IP Library Granted Patent US 11,502,733
Granted Patent B2
US 11,502,733 · App. 17/171,734 · Granted Nov 15, 2022

Switching between rank two and rank four operating modes for analog beamforming

Inventors: Vasanthan Raghavan (West Wndsor Township, NJ); Juergen Cezanne (Ocean Township, NJ); Junyi Li (Franklin Park, NJ)
Assignee: QUALCOMM Incorporated
H04B7/0486H04B7/0617H04B17/318H04L5/0048
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Quick Facts
Patent No.
US 11,502,733
App. No.
17/171,734
Granted
Nov 15, 2022
Kind
B2
Abstract

Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a first wireless communication device may receive, from a second wireless communication device, a set of beamformed reference signals for analog beam training. The first wireless communication device may transmit, to the second wireless communication device, feedback that indicates a first complex correlation coefficient associated with the first wireless communication device that is based at least in part on the set of beamformed reference signals and that represents a phase between a first beamforming vector and a second beamforming vector, and an angle between the first beamforming vector and the second beamforming vector. Numerous other aspects are described.

Claims (75)

1. A first wireless communication device for wireless communication, comprising:

a memory; and

one or more processors coupled to the memory, the memory and the one or more processors configured to:

receive, from a second wireless communication device, a set of beamformed reference signals for analog beam training; and

transmit, to the second wireless communication device, feedback that indicates a first complex correlation coefficient associated with the first wireless communication device that is based at least in part on the set of beamformed reference signals and that represents:

a phase between a first beamforming vector used for beamforming at the first wireless communication device based at least in part on a first beamformed reference signal of the set of beamformed reference signals and a second beamforming vector used for beamforming at the first wireless communication device based at least in part on a second beamformed reference signal of the set of beamformed reference signals; and

an angle between the first beamforming vector and the second beamforming vector.

2. The first wireless communication device of claim 1 , wherein the feedback further indicates a first signal strength associated with a first beam pair and a second signal strength associated with a second beam pair, wherein the feedback further indicates beam information associated with the first beam pair and the second beam pair.

3. The first wireless communication device of claim 2 , wherein the memory and the one or more processors are further configured to receive, from the second wireless communication device, an indication of a rank switch from a first rank operating mode to a second rank operating mode, wherein the rank switch is based at least in part on a signal strength threshold, wherein the signal strength threshold is based at least in part on the first complex correlation coefficient, a second complex correlation coefficient associated with the second device, the first signal strength, the second signal strength, and the beam information.

4. The first wireless communication device of claim 3 , wherein the first rank operating mode corresponds to rank two transmissions and the second rank operating mode corresponds to rank four transmissions, or the first rank operating mode corresponds to rank four transmissions and the second rank operating mode corresponds to rank two transmissions.

5. The first wireless communication device of claim 4 , wherein the rank switch is further based at least in part on a determination that an operating signal strength satisfies the signal strength threshold.

6. The first wireless communication device of claim 4 , wherein the signal strength threshold comprises a transition signal-to-noise ratio.

7. The first wireless communication device of claim 4 , wherein the memory and the one or more processors are further configured to receive, from the second wireless communication device, an enhanced beam training configuration that indicates an additional set of beamformed reference signals for beam training associated with the second rank operating mode.

8. The first wireless communication device of claim 4 , wherein the rank switch is based at least in part on at least one codebook indicated by a wireless communication standard.

9. The first wireless communication device of claim 1 , wherein the first wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

10. The first wireless communication device of claim 1 , wherein the second wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

11. A first wireless communication device for wireless communication, comprising:

a memory; and

one or more processors coupled to the memory, the memory and the one or more processors configured to:

transmit, to a second wireless communication device, a set of beamformed reference signals for analog beam training; and

receive, from the second wireless communication device, feedback that indicates a first complex correlation coefficient associated with the second wireless communication device that is based at least in part on the set of beamformed reference signals and that represents:

a phase between a first beamforming vector used for beamforming at the second wireless communication device based at least in part on a first beamformed reference signal of the set of beamformed reference signals and a second beamforming vector used for beamforming at the second wireless communication device based at least in part on a second beamformed reference signal of the set of beamformed reference signals; and

an angle between the first beamforming vector and the second beamforming vector.

12. The first wireless communication device of claim 11 , wherein the feedback further indicates a first signal strength associated with a first beam pair and a second signal strength associated with a second beam pair, wherein the feedback further indicates beam information associated with the first beam pair and the second beam pair.

13. The first wireless communication device of claim 12 , wherein the memory and the one or more processors are further configured to determine a signal strength threshold based at least in part on the first complex correlation coefficient, a second complex correlation coefficient associated with the second device, the first signal strength, the second signal strength, and the beam information.

14. The first wireless communication device of claim 13 , wherein the memory and the one or more processors are further configured to determine an occurrence of a rank switch trigger event based at least in part on determining that an operating signal strength satisfies the signal strength threshold.

15. The first wireless communication device of claim 14 , wherein the signal strength threshold comprises a transition signal-to-noise ratio.

16. The first wireless communication device of claim 14 , wherein the memory and the one or more processors are further configured to transmit, to the second wireless communication device, an indication of a rank switch from a first rank operating mode to a second rank operating mode, wherein the rank switch is based at least in part on determining the occurrence of the rank switch trigger event.

17. The first wireless communication device of claim 16 , wherein the first rank operating mode corresponds to rank two transmissions and the second rank operating mode corresponds to rank four transmissions, or the first rank operating mode corresponds to rank four transmissions and the second rank operating mode corresponds to rank two transmissions.

18. The first wireless communication device of claim 16 , wherein the memory and the one or more processors are further configured to transmit, to the second wireless communication device, an enhanced beam training configuration that indicates an additional set of beamformed reference signals for beam training associated with the second rank operating mode.

19. The first wireless communication device of claim 16 , wherein the memory and the one or more processors are further configured to:

determine a realizable data rate associated with the second rank operating mode; and

schedule the second wireless communication device and at least a third wireless communication device based at least in part on the realizable data rate.

20. The first wireless communication device of claim 14 , wherein the memory and the one or more processors, when determining the occurrence of the rank switch triggering event, are configured to determine the occurrence of the rank switch triggering event based at least in part on at least one codebook indicated by a wireless communication standard.

21. The first wireless communication device of claim 11 , wherein the first wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

22. The first wireless communication device of claim 11 , wherein the second wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

23. A method of wireless communication performed by a first wireless communication device, comprising:

receiving, from a second wireless communication device, a set of beamformed reference signals for analog beam training; and

transmitting, to the second wireless communication device, feedback that indicates a first complex correlation coefficient associated with the first wireless communication device that is based at least in part on the set of beamformed reference signals and that represents:

a phase between a first beamforming vector used for beamforming at the first wireless communication device based at least in part on a first beamformed reference signal of the set of beamformed reference signals and a second beamforming vector used for beamforming at the first wireless communication device based at least in part on a second beamformed reference signal of the set of beamformed reference signals; and

an angle between the first beamforming vector and the second beamforming vector.

24. The method of claim 23 , wherein the feedback further indicates a first signal strength associated with a first beam pair and a second signal strength associated with a second beam pair, wherein the feedback further indicates beam information associated with the first beam pair and the second beam pair.

25. The method of claim 24 , further comprising receiving, from the second wireless communication device, an indication of a rank switch from a first rank operating mode to a second rank operating mode, wherein the rank switch is based at least in part on a signal strength threshold, wherein the signal strength threshold is based at least in part on the first complex correlation coefficient, a second complex correlation coefficient associated with the second device, the first signal strength, the second signal strength, and the beam information.

26. The method of claim 25 , wherein the first rank operating mode corresponds to rank two transmissions and the second rank operating mode corresponds to rank four transmissions, or the first rank operating mode corresponds to rank four transmissions and the second rank operating mode corresponds to rank two transmissions.

27. The method of claim 26 , wherein the rank switch is further based at least in part on a determination that an operating signal strength satisfies the signal strength threshold.

28. The method of claim 26 , wherein the signal strength threshold comprises a transition signal-to-noise ratio.

29. The method of claim 26 , further comprising:

receiving, from the second wireless communication device, an enhanced beam training configuration that indicates an additional set of beamformed reference signals for beam training associated with the second rank operating mode.

30. The method of claim 26 , wherein the rank switch is based at least in part on at least one codebook indicated by a wireless communication standard.

31. The method of claim 23 , wherein the first wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

32. The method of claim 23 , wherein the second wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

33. A method of wireless communication performed by a first wireless communication device, comprising:

transmitting, to a second wireless communication device, a set of beamformed reference signals for analog beam training; and

receiving, from the second wireless communication device, feedback that indicates a first complex correlation coefficient associated with the second wireless communication device that is based at least in part on the set of beamformed reference signals and that represents:

a phase between a first beamforming vector used for beamforming at the second wireless communication device based at least in part on a first beamformed reference signal of the set of beamformed reference signals and a second beamforming vector used for beamforming at the second wireless communication device based at least in part on a second beamformed reference signal of the set of beamformed reference signals; and

an angle between the first beamforming vector and the second beamforming vector.

34. The method of claim 33 , wherein the feedback further indicates a first signal strength associated with a first beam pair and a second signal strength associated with a second beam pair, wherein the feedback further indicates beam information associated with the first beam pair and the second beam pair.

35. The method of claim 34 , further comprising:

determining a signal strength threshold based at least in part on the first complex correlation coefficient, a second complex correlation coefficient associated with the second device, the first signal strength, the second signal strength, and the beam information; and

determining an occurrence of a rank switch trigger event based at least in part on determining that an operating signal strength satisfies the signal strength threshold.

36. The method of claim 35 , further comprising:

determining an occurrence of a rank switch trigger event based at least in part on determining that an operating signal strength satisfies the signal strength threshold.

37. The method of claim 36 , wherein the signal strength threshold comprises a transition signal-to-noise ratio.

38. The method of claim 36 , further comprising:

transmitting, to the second wireless communication device, an indication of a rank switch from a first rank operating mode to a second rank operating mode, wherein the rank switch is based at least in part on determining the occurrence of the rank switch trigger event.

39. The method of claim 38 , wherein the first rank operating mode corresponds to rank two transmissions and the second rank operating mode corresponds to rank four transmissions, or the first rank operating mode corresponds to rank four transmissions and the second rank operating mode corresponds to rank two transmissions.

40. The method of claim 38 , further comprising:

transmitting, to the second wireless communication device, an enhanced beam training configuration that indicates an additional set of beamformed reference signals for beam training associated with the second rank operating mode.

41. The method of claim 38 , further comprising:

determining a realizable data rate associated with the second rank operating mode; and

scheduling the second wireless communication device and at least a third wireless communication device based at least in part on the realizable data rate.

42. The method of claim 36 , wherein determining the occurrence of the rank switch triggering event comprises:

determining the occurrence of the rank switch triggering event based at least in part on at least one codebook indicated by a wireless communication standard.

43. The method of claim 33 , wherein the first wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

44. The method of claim 33 , wherein the second wireless communication device comprises a user equipment, a customer premises equipment, a base station, a relay node, an integrated access and backhaul node, or a repeater node with configurable beamforming capabilities.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2021
From: RAGHAVAN, VASANTHAN; CEZANNE, JUERGEN; LI, JUNYI
To: QUALCOMM INCORPORATED
Reel/Frame 055285/0437 →
Continuity (1)
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