WO2019137366A1 - Procédé d'indication de ressources, procédé de détermination de ressources, dispositif, station de base, et terminal - Google Patents

Procédé d'indication de ressources, procédé de détermination de ressources, dispositif, station de base, et terminal Download PDF

Info

Publication number
WO2019137366A1
WO2019137366A1 PCT/CN2019/070821 CN2019070821W WO2019137366A1 WO 2019137366 A1 WO2019137366 A1 WO 2019137366A1 CN 2019070821 W CN2019070821 W CN 2019070821W WO 2019137366 A1 WO2019137366 A1 WO 2019137366A1
Authority
WO
WIPO (PCT)
Prior art keywords
index
pucch
pucch resource
resource
target
Prior art date
Application number
PCT/CN2019/070821
Other languages
English (en)
Chinese (zh)
Inventor
缪德山
艾·托尼
高雪娟
司倩倩
Original Assignee
电信科学技术研究院有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201810077873.0A external-priority patent/CN110034903B/zh
Application filed by 电信科学技术研究院有限公司 filed Critical 电信科学技术研究院有限公司
Publication of WO2019137366A1 publication Critical patent/WO2019137366A1/fr

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path

Definitions

  • the present disclosure relates to the field of communications technologies, and in particular, to a resource indication method, a resource determination method, a device, a base station, and a terminal.
  • an implicit resource indication is used for a PUCCH carrying an ACK (Acknowledgement or Response)/NACK (no acknowledgement or no response)
  • the method that is, the PDCCH (Physical Downlink Control Channel) of the PDSCH (Physical Downlink Shared Channel), the minimum CCE (Control Channel Element) corresponding to a specific PUCCH resource, this minimum
  • the CCE is also referred to as a starting CCE, and when the ACK/NACK is fed back, the resources of the PUCCH are used to transmit the ACK/NACK signal.
  • the PDCCH scheduling message 4 (message 4) is mapped to one PUCCH resource to carry the ACK/NACK feedback.
  • M1-M4 represent four steps of initial access, corresponding to four messages (message1, message2, message3, and message4), and for message4, the ACK/NACK signal is transmitted in the subsequent PUCCH.
  • the 5G NR 5G new air interface
  • an explicit indication method which is to first indicate an allocation of the terminal UE by using RRC (Radio Resource Control) signaling.
  • Resource set and then use the downlink control information DCI to inform the terminal of a specific resource index (index);
  • the other method is implicit resource indication mode, that is, the LTE method is used, and the corresponding minimum of the PDCCH is used.
  • the index number of the CCE is mapped to a specific PUCCH resource.
  • the initial indication of the PUCCH resource indication of the message 4 there are currently some methods.
  • the basic idea is to use the system information in combination with the DCI (Downlink Control Information) indication, or the random access response message RAR to indicate, but There is no clear indication of how to use the system information, how to use the indication information of the DCI, and how to combine the steps of the implicit indication, so these methods are not complete. If the RAR indication method is adopted, the channel structure of the RAR needs to be greatly adjusted, and only a group of users can be instructed, so this method also has a great defect.
  • DCI Downlink Control Information
  • RAR Random access response message
  • the related resource method for message 4 does not have the same signaling framework as the RRC connected state method, or the indication information of the RMSI (Remaining minimum system information) is not clear, or the RAR is The channel structure is greatly adjusted, causing significant impact on the standard, so these methods are not effective resource indication methods.
  • An object of the present disclosure is to provide a resource indication method, a resource determination method, a device, a base station, and a terminal, to solve the problem that the resource indication manner of the related message 4 is defective.
  • some embodiments of the present disclosure provide a resource indication method, including:
  • the target PUCCH resource set may be used to transmit uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the step of indicating the resource configuration parameter of the target uplink control channel PUCCH resource set to the terminal by using the system information includes:
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • the index of the preset bit field is used to indicate a set of mutually related resource configuration parameters, when an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • the step of indicating, by the downlink control channel PDCCH, one PUCCH resource in the target PUCCH resource set to the terminal includes:
  • the step of indicating, by the downlink control channel PDCCH, one PUCCH resource in the target PUCCH resource set to the terminal includes:
  • the PUCCH resource indication field carried by the PDCCH indicates an offset value to the terminal, so that the terminal can determine the second PUCCH in the target PUCCH resource set according to the index of the first PUCCH resource and the offset value.
  • An index of the resource wherein a mapping relationship exists between the index of the second PUCCH resource and the configuration parameter of the second PUCCH resource.
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the step of indicating, by the downlink control channel PDCCH, one PUCCH resource in the target PUCCH resource set to the terminal includes:
  • the PUCCH resource indication field carried by the PDCCH indicates to the terminal one target subset in the target PUCCH resource set; wherein the target PUCCH resource set is divided into multiple subsets;
  • mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the third PUCCH resource is:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • some embodiments of the present disclosure further provide a resource determining method, including:
  • Receiving system information determining a target PUCCH resource set according to a resource configuration parameter of a target uplink control channel PUCCH resource set indicated by the system information; wherein the target PUCCH resource set is used to transmit an uplink acknowledgement ACK of downlink information in a random access procedure / Do not confirm NACK feedback;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the system information carries the resource configuration parameter of the target PUCCH resource set.
  • An index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • the index of the preset bit field is used to indicate a set of mutually related resource configuration parameters, when an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • the step of determining one PUCCH resource in the target PUCCH resource set according to the PDCCH includes:
  • the step of determining, according to the PDCCH, one PUCCH resource in the target PUCCH resource set further includes:
  • the step of determining an index of the first PUCCH resource in the target PUCCH resource set according to the start index or the minimum index of the control channel unit CCE of the PDCCH includes:
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the step of determining one PUCCH resource in the target PUCCH resource set according to the PDCCH includes:
  • the step of determining an index of the third PUCCH resource in the target subset according to the start index or the minimum index of the control channel unit CCE of the PDCCH includes:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • some embodiments of the present disclosure also provide a base station, including: a transceiver, a memory, a processor, and a computer program stored on the memory and executable on the processor; the processor is configured to Read the program in memory and perform the following process:
  • the target PUCCH resource set may be used for transmitting the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the transceiver is further configured to:
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • the index of the preset bit field is used to indicate a set of mutually related resource configuration parameters, when an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • the processor is further configured to:
  • the processor is further configured to:
  • An index of the second PUCCH resource where there is a mapping relationship between the index of the second PUCCH resource and the configuration parameter of the second PUCCH resource.
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the processor is further configured to:
  • mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the third PUCCH resource is:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • some embodiments of the present disclosure further provide a resource indication apparatus, including:
  • a first indication module configured to indicate, by using system information, a resource configuration parameter of a target uplink control channel PUCCH resource set to the terminal; the target PUCCH resource set may be used to transmit an uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure;
  • a second indication module configured to indicate, by using a downlink control channel PDCCH, one PUCCH resource in the target PUCCH resource set to the terminal;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • some embodiments of the present disclosure further provide a computer readable storage medium storing a computer program on a computer readable storage medium, the processor being implemented by a processor The steps of the resource indication method.
  • some embodiments of the present disclosure further provide a terminal, including: a transceiver, a memory, a processor, and a computer program stored on the memory and executable on the processor; the processor is configured to Read the program in memory and perform the following process:
  • the transceiver Receiving system information by the transceiver, and determining a target PUCCH resource set according to the resource configuration parameter of the target uplink control channel PUCCH resource set indicated by the system information; wherein the target PUCCH resource set is used to transmit the random access process Upstream acknowledgement ACK/non-acknowledgement NACK feedback of downlink information;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the system information carries the resource configuration parameter of the target PUCCH resource set.
  • An index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • the index of the preset bit field is used to indicate a set of mutually related resource configuration parameters, when an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • the processor is further configured to:
  • the processor is further configured to:
  • the processor is further configured to:
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the processor is further configured to:
  • the processor is further configured to:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • some embodiments of the present disclosure further provide a resource determining apparatus, including:
  • a first determining module configured to receive system information, and determine a target PUCCH resource set according to a resource configuration parameter of a target uplink control channel PUCCH resource set indicated by the system information; where the target PUCCH resource set may be used to transmit a random access process Upstream acknowledgement ACK/non-acknowledgement NACK feedback for mid-downlink information;
  • a second determining module configured to receive a physical downlink control channel PDCCH, and determine one PUCCH resource in the target PUCCH resource set according to the PDCCH;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • some embodiments of the present disclosure further provide a computer readable storage medium storing a computer program on a computer readable storage medium, the processor implementing the processor as described above The steps of the resource determination method.
  • the system first uses the system information to indicate the resource configuration parameter of the target PUCCH resource set, and the terminal can determine a target PUCCH resource set according to the resource configuration parameter. And then using the PDCCH to indicate one PUCCH resource in the target PUCCH resource set, the terminal can use the one PUCCH resource indicated by the PDCCH to transmit the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure; some implementations of the disclosure The example can simply and explicitly indicate the allocation of PUCCH resources, improve the flexibility of resource allocation, and save the signaling overhead of resource allocation.
  • FIG. 1 is a schematic diagram showing a random access procedure in the related art
  • FIG. 2 is a flow chart showing the steps of a resource indication method provided by some embodiments of the present disclosure
  • FIG. 3 is a flow chart showing the steps of a resource determining method provided by some embodiments of the present disclosure
  • FIG. 4 is a schematic structural diagram of a base station according to some embodiments of the present disclosure.
  • FIG. 5 is a schematic structural diagram of a resource indicating apparatus according to some embodiments of the present disclosure.
  • FIG. 6 is a schematic structural diagram of a terminal provided by some embodiments of the present disclosure.
  • FIG. 7 is a schematic structural diagram of a resource determining apparatus according to some embodiments of the present disclosure.
  • some embodiments of the present disclosure provide a resource indication method, where the method includes steps 21-22.
  • Step 21 The resource configuration parameter of the target uplink control channel PUCCH resource set is indicated to the terminal by using the system information, where the target PUCCH resource set is used to transmit the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a cyclic shift.
  • the above system information may be RMSI (Remaining minimum system information).
  • Step 22 Instruct the terminal to indicate one PUCCH resource in the target PUCCH resource set by using a downlink control channel PDCCH.
  • the foregoing embodiment of the present disclosure first uses system information to indicate resource configuration parameters of a target PUCCH resource set, and the terminal can determine one target PUCCH resource set according to the resource configuration parameter; and then use the PDCCH to indicate one PUCCH resource in the target PUCCH resource set.
  • the terminal can use the one PUCCH resource indicated by the PDCCH to transmit the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure.
  • step 21 includes:
  • Step 211 Send system information to the terminal, where the system information carries resource configuration parameters of the target PUCCH resource set; or
  • Step 212 Send system information to the terminal, where an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • the N bit information field of the system information RMSI is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • N is an integer greater than or equal to 4, and optionally, N is equal to 4.
  • the format type of the PUCCH occupies a 1-bit information field. Since the number of information bits of the ACK/NACK is at most 1 bit in the initial access phase, the PUCCH format type has two options; for example, “0” indicates Format 0; "1" indicates format 1.
  • the start symbol of the PUCCH and the length of the PUCCH are indicated together, that is, the start symbol of the PUCCH and the length of the PUCCH occupy a 1-bit information field.
  • 13/1 and 12/2 can be used, where 13/1 indicates that the start symbol is 13, and the PUCCH length is 1 symbol; 12/2 indicates The initial symbol is 12 and the PUCCH length is 2 symbols.
  • 14/0 and 10/4 options which have the same meaning as format 0.
  • the frequency domain of the PUCCH indicates whether the frequency hopping occupies the 1-bit information field. If it is frequency hopping, the PUCCH is generally divided into two parts in the time domain and transmitted in different frequency bands. For example, “0” means no frequency hopping and “1” means frequency hopping.
  • the resource offset value of the PUCCH occupies a 1-bit information field, where the information is used to indicate a starting offset value of the PUCCH resource; since the PUCCH resource of the initial access user may share resources with other accessed users, in order to reserve other users For the PUCCH resource, the offset value of the PUCCH resource needs to be set; for example, the semi-persistent scheduling SPS user.
  • the minimum interval of the cyclic shift CS occupies a 1-bit information field or a 2-bit information field, and the information is used to indicate the interval of the cyclic shift CS of different users. For a sequence, the maximum number of CSs available is 12, and the size of the interval determines the number of users supported.
  • the number of frequency domain resource blocks available for PUCCH transmission or the frequency domain resource blocks available for PUCCH transmission may occupy a 1-bit information field, respectively.
  • the information included in the resource configuration parameter does not need to be indicated at the same time, so as to ensure that the total information bit field length occupied by the resource configuration parameter does not exceed 4.
  • each parameter in the resource configuration parameter uses a different bit field indication. That is, different bit fields (also referred to as information fields) are used to indicate different parameters.
  • bit fields also referred to as information fields
  • the use of the 4-bit information field of the system information is as shown in Table 1:
  • the 4-bit information field of the system information is used to carry the resource configuration parameter.
  • the resource configuration parameters carried in the system information 1 include: 1 bit indicates the PUCCH format type, 1 bit indicates the PUCCH start symbol and the PUCCH length, and the 2 bit indicates the loop.
  • the resource configuration parameters carried by the system information 2 include: 1 bit indicates the PUCCH format type, 1 bit indicates the PUCCH resource offset value, 2 bits indicates the minimum interval of the cyclic shift
  • the resource configuration parameters carried in the system information 3 include: 1 bit Indicates the PUCCH format type, 1 bit indicates the PUCCH start symbol and PUCCH length, 1 bit indicates whether to hop, and 1 bit indicates the minimum interval of cyclic shift.
  • the index of the preset bit field of the system information is used to indicate the resource configuration parameter of the target PUCCH resource set
  • the index of the preset bit field is used to indicate a
  • the group is associated with a resource configuration parameter; it may also be referred to as a joint encoding of at least two parameters included in the resource configuration parameter.
  • the preset bit field of the system information When the index of the preset bit field of the system information is used to indicate the resource configuration parameter of the target PUCCH resource set, since the preset bit field is 4 bits, the preset bit field of the system information has at most 16 different types. Index, if the PUCCH length is 2 characters, the frequency hopping is always on; or if the switch supporting the frequency hopping is needed, it can be realized by reducing the number of minimum intervals of the cyclic shift, for example, setting the minimum of the cyclic shift The interval is 2 or 3.
  • the mapping relationship between the index of the preset bit field of the system information (that is, the 4-bit information field) and the resource configuration parameter is as shown in Table 2:
  • the resource configuration parameters included in the system information are: the PUCCH format is 0, the start symbol is 12, the PUCCH length is 2, and frequency hopping exists.
  • the minimum interval for cyclic shift is 1.
  • the parameters corresponding to other indexes are not enumerated one by one.
  • mapping relationship between the index of the preset bit field of the system information (ie, the 4-bit information field) and the resource configuration parameter is as shown in Table 3 (the minimum interval for setting the cyclic shift is 2 or 3):
  • the resource configuration parameters included in the system information are: PUCCH format is 0, start symbol is 12, PUCCH length is 2, and the configured frequency domain is The number of resource blocks is 2 PRBs, and the minimum interval of cyclic shift is 2.
  • the parameters corresponding to other indexes are not enumerated one by one.
  • step 22 includes:
  • the first PUCCH resource When a specific PUCCH (ie, the first PUCCH resource) is mapped according to the start index or the minimum index of the CCE, if the first PUCCH resource conflicts with other users (for example, occupied by other users), this is a PUCCH that can be carried by the PDCCH.
  • the resource indication field is used to map another resource; or the same PUCCH resource cannot be used between users of different beam beams. In this case, the PUCCH resource indication field carried by the PDCCH is also required to map another resource; that is, step 22 includes:
  • the offset value determines an index of the second PUCCH resource in the target PUCCH resource set, where a mapping relationship exists between the index of the second PUCCH resource and the configuration parameter of the second PUCCH resource.
  • the index of the second PUCCH resource is equal to the index ⁇ offset value of the first PUCCH resource.
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the PUCCH resource indication field may be indicated by 2 bits, and the specific offset value may be one of ⁇ -1, 0, 1, 2 ⁇ or ⁇ 8, 4, 2, 0 ⁇ .
  • the index of the first PUCCH resource or the index of the second PUCCH resource corresponds to at least the following parameters: an index of the physical resource block PRB included in the PUCCH, and an index of the time domain orthogonal mask OCC (for format1),
  • the initial cyclic shift CS value which is equivalent, the index of the first PUCCH resource or the index of the second PUCCH resource points to a set of the above parameter configuration values, which can determine the specific format and physical resource configuration of the PUCCH resource.
  • the index of the first PUCCH resource or the index of the second PUCCH resource can indicate a specific uplink control channel physical resource.
  • step 22 includes:
  • a PUCCH resource indication field where the PUCCH resource indication field is an information field of the downlink control information DCI, to the terminal, to target a subset of the target PUCCH resource set; wherein the target PUCCH resource set is Divided into a plurality of subsets; if the PUCCH resource indication field is 2 bits, the target PUCCH resource set is divided into 4 subsets, and the PUCCH resource indication field is used to indicate one of the specific subsets (ie, the target subset).
  • mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the third PUCCH resource is:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • mapping The main purpose of mapping is to improve resource utilization and prevent resource conflicts.
  • n PUCCH3 n CCE mod N.
  • n PUCCH3 n CCE mod N
  • the foregoing embodiment of the present disclosure first uses system information to indicate resource configuration parameters of a target PUCCH resource set, and the terminal can determine a target PUCCH resource set according to the resource configuration parameter; and then use the PDCCH to indicate the target PUCCH resource set.
  • the terminal can use one PUCCH resource indicated by the PDCCH to transmit the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure; some embodiments of the present disclosure can simply and explicitly indicate the allocation of the PUCCH resource, and improve the resource. The flexibility of allocation and the signaling overhead of resource allocation.
  • some embodiments of the present disclosure also provide a resource determining method, including steps 31-32.
  • Step 31 Receive system information, and determine a target PUCCH resource set according to a resource configuration parameter of a target uplink control channel PUCCH resource set indicated by the system information, where the target PUCCH resource set may be used to transmit downlink information in a random access process.
  • Upstream acknowledgement ACK/non-acknowledgement NACK feedback may be used to transmit downlink information in a random access process.
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a cyclic shift. At least two of a minimum interval, a number of frequency domain resource blocks available for PUCCH transmission, and an index of frequency domain resource blocks available for PUCCH transmission.
  • the above system information may be RMSI (Remaining minimum system information).
  • Step 32 Receive a physical downlink control channel PDCCH, and determine one PUCCH resource in the target PUCCH resource set according to the PDCCH.
  • the foregoing embodiment of the present disclosure first determines one target PUCCH resource set according to the resource configuration parameter of the target PUCCH resource set indicated by the system information; and then determines one PUCCH resource in the target PUCCH resource set according to the indication of the PDCCH, and the terminal can use the PDCCH indication
  • a PUCCH resource transmits uplink acknowledgement ACK/non-acknowledgement NACK feedback of downlink information in a random access procedure.
  • the system information carries a resource configuration parameter of the target PUCCH resource set
  • An index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • the N bit information field of the system information RMSI is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • N is an integer greater than or equal to 4, and optionally, N is equal to 4.
  • the format type of the PUCCH occupies a 1-bit information field. Since the number of information bits of the ACK/NACK is at most 1 bit in the initial access phase, the PUCCH format type has two options; for example, “0” indicates Format 0; "1" indicates format 1.
  • the start symbol of the PUCCH and the length of the PUCCH are indicated together, that is, the start symbol of the PUCCH and the length of the PUCCH occupy a 1-bit information field.
  • 13/1 and 12/2 can be used, where 13/1 indicates that the start symbol is 13, and the PUCCH length is 1 symbol; 12/2 indicates The initial symbol is 12 and the PUCCH length is 2 symbols.
  • 14/0 and 10/4 options which have the same meaning as format 0.
  • the frequency domain of the PUCCH indicates whether the frequency hopping occupies the 1-bit information field. If it is frequency hopping, the PUCCH is generally divided into two parts in the time domain and transmitted in different frequency bands. For example, “0” means no frequency hopping and “1” means frequency hopping.
  • the resource offset value of the PUCCH occupies a 1-bit information field, where the information is used to indicate a starting offset value of the PUCCH resource; since the PUCCH resource of the initial access user may share resources with other accessed users, in order to reserve other users For the PUCCH resource, the offset value of the PUCCH resource needs to be set; for example, the semi-persistent scheduling SPS user.
  • the minimum interval of the cyclic shift CS occupies a 1-bit information field or a 2-bit information field, and the information is used to indicate the interval of the cyclic shift CS of different users. For a sequence, the maximum number of CSs available is 12, and the size of the interval determines the number of users supported.
  • the number of frequency domain resource blocks available for PUCCH transmission or the frequency domain resource blocks available for PUCCH transmission may occupy a 1-bit information field, respectively.
  • the information included in the resource configuration parameter does not need to be indicated at the same time, so as to ensure that the total information bit field length occupied by the resource configuration parameter does not exceed 4.
  • each parameter in the resource configuration parameter uses a different bit field indication. That is, different bit fields (also referred to as information fields) are used to indicate different parameters.
  • bit fields also referred to as information fields
  • the use of the 4-bit information field of the system information is as shown in Table 1.
  • the 4-bit information field of the system information is used to carry the resource configuration parameter.
  • the resource configuration parameters carried in the system information 1 include: 1 bit indicates the PUCCH format type, 1 bit indicates the PUCCH start symbol and the PUCCH length, and the 2 bit indicates the loop.
  • the resource configuration parameters carried by the system information 2 include: 1 bit indicates the PUCCH format type, 1 bit indicates the PUCCH resource offset value, 2 bits indicates the minimum interval of the cyclic shift
  • the resource configuration parameters carried in the system information 3 include: 1 bit Indicates the PUCCH format type, 1 bit indicates the PUCCH start symbol and PUCCH length, 1 bit indicates whether to hop, and 1 bit indicates the minimum interval of cyclic shift.
  • the index of the preset bit field of the system information is used to indicate the resource configuration parameter of the target PUCCH resource set
  • the index of the preset bit field is used to indicate a
  • the group is associated with a resource configuration parameter; it may also be referred to as a joint encoding of at least two parameters included in the resource configuration parameter.
  • the preset bit field of the system information When the index of the preset bit field of the system information is used to indicate the resource configuration parameter of the target PUCCH resource set, since the preset bit field is 4 bits, the preset bit field of the system information has at most 16 different types. Index, if the PUCCH length is 2 characters, the frequency hopping is always on; or if the switch supporting the frequency hopping is needed, it can be realized by reducing the number of minimum intervals of the cyclic shift, for example, setting the minimum of the cyclic shift The interval is 2 or 3.
  • the mapping relationship between the index of the preset bit field (ie, the 4-bit information field) of the system information and the resource configuration parameter is as shown in Table 2.
  • the resource configuration parameters included in the system information are: PUCCH format is 0, start symbol is 12, PUCCH length is 2, and there is a jump. Frequency, the minimum interval of cyclic shift is 1. The parameters corresponding to other indexes are not enumerated one by one.
  • the mapping relationship between the index of the preset bit field (ie, the 4-bit information field) of the system information and the resource configuration parameter is as shown in Table 3 (the minimum interval for setting the cyclic shift is 2 or 3).
  • the resource configuration parameters included in the system information are: PUCCH format is 0, start symbol is 12, PUCCH length is 2, and configured.
  • the number of frequency domain resource blocks is 2 PRBs, and the minimum interval of cyclic shift is 2.
  • the parameters corresponding to other indexes are not enumerated one by one.
  • step 32 in the above embodiment of the present disclosure includes:
  • the first PUCCH resource When a specific PUCCH (ie, the first PUCCH resource) is mapped according to the start index or the minimum index of the CCE, if the first PUCCH resource conflicts with other users (for example, occupied by other users), this is a PUCCH that can be carried by the PDCCH.
  • the resource indication field is used to map another resource; or the user of the different beam beam cannot use the same PUCCH resource.
  • the PUCCH resource indication field carried by the PDCCH is also required to map another resource; that is, step 32 includes:
  • the PUCCH resource indication field is an information field of the downlink control information DCI
  • the index of the first PUCCH resource and the offset value is equal to the index ⁇ offset value of the first PUCCH resource.
  • the step of determining an index of the first PUCCH resource in the target PUCCH resource set according to the start index or the minimum index of the control channel unit CCE of the PDCCH includes:
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a start index or a minimum index of the control channel element CCE.
  • the PUCCH resource indication field may be indicated by 2 bits, and the specific offset value may be one of ⁇ -1, 0, 1, 2 ⁇ or ⁇ 8, 4, 2, 0 ⁇ .
  • the index of the first PUCCH resource or the index of the second PUCCH resource corresponds to at least the following parameters: an index of the physical resource block PRB included in the PUCCH, and an index of the time domain orthogonal mask OCC (for format1),
  • the initial cyclic shift CS value which is equivalent, the index of the first PUCCH resource or the index of the second PUCCH resource points to a set of the above parameter configuration values, which can determine the specific format and physical resource configuration of the PUCCH resource.
  • the index of the first PUCCH resource or the index of the second PUCCH resource can indicate a specific uplink control channel physical resource.
  • step 32 includes:
  • the PUCCH resource indication field being an information field of the downlink control information DCI, determining a target subset of the target PUCCH resource set; wherein the target PUCCH resource set is Divided into a plurality of subsets; if the PUCCH resource indication field is 2 bits, the target PUCCH resource set is divided into 4 subsets, and the PUCCH resource indication field is used to indicate one of the specific subsets (ie, the target subset).
  • the step of determining an index of the third PUCCH resource in the target subset according to the start index or the minimum index of the control channel unit CCE of the PDCCH includes:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • the terminal first determines one target PUCCH resource set according to the resource configuration parameter of the target PUCCH resource set indicated by the system information; and then determines one PUCCH resource in the target PUCCH resource set according to the indication of the PDCCH, where the terminal
  • the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure can be transmitted using one PUCCH resource indicated by the PDCCH.
  • some embodiments of the present disclosure further provide a base station, including: a transceiver 420, a memory 410, a processor 400, and a computer stored on the memory 410 and operable on the processor 400.
  • a program the processor 400 is configured to read a program in the memory 410, and perform the following process:
  • the transceiver 420 is configured to indicate, by using system information, resource configuration parameters of a target uplink control channel PUCCH resource set to the terminal; the target PUCCH resource set may be used to transmit uplink acknowledgement ACK/non-acknowledgement NACK feedback of downlink information in the random access procedure;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the transceiver 420 is further configured to:
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set
  • an index of the preset bit field is used to indicate A set of interrelated resource configuration parameters.
  • the processor 400 is further configured to:
  • the processor 400 is further configured to:
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is :
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the processor 400 is further configured to:
  • mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the third PUCCH resource is:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • the foregoing embodiment of the present disclosure first uses system information to indicate resource configuration parameters of a target PUCCH resource set, and the terminal can determine a target PUCCH resource set according to the resource configuration parameter; and then use the PDCCH to indicate the target PUCCH resource set.
  • the terminal can use one PUCCH resource indicated by the PDCCH to transmit the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure; some embodiments of the present disclosure can simply and explicitly indicate the allocation of the PUCCH resource, and improve the resource. The flexibility of allocation and the signaling overhead of resource allocation.
  • the base station provided by some embodiments of the present disclosure is a base station capable of performing the foregoing resource indication method, and all embodiments of the foregoing resource indication method are applicable to the base station, and all of the same or similar beneficial effects can be achieved.
  • some embodiments of the present disclosure further provide a resource indication apparatus, including:
  • a first indication module 51 configured to indicate, by using system information, a resource configuration parameter of a target uplink control channel PUCCH resource set to the terminal; the target PUCCH resource set may be used to transmit an uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure;
  • the second indication module 52 is configured to indicate, by using a downlink control channel PDCCH, one PUCCH resource in the target PUCCH resource set to the terminal;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the first indication module includes:
  • a first indicator submodule configured to send system information to the terminal, where the system information carries resource configuration parameters of the target PUCCH resource set;
  • the second indicator sub-module is configured to send system information to the terminal, where an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set
  • an index of the preset bit field is used to indicate A set of interrelated resource configuration parameters.
  • the second indication module includes:
  • a third indicator submodule configured to indicate, by using a start index or a minimum index of a control channel unit CCE of the PDCCH, an index of the first PUCCH resource in the target PUCCH resource set; where the index of the first PUCCH resource is There is a mapping relationship with the configuration parameters of the first PUCCH resource.
  • the second indication module includes:
  • a fourth indicator submodule configured to indicate, by using a start index or a minimum index of a control channel unit CCE of the PDCCH, an index of the first PUCCH resource in the target PUCCH resource set;
  • a fifth indicator submodule configured to indicate, by using a PUCCH resource indication field carried by the PDCCH, an offset value to the terminal, so that the terminal can determine the target according to the index of the first PUCCH resource and the offset value
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is :
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the second indication module includes:
  • a sixth indicator sub-module configured to indicate, by using a PUCCH resource indication field carried by the PDCCH, a target subset of the target PUCCH resource set to the terminal, where the target PUCCH resource set is divided into multiple subsets;
  • a seventh indicator submodule configured to indicate, by using a start index or a minimum index of the control channel unit CCE of the PDCCH, an index of a third PUCCH resource in the target subset; where the index of the third PUCCH resource There is a mapping relationship with the configuration parameters of the third PUCCH resource.
  • mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the third PUCCH resource is:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • the foregoing embodiment of the present disclosure first uses system information to indicate resource configuration parameters of a target PUCCH resource set, and the terminal can determine a target PUCCH resource set according to the resource configuration parameter; and then use the PDCCH to indicate the target PUCCH resource set.
  • the terminal can use one PUCCH resource indicated by the PDCCH to transmit the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure; some embodiments of the present disclosure can simply and explicitly indicate the allocation of the PUCCH resource, and improve the resource. The flexibility of allocation and the signaling overhead of resource allocation.
  • the resource indication device provided by some embodiments of the present disclosure is a resource indication device capable of executing the resource indication method, and all embodiments of the resource indication method are applicable to the resource indication device, and both can achieve the same Or similar benefits.
  • Some embodiments of the present disclosure also provide a computer readable storage medium having stored thereon a computer program, the computer program being executed by a processor to implement various processes of the resource indication method embodiment as described above And can achieve the same technical effect, in order to avoid duplication, no longer repeat here.
  • the computer readable storage medium may be a volatile computer readable storage medium or a non-volatile computer readable storage medium, or a non-volatile computer readable storage medium and a volatile computer.
  • the readable storage medium such as a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
  • some embodiments of the present disclosure further provide a terminal, including: a transceiver 620, a user interface 630, a memory 610, a processor 600, and are stored on the memory 610 and may be in the processor 600. a computer program running thereon; the processor 600 is configured to read a program in the memory and perform the following process:
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the system information carries a resource configuration parameter of the target PUCCH resource set
  • An index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set
  • an index of the preset bit field is used to indicate A set of interrelated resource configuration parameters.
  • the processor 600 is further configured to:
  • the processor 600 is further configured to:
  • the processor 600 is further configured to:
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the processor 600 is further configured to:
  • the processor 600 is further configured to:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • the terminal first determines one target PUCCH resource set according to the resource configuration parameter of the target PUCCH resource set indicated by the system information; and then determines one PUCCH resource in the target PUCCH resource set according to the indication of the PDCCH, where the terminal
  • the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure can be transmitted using one PUCCH resource indicated by the PDCCH.
  • the terminal provided by the foregoing embodiment of the present disclosure is a terminal capable of performing the foregoing resource determining method, and all embodiments of the foregoing resource determining method are applicable to the terminal, and all of the same or similar beneficial effects can be achieved.
  • some embodiments of the present disclosure further provide a resource determining apparatus, including:
  • the first determining module 71 is configured to receive system information, and determine a target PUCCH resource set according to the resource configuration parameter of the target uplink control channel PUCCH resource set indicated by the system information, where the target PUCCH resource set may be used to transmit random access.
  • the second determining module 72 is configured to receive a physical downlink control channel PDCCH, and determine one PUCCH resource in the target PUCCH resource set according to the PDCCH;
  • the resource configuration parameter of the target PUCCH resource set includes: a format type of the PUCCH, a start symbol of the PUCCH, a length of the PUCCH, a frequency domain of the PUCCH, a frequency offset, a resource offset value of the PUCCH, and a minimum interval of the cyclic shift. At least two of the number of frequency domain resource blocks available for PUCCH transmission and the index of frequency domain resource blocks available for PUCCH transmission.
  • the system information carries a resource configuration parameter of the target PUCCH resource set
  • An index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set.
  • each parameter in the resource configuration parameter uses a different bit field indication.
  • an index of the preset bit field of the system information is used to indicate a resource configuration parameter of the target PUCCH resource set
  • an index of the preset bit field is used to indicate A set of interrelated resource configuration parameters.
  • the second determining module includes:
  • a first determining submodule configured to determine, according to a starting index or a minimum index of a control channel unit CCE of the PDCCH, an index of a first PUCCH resource in the target PUCCH resource set;
  • a second determining submodule configured to map an index of the first PUCCH resource to a configuration parameter of the first PUCCH resource.
  • the second determining module includes:
  • a third determining submodule configured to determine an index of the first PUCCH resource in the target PUCCH resource set according to a starting index or a minimum index of a control channel unit CCE of the PDCCH;
  • a fourth determining submodule configured to determine an offset value according to the PUCCH resource indication field carried by the PDCCH, and determine, according to the index of the first PUCCH resource and the offset value, a number in the target PUCCH resource set An index of two PUCCH resources;
  • a fifth determining submodule configured to map an index of the second PUCCH resource to a configuration parameter of the second PUCCH resource.
  • the first determining submodule or the second determining submodule is further configured to:
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 is an index of the first PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • the mapping relationship between the start index or the minimum index of the control channel unit CCE and the index of the first PUCCH resource is:
  • n PUCCH1 n CCE ; where n PUCCH1 is an index of the first PUCCH resource; n CCE is a starting index or a minimum index of the control channel element CCE.
  • the second determining module includes:
  • a sixth determining submodule configured to determine, according to the PUCCH resource indication field carried by the PDCCH, a target subset of the target PUCCH resource set; wherein the target PUCCH resource set is divided into multiple subsets;
  • a seventh determining submodule configured to determine, according to a starting index or a minimum index of a control channel unit CCE of the PDCCH, an index of a third PUCCH resource in the target subset;
  • an eighth determining submodule configured to map an index of the third PUCCH resource to a configuration parameter of the third PUCCH resource.
  • the fifth determining submodule is further configured to:
  • n PUCCH3 n CCE mod N;
  • n PUCCH3 is an index of the third PUCCH resource
  • n CCE is a starting index or a minimum index of the control channel element CCE
  • N is the number of PUCCH resources included in the target subset
  • L is an aggregation level of the control channel element CCE.
  • the terminal first determines one target PUCCH resource set according to the resource configuration parameter of the target PUCCH resource set indicated by the system information; and then determines one PUCCH resource in the target PUCCH resource set according to the indication of the PDCCH, where the terminal
  • the uplink acknowledgement ACK/non-acknowledgement NACK feedback of the downlink information in the random access procedure can be transmitted using one PUCCH resource indicated by the PDCCH.
  • the terminal provided by the foregoing embodiment of the present disclosure is a terminal capable of performing the foregoing resource determining method, and all the embodiments of the resource determining method are applicable to the terminal, and all of the same or similar beneficial effects can be achieved.
  • Some embodiments of the present disclosure also provide a computer readable storage medium having stored thereon a computer program that, when executed by a processor, implements various processes of the resource determination method embodiments described above And can achieve the same technical effect, in order to avoid duplication, no longer repeat here.
  • the computer readable storage medium may be a volatile computer readable storage medium or a non-volatile computer readable storage medium, or a non-volatile computer readable storage medium and a volatile computer.
  • the readable storage medium such as a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
  • the foregoing embodiment method can be implemented by means of software plus a necessary general hardware platform, and of course, can also be through hardware, but in many cases, the former is better.
  • Implementation Based on such understanding, the technical solution of the present disclosure, which is essential or contributes to the related art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk, CD-ROM).
  • the instructions include a number of instructions for causing a terminal (which may be a cell phone, computer, server, air conditioner, or network device, etc.) to perform the methods described in various embodiments of the present disclosure.

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

La présente invention concerne un procédé d'indication de ressources, un procédé de détermination de ressources, un dispositif, une station de base et un terminal. Le procédé comporte les étapes consistant à: indiquer, au moyen d'informations de système, des paramètres de configuration de ressources dans une ressource cible de canal physique de commande de liaison montante (PUCCH) configurée pour un terminal; et indiquer une ressource de PUCCH dans la ressource de PUCCH cible configurée pour le terminal au moyen du canal physique de commande de liaison descendante (PDCCH); les paramètres de configuration de ressources dans l'ensemble de ressources de PUCCH cibles comportant: au moins deux paramètres parmi un type de format de PUCCH, un symbole initial de PUCCH, une longueur de PUCCH, le fait que le domaine fréquentiel du PUCCH effectue ou non des sauts de fréquence, une valeur de décalage de ressources de PUCCH, un intervalle minimum de décalage cyclique, un nombre de blocs de ressources en domaine fréquentiel pour la transmission du PUCCH, et un index des blocs de ressources en domaine fréquentiel pour la transmission du PUCCH.
PCT/CN2019/070821 2018-01-12 2019-01-08 Procédé d'indication de ressources, procédé de détermination de ressources, dispositif, station de base, et terminal WO2019137366A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201810030952.6 2018-01-12
CN201810030952 2018-01-12
CN201810077873.0A CN110034903B (zh) 2018-01-12 2018-01-26 资源指示方法、资源确定方法、装置、基站及终端
CN201810077873.0 2018-01-26

Publications (1)

Publication Number Publication Date
WO2019137366A1 true WO2019137366A1 (fr) 2019-07-18

Family

ID=67218213

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/070821 WO2019137366A1 (fr) 2018-01-12 2019-01-08 Procédé d'indication de ressources, procédé de détermination de ressources, dispositif, station de base, et terminal

Country Status (1)

Country Link
WO (1) WO2019137366A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3537818A4 (fr) * 2018-01-12 2019-12-18 LG Electronics Inc. Procédé de réalisation de transmission de canal de commande physique en liaison montante dans un système de communication sans fil et terminal utilisant le procédé

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102215093A (zh) * 2010-04-09 2011-10-12 中兴通讯股份有限公司 下行传输的反馈方法、基站及用户终端
WO2013048114A2 (fr) * 2011-09-26 2013-04-04 Lg Electronics Inc. Procédé et dispositif d'émission et de réception d'informations de contrôle en liaison montante dans un système d'accès radio
CN103582008A (zh) * 2012-07-26 2014-02-12 北京三星通信技术研究有限公司 一种在业务流量自适应tdd系统中传输harq-ack反馈信息的方法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102215093A (zh) * 2010-04-09 2011-10-12 中兴通讯股份有限公司 下行传输的反馈方法、基站及用户终端
WO2013048114A2 (fr) * 2011-09-26 2013-04-04 Lg Electronics Inc. Procédé et dispositif d'émission et de réception d'informations de contrôle en liaison montante dans un système d'accès radio
CN103582008A (zh) * 2012-07-26 2014-02-12 北京三星通信技术研究有限公司 一种在业务流量自适应tdd系统中传输harq-ack反馈信息的方法

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3537818A4 (fr) * 2018-01-12 2019-12-18 LG Electronics Inc. Procédé de réalisation de transmission de canal de commande physique en liaison montante dans un système de communication sans fil et terminal utilisant le procédé
US10708894B2 (en) 2018-01-12 2020-07-07 Lg Electronics Inc. Method for performing physical uplink control channel transmission and user equipment using the same
US10893515B2 (en) 2018-01-12 2021-01-12 Lg Electronics Inc. Method for performing physical uplink control channel transmission and user equipment using the same

Similar Documents

Publication Publication Date Title
CN110034903B (zh) 资源指示方法、资源确定方法、装置、基站及终端
KR102354911B1 (ko) 감소된 레이턴시로 업링크 전송들을 스케줄링하기 위한 방법 및 장치
KR102307935B1 (ko) 감소된 레이턴시로 스케줄링 요청들을 송신하기 위한 방법 및 장치
US10841948B2 (en) Methods to support UL transmission on multiple numerologies in NR system
KR102424179B1 (ko) 상이한 전송 시간 구간 길이들에 기초하여 상이한 전력 헤드룸 보고들을 전송하기 위한 방법 및 장치
WO2019153964A1 (fr) Procédé pour l'exécution d'une rétroaction de requête automatique de répétition hybride, et terminal
US20180007684A1 (en) Method and apparatus for reducing latency of lte uplink transmissions
WO2017125022A1 (fr) Procédé et appareil d'envoi et de réception de données en liaison montante, terminal, et station de base
KR20180127994A (ko) 감소된 레이턴시로 버퍼 상태 보고들을 송신하기 위한 방법 및 장치
WO2017118229A1 (fr) Procédé, dispositif et système de planification de ressources
KR20180131546A (ko) 업링크 전송들이 적어도 하나의 심벌 지속기간 동안 시간상 오버랩할 때 업링크 전력 제어를 위한 방법 및 장치
US20190349923A1 (en) Method for sending control information, method for detecting control information, terminal device, and network device
WO2015139429A1 (fr) Procédé, appareil et système permettant de transmettre et de recevoir des informations de commande
US9661617B2 (en) Determination method and device for resources in physical uplink control channel
US11330595B2 (en) Method for sending control information, method for receiving control information, and apparatus
WO2019184484A1 (fr) Procédés et appareils d'indication et de détermination de ressources
CN110830173B (zh) Pucch与pdsch之间的时间差的指示方法、基站及可读介质
KR20180129797A (ko) 감소된 레이턴시로 업링크 전송들을 스케줄링하기 위한 방법 및 장치
JP2019024184A (ja) 端末装置、基地局装置、通信方法、および、集積回路
CN110034865B (zh) Pucch资源的确定方法及其接收方法、终端设备和网络侧设备
KR20200103791A (ko) 업링크 제어 정보의 전송 방법 및 장치
KR20200139247A (ko) 단말기 장치, 기지국 장치 및 통신 방법
JP2022092003A (ja) アンライセンススペクトル上のアップリンク割り当て
US20210377954A1 (en) Information sending method and apparatus
US11470586B2 (en) Uplink control channel resource allocation methods and devices

Legal Events

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

Ref document number: 19737995

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19737995

Country of ref document: EP

Kind code of ref document: A1