Apparatus and method of wireless communication
View Patent ↗An apparatus and a method of wireless communication are provided. The method by a user equipment (UE) includes determining, by the UE from a base station, a configuration of a physical uplink control channel (PUCCH) resource, wherein the PUCCH resource in frequency domain comprises one or more physical resource blocks (PRBs) and corresponds to a PUCCH format 0, a PUCCH format 1, or a PUCCH format 4. This can solve issues in the prior art, provide a method to boost a transmission power of PUCCH, provide a good communication performance, and/or provide high reliability.
1 . A wireless communication method, by a user equipment (UE), comprising:
determining, by the UE from a base station, a configuration of a physical uplink control channel (PUCCH) resource, wherein the PUCCH resource in frequency domain comprises one or more physical resource blocks (PRBs) and corresponds to a PUCCH format 0, a PUCCH format 1, or a PUCCH format 4;
wherein a PUCCH resource determination follows a frequency hopping allocating the PUCCH resource backwards from an ending PRB of a bandwidth part (BWP).
2 . The method of claim 1 , wherein the PRBs are consecutive in the frequency domain, and the configuration of the PUCCH resource comprises a starting RB and/or a number of RBs used as an RB length.
3 . The method of claim 1 , wherein the configuration of the PUCCH resource comprises at least one of the followings: a PUCCH starting PRB index, a number of PRBs for PUCCH (L), or a PUCCH format, and wherein the PUCCH starting PRB index, the number of PRBs for PUCCH, and the PUCCH format are pre-defined in a configuration table.
4 . The method of claim 3 , wherein a PUCCH resource in frequency domain comprises L consecutive PRBs starting from the PUCCH starting PRB index, and a first PUCCH resource corresponding to a first PUCCH resource index is not overlapped in frequency domain with a second PUCCH resource corresponding to a second PUCCH resource index; and
wherein the first PUCCH resource and the second PUCCH resource are adjacent in frequency domain, where the second PUCCH resource index is equal to the first PUCCH resource index plus Ncs, wherein the Ncs is the number of the cyclic shift indexes in the set of initial cyclic shift indexes.
5 . The method of claim 3 , wherein for consecutive PRBs in the frequency domain, the PUCCH starting PRB index for PUCCH resource in the frequency domain is determined by at least one of the following: the PRB offset, the number of PRBs for PUCCH, the PUCCH resource index (r PUCCH ), and N CS , wherein N CS is the number of initial cyclic shift indexes in the set of initial cyclic shift indexes.
6 . The method of claim 1 , wherein the PRBs are non-consecutive in the frequency domain, and for non-consecutive PRBs in the frequency domain, the configuration of the PUCCH resource comprises a starting RB, a number of RBs used as an RB length, and an RB interval between two RBs.
7 . The method of claim 6 , wherein the configuration of the PUCCH resource comprises at least one of the followings: a PUCCH starting PRB index, a number of PRBs for PUCCH, a PUCCH format, or a PRB interval.
8 . The method of claim 7 , wherein for non-consecutive PRBs in the frequency domain, the PUCCH starting PRB index for PUCCH resource in the frequency domain is determined by at least one of the following: the PRB offset, the number of PRBs for PUCCH, the PUCCH resource index (r PUCCH ), and N CS , wherein N CS is the number of initial cyclic shift indexes in the set of initial cyclic shift indexes.
9 . A wireless communication method by a base station, comprising:
configuring, by the base station to a user equipment (UE), a configuration of a physical uplink control channel (PUCCH) resource, wherein the PUCCH resource in frequency domain comprises one or more physical resource blocks (PRBs) and corresponds to a PUCCH format 0, a PUCCH format 1, or a PUCCH format 4;
wherein a PUCCH resource determination follows a frequency hopping allocating the PUCCH resource backwards from an ending PRB of a bandwidth part (BWP).
10 . The method of claim 9 , wherein the PRBs are consecutive in the frequency domain, and the configuration of the PUCCH resource comprises a starting RB and/or a number of RBs used as an RB length.
11 . The method of claim 9 , wherein the configuration of the PUCCH resource comprises at least one of the followings: a PUCCH starting PRB index, a number of PRBs for PUCCH (L), or a PUCCH format, and wherein the PUCCH starting PRB index, the number of PRBs for PUCCH, and the PUCCH format are pre-defined in a configuration table.
12 . The method of claim 9 , wherein the base station is configured to transmit the configuration of the PUCCH resource in system information.
13 . The method of claim 11 , wherein a PUCCH resource in frequency domain comprises L consecutive PRBs starting from the PUCCH starting PRB index, and a first PUCCH resource corresponding to a first PUCCH resource index is not overlapped in frequency domain with a second PUCCH resource corresponding to a second PUCCH resource index; and
wherein the first PUCCH resource and the second PUCCH resource are adjacent in frequency domain, where the second PUCCH resource index is equal to the first PUCCH resource index plus Ncs, wherein the Nes is the number of the cyclic shift indexes in the set of initial cyclic shift indexes.
14 . The method of claim 11 , wherein for consecutive PRBs in the frequency domain, the PUCCH starting PRB index for PUCCH resource in the frequency domain is determined by at least one of the following: the PRB offset, the number of PRBs for PUCCH, the PUCCH resource index (r PUCCH ), and N CS , wherein N CS is the number of initial cyclic shift indexes in the set of initial cyclic shift indexes.
15 . The method of claim 9 , wherein the PRBs are non-consecutive in the frequency domain, and for non-consecutive PRBs in the frequency domain, the configuration of the PUCCH resource comprises a starting RB, a number of RBs used as an RB length, and an RB interval between two RBs.
16 . The method of claim 15 , wherein the configuration of the PUCCH resource comprises at least one of the followings: a PUCCH starting PRB index, a number of PRBs for PUCCH, a PUCCH format, or a PRB interval, and wherein the PUCCH starting PRB index, the number of PRBs for PUCCH, the PRB interval, and the PUCCH format are pre-defined in a configuration table.
17 . The method of claim 16 , wherein for non-consecutive PRBs in the frequency domain, the PUCCH starting PRB index for PUCCH resource in the frequency domain is determined by at least one of the following: the PRB offset, the number of PRBs for PUCCH, the PUCCH resource index (r PUCCH ), and N CS , wherein N CS is the number of initial cyclic shift indexes in the set of initial cyclic shift indexes.
18 . A user equipment (UE), comprising:
a memory;
a transceiver; and
a processor coupled to the memory and the transceiver;
wherein the processor is configured to determine from a base station, a configuration of a physical uplink control channel (PUCCH) resource, wherein the PUCCH resource in frequency domain comprises one or more physical resource blocks (PRBs) and corresponds to a PUCCH format 0, a PUCCH format 1, or a PUCCH format 4;
wherein a PUCCH resource determination follows a frequency hopping allocating the PUCCH resource backwards from an ending PRB of a bandwidth part (BWP).
19 . A base station, comprising:
a memory;
a transceiver; and
a processor coupled to the memory and the transceiver;
wherein the processor is configured to configure to a user equipment (UE), a configuration of a physical uplink control channel (PUCCH) resource, wherein the PUCCH resource in frequency domain comprises one or more physical resource blocks (PRBs) and corresponds to a PUCCH format 0, a PUCCH format 1, or a PUCCH format 4;
wherein a PUCCH resource determination follows a frequency hopping allocating the PUCCH resource backwards from an ending PRB of a bandwidth part (BWP).