IP Library › Granted Patent US 11,496,269
Granted Patent B2
US 11,496,269 · App. 17/096,703 · Granted Nov 8, 2022

Reference signal transmission method and apparatus

Inventors: Jianguo Wang (Shanghai, CN); Yongxing Zhou (Beijing, CN)
H04L5/0053H04B7/04H04B7/0413H04L5/0048H04W72/0446H04L5/0023
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Quick Facts
Patent No.
US 11,496,269
App. No.
17/096,703
Granted
Nov 8, 2022
Kind
B2
Abstract

Embodiments disclose a reference signal transmission method and an apparatus. The method includes receiving reference signal resource configuration information sent by a base station, where the reference signal resource configuration information includes antenna port quantity information and a resource configuration index. The method also includes determining a reference signal configuration from a reference signal configuration set according to the antenna port quantity information and the resource configuration index. The method also includes obtaining, according to the determined reference signal configuration, positions of the resource elements (REs) that are used to send the reference signal on the antenna ports in the antenna port set, and receiving reference signals according to the positions of the REs.

Claims (43)

1. A method, comprising:

receiving reference signal resource configuration information from a base station, wherein the reference signal resource configuration information comprises a resource configuration index;

determining a first reference signal configuration from a reference signal configuration set according to the resource configuration index, wherein the first reference signal configuration indicates position information of resource elements (REs) that are used to send reference signals on antenna ports in a first antenna port set, wherein the first antenna port set comprises at least two antenna port subsets, wherein a respective resource element group used by each antenna port subset consists of four REs that are adjacent in frequency domain and in time domain, and reference signals on different antenna ports in each antenna port subset are code division multiplexed over the respective resource element group used by the corresponding antenna port subset; and

receiving the reference signals according to the first reference signal configuration.

2. The method according to claim 1 , wherein each antenna port subset consists of four antenna ports, and code division multiplexing (CDM) codes for the reference signals sent on the four antenna ports are [1,1,1,1], [1,−1,1,−1], [1,1,−1,−1], and [1,−1,−1,1] respectively.

3. The method according to claim 1 , wherein resource element groups (REG i 1 ,REG i 2 ) used by two antenna port subsets in the first reference signal configuration are (REG 0 NCP ,REG 1 NCP ),(REG 1 NCP ,REG 2 NCP ),(REG 2 NCP ,REG 3 NCP ),(REG 3 NCP ,REG 4 NCP ),(REG 4 NCP ,REG 0 NCP ), (REG 0 NCP ,REG 4 NCP ),(REG 1 NCP ,REG 3 NCP ),(REG 2 NCP ,REG 1 NCP ),(REG 3 NCP ,REG 2 NCP ), or (REG 3 NCP ,REG 1 NCP ), and wherein NCP indicates normal cyclic prefix.

4. An apparatus, comprising:

at least one processor; and

a non-transitory storage medium coupled to the at least one processor and storing programming instructions that are executable by the at least one processor, wherein execution of the programming instructions enables the apparatus to:

receive reference signal resource configuration information from a base station, wherein the reference signal resource configuration information comprises a resource configuration index;

determine a first reference signal configuration from a reference signal configuration set according to the resource configuration index, wherein the first reference signal configuration indicates position information of resource elements (REs) that are used to send reference signals on antenna ports in a first antenna port set, wherein the first antenna port set comprises at least two antenna port subsets, wherein a respective resource element group used by each antenna port subset consists of four REs that are adjacent in frequency domain and in time domain, and reference signals on different antenna ports in each antenna port subset are code division multiplexed over the respective resource element group used by the corresponding antenna port subset; and

receive the reference signals according to the first reference signal configuration.

5. The apparatus according to claim 4 , wherein each antenna port subset consists of four antenna ports, and code division multiplexing (CDM) codes for the reference signals on the four antenna ports are [1,1,1,1], [1,−1,1,−1], [1,1,−1,−1], and [1,−1,−1,1] respectively.

6. The apparatus according to claim 4 , wherein resource element groups (REG i 1 ,REG i 2 ) used by two antenna port subsets in the first reference signal configuration are (REG 0 NCP ,REG 1 NCP ),(REG 1 NCP ,REG 2 NCP ),(REG 2 NCP ,REG 3 NCP ),(REG 3 NCP ,REG 4 NCP ),(REG 4 NCP ,REG 0 NCP ), (REG 0 NCP ,REG 4 NCP ),(REG 1 NCP ,REG 3 NCP ),(REG 2 NCP ,REG 1 NCP ),(REG 3 NCP ,REG 2 NCP ), or (REG 3 NCP ,REG 1 NCP )(REG 3 NCP ,REG 1 NCP ), and wherein NCP indicates normal cyclic prefix.

7. A non-transitory computer-readable storage medium comprising instructions which, when executed by a computer, cause the computer to carry out steps of:

receiving reference signal resource configuration information from a base station, wherein the reference signal resource configuration information comprises a resource configuration index;

determining a first reference signal configuration from a reference signal configuration set according to the resource configuration index, wherein the first reference signal configuration indicates position information of resource elements (REs) that are used to send reference signals on antenna ports in a first antenna port set, wherein the first antenna port set comprises at least two antenna port subsets, wherein a respective resource element group used by each antenna port subset consists of four REs that are adjacent in the frequency domain and in the time domain, and reference signals on different antenna ports in each antenna port subset are code division multiplexed over the respective resource element group used by the corresponding antenna port subset; and

receiving the reference signals according to the first reference signal configuration.

8. The non-transitory computer-readable storage medium according to claim 7 , wherein each antenna port subset consists of four antenna ports, and code division multiplexing (CDM) codes for the reference signals sent on the four antenna ports are [1,1,1,1], [1,−1,1,−1], [1,1,−1,−1], and [1,−1,−1,1] respectively.

9. The non-transitory computer-readable storage medium according to claim 7 , wherein resource element groups (REG i 1 ,REG i 2 ) used by two antenna port subsets in the first reference signal configuration are (REG 0 NCP ,REG 1 NCP ),(REG 1 NCP ,REG 2 NCP ),(REG 2 NCP ,REG 3 NCP ), (REG 3 NCP ,REG 4 NCP ),(REG 4 NCP ,REG 0 NCP ),(REG 0 NCP ,REG 4 NCP ),(REG 1 NCP ,REG 3 NCP ), (REG 2 NCP ,REG 1 NCP ),(REG 3 NCP ,REG 2 NCP ), or (REG 3 NCP ,REG 1 NCP ), and wherein NCP indicates a normal cyclic prefix.

10. A method, comprising:

sending reference signal resource configuration information to a user apparatus, wherein the reference signal resource configuration information comprises a resource configuration index, and the resource configuration index indicates a first reference signal configuration in a reference signal configuration set, wherein the first reference signal configuration indicates position information of resource elements (REs) that will be used to send reference signals on antenna ports in a first antenna port set, wherein the first antenna port set comprises at least two antenna port subsets, wherein a respective resource element group used by each antenna port subset consists of four REs that are adjacent in frequency domain and in time domain; and

sending reference signals corresponding to the first reference signal configuration, wherein reference signals on different antenna ports in each antenna port subset are code division multiplexed over the respective resource element group corresponding to the respective antenna port subset.

11. The method according to claim 10 , wherein each antenna port subset of the at least two antenna port subsets consists of four antenna ports, and code division multiplexing (CDM) codes for reference signals sent on the four antenna ports are [1,1,1,1], [1,−1,1,−1], [1,1,−1,−1], and [1,−1,−1,1] respectively.

12. The method according to claim 10 , wherein resource element groups (REG i 1 ,REG i 2 ) used by two antenna port subsets in the first reference signal configuration are (REG 0 NCP ,REG 1 NCP ),(REG 1 NCP ,REG 2 NCP ),(REG 2 NCP ,REG 3 NCP ),(REG 3 NCP ,REG 4 NCP ),(REG 4 NCP ,REG 0 NCP ), (REG 0 NCP ,REG 4 NCP ),(REG 1 NCP ,REG 3 NCP ),(REG 2 NCP ,REG 1 NCP ),(REG 3 NCP ,REG 2 NCP ), or (REG 3 NCP ,REG 1 NCP ), and wherein NCP indicates a normal cyclic prefix.

13. An apparatus, comprising:

at least one processor; and

a non-transitory storage medium coupled to the at least one processor and storing programming instructions that are executable by the at least one processor, wherein execution of the programming instructions enables the apparatus to:

send reference signal resource configuration information to a user apparatus, wherein the reference signal resource configuration information comprises a resource configuration index, and the resource configuration index indicates a first reference signal configuration in a reference signal configuration set, wherein the first reference signal configuration indicates position information of resource elements (REs) that will be used to send reference signals on antenna ports in a first antenna port set, wherein the first antenna port set comprises at least two antenna port subsets, wherein a respective resource element group used by each antenna port subset consists of four REs that are adjacent in frequency domain and in time domain; and

send reference signals corresponding to the first reference signal configuration, wherein reference signals on different antenna ports in each antenna port subset are code division multiplexed over the respective resource element group corresponding to the respective antenna port subset.

14. The apparatus according to claim 13 , wherein each antenna port subset of the at least two antenna port subsets consists of four antenna ports, and code division multiplexing (CDM) codes for the reference signals sent on the four antenna ports are [1,1,1,1], [1,−1,1,−1], [1,1,−1,−1], and [1,−1,−1,1] respectively.

15. The apparatus according to claim 14 , wherein resource element groups (REG i 1 ,REG i 2 ) used by two antenna port subsets in the first reference signal configuration are (REG 0 NCP ,REG 1 NCP ),(REG 1 NCP ,REG 2 NCP ),(REG 2 NCP ,REG 3 NCP ),(REG 3 NCP ,REG 4 NCP ),(REG 4 NCP ,REG 0 NCP ), (REG 0 NCP ,REG 4 NCP ),(REG 1 NCP ,REG 3 NCP ),(REG 2 NCP ,REG 1 NCP ),(REG 3 NCP ,REG 2 NCP ), or (REG 3 NCP ,REG 1 NCP ), and wherein NCP indicates a normal cyclic prefix.

16. A non-transitory computer-readable storage medium comprising instructions which, when executed by a computer, cause the computer to:

send reference signal resource configuration information to a user apparatus, wherein the reference signal resource configuration information comprises a resource configuration index, and the resource configuration index indicates a first reference signal configuration in a reference signal configuration set, wherein the first reference signal configuration indicates position information of resource elements (REs) that will be used to send reference signals on antenna ports in a first antenna port set, wherein the first antenna port set comprises at least two antenna port subsets, wherein a respective resource element group used by each antenna port subset consists of four REs that are adjacent in frequency domain and in time domain; and

send reference signals corresponding to the first reference signal configuration, wherein reference signals on different antenna ports in each antenna port subset are code division multiplexed over the respective resource element group corresponding to the respective antenna port subset.

17. The non-transitory computer-readable storage medium according to claim 16 , wherein each antenna port subset of the at least two antenna port subsets consists of four antenna ports, and code division multiplexing (CDM) codes for the reference signals sent on the four antenna ports are [1,1,1,1], [1,−1,1,−1], [1,1,−1,−1], and [1,−1,−1,1] respectively.

18. The non-transitory computer-readable storage medium according to claim 16 , wherein resource element groups (REG i 1 ,REG i 2 ) used by two antenna port subsets in the first reference signal configuration are (REG 0 NCP ,REG 1 NCP ),(REG 1 NCP ,REG 2 NCP ),(REG 2 NCP ,REG 3 NCP ), (REG 3 NCP ,REG 4 NCP ),(REG 4 NCP ,REG 0 NCP ),(REG 0 NCP ,REG 4 NCP ),(REG 1 NCP ,REG 3 NCP ), (REG 2 NCP ,REG 1 NCP ),(REG 3 NCP ,REG 2 NCP ), or (REG 3 NCP ,REG 1 NCP ), and wherein NCP indicates a normal cyclic prefix.

19. The method according to claim 1 , wherein the four REs occupy first and second symbols that are adjacent in time domain, wherein two of the four REs occupy first and second subcarriers that are adjacent in the frequency domain in the first symbol, the other two of the four REs occupy the first and second subcarriers in the second symbol.

20. The apparatus according to claim 4 , wherein the four REs occupy first and second symbols that are adjacent in time domain, wherein two of the four REs occupy first and second subcarriers that are adjacent in the frequency domain in the first symbol, the other two of the four REs occupy the first and second subcarriers in the second symbol.

21. The non-transitory computer-readable storage medium according to claim 7 , wherein the four REs occupy first and second symbols that are adjacent in time domain, wherein two of the four REs occupy first and second subcarriers that are adjacent in the frequency domain in the first symbol, the other two of the four REs occupy the first and second subcarriers in the second symbol.

22. The method according to claim 10 , wherein the four REs occupy first and second symbols that are adjacent in time domain, wherein two of the four REs occupy first and second subcarriers that are adjacent in the frequency domain in the first symbol, the other two of the four REs occupy the first and second subcarriers in the second symbol.

23. The apparatus according to claim 13 , wherein the four REs occupy first and second symbols that are adjacent in time domain, wherein two of the four REs occupy first and second subcarriers that are adjacent in the frequency domain in the first symbol, the other two of the four REs occupy the first and second subcarriers in the second symbol.

24. The non-transitory computer-readable storage medium according to claim 16 , wherein the four REs occupy first and second symbols that are adjacent in time domain, wherein two of the four REs occupy first and second subcarriers that are adjacent in the frequency domain in the first symbol, the other two of the four REs occupy the first and second subcarriers in the second symbol.

Continuity (5)
Continuation 16418131 · May 21, 2019
Continuation 15785881 · Oct 17, 2017
Continuation 14979967 · Dec 28, 2015
Continuation PCTCN2013078062 · Jun 26, 2013
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