARQ-ACK, 0 + O SPS as n HARQ-ACK to determine the power of PUCCH;
  • the PUCCH contains both the HARQ-ACK retransmission codebook and the initial transmission codebook, then:
  • n HARQ-ACK is determined according to the initial transmission codebook, and the HARQ-ACK retransmission codebook is not considered.
  • n HARQ-ACK, 0 is determined according to the initial transmission codebook
  • n HARQ-ACK, 1 is determined according to the HARQ-ACK retransmission codebook
  • O retran is equal to the number of bits in the HARQ-ACK retransmission codebook
  • n HARQ-ACK, 0 +n HARQ-ACK, 1 or n HARQ-ACK, 0 +O retran is used as n HARQ-ACK to determine the power of PUCCH;
  • n HARQ-ACK is determined according to the HARQ-ACK retransmission codebook, or n HARQ-ACK is equal to the number of bits in the HARQ-ACK retransmission codebook, without considering the SPS delay codebook;
  • n HARQ-ACK is equal to the number of bits in the SPS delay codebook, and the HARQ-ACK retransmission codebook is not considered;
  • Scheme 6-3 Determine n HARQ-ACK according to the HARQ-ACK retransmission codebook, 1 or O retran is equal to the number of bits of the HARQ-ACK retransmission codebook, O SPS is equal to the number of bits of the SPS delay codebook, and n HARQ-ACK, 1 +O SPS or O retran +O SPS is used as n HARQ-ACK to determine the power of PUCCH.
  • the UE is configured with HARQ-ACK codebook retransmission and uses PUCCH format 2/3/4 to carry HARQ-ACK for transmission.
  • O ACK +O SR +O CSI carried by PUCCH ⁇ 11 the UE can determine the number of HARQ-ACK information bits used for PUCCH transmission power determination based on the above three schemes, that is, the PUCCH power control parameter n HARQ-ACK ; when O ACK +O SR +O CSI carried by PUCCH >11, the UE can determine the number of HARQ-ACK information bits O ACK used for PUCCH transmission power determination based on the total number of bits of the cascaded HARQ-ACK codebook.
  • n HARQ-ACK, 0 or n HARQ-ACK is determined based on the initial transmission codebook, and n HARQ-ACK, 1 or n HARQ-ACK is determined based on the retransmission codebook.
  • n HARQ-ACK, 0 , n HARQ-ACK, 1 or n HARQ-ACK described here is such as n HARQ-ACK defined in Section 9.1.2.1 or 16.5.1.1 of 3GPP TS38.213; if the initial transmission codebook is a Type-2 HARQ-ACK codebook, n HARQ-ACK, 0 , n HARQ-ACK, 1 or n HARQ-ACK described here is such as n HARQ-ACK defined in Section 9.1.3.1 or 9.1.3.3 or 16.5.2.1 of 3GPP TS38.213.
  • the PUCCH power control parameter n HARQ- ACK can be determined based on the codebook transmission of HARQ-ACK on PUCCH to ensure the PUCCH transmission performance in this case.
  • the present application also provides a device for determining a PUCCH power control parameter.
  • FIG13 is a schematic diagram of the structure of a PUCCH power control parameter determination device provided according to the thirteenth embodiment of the present application.
  • the PUCCH power control parameter determination apparatus may include a memory 1310 , a transceiver 1320 , and a processor 1330 .
  • the memory 1310 is used to store computer programs; the transceiver 1320 is used to send and receive data under the control of the processor; and the processor 1330 is used to read the computer program in the memory and perform the following operations:
  • the PUCCH power control parameter is determined according to the configuration of the terminal device and the codebook included in the physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH.
  • the transceiver 1320 is used to receive and send data under the control of the processor 1330 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by processor 1330 and various circuits of memory represented by memory 1310 are linked together.
  • the bus architecture can also link various other circuits such as peripherals, regulators, and power management circuits together, which are all well known in the art and are therefore not further described herein.
  • the bus interface provides an interface.
  • the transceiver 1320 may be a plurality of components, namely, a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium, and these transmission media include transmission media such as wireless channels, wired channels, and optical cables.
  • the user interface 1340 may also be an interface that can be connected to external and internal devices, and the connected devices include but are not limited to keypads, displays, speakers, microphones, joysticks, etc.
  • the processor 1330 is responsible for managing the bus architecture and general processing, and the memory 1310 can store data used by the processor 13300 when performing operations.
  • processor 1330 may be a CPU (central processing unit), an ASIC (Application Specific Integrated Circuit), an FPGA (Field-Programmable Gate Array) or a CPLD (Complex Programmable Logic Device), and processor 1330 may also adopt a multi-core architecture.
  • CPU central processing unit
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array
  • CPLD Complex Programmable Logic Device
  • the processor 1330 is configured to execute any of the methods provided in the embodiments of the present application according to the obtained executable instructions by calling the computer program stored in the memory 1310.
  • the processor 1330 and the memory 1310 may also be arranged physically separately.
  • the processor 1330 is specifically configured to perform the following operations:
  • the configuration of the terminal device includes a semi-persistent scheduling SPS delay, determining a PUCCH power control parameter according to a first hybrid automatic repeat request-acknowledgement HARQ-ACK parameter and a second HARQ-ACK parameter;
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value;
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook.
  • the second HARQ-ACK parameter is a second fixed value.
  • the processor 1330 is specifically configured to perform the following operations:
  • the configuration of the terminal device includes HARQ-ACK retransmission, determining a PUCCH power control parameter according to the first HARQ-ACK parameter and the third HARQ-ACK parameter;
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value;
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the third HARQ-ACK parameter is a third fixed value.
  • the processor 1330 is specifically configured to perform the following operations:
  • the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, determining a PUCCH power control parameter according to the first HARQ-ACK parameter, the second HARQ-ACK parameter, and the third HARQ-ACK parameter;
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value;
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, and when the SPS delay codebook is not included in the PUCCH, the second HARQ-ACK parameter is a second fixed value;
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the third HARQ-ACK parameter is a third fixed value.
  • the processor 1330 is specifically configured to perform the following operations:
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook when the PUCCH includes the initial transmission codebook
  • the first parameter and the second parameter are predefined or configured by high-level parameters.
  • the processor 1330 is specifically configured to perform the following operations:
  • the PUCCH power control parameter based on the number of bits of the SPS delay codebook
  • the PUCCH power control parameter is determined based on the initial transmission codebook.
  • the processor 1330 is specifically configured to perform the following operations:
  • the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook;
  • the PUCCH power control parameter is determined based on the initial transmission codebook.
  • the processor 1330 is specifically configured to perform the following operations:
  • the PUCCH power control parameter is determined based on the number of bits of the SPS delay codebook
  • the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the processor 1330 is specifically configured to perform the following operations:
  • the PUCCH power control parameter is determined based on the initial transmission codebook
  • the PUCCH contains a HARQ-ACK retransmission codebook
  • an SPS delay codebook and an initial transmission codebook a first HARQ-ACK parameter is determined based on the initial transmission codebook
  • a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • a PUCCH power control parameter is determined based on at least one of the second HARQ-ACK parameter and the third HARQ-ACK parameter, and the first HARQ-ACK parameter.
  • the processor 1330 is specifically configured to perform the following operations:
  • the PUCCH power control parameter is determined based on the initial transmission codebook
  • a first HARQ-ACK parameter is determined based on the initial transmission codebook
  • a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • a PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the second HARQ-ACK parameter.
  • the processor 1330 is specifically configured to perform the following operations:
  • the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH contains only the HARQ-ACK retransmission codebook and the initial transmission codebook, determining the PUCCH power control parameter based on the initial transmission codebook; or,
  • a first HARQ-ACK parameter is determined based on the initial transmission codebook
  • a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • a PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the processor 1330 is specifically configured to perform the following operations:
  • the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook; or,
  • the PUCCH power control parameter is determined based on the number of bits of the SPS delay codebook; or,
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • the PUCCH power control parameter is determined based on the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the present application also provides a device for determining a PUCCH power control parameter.
  • FIG14 is a schematic diagram of the structure of a PUCCH power control parameter determination device provided according to the fourteenth embodiment of the present application.
  • the PUCCH power control parameter determination device may include: a determination unit 1410 .
  • the determination unit 1410 is used to determine a PUCCH power control parameter according to the configuration of the terminal device and a codebook included in the physical uplink control channel PUCCH, wherein the PUCCH power control parameter is used to determine the power of the PUCCH.
  • the determining unit 1410 is specifically configured to:
  • the configuration of the terminal device includes a semi-persistent scheduling SPS delay, determining a PUCCH power control parameter according to a first hybrid automatic repeat request-acknowledgement HARQ-ACK parameter and a second HARQ-ACK parameter;
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value;
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook.
  • the second HARQ-ACK parameter is a second fixed value.
  • the determining unit 1410 is specifically configured to:
  • the configuration of the terminal device includes HARQ-ACK retransmission, determining a PUCCH power control parameter according to the first HARQ-ACK parameter and the third HARQ-ACK parameter;
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value;
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the third HARQ-ACK parameter is a third fixed value.
  • the determining unit 1410 is specifically configured to:
  • the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission, determining a PUCCH power control parameter according to the first HARQ-ACK parameter, the second HARQ-ACK parameter, and the third HARQ-ACK parameter;
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook, and when the PUCCH does not include the initial transmission codebook, the first HARQ-ACK parameter is a first fixed value;
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook, and when the SPS delay codebook is not included in the PUCCH, the second HARQ-ACK parameter is a second fixed value;
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the third HARQ-ACK parameter is a third fixed value.
  • the determining unit 1410 is specifically configured to:
  • the first HARQ-ACK parameter is determined based on the initial transmission codebook when the PUCCH includes the initial transmission codebook
  • the first parameter and the second parameter are predefined or configured by high-level parameters.
  • the determining unit 1410 is specifically configured to:
  • the PUCCH power control parameter based on the number of bits of the SPS delay codebook
  • the PUCCH power control parameter is determined based on the initial transmission codebook.
  • the determining unit 1410 is specifically configured to:
  • the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook;
  • the PUCCH power control parameter is determined based on the initial transmission codebook.
  • the determining unit 1410 is specifically configured to:
  • the PUCCH power control parameter is determined based on the number of bits of the SPS delay codebook
  • the PUCCH power control parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook.
  • the determining unit 1410 is specifically configured to:
  • the PUCCH power control parameter is determined based on the initial transmission codebook
  • the PUCCH contains a HARQ-ACK retransmission codebook
  • an SPS delay codebook and an initial transmission codebook a first HARQ-ACK parameter is determined based on the initial transmission codebook
  • a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • a PUCCH power control parameter is determined based on at least one of the second HARQ-ACK parameter and the third HARQ-ACK parameter, and the first HARQ-ACK parameter.
  • the determining unit 1410 is specifically configured to:
  • the PUCCH power control parameter is determined based on the initial transmission codebook
  • a first HARQ-ACK parameter is determined based on the initial transmission codebook
  • a second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • a PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the second HARQ-ACK parameter.
  • the determining unit 1410 is specifically configured to:
  • the configuration of the terminal device includes SPS delay and HARQ-ACK retransmission and the PUCCH contains only the HARQ-ACK retransmission codebook and the initial transmission codebook, determining the PUCCH power control parameter based on the initial transmission codebook; or,
  • a first HARQ-ACK parameter is determined based on the initial transmission codebook
  • a third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • a PUCCH power control parameter is determined based on the first HARQ-ACK parameter and the third HARQ-ACK parameter.
  • the determining unit 1410 is specifically configured to:
  • the PUCCH function is determined based on the HARQ-ACK retransmission codebook or the number of bits in the HARQ-ACK retransmission codebook. rate control parameters; or,
  • the PUCCH power control parameter is determined based on the number of bits of the SPS delay codebook; or,
  • the second HARQ-ACK parameter is determined based on the number of bits of the SPS delay codebook
  • the third HARQ-ACK parameter is determined based on the HARQ-ACK retransmission codebook or the number of bits of the HARQ-ACK retransmission codebook
  • the PUCCH power control parameter is determined based on the second HARQ-ACK parameter and the third HARQ-ACK parameter.
  • each unit in each embodiment of the present application may be integrated into a processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above-mentioned integrated unit may be implemented in the form of hardware or in the form of a software unit.
  • the integrated unit is implemented in the form of a software unit and sold or used as an independent product, it can be stored in a processor-readable storage medium.
  • the technical solution of the present application is essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product.
  • the computer software product is stored in a storage medium, including several instructions to enable a computer device (which can be a personal computer, server, or network device, etc.) or a processor (processor) to perform all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), disk or optical disk and other media that can store program code.
  • the present application also proposes a processor-readable storage medium.
  • the processor-readable storage medium stores a computer program, which is used to enable the processor to execute the PUCCH power control parameter determination method of the embodiments of Figures 1 to 12 of the present application.
  • the processor-readable storage medium can be any available medium or data storage device that can be accessed by the processor, including but not limited to magnetic storage (such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.), optical storage (such as CD, DVD, BD, HVD, etc.), and semiconductor storage (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state drive (SSD)), etc.
  • magnetic storage such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.
  • optical storage such as CD, DVD, BD, HVD, etc.
  • semiconductor storage such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state drive (SSD)
  • the embodiments of the present application may be provided as methods, systems, or computer program products. Therefore, the present application may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment in combination with software and hardware. Moreover, the present application may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) that contain computer-usable program code.
  • a computer-usable storage media including but not limited to disk storage and optical storage, etc.
  • each process and/or box in the flowchart and/or block diagram, and the combination of the process and/or box in the flowchart and/or block diagram can be implemented by computer executable instructions.
  • These computer executable instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processing machine or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device produce a device for implementing a process or multiple processes in the flowchart and/or a box or multiple boxes in the block diagram.
  • processor-executable instructions may also be stored in a processor-readable memory that can direct a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the processor-readable memory produce a manufactured product including an instruction device, which implements the instructions specified in one or more processes in the flowchart and/or one or more boxes in the block diagram.
  • processor-executable instructions may also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, whereby the instructions executed on the computer or other programmable device provide for implementing the steps specified in one or more processes in the flowchart and/or one or more boxes in the block diagram.

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Abstract

本申请公开了PUCCH功率控制参数确定方法、装备及存储介质,涉及通信技术领域。具体实现方案为:根据终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率。

Description

PUCCH功率控制参数确定方法、装置及存储介质
相关申请的交叉引用
本申请基于申请号为202311017318.6、申请日为2023年08月11日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及通信技术领域,尤其涉及一种PUCCH功率控制参数确定方法、装置及存储介质。
背景技术
在NR(New Radio,新空口)Rel-17(Release 17,第17版)中,支持HARQ-ACK(Hybrid Automatic Repeat Request-Acknowledgement,混合自动重传请求-确认)码本重传和SPS(Semi-Persistent Scheduling,半持续调度)延迟,但这两种情况下都存在码本级联的情况。例如,在支持SPS延迟的情况下,如果目标时隙中存在HARQ-ACK码本,则延迟的SPS HARQ-ACK码本会级联在目标时隙中存在的HARQ-ACK码本之后,从而目标时隙中级联了两个码本:初始码本(目标时隙中存在的HARQ-ACK码本)+SPS延迟码本。再例如,在支持HARQ-ACK码本重传的情况下,如果目标重传时隙中存在HARQ-ACK码本,则HARQ-ACK重传码本会级联在目标重传时隙中存在的HARQ-ACK码本之后,从而目标时隙中级联了两个码本:初始码本(目标重传时隙中存在的HARQ-ACK码本)+HARQ-ACK重传码本。
相关技术中,上述码本级联的情况下不清楚如何确定PUCCH(Physical Uplink Control Channel,物理上行控制信道)的功率。因此,有必要对码本级联的情况下如何确定PUCCH的功率进行研究。
发明内容
本申请提供了一种PUCCH功率控制参数确定方法、装置及存储介质。
根据本申请的第一方面,提供了一种PUCCH功率控制参数确定方法,应用于终端设备,该方法包括:
根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,所述PUCCH功率控制参数用于确定所述PUCCH的功率。
根据本申请的第二方面,提供了一种PUCCH功率控制参数确定装备,包括存储器,收发机,处理器:
存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,所述PUCCH功率控制参数用于确定所述PUCCH的功率。
根据本申请的第三方面,提供了一种PUCCH功率控制参数确定装置,该装置包括:
确定单元,用于根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,所述PUCCH功率控制参数用于确定所述PUCCH的功率。
根据本申请的第四方面,提供了一种处理器可读存储介质,所述处理器可读存储介质存储有计算机程序,所述计算机程序用于使所述处理器执行本申请第一方面实施例所述的方法。
本申请提供的PUCCH功率控制参数确定方法、装置及存储介质,通过根据终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
应当理解,本部分所描述的内容并非旨在标识本申请的实施例的关键或重要特征,也不用于限制本申请的范围。本申请的其它特征将通过以下的说明书而变得容易理解。
附图说明
附图用于更好地理解本方案,不构成对本申请的限定。其中:
图1是根据本申请第一实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图2是根据本申请第二实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图3是根据本申请第二实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图4是根据本申请第四实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图5是根据本申请第五实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图6是根据本申请第六实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图7是根据本申请第七实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图8是根据本申请第八实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图9是根据本申请第九实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图10是根据本申请第十实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图11是根据本申请第十一实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图12是根据本申请第十二实施例所提供的PUCCH功率控制参数确定方法的流程示意图;
图13是根据本申请第十三实施例所提供的PUCCH功率控制参数确定装置的结构示意图;
图14是根据本申请第十四实施例所提供的PUCCH功率控制参数确定装置的结构示意图。
具体实施方式
本申请实施例中术语“和/或”,描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
本申请实施例中术语“多个”是指两个或两个以上,其它量词与之类似。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,并不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
相关技术中,NR Rel-17中支持SPS HARQ-ACK延迟,基于K1确定SPS HARQ-ACK反馈的初始时隙,在SPS HARQ-ACK的初始时隙中,首先执行Rel-16的UCI(Uplink Control Information,上行控制信息)复用过程,如果复用之后的SPS HARQ-ACK使用SPS-PUCCH-AN-List-r16或者n1PUCCH-AN配置的资源传输,并且这个资源是无效的,则对配置了SPS HARQ-ACK延迟的SPS HARQ-ACK进行延迟。基于从初始时隙进行延迟的条件,依次判断下一个时隙/子时隙是否为目标时隙,直到找到目标时隙。延迟的SPS HARQ-ACK反馈比特附加在目标时隙中的初始HARQ-ACK比特之后,该方式适用于Type-1码本和Type-2码本。
NR Rel-17中还支持HARQ-ACK码本重传,即通过DCI(Downlink Control Information,下行控制信息)触发丢弃的HARQ-ACK在PUCCH资源上重传。考虑到HARQ-ACK重传码本所在的目标重传时隙中还可能存在一个初始的Type-1或者Type-2码本,HARQ-ACK重传码本级联在相同优先级的初始Type-1或者Type-2码本之后。
如果目标重传时隙中还存在延迟的SPS HARQ-ACK码本,则将延迟的SPS HARQ-ACK码本附加在HARQ-ACK重传码本和初始码本之后,即这个时隙中有三个码本信息进行级联,顺序为初始/新码本,HARQ-ACK重传码本,SPS延迟码本。
在NR中,针对PUCCH功率控制,会基于PUCCH承载的UCI参数去计算功率调整值。具体地,对于PUCCH格式2/3/4且UCI比特数小于等于11的时候,基于nHARQ-ACK计算功率调整值,对于PUCCH格式2/3/4且UCI比特数大于11的时候,基于OACK计算功率调整值。其中,nHARQ-ACK是计算得到的HARQ-ACK比特数,OACK是PUCCH上承载的HARQ-ACK比特数。但针对码本级联的情况,并不清楚如何确定PUCCH的功率。
因此,本申请实施例提供了PUCCH功率控制参数确定方法、装置及存储介质,用以根据终端设备的配置和PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率,解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
其中,方法和装置是基于同一申请构思的,由于方法和装置解决问题的原理相似,因此装置和方法的实施可以相互参见,重复之处不再赘述。
本申请实施例提供的技术方案可以适用于多种系统,尤其是5G系统。例如适用的系统可以是全球移 动通讯(global system of mobile communication,GSM)系统、码分多址(code division multiple access,CDMA)系统、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)通用分组无线业务(general packet radio service,GPRS)系统、长期演进(long term evolution,LTE)系统、LTE频分双工(frequency division duplex,FDD)系统、LTE时分双工(time division duplex,TDD)系统、高级长期演进(long term evolution advanced,LTE-A)系统、通用移动系统(universal mobile telecommunication system,UMTS)、全球互联微波接入(worldwide interoperability for microwave access,WiMAX)系统、5G新空口(New Radio,NR)系统等。这多种系统中均包括终端设备和网络设备。系统中还可以包括核心网部分,例如演进的分组系统(Evloved Packet System,EPS)、5G系统(5GS)等。
本申请实施例涉及的终端设备,可以是指向用户提供语音和/或数据连通性的设备,具有无线连接功能的手持式设备、或连接到无线调制解调器的其他处理设备等。在不同的系统中,终端设备的名称可能也不相同,例如在5G系统中,终端设备可以称为用户设备(User Equipment,UE)。无线终端设备可以经无线接入网(Radio Access Network,RAN)与一个或多个核心网(Core Network,CN)进行通信,无线终端设备可以是移动终端设备,如移动电话(或称为“蜂窝”电话)和具有移动终端设备的计算机,例如,可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语言和/或数据。例如,个人通信业务(Personal Communication Service,PCS)电话、无绳电话、会话发起协议(Session Initiated Protocol,SIP)话机、无线本地环路(Wireless Local Loop,WLL)站、个人数字助理(Personal Digital Assistant,PDA)等设备。无线终端设备也可以称为系统、订户单元(subscriber unit)、订户站(subscriber station),移动站(mobile station)、移动台(mobile)、远程站(remote station)、接入点(access point)、远程终端设备(remote terminal)、接入终端设备(access terminal)、用户终端设备(user terminal)、用户代理(user agent)、用户装置(user device),本申请实施例中可以根据实际需要进行选择。
本申请实施例涉及的网络设备,可以是基站,该基站可以包括多个为终端提供服务的小区。根据具体应用场合不同,基站又可以称为接入点,或者可以是接入网中在空中接口上通过一个或多个扇区与无线终端设备通信的设备,或者其它名称。网络设备可用于将收到的空中帧与网际协议(Internet Protocol,IP)分组进行相互更换,作为无线终端设备与接入网的其余部分之间的路由器,其中接入网的其余部分可包括网际协议(IP)通信网络。网络设备还可协调对空中接口的属性管理。例如,本申请实施例涉及的网络设备可以是全球移动通信系统(Global System for Mobile communications,GSM)或码分多址接入(Code Division Multiple Access,CDMA)中的网络设备(Base Transceiver Station,BTS),也可以是带宽码分多址接入(Wide-band Code Division Multiple Access,WCDMA)中的网络设备(NodeB),还可以是长期演进(long term evolution,LTE)系统中的演进型网络设备(evolutional Node B,eNB或e-NodeB)、5G网络架构(next generation system)中的5G基站(gNB),也可以是家庭演进基站(Home evolved Node B,HeNB)、中继节点(relay node)、家庭基站(femto)、微微基站(pico)等,本申请实施例中可以根据实际需要进行选择。在一些网络结构中,网络设备可以包括集中单元(centralized unit,CU)节点和分布单元(distributed unit,DU)节点,集中单元和分布单元也可以地理上分开布置。
网络设备与终端设备之间可以各自使用一或多根天线进行多输入多输出(Multi Input Multi Output,MIMO)传输,MIMO传输可以是单用户MIMO(Single User MIMO,SU-MIMO)或多用户MIMO(Multiple User MIMO,MU-MIMO)。根据根天线组合的形态和数量,MIMO传输可以是2D-MIMO、3D-MIMO、FD-MIMO或massive-MIMO,也可以是分集传输或预编码传输或波束赋形传输等。
下面参考附图描述本申请实施例的PUCCH功率控制参数确定方法、装置及存储介质。
图1是根据本申请第一实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
需要说明的是,本申请实施例的PUCCH功率控制参数确定方法可以由本申请实施例提供的PUCCH功率控制参数确定装置执行。该PUCCH功率控制参数确定装置可以为电子设备,也可以被配置在电子设备中。其中,电子设备,可以是任意能够进行数据处理的静止或者移动计算设备,例如笔记本电脑、智能手机、可穿戴设备等移动计算设备,或者台式计算机等静止的计算设备,或者服务器,或者其它类型的计算设备等,本申请实施例中可以根据实际需要进行选择。
如图1所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤101,根据终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率。
其中,终端设备的配置包括SPS延迟和HARQ-ACK重传中的至少一个。
其中,PUCCH中包含的码本包括初传码本、SPS延迟码本、HARQ-ACK重传码本中的至少一个。
在一些实施例中,可以根据终端设备的配置和PUCCH中包含的码本,确定PUCCH功率控制参数。例如,可以在终端设备配置了SPS延迟和/或HARQ-ACK重传的情况下,响应于HARQ-ACK承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11,基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK
本申请提供的PUCCH功率控制参数确定方法,通过根据终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
为了清楚说明本申请中是如何在终端设备的配置包括SPS延迟的情况下确定PUCCH功率控制参数的,本申请实施例提供了一种PUCCH功率控制参数确定方法可能的实现方式,图2是根据本申请第二实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图2所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤201,在终端设备的配置包括半持续调度SPS延迟的情况下,根据第一混合自动重传请求-确定HARQ-ACK参数和第二HARQ-ACK参数,确定PUCCH功率控制参数。
需要说明的是,在终端设备的配置包括半持续调度SPS延迟的情况下,PUCCH中包含的码本存在的码本级联情况为PUCCH中同时包含初传码本和SPS延迟码本,其中,初传码本即为初始码本,是指目标时隙中存在的初始HARQ-ACK比特。
PUCCH中同时包含初传码本和SPS延迟码本是指目标时隙中存在初始HARQ-ACK比特,延迟的SPS HARQ-ACK反馈比特需附加在目标时隙中的初始HARQ-ACK比特之后。
此外,除了上述码本级联情况之外,PUCCH上HARQ-ACK的码本传输情况还可能存在以下两种情况:
情况一:PUCCH中只包含SPS延迟码本,即目标时隙中不存在初始HARQ-ACK比特,只需在目标时隙中传输延迟的SPS HARQ-ACK反馈比特即可;
情况二:PUCCH中只包含初传码本,即目标时隙中只存在初始HARQ-ACK比特,不存在延迟的SPS HARQ-ACK反馈比特。
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值。
其中,对于第一固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第一固定值进行设定,例如,可以将第一固定值设定为0,或者,也可以根据实际应用需求对第一固定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
其中,在PUCCH中包含SPS延迟码本的情况下第二HARQ-ACK参数是基于SPS延迟码本的比特数确定的,在PUCCH中不包含SPS延迟码本的情况下第二HARQ-ACK参数为第二固定值。可选地,如果PUCCH中包含SPS延迟码本,第二HARQ-ACK参数可以等于SPS延迟码本的比特数。
类似地,对于第二固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第二固定值进行设定,例如,可以将第二固定值设定为0,或者,也可以根据实际应用需求对第二固定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
在一些实施例中,可以在终端设备的配置包括SPS延迟的情况下,将第一HARQ-ACK参数与第二HARQ-ACK参数的和确定为PUCCH功率控制参数。从而通过上述第一HARQ-ACK参数和第二HARQ-ACK参数的取值的描述可知,对于上述码本级联的情况,由于PUCCH中同时包含初传码本和SPS延迟码本,则第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,此时,PUCCH功率控制参数即为第一HARQ-ACK参数与第二HARQ-ACK参数的和;针对上述情况一来说,由于PUCCH中只包含SPS延迟码本,则第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,此时,PUCCH功率控制参数即为第一固定值与第二HARQ-ACK参数的和;针对上述情况二来说,由于PUCCH中只包含初传码本,则第一HARQ-ACK参 数基于初传码本确定,第二HARQ-ACK参数为第二固定值,此时,PUCCH功率控制参数即为第一HARQ-ACK参数与第二固定值的和。
作为一种示例,假设第一HARQ-ACK参数用nHARQ-ACK,0表示,第二HARQ-ACK参数用OSPS表示,PUCCH功率控制参数用nHARQ-ACK表示,则可以将nHARQ-ACK,0+OSPS作为nHARQ-ACK确定PUCCH的功率。其中,如果PUCCH中包含初传码本,nHARQ-ACK,0基于初传码本确定,否则nHARQ-ACK,0等于0;如果PUCCH中包含SPS延迟码本,OSPS等于SPS延迟码本的比特数,否则OSPS等于0。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括半持续调度SPS延迟的情况下,根据第一混合自动重传请求-确定HARQ-ACK参数和第二HARQ-ACK参数,确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
上一实施例描述了一种在终端设备的配置包括SPS延迟的情况下确定PUCCH功率控制参数可能的实现方式,本申请实施例提供了另一种在终端设备的配置包括SPS延迟的情况下确定PUCCH功率控制参数可能的实现方式,图3是根据本申请第三实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图3所示,该PUCCH功率控制参数确定方法可以包括以下步骤301和302。
步骤301,在终端设备的配置包括SPS延迟且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟且PUCCH中只包含SPS延迟码本的情况下,将SPS延迟码本的比特数确定为PUCCH功率控制参数,即PUCCH功率控制参数等于SPS延迟码本的比特数。
需要说明的是,针对图2所示的实施例中,在终端设备的配置包括SPS延迟且PUCCH中只包含SPS延迟码本的情况下,第一HARQ-ACK参数为第一固定值,从而PUCCH功率控制参数为第一固定值与第二HARQ-ACK参数的和,其中,第二HARQ-ACK参数是基于SPS延迟码本的比特数确定。此时,若第一固定值为0,则PUCCH功率控制参数等于0+第二HARQ-ACK参数,即PUCCH功率控制参数等于第二HARQ-ACK参数,也即PUCCH功率控制参数基于SPS延迟码本的比特数确定,与本步骤提供的方案一致;若第一固定值不为0,则PUCCH功率控制参数为第一固定值(非0值)与第二HARQ-ACK参数的和,与本步骤提供的方案不同。
步骤302,在终端设备的配置包括SPS延迟且PUCCH中包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟且PUCCH中包含SPS延迟码本和初传码本的情况下,直接基于初传码本确定PUCCH功率控制参数,而不考虑SPS延迟码本。
需要说明的是,在本申请实施例中,在终端设备的配置包括SPS延迟且PUCCH中包含SPS延迟码本和初传码本的情况下,除了可以直接基于初传码本确定PUCCH功率控制参数,而不考虑SPS延迟码本之外,或者可以延用图2所示的实施例提供的方案,即基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,然后基于第一HARQ-ACK参数和第二HARQ-ACK参数确定PUCCH功率控制参数。
作为一种示例,假设第一HARQ-ACK参数用nHARQ-ACK,0表示,第二HARQ-ACK参数用OSPS表示,PUCCH功率控制参数用nHARQ-ACK表示,则可以基于PUCCH中包含的码本确定nHARQ-ACK,从而确定PUCCH的功率。具体地,如果PUCCH中只包含SPS延迟码本,则可以将OSPS作为nHARQ-ACK确定PUCCH的功率,其中,OSPS等于SPS延迟码本的比特数;如果PUCCH中同时包含SPS延迟码本和初传码本,则可以按照初传码本确定nHARQ-ACK,不考虑SPS延迟码本,或者,可以按照初传码本确定nHARQ-ACK,0,OSPS等于SPS延迟码本的比特数,将nHARQ-ACK,0+OSPS作为nHARQ-ACK确定PUCCH的功率。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟且PUCCH中包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
为了清楚说明在终端设备的配置包括SPS延迟的情况下,如何确定PUCCH功率控制参数,现举例 进行说明。
作为一种示例,对于配置了SPS HARQ-ACK延迟的情况,当HARQ-ACK承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11时,可以基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK,从而确定PUCCH的功率。具体的nHARQ-ACK确定方式如下:
方案1:将nHARQ-ACK,0+OSPS作为nHARQ-ACK确定PUCCH的功率。
其中,如果PUCCH中包含初传码本,nHARQ-ACK,0基于初传码本确定,否则nHARQ-ACK,0等于0;
如果PUCCH中包含SPS延迟码本,OSPS等于SPS延迟码本的比特数,否则OSPS等于0。
方案2:基于PUCCH中包含的码本确定nHARQ-ACK,从而确定PUCCH的功率。具体地:
如果PUCCH中只包含SPS延迟码本,则nHARQ-ACK等于SPS延迟码本的比特数;
如果PUCCH中同时包含SPS延迟码本和初传码本,则:
方案2-1:按照初传码本确定nHARQ-ACK,不考虑SPS延迟码本。
方案2-2:按照初传码本确定nHARQ-ACK,0,OSPS等于SPS延迟码本的比特数,将nHARQ-ACK,0+OSPS作为nHARQ-ACK确定PUCCH的功率。
从而假设UE被配置了SPS HARQ-ACK延迟,且使用PUCCH格式2/3/4承载HARQ-ACK进行传输,则当PUCCH承载的OACK+OSR+OCSI≤11时,UE可以基于上述两种方案确定用于PUCCH传输功率确定的HARQ-ACK信息比特数,即PUCCH功率控制参数nHARQ-ACK,当PUCCH承载的OACK+OSR+OCSI>11时,UE可以基于级联的HARQ-ACK码本总比特数确定用于PUCCH传输功率确定的HARQ-ACK信息比特数OACK
需要说明的是,在上述方案中,基于初传码本确定nHARQ-ACK,0或者nHARQ-ACK,如果初传码本是Type-1HARQ-ACK码本,则这里描述的nHARQ-ACK,0或者nHARQ-ACK如3GPP TS38.213第9.1.2.1或16.5.1.1章节中的定义的nHARQ-ACK;如果初传码本是Type-2 HARQ-ACK码本,则这里描述的nHARQ-ACK,0或者nHARQ-ACK如3GPP TS38.213第9.1.3.1或9.1.3.3或16.5.2.1章节中的定义的nHARQ-ACK
综上,对于配置了SPS HARQ-ACK延迟的情况,当HARQ-ACK承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11时,可以基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK,保证这种情况下的PUCCH传输性能。
为了清楚说明本申请中是如何在终端设备的配置包括HARQ-ACK码本重传的情况下确定PUCCH功率控制参数的,本申请实施例提供了一种PUCCH功率控制参数确定方法可能的实现方式,图4是根据本申请第四实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图4所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤401,在终端设备的配置包括HARQ-ACK重传的情况下,根据第一HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数。
需要说明的是,在终端设备的配置包括HARQ-ACK重传的情况下,PUCCH中包含的码本存在的码本级联情况为PUCCH中同时包含初传码本和HARQ-ACK重传码本,其中,初传码本即为初始码本。
PUCCH中同时包含初传码本和HARQ-ACK重传码本是指考虑到HARQ-ACK重传码本所在的目标重传时隙中可能存在一个初始的Type-1或者Type-2码本,HARQ-ACK重传码本级联在相同优先级的初始Type-1或者Type-2码本之后。
此外,除了上述码本级联情况之外,PUCCH上HARQ-ACK的码本传输情况还可能存在以下两种情况:
情况一:PUCCH中只包含HARQ-ACK重传码本,即HARQ-ACK重传码本所在的目标重传时隙中不存在初始的Type-1或者Type-2码本,只需在目标重传时隙中传输HARQ-ACK重传码本即可;
情况二:PUCCH中只包含初传码本,即目标重传时隙中只存在初始的Type-1或者Type-2码本,不存在HARQ-ACK重传码本。
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第三固定值。
其中,对于第一固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第一固定值进行设定,例如,可以将第一固定值设定为0,或者,也可以根据实际应用需求对第一固 定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
其中,在PUCCH中包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数是基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定的,在PUCCH中不包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数为第三固定值。可选地,如果PUCCH中包含HARQ-ACK重传码本,第三HARQ-ACK参数可以基于HARQ-ACK重传码本确定,或者第三HARQ-ACK参数可以等于HARQ-ACK重传码本的比特数。
类似地,对于第三固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第三固定值进行设定,例如,可以将第三固定值设定为0,或者,也可以根据实际应用需求对第三固定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
在一些实施例中,可以在终端设备的配置包括HARQ-ACK重传码本的情况下,将第一HARQ-ACK参数与第三HARQ-ACK参数的和确定为PUCCH功率控制参数。从而通过上述第一HARQ-ACK参数和第三HARQ-ACK参数的取值的描述可知,对于上述码本级联的情况,由于PUCCH中同时包含初传码本和HARQ-ACK重传码本,则第一HARQ-ACK参数基于初传码本确定,第三HARQ-ACK参数基于HARQ-ACK重传码本的比特数确定,此时,PUCCH功率控制参数即为第一HARQ-ACK参数与第三HARQ-ACK参数的和;针对上述情况一来说,由于PUCCH中只包含HARQ-ACK重传码本,则第一HARQ-ACK参数为第一固定值,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,此时,PUCCH功率控制参数即为第一固定值与第三HARQ-ACK参数的和;针对上述情况二来说,由于PUCCH中只包含初传码本,则第一HARQ-ACK参数基于初传码本确定,第三HARQ-ACK参数为第三固定值,此时,PUCCH功率控制参数即为第一HARQ-ACK参数与第三固定值的和。
作为一种示例,假设第一HARQ-ACK参数用nHARQ-ACK,0表示,第三HARQ-ACK参数用nHARQ-ACK,1或者Oretran表示,PUCCH功率控制参数用nHARQ-ACK表示,则可以将nHARQ-ACK,0+nHARQ-ACK,1或者nHARQ-ACK,0+Oretran作为nHARQ-ACK确定PUCCH的功率。其中,如果PUCCH中包含初传码本,nHARQ-ACK,0基于初传码本确定,否则nHARQ-ACK,0等于0;如果PUCCH中包含HARQ-ACK重传码本,nHARQ-ACK,1基于HARQ-ACK重传码本确定或者Oretran等于HARQ-ACK重传码本的比特数,否则nHARQ-ACK,1或者Oretran等于0。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括HARQ-ACK重传的情况下,根据第一HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
上一实施例描述了一种在终端设备的配置包括HARQ-ACK重传的情况下确定PUCCH功率控制参数可能的实现方式,本申请实施例提供了另一种在终端设备的配置包括HARQ-ACK重传的情况下确定PUCCH功率控制参数可能的实现方式,图5是根据本申请第五实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图5所示,该PUCCH功率控制参数确定方法可以包括以下步骤501和502。
步骤501,在终端设备的配置包括HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本,确定PUCCH功率控制参数,或者,将HARQ-ACK重传码本的比特数确定为PUCCH功率控制参数,即PUCCH功率控制参数等于HARQ-ACK重传码本的比特数。
需要说明的是,针对图4所示的实施例中,在终端设备的配置包括HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,由于第一HARQ-ACK参数为第一固定值,从而PUCCH功率控制参数为第一固定值与第三HARQ-ACK参数的和,其中,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定。此时,若第一固定值为0,则PUCCH功率控制参数等于0+第三HARQ-ACK参数,即PUCCH功率控制参数等于第三HARQ-ACK参数,也即PUCCH功率控制参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,与本步骤提供的方案一致;若第 一固定值不为0,则PUCCH功率控制参数为第一固定值(非0值)与第三HARQ-ACK参数的和,与本步骤提供的方案不同。
步骤502,在终端设备的配置包括HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,直接基于初传码本确定PUCCH功率控制参数,而不考虑HARQ-ACK重传码本。
需要说明的是,在本申请实施例中,在终端设备的配置包括HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,除了直接基于初传码本确定PUCCH功率控制参数,而不考虑HARQ-ACK重传码本之外,或者可以延用图4所示的实施例提供的方案,即基于初传码本确定第一HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定确定第三HARQ-ACK参数,然后基于第一HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
作为一种示例,假设第一HARQ-ACK参数用nHARQ-ACK,0表示,第三HARQ-ACK参数用nHARQ-ACK,1或者Oretran表示,PUCCH功率控制参数用nHARQ-ACK表示,则可以基于PUCCH中包含的码本确定nHARQ-ACK,从而确定PUCCH的功率。具体地,如果PUCCH中只包含HARQ-ACK重传码本,则可以将nHARQ-ACK,1或者Oretran作为nHARQ-ACK确定PUCCH的功率,其中,将OSPS作为nHARQ-ACK确定PUCCH的功率,其中,OSPS等于SPS延迟码本的比特数;如果PUCCH中同时包含HARQ-ACK重传码本和初传码本,则可以按照初传码本确定nHARQ-ACK,不考虑HARQ-ACK重传码本,或者,可以按照初传码本确定nHARQ-ACK,0,按照HARQ-ACK重传码本确定nHARQ-ACK,1或者Oretran等于HARQ-ACK重传码本的比特数,将nHARQ-ACK,0+nHARQ-ACK,1或者nHARQ-ACK,0+Oretran作为nHARQ-ACK确定PUCCH的功率。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数,或者,在终端设备的配置包括HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
为了清楚说明在终端设备的配置包括HARQ-ACK重传的情况下,如何确定PUCCH功率控制参数,现举例进行说明。
作为一种示例,对于配置了HARQ-ACK码本重传的情况,当HARQ-ACK承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11时,可以基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK,从而确定PUCCH的功率。具体的nHARQ-ACK确定方式如下:
方案1:将nHARQ-ACK,0+nHARQ-ACK,1或者nHARQ-ACK,0+Oretran作为nHARQ-ACK确定PUCCH的功率。
其中,如果PUCCH中包含初传码本,nHARQ-ACK,0基于初传码本确定,否则nHARQ-ACK,0等于0;
如果PUCCH中包含HARQ-ACK重传码本,nHARQ-ACK,1基于HARQ-ACK重传确定或者Oretran等于HARQ-ACK重传码本的比特数,否则nHARQ-ACK,1或者Oretran等于0。
即基于方案1,可以确定PUCCH的功率参数nHARQ-ACK=nHARQ-ACK,0+nHARQ-ACK,1,或者nHARQ-ACK=nHARQ-ACK,0+Oretran,其中,nHARQ-ACK,0基于初传码本确定,nHARQ-ACK,1基于HARQ-ACK重传码本确定,Oretran等于HARQ-ACK重传码本的比特数。
方案2:基于PUCCH中包含的码本确定nHARQ-ACK,从而确定PUCCH的功率。具体地:
如果PUCCH中只包含HARQ-ACK重传码本,则nHARQ-ACK基于HARQ-ACK重传码本确定,或者,nHARQ-ACK等于HARQ-ACK重传码本的比特数;
如果PUCCH中同时包含HARQ-ACK重传码本和初传码本,则:
方案2-1:按照初传码本确定nHARQ-ACK,不考虑HARQ-ACK重传码本。
方案2-2:按照初传码本确定nHARQ-ACK,0,按照HARQ-ACK重传码本确定nHARQ-ACK,1或者Oretran等于HARQ-ACK重传码本的比特数,将nHARQ-ACK,0+nHARQ-ACK,1或者nHARQ-ACK,0+Oretran作为nHARQ-ACK确定PUCCH的功率。
从而假设UE被配置了HARQ-ACK码本重传,且使用PUCCH格式2/3/4承载HARQ-ACK进行传输, 则当PUCCH承载的OACK+OSR+OCSI≤11时,UE可以基于上述两种方案确定用于PUCCH传输功率确定的HARQ-ACK信息比特数,即PUCCH功率控制参数nHARQ-ACK,当PUCCH承载的OACK+OSR+OCSI>11时,UE可以基于级联的HARQ-ACK码本总比特数确定用于PUCCH传输功率确定的HARQ-ACK信息比特数OACK
需要说明的是,在上述方案中,基于初传码本确定nHARQ-ACK,0或者nHARQ-ACK,以及基于重传码本确定nHARQ-ACK,1或者nHARQ-ACK,如果初传码本是Type-1 HARQ-ACK码本,则这里描述的nHARQ-ACK,0,nHARQ-ACK,1或者nHARQ-ACK如3GPP TS38.213第9.1.2.1或16.5.1.1章节中的定义的nHARQ-ACK;如果初传码本是Type-2 HARQ-ACK码本,则这里描述的nHARQ-ACK,0,nHARQ-ACK,1或者nHARQ-ACK如3GPP TS38.213第9.1.3.1或9.1.3.3或16.5.2.1章节中的定义的nHARQ-ACK
综上,对于配置了HARQ-ACK码本重传的情况,当HARQ-ACK承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11时,可以基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK,保证这种情况下的PUCCH传输性能。
为了清楚说明本申请中是如何在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下确定PUCCH功率控制参数的,本申请实施例提供了一种PUCCH功率控制参数确定方法可能的实现方式,图6是根据本申请第六实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图6所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤601,在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数。
需要说明的是,在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,PUCCH中包含的码本存在的码本级联情况包括以下四种情况:
情况一:PUCCH中同时包含初传码本和SPS延迟码本,其中,初传码本即为初始码本,是指目标时隙中存在的初始HARQ-ACK比特。
PUCCH中同时包含初传码本和SPS延迟码本是指目标时隙中存在初始HARQ-ACK比特,延迟的SPS HARQ-ACK反馈比特需附加在目标时隙中的初始HARQ-ACK比特之后。
情况二:PUCCH中同时包含初传码本和HARQ-ACK重传码本,其中,初传码本即为初始码本。
PUCCH中同时包含初传码本和HARQ-ACK重传码本是指考虑到HARQ-ACK重传码本所在的目标重传时隙中可能存在一个初始的Type-1或者Type-2码本,HARQ-ACK重传码本级联在相同优先级的初始Type-1或者Type-2码本之后。
需要说明的是,情况二中,目标重传时隙中不存在延迟的SPS HARQ-ACK码本。
情况三:PUCCH中同时包含初传码本、HARQ-ACK重传码本和SPS延迟码本,其中,初传码本即为初始码本。
PUCCH中同时包含初传码本、HARQ-ACK重传码本和SPS延迟码本是指考虑到HARQ-ACK重传码本所在的目标重传时隙中可能存在一个初始的Type-1或者Type-2码本,HARQ-ACK重传码本级联在相同优先级的初始Type-1或者Type-2码本之后,但由于此时目标重传时隙中还存在延迟的SPS HARQ-ACK码本,因此还需要将延迟的SPS HARQ-ACK码本附加在HARQ-ACK重传码本和初始码本之后,即这个时隙中有三个码本信息进行级联,顺序为初始/新码本,HARQ-ACK重传码本,SPS延迟码本。
情况四:PUCCH中同时包含HARQ-ACK重传码本和SPS延迟码本,即HARQ-ACK重传码本所在的目标重传时隙中不存在初始的Type-1或者Type-2码本,直接在目标重传时隙中传输HARQ-ACK重传码本,此时,由于目标重传时隙中还存在延迟的SPS HARQ-ACK码本,因此需要将延迟的SPS HARQ-ACK码本附加在HARQ-ACK重传码本之后。
此外,除了上述四种码本级联情况之外,PUCCH上HARQ-ACK的码本传输情况还可能存在以下三种情况:
情况五:PUCCH中只包含初传码本,即目标时隙中只存在初始HARQ-ACK比特,不存在延迟的SPS HARQ-ACK码本和/或HARQ-ACK重传码本。
情况六:PUCCH中只包含SPS延迟码本,即目标时隙中不存在初始HARQ-ACK比特,只需在目标 时隙中传输延迟的SPS HARQ-ACK反馈比特即可;
情况七:PUCCH中只包含HARQ-ACK重传码本,即HARQ-ACK重传码本所在的目标重传时隙中不存在初始的Type-1或者Type-2码本,以及延迟的SPS HARQ-ACK码本,只需在目标重传时隙中传输HARQ-ACK重传码本即可。
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值。
其中,对于第一固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第一固定值进行设定,例如,可以将第一固定值设定为0,或者,也可以根据实际应用需求对第一固定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
在PUCCH中包含SPS延迟码本的情况下第二HARQ-ACK参数是基于SPS延迟码本的比特数确定的,在PUCCH中不包含SPS延迟码本的情况下第七HARQ-ACK参数为第二固定值。
类似地,对于第二固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第二固定值进行设定,例如,可以将第二固定值设定为0,或者,也可以根据实际应用需求对第二固定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
在PUCCH中包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数是基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定的,在PUCCH中不包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数为第三固定值。
类似地,对于第三固定值的取值本申请实施例可以根据实际需要进行选择。可选地,可以根据人工经验对第三固定值进行设定,例如,可以将第三固定值设定为0,或者,也可以根据实际应用需求对第三固定值进行动态调整,本申请实施例中可以根据实际需要进行选择。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,将第一HARQ-ACK参数、第二HARQ-ACK参数与第三HARQ-ACK参数的和确定为PUCCH功率控制参数。从而通过上述第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数的取值的描述可知,针对上述情况一来说,由于PUCCH中同时包含初传码本和SPS延迟码本,则第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,第三HARQ-ACK参数为第三固定值,此时,PUCCH功率控制参数即为第一HARQ-ACK参数、第二HARQ-ACK参数与第三固定值的和;针对上述情况二来说,由于PUCCH中同时包含初传码本和HARQ-ACK重传码本,则第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数为第二固定值,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,此时,PUCCH功率控制参数即为第一HARQ-ACK参数、第二固定值与第三HARQ-ACK参数的和;针对上述情况三来说,由于PUCCH中同时包含初传码本、HARQ-ACK重传码本和SPS延迟码本,则第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,此时,PUCCH功率控制参数即为第一HARQ-ACK参数、第二HARQ-ACK参数与第三HARQ-ACK参数的和;针对上述情况四来说,由于PUCCH中同时包含HARQ-ACK重传码本和SPS延迟码本,则第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,此时,PUCCH功率控制参数即为第一固定值、第二HARQ-ACK参数与第三HARQ-ACK参数的和;针对上述情况一来说,由于PUCCH中只包含初传码本,则第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数为第二固定值,第三HARQ-ACK参数为第三固定值,此时,PUCCH功率控制参数即为第一HARQ-ACK参数、第二固定值与第三固定值的和;针对上述情况六来说,由于PUCCH中只包含SPS延迟码本,则第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,第三HARQ-ACK参数为第三固定值,此时,PUCCH功率控制参数即为第一固定值、第二HARQ-ACK参数与第三固定值的和;针对上述情况七来说,由于PUCCH中只包含HARQ-ACK重传码本,则第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数为第二固定值,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,此时,PUCCH功率控制参数即为第一固定值、第二固定值与第三HARQ-ACK参数的和。
作为一种示例,假设第一HARQ-ACK参数用nHARQ-ACK,0表示,第二HARQ-ACK参数用OSPS表示,第三HARQ-ACK参数用nHARQ-ACK,1或者Oretran表示,PUCCH功率控制参数用nHARQ-ACK表示,则可以将nHARQ-ACK,0+OSPS+nHARQ-ACK,1或者nhARQ-ACK,0+OSPS+Oretran作为nHARQ-ACK确定PUCCH的功率。其中,如果PUCCH中包含初传码本,nHARQ-ACK,0基于初传码本确定,否则nHARQ-ACK,0等于0;如果PUCCH中包含HARQ-ACK重传码本,nHARQ-ACK,1基于HARQ-ACK重传码本确定或者Oretran等于HARQ-ACK重传码本的比特数,否则nHARQ-ACK,1或者Oretran等于0;如果PUCCH中包含SPS延迟码本,OSPS等于SPS延迟码本的比特数,否则OSPS等于0。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
上一实施例描述了一种在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下确定PUCCH功率控制参数可能的实现方式,本申请实施例提供了另一种在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下确定PUCCH功率控制参数可能的实现方式,图7是根据本申请第七实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图7所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤701,在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、HARQ-ACK重传码本的比特数、SPS延迟码本的比特数、第一参数和第二参数,确定PUCCH功率控制参数。
其中,第一HARQ-ACK参数是在PUCCH中包含初传码本的情况下基于初传码本确定的。
其中,第一参数和第二参数是预先定义的或者由高层参数配置的。可选地,第一参数和第二参数的取值范围为[0,1]。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,将HARQ-ACK重传码本的比特数与第一参数的乘积确定为第一中间值,将SPS延迟码本的比特数与第二参数的乘积确定为第二中间值,从而将第一HARQ-ACK参数、第一中间值和第二中间值的和确定为PUCCH功率控制参数。
作为一种示例,假设第一HARQ-ACK参数用nHARQ-ACK,0表示,HARQ-ACK重传码本的比特数用Oretran表示,SPS延迟码本的比特数用OSPS表示,第一参数用α表示,第二参数用β表示,则确定PUCCH功率控制参数nHARQ-ACK的计算如下:
nHARQ-ACK=nHARQ-ACK,0+α*Oretran+β*OSPS
其中,nHARQ-ACK,0是在PUCCH中包含初传码本的情况下基于初传码本确定的,α,β为大于等于0且小于等于1的参数,可以预先定义或者由高层参数配置。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、HARQ-ACK重传码本的比特数、SPS延迟码本的比特数、第一参数和第二参数,确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
下面结合图8,对在终端设备的配置包括SPS延迟和HARQ-ACK重传,且,PUCCH中只包含SPS延迟码本或者PUCCH中只包含HARQ-ACK重传码本的情况下确定PUCCH功率控制参数可能的实现方式进行描述。
图8是根据本申请第八实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图8所示,该PUCCH功率控制参数确定方法可以包括以下步骤801和802。
步骤801,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含SPS延迟码本的情况下,将SPS延迟码本的比特数确定为PUCCH功率控制参数,即PUCCH功率控制参数等 于SPS延迟码本的比特数。
需要说明的是,针对图6所示的实施例中,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含SPS延迟码本的情况下,第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,第三HARQ-ACK参数为第三固定值,PUCCH功率控制参数为第一固定值、第二HARQ-ACK参数与第三固定值的和。此时,若第一固定值和第三固定值均为0,则PUCCH功率控制参数等于0+第二HARQ-ACK参数+0,即PUCCH功率控制参数等于第二HARQ-ACK参数,也即PUCCH功率控制参数基于SPS延迟码本的比特数确定,与本步骤提供的方案一致;若第一固定值和/或第三固定值不为0,则PUCCH功率控制参数为第一固定值(非0值)、第二HARQ-ACK参数与第三固定值(非0值)的和,与本步骤提供的方案不同。
步骤802,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本,确定PUCCH功率控制参数,或者,将HARQ-ACK重传码本的比特数确定为PUCCH功率控制参数,即PUCCH功率控制参数等于HARQ-ACK重传码本的比特数。
需要说明的是,针对图6所示的实施例中,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数为第二固定值,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,PUCCH功率控制参数为第一固定值、第二固定值与第三HARQ-ACK参数的和。此时,若第一固定值和第二固定值均为0,则PUCCH功率控制参数等于0+0+第三HARQ-ACK参数,即PUCCH功率控制参数等于第三HARQ-ACK参数,也即PUCCH功率控制参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,与本步骤提供的方案一致;若第一固定值和/或第二固定值不为0,则PUCCH功率控制参数为第一固定值(非0值)、第二固定值(非0值)与第三HARQ-ACK参数的和,与本步骤提供的方案不同。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
下面结合图9,对在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下确定PUCCH功率控制参数可能的实现方式进行描述。
图9是根据本申请第九实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图9所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤901,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,直接基于初传码本确定PUCCH功率控制参数,而不考虑HARQ-ACK重传码本和SPS延迟码本。
步骤902,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数中的至少一个,以及第一HARQ-ACK参数确定PUCCH功率控制参数。
需要说明的是,基于第二HARQ-ACK参数和第三HARQ-ACK参数中的至少一个,以及第一 HARQ-ACK参数确定PUCCH功率控制参数包括以下三种情况:
情况一:基于第三HARQ-ACK参数和第一HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,可以基于HARQ-ACK重传码本,确定第三HARQ-ACK参数,或者,可以将HARQ-ACK重传码本的比特数确定为第三HARQ-ACK参数,即第三HARQ-ACK参数等于HARQ-ACK重传码本的比特数,以及可以基于初传码本确定第一HARQ-ACK参数,从而将第三HARQ-ACK参数与第一HARQ-ACK参数的和确定为PUCCH功率控制参数。
情况二:基于第二HARQ-ACK参数和第一HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,可以将SPS延迟码本的比特数确定为第二HARQ-ACK参数,即第二HARQ-ACK参数等于SPS延迟码本的比特数,以及可以基于初传码本确定第一HARQ-ACK参数,从而将第二HARQ-ACK参数与第一HARQ-ACK参数的和确定为PUCCH功率控制参数。
情况三:基于第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,可以基于HARQ-ACK重传码本,确定第三HARQ-ACK参数,或者,可以将HARQ-ACK重传码本的比特数确定为第三HARQ-ACK参数,即第三HARQ-ACK参数等于HARQ-ACK重传码本的比特数,以及可以将SPS延迟码本的比特数确定为第二HARQ-ACK参数,即第二HARQ-ACK参数等于SPS延迟码本的比特数,以及可以基于初传码本确定第一HARQ-ACK参数,从而将第一HARQ-ACK参数、第二HARQ-ACK参数与第三HARQ-ACK参数的和确定为PUCCH功率控制参数。
需要说明的是,上述情况三所提供的方案与图6所示的实施例中在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含初传码本、HARQ-ACK重传码本和SPS延迟码本的情况下提供的方案一致,但上述情况一、情况二与图6所示的实施例中在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含初传码本、HARQ-ACK重传码本和SPS延迟码本的情况下提供的方案不同。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数中的至少一个,以及第一HARQ-ACK参数确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
下面结合图10,对在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下确定PUCCH功率控制参数可能的实现方式进行描述。
图10是根据本申请第十实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图10所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤1001,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,直接基于初传码本确定PUCCH功率控制参数,而不考虑SPS延迟码本。
步骤1002,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于第一HARQ-ACK参数和第二HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,将SPS延迟码本的比特数确定为第二HARQ-ACK参数,即第二HARQ-ACK参数等于SPS延迟码本的比特数,然后将第一HARQ-ACK参数与第二HARQ-ACK参数的和确定为PUCCH功率控制参数。
需要说明的是,针对图6所示的实施例中,在终端设备的配置包括SPS延迟和HARQ-ACK重传且 PUCCH中仅包含SPS延迟码本和初传码本的情况下,第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数基于SPS延迟码本的比特数确定,第三HARQ-ACK参数为第三固定值,PUCCH功率控制参数为第一HARQ-ACK参数、第二HARQ-ACK参数与第三固定值的和。此时,若第三固定值为0,则PUCCH功率控制参数等于nHARQ-ACK,0+OSPS+0,与本步骤提供的方案一致;若第三固定值不为0,则PUCCH功率控制参数为第一HARQ-ACK参数、第二HARQ-ACK参数与第三固定值(非0值)的和,与本步骤提供的方案不同。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于第一HARQ-ACK参数和第二HARQ-ACK参数确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
下面结合图11,对在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下确定PUCCH功率控制参数可能的实现方式进行描述。
图11是根据本申请第十一实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图11所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤1101,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,直接基于初传码本确定PUCCH功率控制参数,而不考虑HARQ-ACK重传码本。
步骤1102,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第一HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于HARQ-ACK重传码本确定第三HARQ-ACK参数或者将HARQ-ACK重传码本的比特数确定为第三HARQ-ACK参数,然后将第一HARQ-ACK参数与第三HARQ-ACK参数的和确定为PUCCH功率控制参数。
需要说明的是,针对图6所示的实施例中,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,第一HARQ-ACK参数基于初传码本确定,第二HARQ-ACK参数为第二固定值,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,PUCCH功率控制参数为第一ARQ-ACK参数、第二固定值与第三HARQ-ACK参数的和。此时,若第二固定值为0,则PUCCH功率控制参数等于nHARQ-ACK,0+0+nHARQ-ACK,1或者nHARQ-ACK,0+0+Oretran,与本步骤提供的方案一致;若第二固定值不为0,则PUCCH功率控制参数为第五HARQ-ACK参数、第二固定值(非0值)与第三HARQ-ACK参数的和,与本步骤提供的方案不同。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第一HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
下面结合图12,对在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含 HARQ-ACK重传码本和初传码本的情况下确定PUCCH功率控制参数可能的实现方式进行描述。
图12是根据本申请第十二实施例所提供的PUCCH功率控制参数确定方法的流程示意图。
如图12所示,该PUCCH功率控制参数确定方法可以包括以下步骤:
步骤1201,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,可以直接基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数,而不考虑SPS延迟码本。可选地,可以基于HARQ-ACK重传码本,确定PUCCH功率控制参数,或者,可以将HARQ-ACK重传码本的比特数确定为PUCCH功率控制参数,即PUCCH功率控制参数等于HARQ-ACK重传码本的比特数。
步骤1202,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,可以直接基于SPS延迟码本的比特数确定PUCCH功率控制参数,而不考虑HARQ-ACK重传码本。可选地,可以将SPS延迟码本的比特数确定为PUCCH功率控制参数,即PUCCH功率控制参数等于SPS延迟码本的比特数。
步骤1203,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,可以在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,可以将SPS延迟码本的比特数确定为第二HARQ-ACK参数,可以基于HARQ-ACK重传码本确定第三HARQ-ACK参数或者将HARQ-ACK重传码本的比特数确定为第三HARQ-ACK参数,然后将第二HARQ-ACK参数与第三HARQ-ACK参数的和确定为PUCCH功率控制参数。
需要说明的是,针对图6所示的实施例中,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,第一HARQ-ACK参数为第一固定值,第二HARQ-ACK参数基于SPS延迟码本的比特数,第三HARQ-ACK参数基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定,PUCCH功率控制参数为第一固定值、第二HARQ-ACK参数与第三HARQ-ACK参数的和。此时,若第一固定值为0,则PUCCH功率控制参数等于0+OSPS+nHARQ-ACK,1或者0+OSPS+Oretran,与本步骤提供的方案一致;若第一固定值不为0,则PUCCH功率控制参数为第一固定值(非0值)、第二HARQ-ACK参数与第三HARQ-ACK参数的和,与本步骤提供的方案不同。
本申请提供的PUCCH功率控制参数确定方法,通过在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数,或者,在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数,实现解决相关技术中针对码本级联的情况不清楚如何确定PUCCH的功率的技术问题。
为了清楚说明在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,如何确定PUCCH功率控制参数,现举例进行说明。
作为一种示例,对于配置了SPS HARQ-ACK延迟和HARQ-ACK码本重传的情况,当HARQ-ACK 承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11时,可以基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK,从而确定PUCCH的功率。具体的nHARQ-ACK确定方式如下:
方案1:确定PUCCH功率控制参数nHARQ-ACK的计算如下:
nHARQ-ACK=nHARQ-ACK,0+OSPS+nHARQ-ACK,1,或者,nHARQ-ACK=nHARQ-ACK,0+OSPS+Oretran
其中,如果PUCCH中包含初传码本,nHARQ-ACK,0基于初传码本确定,否则nHARQ-ACK,0等于0;
如果PUCCH中包含HARQ-ACK重传码本,nHARQ-ACK,1基于HARQ-ACK重传确定或者Oretran等于HARQ-ACK重传码本的比特数,否则nHARQ-ACK,1或者Oretran等于0;
如果PUCCH中包含SPS延迟码本,OSPS等于SPS延迟码本的比特数,否则OSPS等于0。
方案2:确定PUCCH功率控制参数nHARQ-ACK的计算如下:
nHARQ-ACK=nHARQ-ACK,0+α*Oretran+β*OSPS
其中,nHARQ-ACK,0是在PUCCH中包含初传码本的情况下基于初传码本确定的;
Oretran为HARQ-ACK重传码本的比特数;
OSPS为SPS延迟码本的比特数;
α,β为大于等于0且小于等于1的参数,可以预先定义或者由高层参数配置。
方案3:基于PUCCH中包含的码本确定nHARQ-ACK,从而确定PUCCH的功率。具体地:
1、如果PUCCH中只包含SPS延迟码本,则nHARQ-ACK等于SPS延迟码本的比特数;
2、如果PUCCH中只包含HARQ-ACK重传码本,则nHARQ-ACK基于HARQ-ACK重传码本确定,或者,nHARQ-ACK等于HARQ-ACK重传码本的比特数;
3、如果PUCCH中同时包含HARQ-ACK重传码本、SPS延迟码本和初传码本,则:
方案3-1:按照初传码本确定nHARQ-ACK,0,按照HARQ-ACK重传码本确定nHARQ-ACK,1或者Oretran等于HARQ-ACK重传码本的比特数,OSPS等于SPS延迟码本的比特数,将nHARQ-ACK,0+nHARQ-ACK,1+OSPS或者nHARQ-ACK,0+Oretran+OSPS作为nHARQ-ACK确定PUCCH的功率。
方案3-2:按照初传码本确定nHARQ-ACK,不考虑HARQ-ACK重传码本和SPS延迟码本。
方案3-3:按照初传码本确定nHARQ-ACK,0,按照HARQ-ACK重传码本确定nHARQ-ACK,1或者Oretran等于HARQ-ACK重传码本的比特数,将nHARQ-ACK,0+nHARQ-ACK,1或者nHARQ-ACK,0+Oretran作为nhARQ-ACK确定PUCCH的功率;
方案3-4:按照初传码本确定nHARQ-ACK,0,OSPS等于SPS延迟码本的比特数,将nHARQ-ACK,0+OSPS作为nHARQ-ACK确定PUCCH的功率。
4、如果PUCCH中同时包含SPS延迟码本和初传码本,则:
方案4-1:按照初传码本确定nHARQ-ACK,不考虑SPS延迟码本。
方案4-2:按照初传码本确定nHARQ-ACK,0,OSPS等于SPS延迟码本的比特数,将nHARQ-ACK,0+OSPS作为nHARQ-ACK确定PUCCH的功率;
5、如果PUCCH中同时包含HARQ-ACK重传码本和初传码本,则:
方案5-1:按照初传码本确定nHARQ-ACK,不考虑HARQ-ACK重传码本。
方案5-2:按照初传码本确定nHARQ-ACK,0,按照HARQ-ACK重传码本确定nHARQ-ACK,1或者Oretran等于HARQ-ACK重传码本的比特数,将nHARQ-ACK,0+nHARQ-ACK,1或者nHARQ-ACK,0+Oretran作为nHARQ-ACK确定PUCCH的功率;
6、如果PUCCH中同时包含HARQ-ACK重传码本和SPS延迟码本,则:
方案6-1:按照HARQ-ACK重传码本确定nHARQ-ACK或者nHARQ-ACK等于HARQ-ACK重传码本的比特数,不考虑SPS延迟码本;
方案6-2:nHARQ-ACK等于SPS延迟码本的比特数,不考虑HARQ-ACK重传码本;
方案6-3:按照HARQ-ACK重传码本确定nHARQ-ACK,1或者Oretran等于HARQ-ACK重传码本的比特数,OSPS等于SPS延迟码本的比特数,将nHARQ-ACK,1+OSPS或者Oretran+OSPS作为nHARQ-ACK确定PUCCH的功率。
从而假设UE被配置了HARQ-ACK码本重传,且使用PUCCH格式2/3/4承载HARQ-ACK进行传输, 则当PUCCH承载的OACK+OSR+OCSI≤11时,UE可以基于上述三种方案确定用于PUCCH传输功率确定的HARQ-ACK信息比特数,即PUCCH功率控制参数nHARQ-ACK,当PUCCH承载的OACK+OSR+OCSI>11时,UE可以基于级联的HARQ-ACK码本总比特数确定用于PUCCH传输功率确定的HARQ-ACK信息比特数OACK
需要说明的是,在上述方案中,基于初传码本确定nHARQ-ACK,0或者nHARQ-ACK,以及基于重传码本确定nHARQ-ACK,1或者nHARQ-ACK,如果初传码本是Type-1 HARQ-ACK码本,则这里描述的nHARQ-ACK,0,nHARQ-ACK,1或者nHARQ-ACK如3GPP TS38.213第9.1.2.1或16.5.1.1章节中的定义的nHARQ-ACK;如果初传码本是Type-2 HARQ-ACK码本,则这里描述的nHARQ-ACK,0,nHARQ-ACK,1或者nHARQ-ACK如3GPP TS38.213第9.1.3.1或9.1.3.3或16.5.2.1章节中的定义的nHARQ-ACK
综上,对于配置了SPS HARQ-ACK延迟和HARQ-ACK码本重传的情况,当HARQ-ACK承载在PUCCH format 2/3/4且UCI反馈比特数大于2且小于等于11时,可以基于PUCCH上HARQ-ACK的码本传输情况确定PUCCH功率控制参数nHARQ-ACK,保证这种情况下的PUCCH传输性能。
为了实现上述实施例,本申请还提供一种PUCCH功率控制参数确定装置。
图13是根据本申请第十三实施例所提供的PUCCH功率控制参数确定装置的结构示意图。
如图13所示,该PUCCH功率控制参数确定装置可以包括存储器1310,收发机1320和处理器1330。
其中,存储器1310,用于存储计算机程序;收发机1320,用于在处理器的控制下收发数据;处理器1330,用于读取存储器中的计算机程序并执行以下操作:
根据终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率。
在终端侧,收发机1320,用于在处理器1330的控制下接收和发送数据。
其中,在图13中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器1330代表的一个或多个处理器和存储器1310代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机1320可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元,这些传输介质包括,这些传输介质包括无线信道、有线信道、光缆等传输介质。针对不同的用户设备,用户接口1340还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
处理器1330负责管理总线架构和通常的处理,存储器1310可以存储处理器13300在执行操作时所使用的数据。
在一些实施例中,处理器1330可以是CPU(中央处埋器)、ASIC(Application Specific Integrated Circuit,专用集成电路)、FPGA(Field-Programmable Gate Array,现场可编程门阵列)或CPLD(Complex Programmable Logic Device,复杂可编程逻辑器件),处理器1330也可以采用多核架构。
处理器1330通过调用存储器1310存储的计算机程序,用于按照获得的可执行指令执行本申请实施例提供的任一所述方法。处理器1330与存储器1310也可以物理上分开布置。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括半持续调度SPS延迟的情况下,根据第一混合自动重传请求-确认HARQ-ACK参数和第二HARQ-ACK参数,确定PUCCH功率控制参数;
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值;
在PUCCH中包含SPS延迟码本的情况下第二HARQ-ACK参数是基于SPS延迟码本的比特数确定的,在PUCCH中不包含SPS延迟码本的情况下第二HARQ-ACK参数为第二固定值。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括HARQ-ACK重传的情况下,根据第一HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数;
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值;
在PUCCH中包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数是基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定的,在PUCCH中不包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数为第三固定值。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数;
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值;
在PUCCH中包含SPS延迟码本的情况下第二HARQ-ACK参数是基于SPS延迟码本的比特数确定的,在PUCCH中不包含SPS延迟码本的情况下第二HARQ-ACK参数为第二固定值;
在PUCCH中包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数是基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定的,在PUCCH中不包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数为第三固定值。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、HARQ-ACK重传码本的比特数、SPS延迟码本的比特数、第一参数和第二参数,确定PUCCH功率控制参数;
其中,第一HARQ-ACK参数是在PUCCH中包含初传码本的情况下基于初传码本确定的;
第一参数和第二参数是预先定义的或者由高层参数配置的。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数;
在终端设备的配置包括SPS延迟且PUCCH中包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数;
在终端设备的配置包括HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数;
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数中的至少一个,以及第一HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于第一HARQ-ACK参数和第二HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第一HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,处理器1330具体用于执行以下操作:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
在此需要说明的是,本申请实施例提供的上述装置,能够实现上述方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本申请实施例中与方法实施例相同的部分及有益效果进行具体赘述。
为了实现上述实施例,本申请还提供一种PUCCH功率控制参数确定装置。
图14是根据本申请第十四实施例所提供的PUCCH功率控制参数确定装置的结构示意图。
如图14所示,该PUCCH功率控制参数确定装置可以包括:确定单元1410。
确定单元1410,用于根据终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,PUCCH功率控制参数用于确定PUCCH的功率。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括半持续调度SPS延迟的情况下,根据第一混合自动重传请求-确认HARQ-ACK参数和第二HARQ-ACK参数,确定PUCCH功率控制参数;
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值;
在PUCCH中包含SPS延迟码本的情况下第二HARQ-ACK参数是基于SPS延迟码本的比特数确定的,在PUCCH中不包含SPS延迟码本的情况下第二HARQ-ACK参数为第二固定值。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括HARQ-ACK重传的情况下,根据第一HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数;
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值;
在PUCCH中包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数是基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定的,在PUCCH中不包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数为第三固定值。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数,确定PUCCH功率控制参数;
其中,在PUCCH中包含初传码本的情况下第一HARQ-ACK参数是基于初传码本确定的,在PUCCH中不包含初传码本的情况下第一HARQ-ACK参数为第一固定值;
在PUCCH中包含SPS延迟码本的情况下第二HARQ-ACK参数是基于SPS延迟码本的比特数确定的,在PUCCH中不包含SPS延迟码本的情况下第二HARQ-ACK参数为第二固定值;
在PUCCH中包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数是基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定的,在PUCCH中不包含HARQ-ACK重传码本的情况下第三HARQ-ACK参数为第三固定值。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、HARQ-ACK重传码本的比特数、SPS延迟码本的比特数、第一参数和第二参数,确定PUCCH功率控制参数;
其中,第一HARQ-ACK参数是在PUCCH中包含初传码本的情况下基于初传码本确定的;
第一参数和第二参数是预先定义的或者由高层参数配置的。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数;
在终端设备的配置包括SPS延迟且PUCCH中包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数;
在终端设备的配置包括HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数;
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中只包含HARQ-ACK重传码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功率控制参数。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数中的至少一个,以及第一HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于第一HARQ-ACK参数和第二HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于初传码本确定第一HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第一HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
在一些实施例中,确定单元1410,具体用于:
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定PUCCH功 率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定PUCCH功率控制参数;或者,
在终端设备的配置包括SPS延迟和HARQ-ACK重传且PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于SPS延迟码本的比特数确定第二HARQ-ACK参数,基于HARQ-ACK重传码本或者HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于第二HARQ-ACK参数和第三HARQ-ACK参数确定PUCCH功率控制参数。
需要说明的是,本申请实施例中对单元的划分是示意性的,仅仅为一种逻辑划分,实际实现时可以有另外的划分方式。另外,在本申请各个实施例中的各单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件单元的形式实现。
所述集成的单元如果以软件单元的形式实现并作为独立的产品销售或使用时,可以存储在一个处理器可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
在此需要说明的是,本申请实施例提供的上述装置,能够实现上述方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本申请实施例中与方法实施例相同的部分及有益效果进行具体赘述。
为了实现上述实施例,本申请还提出一种处理器可读存储介质。该处理器可读存储介质存储有计算机程序,该计算机程序用于使该处理器执行本申请图1至图12实施例的PUCCH功率控制参数确定方法。
所述处理器可读存储介质可以是处理器能够存取的任何可用介质或数据存储设备,包括但不限于磁性存储器(例如软盘、硬盘、磁带、磁光盘(MO)等)、光学存储器(例如CD、DVD、BD、HVD等)、以及半导体存储器(例如ROM、EPROM、EEPROM、非易失性存储器(NAND FLASH)、固态硬盘(SSD))等。
本领域内的技术人员应明白,本申请的实施例可提供为方法、系统、或计算机程序产品。因此,本申请可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本申请可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本申请是参照根据本申请实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机可执行指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机可执行指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的的装置。
这些处理器可执行指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的处理器可读存储器中,使得存储在该处理器可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的。
这些处理器可执行指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的的步骤。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离本申请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及其等同技术的范围之内,则本申请也意图包含这些改动和变型在内。

Claims (26)

  1. 一种PUCCH功率控制参数确定方法,应用于终端设备,包括:
    根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,所述PUCCH功率控制参数用于确定所述PUCCH的功率。
  2. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括半持续调度SPS延迟的情况下,根据第一混合自动重传请求-确认HARQ-ACK参数和第二HARQ-ACK参数,确定所述PUCCH功率控制参数;
    其中,在所述PUCCH中包含初传码本的情况下所述第一HARQ-ACK参数是基于所述初传码本确定的,在所述PUCCH中不包含初传码本的情况下所述第一HARQ-ACK参数为第一固定值;
    在所述PUCCH中包含SPS延迟码本的情况下所述第二HARQ-ACK参数是基于所述SPS延迟码本的比特数确定的,在所述PUCCH中不包含SPS延迟码本的情况下所述第二HARQ-ACK参数为第二固定值。
  3. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括HARQ-ACK重传的情况下,根据第一HARQ-ACK参数和第三HARQ-ACK参数,确定所述PUCCH功率控制参数;
    其中,在所述PUCCH中包含初传码本的情况下所述第一HARQ-ACK参数是基于所述初传码本确定的,在所述PUCCH中不包含初传码本的情况下所述第一HARQ-ACK参数为第一固定值;
    在所述PUCCH中包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数是基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定的,在所述PUCCH中不包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数为第三固定值。
  4. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数,确定所述PUCCH功率控制参数;
    其中,在所述PUCCH中包含初传码本的情况下所述第一HARQ-ACK参数是基于所述初传码本确定的,在所述PUCCH中不包含初传码本的情况下所述第一HARQ-ACK参数为第一固定值;
    在所述PUCCH中包含SPS延迟码本的情况下所述第二HARQ-ACK参数是基于所述SPS延迟码本的比特数确定的,在所述PUCCH中不包含SPS延迟码本的情况下所述第二HARQ-ACK参数为第二固定值;
    在所述PUCCH中包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数是基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定的,在所述PUCCH中不包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数为第三固定值。
  5. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、HARQ-ACK重传码本的比特数、SPS延迟码本的比特数、第一参数和第二参数,确定所述PUCCH功率控制参数;
    其中,所述第一HARQ-ACK参数是在所述PUCCH中包含初传码本的情况下基于所述初传码本确定的;
    所述第一参数和所述第二参数是预先定义的或者由高层参数配置的。
  6. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟且所述PUCCH中只包含SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定所述PUCCH功率控制参数;
    在所述终端设备的配置包括SPS延迟且所述PUCCH中包含SPS延迟码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数。
  7. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括HARQ-ACK重传且所述PUCCH中只包含HARQ-ACK重传码本的情况下,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定所述PUCCH功率控制参数;
    在所述终端设备的配置包括HARQ-ACK重传且所述PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数。
  8. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中只包含SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定所述PUCCH功率控制参数;
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中只包含HARQ-ACK重传码本的情况下,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定所述PUCCH功率控制参数。
  9. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于所述初传码本确定第一HARQ-ACK参数,基于所述SPS延迟码本的比特数确定第二HARQ-ACK参数,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于所述第二HARQ-ACK参数和所述第三HARQ-ACK参数中的至少一个,以及所述第一HARQ-ACK参数确定所述PUCCH功率控制参数。
  10. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于所述初传码本确定第一HARQ-ACK参数,基于所述SPS延迟码本的比特数确定第二HARQ-ACK参数,基于所述第一HARQ-ACK参数和所述第二HARQ-ACK参数确定所述PUCCH功率控制参数。
  11. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于所述初传码本确定第一HARQ-ACK参数,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于所述第一HARQ-ACK参数和所述第三HARQ-ACK参数确定所述PUCCH功率控制参数。
  12. 根据权利要求1所述的方法,其中,所述根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,包括:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定所述PUCCH功率控制参 数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定第二HARQ-ACK参数,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于所述第二HARQ-ACK参数和所述第三HARQ-ACK参数确定所述PUCCH功率控制参数。
  13. 一种PUCCH功率控制参数确定装置,包括:
    存储器,用于存储计算机程序;
    收发机,用于在所述处理器的控制下收发数据;
    处理器,用于读取所述存储器中的计算机程序并执行以下操作:
    其中,根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,所述PUCCH功率控制参数用于确定所述PUCCH的功率。
  14. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括半持续调度SPS延迟的情况下,根据第一混合自动重传请求-确认HARQ-ACK参数和第二HARQ-ACK参数,确定所述PUCCH功率控制参数;
    其中,在所述PUCCH中包含初传码本的情况下所述第一HARQ-ACK参数是基于所述初传码本确定的,在所述PUCCH中不包含初传码本的情况下所述第一HARQ-ACK参数为第一固定值;
    在所述PUCCH中包含SPS延迟码本的情况下所述第二HARQ-ACK参数是基于所述SPS延迟码本的比特数确定的,在所述PUCCH中不包含SPS延迟码本的情况下所述第二HARQ-ACK参数为第二固定值。
  15. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括HARQ-ACK重传的情况下,根据第一HARQ-ACK参数和第三HARQ-ACK参数,确定所述PUCCH功率控制参数;
    其中,在所述PUCCH中包含初传码本的情况下所述第一HARQ-ACK参数是基于所述初传码本确定的,在所述PUCCH中不包含初传码本的情况下所述第一HARQ-ACK参数为第一固定值;
    在所述PUCCH中包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数是基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定的,在所述PUCCH中不包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数为第三固定值。
  16. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、第二HARQ-ACK参数和第三HARQ-ACK参数,确定所述PUCCH功率控制参数;
    其中,在所述PUCCH中包含初传码本的情况下所述第一HARQ-ACK参数是基于所述初传码本确定的,在所述PUCCH中不包含初传码本的情况下所述第一HARQ-ACK参数为第一固定值;
    在所述PUCCH中包含SPS延迟码本的情况下所述第二HARQ-ACK参数是基于所述SPS延迟码本的比特数确定的,在所述PUCCH中不包含SPS延迟码本的情况下所述第二HARQ-ACK参数为第二固定值;
    在所述PUCCH中包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数是基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定的,在所述PUCCH中不包含HARQ-ACK重传码本的情况下所述第三HARQ-ACK参数为第三固定值。
  17. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传的情况下,根据第一HARQ-ACK参数、HARQ-ACK重传码本的比特数、SPS延迟码本的比特数、第一参数和第二参数,确定所述PUCCH功率控制参数;
    其中,所述第一HARQ-ACK参数是在所述PUCCH中包含初传码本的情况下基于所述初传码本确定的;
    所述第一参数和所述第二参数是预先定义的或者由高层参数配置的。
  18. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟且所述PUCCH中只包含SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定所述PUCCH功率控制参数;
    在所述终端设备的配置包括SPS延迟且所述PUCCH中包含SPS延迟码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数。
  19. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括HARQ-ACK重传且所述PUCCH中只包含HARQ-ACK重传码本的情况下,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定所述PUCCH功率控制参数;
    在所述终端设备的配置包括HARQ-ACK重传且所述PUCCH中包含HARQ-ACK重传码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数。
  20. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中只包含SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定所述PUCCH功率控制参数;
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中只包含HARQ-ACK重传码本的情况下,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定所述PUCCH功率控制参数。
  21. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中包含HARQ-ACK重传码本、SPS延迟码本和初传码本的情况下,基于所述初传码本确定第一HARQ-ACK参数,基于所述SPS延迟码本的比特数确定第二HARQ-ACK参数,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于所述第二HARQ-ACK参数和所述第三HARQ-ACK参数中的至少一个,以及所述第一HARQ-ACK参数确定所述PUCCH功率控制参数。
  22. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含SPS延迟码本和初传码本的情况下,基于所述初传码本确定第一HARQ-ACK参数,基于所述SPS延迟码本的比特数确定第二HARQ-ACK参数,基于所述第一HARQ-ACK参数和所述第二HARQ-ACK参数确定所述PUCCH功率控制参数。
  23. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于所述初传码本确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和初传码本的情况下,基于所述初传码本确定第一HARQ-ACK参数,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数,基于所述第一HARQ-ACK参数和所述第三HARQ-ACK参数确定所述PUCCH功率控制参数。
  24. 根据权利要求13所述的装备,其中,所述处理器还用于执行以下操作:
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定所述PUCCH功率控制参数;或者,
    在所述终端设备的配置包括SPS延迟和HARQ-ACK重传且所述PUCCH中仅包含HARQ-ACK重传码本和SPS延迟码本的情况下,基于所述SPS延迟码本的比特数确定第二HARQ-ACK参数,基于所述HARQ-ACK重传码本或者所述HARQ-ACK重传码本的比特数确定第三HARQ-ACK参数, 基于所述第二HARQ-ACK参数和所述第三HARQ-ACK参数确定所述PUCCH功率控制参数。
  25. 一种PUCCH功率控制参数确定装置,包括:
    确定单元,用于根据所述终端设备的配置和物理上行控制信道PUCCH中包含的码本,确定PUCCH功率控制参数,其中,所述PUCCH功率控制参数用于确定所述PUCCH的功率。
  26. 一种处理器可读存储介质,其中,所述处理器可读存储介质存储有计算机程序,所述计算机程序用于使所述处理器执行权利要求1至12中任一项所述的方法。
PCT/CN2024/095550 2023-08-11 2024-05-27 Pucch功率控制参数确定方法、装置及存储介质 Pending WO2025035888A1 (zh)

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