IP Library › Granted Patent US 11,570,637
Granted Patent B2
US 11,570,637 · App. 17/163,606 · Granted Jan 31, 2023

Managing beam failure recovery using digital beamforming

Inventors: Hamed Pezeshki (San Diego, CA); Tao Luo (San Diego, CA); Arumugam Chendamarai Kannan (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04W24/04H04B7/0617H04W74/0833H04W76/18
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Quick Facts
Patent No.
US 11,570,637
App. No.
17/163,606
Granted
Jan 31, 2023
Kind
B2
Abstract

Embodiment methods for managing communication with a base station may include a wireless device determining whether a beam received from the base station can be successfully received using analog beamforming, determining whether the beam from the base station can be received using digital beamforming in response to determining that the beam received from the base station cannot be successfully received using analog beamforming, and receiving the beam using the digital beamforming in response to determining that the beam can be received using digital beamforming.

Claims (62)

1. A method performed by a processor of a wireless device for managing communication with a base station, comprising:

determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming;

determining whether the information in the transmit beam from the base station can be received using digital beamforming in response to determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming; and

receiving the transmit beam using the digital beamforming in response to determining that the information in the transmit beam can be received using digital beamforming.

2. The method of claim 1 , wherein determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining whether a signal strength of the beam received from the base station using analog beamforming exceeds a signal strength threshold.

3. The method of claim 1 , wherein determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received from the base station using analog beamforming is below a signal strength threshold more than a threshold number of beam-failure instances.

4. The method of claim 1 , wherein determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a beam failure has occurred with the beam received from the base station using analog beamforming.

5. The method of claim 1 , further comprising sending a random access channel (RACH) request to the base station in response to determining that the information in the transmit beam cannot be received using digital beamforming.

6. The method of claim 5 , wherein sending the RACH request to the base station comprises sending to the base station an indication that the wireless device attempted to receive the information in the transmit beam using digital beamforming.

7. The method of claim 1 , further comprising sending to the base station an indication that the wireless device is using digital beamforming.

8. The method of claim 1 , wherein:

determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received using analog beamforming is below a signal strength threshold;

determining whether the information in the transmit beam from the base station can be received using digital beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than a threshold number of instances; and

the method further comprises:

receiving the information in the transmit beam using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is not below the signal strength threshold in more than the threshold number of instances; and

sending a RACH request to the base station in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than the threshold number of instances.

9. The method of claim 1 , wherein the beam from the base station comprises a mmWave frequency in Frequency Range (FR) 2.

10. A wireless device, comprising:

a processor configured with processor-executable instructions to:

determine whether information in a transmit beam received from a base station can be successfully received using analog beamforming;

determine whether the information in the transmit beam from the base station can be received using digital beamforming in response to determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming; and

receive the transmit beam using the digital beamforming in response to determining that the information in the transmit beam can be received using digital beamforming.

11. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to determine whether information in a transmit beam received from the base station can be successfully received using analog beamforming by determining whether a signal strength of the beam received from the base station using analog beamforming exceeds a signal strength threshold.

12. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to determine whether information in a transmit beam received from the base station can be successfully received using analog beamforming by determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received from the base station using analog beamforming is below a signal strength threshold more than a threshold number of beam-failure instances.

13. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to determine whether information in a transmit beam received from the base station can be successfully received using analog beamforming by determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a beam failure has occurred with the beam received from the base station using analog beamforming.

14. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to send a random access channel (RACH) request to the base station in response to determining that the information in the transmit beam cannot be received using digital beamforming.

15. The wireless device of claim 14 , wherein the processor is further configured with processor-executable instruction to send the RACH request to the base station by sending to the base station an indication that the wireless device attempted to receive the information in the transmit beam using digital beamforming.

16. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to send to the base station an indication that the wireless device is using digital beamforming.

17. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to:

determine whether information in a transmit beam received from the base station can be successfully received using analog beamforming by determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received using analog beamforming is below a signal strength threshold;

determine whether the information in the transmit beam from the base station can be received using digital beamforming by determining that the information in the transmit beam received from the base station cannot be successfully received using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than a threshold number of instances;

receive the information in the transmit beam using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is not below the signal strength threshold in more than the threshold number of instances; and

send a RACH request to the base station in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than the threshold number of instances.

18. The wireless device of claim 10 , wherein the processor is further configured with processor-executable instruction to receive the beam using the digital beamforming with a mmWave frequency in Frequency Range (FR) 2.

19. A non-transitory processor-readable medium having stored thereon processor-executable instructions configured to cause a wireless device processor to perform operations comprising:

determining whether information in a transmit beam received from a base station can be successfully received using analog beamforming;

determining whether the information in the transmit beam from the base station can be received using digital beamforming in response to determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming; and

receiving the transmit beam using the digital beamforming in response to determining that the information in the transmit beam can be received using digital beamforming.

20. The non-transitory processor-readable medium of claim 19 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations such that determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining whether a signal strength of the beam received from the base station using analog beamforming exceeds a signal strength threshold.

21. The non-transitory processor-readable medium of claim 19 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations such that determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received from the base station using analog beamforming is below a signal strength threshold more than a threshold number of beam-failure instances.

22. The non-transitory processor-readable medium of claim 19 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations such that determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a beam failure has occurred with the beam received from the base station using analog beamforming.

23. The non-transitory processor-readable medium of claim 19 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations further comprising sending a random access channel (RACH) request to the base station in response to determining that the information in the transmit beam cannot be received using digital beamforming.

24. The non-transitory processor-readable medium of claim 23 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations such that sending the RACH request to the base station comprises sending to the base station an indication that the wireless device attempted to receive the information in the transmit beam using digital beamforming.

25. The non-transitory processor-readable medium of claim 19 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations further comprising sending to the base station an indication that the wireless device is using digital beamforming.

26. The non-transitory processor-readable medium of claim 19 , wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations such that:

determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received using analog beamforming is below a signal strength threshold;

determining whether the information in the transmit beam from the base station can be received using digital beamforming comprises determining that the information in the transmit beam received from the base station cannot be successfully received using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than a threshold number of instances; and

wherein the stored processor-executable instructions are configured to cause a processor of a wireless device to perform operations further comprising:

receiving the information in the transmit beam using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is not below the signal strength threshold in more than the threshold number of instances; and

sending a RACH request to the base station in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than the threshold number of instances.

27. A wireless device, comprising:

means for determining whether information in a transmit beam received from the base station can be successfully received using analog beamforming;

means for determining whether the information in the transmit beam from the base station can be received using digital beamforming in response to determining that the information in the transmit beam received from the base station cannot be successfully received using analog beamforming; and

means for receiving the transmit beam using the digital beamforming in response to determining that the information in the transmit beam can be received using digital beamforming.

28. The wireless device of claim 27 , further comprising means for sending a random access channel (RACH) request to the base station in response to determining that the information in the transmit beam cannot be received using digital beamforming.

29. The wireless device of claim 28 , further comprising means for sending to the base station an indication that the wireless device is using digital beamforming.

30. The wireless device of claim 27 , wherein:

means for determining whether information in a transmit received from the base station can be successfully received using analog beamforming comprises means for determining that the beam received from the base station cannot be successfully received using analog beamforming in response to determining that a signal strength of the beam received using analog beamforming is below a signal strength threshold;

means for determining whether the information in the transmit beam from the base station can be received using digital beamforming comprises means for determining that the information in the transmit beam received from the base station cannot be successfully received using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than a threshold number of instances; and

the wireless further comprises:

means for receiving the information in the transmit beam using digital beamforming in response to determining that the signal strength of the beam received using digital beamforming is not below the signal strength threshold in more than the threshold number of instances; and

means for sending a RACH request to the base station in response to determining that the signal strength of the beam received using digital beamforming is below the signal strength threshold in more than the threshold number of instances.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2021
From: PEZESHKI, HAMED; LUO, TAO; CHENDAMARAI KANNAN, ARUMUGAM
To: QUALCOMM INCORPORATED
Reel/Frame 056814/0302 →
Continuity (2)
Provisional Application 63078827 · Sep 15, 2020
Related Publication 20220086665A1 · Mar 17, 2022