IP Library Granted Patent US 11,683,079
Granted Patent B2
US 11,683,079 · App. 16/991,195 · Granted Jun 20, 2023

Mechanisms for reduced density CSI-RS

Inventors: Siva Muruganathan (Stittsville, CA); Mattias Frenne (Uppsala, SE); Shiwei Gao (Nepean, CA); Stephen Grant (Pleasanton, CA); Robert Mark Harrison (Grapevine, TX)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04B7/0626H04B7/0456H04B7/0617H04L5/005H04L5/0023H04W24/10H04W72/0446
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Quick Facts
Patent No.
US 11,683,079
App. No.
16/991,195
Granted
Jun 20, 2023
Kind
B2
Abstract

According to some embodiments, a method for use in a network node of transmitting channel slate information reference signals (CSI-RS) comprises: transmitting, to the wireless device, an indication of the subset of PRBs that the wireless device should use to measure CSI-RS; and transmitting CSI-RS on the indicated subset of PRBs. According to some embodiments, a method for use in a wireless device of receiving CSI-RS comprises: receiving an indication of a subset of PRBs that the wireless device should use to measure CSI-RS associated with an antenna port; and receiving CSI-RS on the indicated subset of PRBs. In some embodiments, the indication of the subset of PRBs that the wireless device should use to measure CSI-RS comprises a density value and a comb offset.

Claims (53)

1. A method for use in a network node of transmitting channel state information reference signals (CSI-RS), the method comprising:

transmitting, to a wireless device, an indication of a subset of physical resource blocks (PRBs) that are available for the wireless device to measure CSI-RS, each CSI-RS associated with an antenna port, either the subset of PRBs comprising even numbered PRBs or the subset of PRBs comprising odd numbered PRBs; and

transmitting CSI-RS on the indicated subset of PRBs, wherein

the network node transmits CSI-RS on a total number of antenna ports, and each PRB of the subset of PRBs includes a CSI-RS mapping for the total number of antenna ports.

2. The method of claim 1 , further comprising obtaining the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS.

3. The method of claim 1 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS ports comprises a density value and a comb offset.

4. The method of claim 3 , wherein:

the density value comprises a density of ½;

a first comb offset indicates that the wireless device should use the PRBs in a set m1 to measure CSI-RS, wherein the set m1 comprises {0, 2, . . . , N RB DL −2}; and

a second comb offset indicates that the wireless device should use the PRBs in a set m2 to measure CSI-RS, wherein the set m2 comprises {1, 3, . . . , N RB DL −1}.

5. The method of claim 3 , wherein:

the density value comprises a density of ⅓;

a first comb offset indicates that the wireless device should use the PRBs in a set m1 to measure CSI-RS, wherein the set m1 comprises {0, 3, . . . , N RB DL −3};

a second comb offset indicates that the wireless device should use the PRBs in a set m2 to measure CSI-RS, wherein the set m2 comprises {1, 4, . . . , N RB DL −2}; and

a third comb offset indicates that the wireless device should use the PRBs in a set m3 to measure CSI-RS, wherein the set m3 comprises {2, 5, . . . , N RB DL −1}.

6. The method of claim 1 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS comprises an index value k, the index value k referring to one of a plurality of indications stored at the wireless device.

7. The method of claim 1 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS further comprises a number of successive CSI-RS subframes in which the wireless device should measure CSI-RS.

8. A method for use in a wireless device of receiving channel state information reference signals (CSI-RS), the method comprising:

receiving an indication of a subset of physical resource blocks (PRBs) that are available for the wireless device to measure CSI-RS, each of the CSI-RS associated with an antenna port, either the subset of PRBs comprising even numbered PRBs or the subset of PRBs comprising odd numbered PRBs; and

receiving CSI-RS on the indicated subset of PRBs, wherein

the wireless device receives CSI-RS transmitted on a total number of antenna ports from a network node, and each PRB of the subset of PRBs includes a CSI-RS mapping for the total number of antenna ports.

9. The method of claim 8 , further comprising:

determining a channel state information (CSI) based on the received CSI-RS; and

transmitting the CSI to a network node.

10. The method of claim 8 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS comprises a density value and a comb offset.

11. The method of claim 10 , wherein:

the density value comprises a density of ½;

a first comb offset indicates that the wireless device should use the PRBs in a set m1 to measure CSI-RS, wherein the set m1 comprises {0, 2, . . . , N RB DL −2}; and

a second comb offset indicates that the wireless device should use the PRBs in a set m2 to measure CSI-RS, wherein the set m2 comprises {1, 3, . . . , N RB DL −1}.

12. The method of claim 10 , wherein:

the density value comprises a density of ⅓;

a first comb offset indicates that the wireless device should use the PRBs in a set m1 to measure CSI-RS, wherein the set m1 comprises {0, 3, . . . , N RB DL −3};

a second comb offset indicates that the wireless device should use the PRBs in a set m2 to measure CSI-RS, wherein the set m2 comprises {1, 4, . . . , N RB DL −2}; and

a third comb offset indicates that the wireless device should use the PRBs in a set m3 to measure CSI-RS, wherein the set m3 comprises {2, 5, . . . , N RB DL −1}.

13. The method of claim 8 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS comprises an index value k, the index value k referring to one of a plurality of indications stored at the wireless device.

14. The method of claim 8 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS further comprises a number of successive CSI-RS subframes in which the wireless device should measure CSI-RS.

15. The method of claim 14 , further comprising determining a channel state information (CSI) based on the received CSI-RS over the number of successive CSI-RS subframes.

16. A network node operable to transmit channel state information reference signals (CSI-RS) ( 135 ), the network node comprising processing circuitry, the processing circuitry operable to:

transmit, to a wireless device, an indication of a subset of physical resource blocks (PRBs) that are available for the wireless device to measure CSI-RS, each CSI-RS associated with an antenna port, either the subset of PRBs comprising even numbered PRBs or the subset of PRBs comprising odd numbered PRBs; and

transmit CSI-RS on the indicated subset of PRBs, wherein

the network node transmits CSI-RS on a total number of antenna ports, and each PRB of the subset of PRBs includes a CSI-RS mapping for the total number of antenna ports.

17. The network node of claim 16 , the processing circuitry further operable to obtain the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS.

18. The network node of claim 16 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS comprises a density value and a comb offset.

19. The network node of claim 16 , wherein the indication of the subset of PRBs that are available for the wireless device measure CSI-RS comprises an index value k, the index value k referring to one of a plurality of indications stored at the wireless device.

20. The network node of claim 16 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS further comprises a number of successive CSI-RS subframes in which the wireless device should measure CSI-RS.

21. A wireless device operable to receive channel state information reference signals (CSI-RS), the wireless device comprising processing circuitry, the processing circuitry operable to:

receive an indication of a subset of physical resource blocks (PRBs) that are available for the wireless device to measure CSI-RS, each of the CSI-RS associated with an antenna port, either the subset of PRBs comprising even numbered PRBs or the subset of PRBs comprising odd numbered PRBs; and

receive CSI-RS on the indicated subset of PRBs, wherein

the wireless device receives CSI-RS transmitted on a total number of antenna ports from a network node, and each PRB of the subset of PRBs includes a CSI-RS mapping for the total number of antenna ports.

22. The wireless device of claim 21 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS ports comprises a density value and a comb offset.

23. The wireless device of claim 21 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS comprises an index value k, the index value k referring to one of a plurality of indications stored at the wireless device.

24. The wireless device of claim 21 , wherein the indication of the subset of PRBs that are available for the wireless device to measure CSI-RS further comprises a number of successive CSI-RS subframes that the wireless device should measure CSI-RS.

25. The wireless device of claim 24 , the processing circuitry further operable to determine a channel state information (CSI) based on the received CSI-RS over the number of successive CSI-RS subframes.

Continuity (3)
Continuation 16301219
Provisional Application 62335989 · May 13, 2016
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