IP Library Granted Patent US 12,120,049
Granted Patent B2
US 12,120,049 · App. 17/481,992 · Granted Oct 15, 2024

Time-domain bundling of sounding reference signals

Inventors: Hung Dinh Ly (San Diego, CA); Muhammad Sayed Khairy Abdelghaffar (San Jose, CA)
Assignee: QUALCOMM Incorporated
H04L5/0048H04W72/1268
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,120,049
App. No.
17/481,992
Granted
Oct 15, 2024
Kind
B2
Abstract

Aspects relate to sounding reference signal (SRS) time-domain bundling. Phase continuity may be maintained across SRS transmissions over multiple SRS occasions to enable a receiver to jointly process these SRS transmissions. In some examples, a user equipment may expect to be configured with SRS transmissions over multiple SRS occasions where SRS configurations for different SRS transmissions over different SRS occasions specify the same parameters. For example, a first SRS configuration for a first SRS transmission over a first SRS occasion may specify a first set of spatial relation information. In addition, a second SRS configuration for a second SRS transmission over a second SRS occasion may specify that same first set of spatial relation information. In this way, phase continuity may be maintained between the first SRS transmission over the first SRS occasion and the second SRS transmission over the second SRS occasion.

Claims (90)

1. A base station, comprising:

a transceiver;

a memory; and

one or more processors coupled to the transceiver and the memory, wherein the one or more processors are individually or collectively configured to:

transmit to a user equipment via the transceiver a plurality of sounding reference signal (SRS) configurations that are defined to maintain phase continuity across a plurality of SRS transmissions associated with a plurality of SRS occasions that are separated in time;

receive from the user equipment a first SRS transmission of the plurality of SRS transmissions via the transceiver during a first SRS occasion of the plurality of SRS occasions;

receive from the user equipment a second SRS transmission of the plurality of SRS transmissions via the transceiver during a second SRS occasion of the plurality of SRS occasions; and

jointly process the first SRS transmission and the second SRS transmission to generate an SRS estimate.

2. The base station of claim 1 , wherein each of the plurality of SRS configurations specify at least one of: the same spatial relation information, the same uplink transmission configuration indicator state, the same transmission comb, the same number of SRS ports, the same frequency domain position in the same bandwidth part, the same frequency hop parameters, the same transmit power, or a combination thereof.

3. The base station of claim 1 , wherein the plurality of SRS configurations comprises a first SRS configuration for the first SRS transmission and a second SRS configuration for the second SRS transmission.

4. The base station of claim 3 , wherein:

the first SRS configuration specifies a first set of spatial relation information;

the second SRS configuration specifies a second set of spatial relation information; and

the first set of spatial relation information and the second set of spatial relation information specify at least one of: the same serving cell identifier, the same synchronization signal block index, the same channel state information reference signal index, the same SRS resource identifier, the same uplink bandwidth part, or a combination thereof.

5. The base station of claim 3 , wherein:

the first SRS configuration specifies a first uplink transmission configuration indicator (TCI) state; and

the second SRS configuration specifies the first uplink transmission configuration indicator (TCI) state.

6. The base station of claim 3 , wherein:

the first SRS configuration specifies at least one of: a first number of ports, a first transmission comb value, a first frequency domain position, a first frequency hopping configuration value, a first SRS bandwidth and a first SRS hopping bandwidth, a first transmit power configuration, or a combination thereof; and

the second SRS configuration specifies at least one of: the first number of ports, the first transmission comb value, the first frequency domain position, the first frequency hopping configuration value, the first SRS bandwidth and the first SRS hopping bandwidth, the first transmit power configuration, or a combination thereof.

7. The base station of claim 3 , wherein:

the one or more processors are further individually or collectively configured to transmit at least one downlink control information (DCI) to the user equipment via the transceiver;

the at least one DCI specifies a first resource for the first SRS occasion and a second resource for the second SRS occasion; and

the at least one DCI specifies that the user equipment is to use the first SRS configuration for the first SRS transmission during the first SRS occasion and that the user equipment is to use the second SRS configuration for the second SRS transmission during the second SRS occasion.

8. The base station of claim 1 , wherein the one or more processors are further individually or collectively configured to:

specify the same parameter values for the plurality of SRS configurations.

9. The base station of claim 1 , wherein the one or more processors are further individually or collectively configured to:

define the plurality of SRS configurations.

10. The base station of claim 1 , wherein the one or more processors are further individually or collectively configured to:

receive capability information from the user equipment via the transceiver, wherein the capability information indicates that the user equipment supports maintaining phase continuity across different SRS transmissions for different SRS occasions; and

transmit an indication to the user equipment via the transceiver after receiving the capability information, wherein the indication is to configure the user equipment to maintain phase continuity across the first SRS transmission and the second SRS transmission.

11. The base station of claim 1 , wherein the one or more processors are further individually or collectively configured to:

combine the first SRS transmission and the second SRS transmission to provide a combined SRS transmission, wherein where a first weight is associated with the first SRS transmission and a second weight is associated with the second SRS transmission; and

process the combined SRS transmission to generate the SRS estimate.

12. The base station of claim 1 , wherein the one or more processors are further individually or collectively configured to:

process the first SRS transmission to provide a first SRS estimate;

process the second SRS transmission to provide a second SRS estimate; and

combine the first SRS estimate and the second SRS estimate to generate the SRS estimate, wherein where a first weight is associated with the first SRS transmission and a second weight is associated with the second SRS transmission.

13. The base station of claim 1 , wherein the one or more processors are further individually or collectively configured to:

determine to jointly process the plurality of SRS transmission based on at least one of:

whether the user equipment is near a cell edge of a serving cell for the user equipment, whether a quality of a channel between the user equipment and the base station is less than a threshold quality, whether a signal-to-noise ratio associated with the user equipment is less than a threshold signal- to-noise ratio, or a combination thereof.

14. A method of wireless communication at a base station, the method comprising:

transmitting to a user equipment a plurality of sounding reference signal (SRS) configurations that are defined to maintain phase continuity across a plurality of SRS transmissions associated with a plurality of SRS occasions that are separated in time;

receiving from the user equipment a first SRS transmission of the plurality of SRS transmissions during a first SRS occasion of the plurality of SRS occasions;

receiving from the user equipment a second SRS transmission of the plurality of SRS transmissions during a second SRS occasion of the plurality of SRS occasions; and

jointly processing the first SRS transmission and the second SRS transmission to generate an SRS estimate.

15. A user equipment, comprising:

a transceiver;

a memory; and

one or more processors coupled to the transceiver and the memory, wherein the one or more processors are individually or collectively configured to:

receive via the transceiver a first resource allocation for a first sounding reference signal (SRS) transmission scheduled for a first SRS occasion and a first SRS configuration for the first SRS transmission;

receive via the transceiver a second resource allocation for a second SRS transmission scheduled for a second SRS occasion and a second SRS configuration for the second SRS transmission, the first SRS occasion and the second SRS occasion being separated in time;

receive via the transceiver an indication to maintain phase continuity across the first SRS transmission and the second SRS transmission; and

transmit via the transceiver the first SRS transmission during the first SRS occasion and the second SRS transmission during the second SRS occasion after verifying whether use of the first SRS configuration and the second SRS configuration maintains the phase continuity across the first SRS transmission and the second SRS transmission.

16. The user equipment of claim 15 , wherein the one or more processors are further individually or collectively configured to:

determine that use of the first SRS configuration and the second SRS configuration maintains the phase continuity across the first SRS transmission and the second SRS transmission.

17. The user equipment of claim 16 , wherein the one or more processors are further individually or collectively configured to:

transmit the first SRS transmission via the transceiver according to the first SRS configuration and transmit the second SRS transmission via the transceiver according to the second SRS configuration, maintaining the phase continuity across the first SRS transmission and the second SRS transmission.

18. The user equipment of claim 17 , wherein the one or more processors are further individually or collectively configured to:

maintain substantially the same phase continuity across the first SRS transmission and the second SRS transmission.

19. The user equipment of claim 15 , wherein the one or more processors are further individually or collectively configured to:

determine that use of the first SRS configuration and the second SRS configuration will not maintain the phase continuity across the first SRS transmission and the second SRS transmission.

20. The user equipment of claim 19 , wherein the one or more processors are further individually or collectively configured to:

transmit the first SRS transmission via the transceiver according to the first SRS configuration, transmit the second SRS transmission via the transceiver according to the second SRS configuration, and abstain from maintaining the phase continuity across the first SRS transmission and the second SRS transmission.

21. The user equipment of claim 19 , wherein the one or more processors are further individually or collectively configured to:

transmit the first SRS transmission via the transceiver and transmit the second SRS transmission via the transceiver, maintaining the phase continuity across the first SRS transmission and the second SRS transmission.

22. The user equipment of claim 15 , wherein the one or more processors are further individually or collectively configured to:

determine whether the first SRS configuration and the second SRS configuration specify at least one of: the same spatial relation information, the same uplink transmission configuration indicator state, the same transmission comb, the same number of SRS ports, the same frequency domain position in the same bandwidth part, the same frequency hop parameters, the same transmit power, or a combination thereof.

23. The user equipment of claim 15 , wherein:

the first SRS configuration specifies a first set of spatial relation information;

the second SRS configuration specifies a second set of spatial relation information; and

the one or more processors are further individually or collectively_configured to determine whether the first set of spatial relation information and the second set of spatial relation information specify at least one of: the same serving cell identifier, the same synchronization signal block index, the same channel state information reference signal index, the same SRS resource identifier, the same uplink bandwidth part, or a combination thereof.

24. The user equipment of claim 15 , wherein, to verify whether use of the first SRS configuration and the second SRS configuration maintains the phase continuity across the first SRS transmission and the second SRS transmission, the one or more processors are further individually or collectively configured to determine at least one of: whether the first SRS configuration specifies a first uplink transmission configuration indicator state, whether the first SRS configuration specifies a first number of ports, whether the first SRS configuration specifies a first transmission comb value, whether the first SRS configuration specifies a first frequency domain position, whether the first SRS configuration specifies a first frequency hopping configuration value, whether the first SRS configuration specifies a first SRS bandwidth and a first SRS hopping bandwidth, whether the first SRS configuration specifies a first transmit power configuration, or a combination thereof.

25. The user equipment of claim 24 , wherein, to verify whether the use of the first SRS configuration and the second SRS configuration maintains the phase continuity across the first SRS transmission and the second SRS transmission, the one or more processors are further individually or collectively configured to determine at least one of: whether the second SRS configuration specifies the first uplink transmission configuration indicator state, whether the second SRS configuration specifies the first number of ports, whether the second SRS configuration specifies the first transmission comb value, whether the second SRS configuration specifies the first frequency domain position, whether the second SRS configuration specifies the first frequency hopping configuration value, whether the second SRS configuration specifies the first SRS bandwidth and the first SRS hopping bandwidth, whether the second SRS configuration specifies the first transmit power configuration, or a combination thereof.

26. The user equipment of claim 15 , wherein the one or more processors are further individually or collectively configured to:

transmit capability information to a base station via the transceiver, wherein the capability information indicates that the user equipment supports maintaining phase continuity across different SRS transmissions for different SRS occasions; and

receive the indication via the transceiver after transmitting the capability information.

27. The user equipment of claim 15 , wherein:

the one or more processors are further individually or collectively_configured to receive at least one downlink control information (DCI) from a base station via the transceiver; and

the at least one DCI specifies that the user equipment is to use the first SRS configuration for the first SRS transmission during the first SRS occasion and that the user equipment is to use the second SRS configuration for the second SRS transmission during the second SRS occasion.

28. The user equipment of claim 15 , wherein the one or more processors are further individually or collectively configured to:

receive a medium access control-control element (MAC-CE) that includes the indication via the transceiver.

29. The user equipment of claim 15 , wherein:

the first SRS occasion corresponds to at least one first time slot; and

the second SRS occasion corresponds to at least one second time slot that is different from the at least one first time slot.

30. A method for wireless communication at a user equipment, the method comprising:

receiving a first resource allocation for a first sounding reference signal (SRS) transmission scheduled for a first SRS occasion and a first SRS configuration for the first SRS transmission;

receiving a second resource allocation for a second SRS transmission scheduled for a second SRS occasion and a second SRS configuration for the second SRS transmission, the first SRS occasion and the second SRS occasion being separated in time;

receiving an indication to maintain phase continuity across the first SRS transmission and the second SRS transmission; and

transmitting the first SRS transmission during the first SRS occasion and the second SRS transmission during the second SRS occasion after verifying whether use of the first SRS configuration and the second SRS configuration maintains the phase continuity across the first SRS transmission and the second SRS transmission.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2021
From: LY, HUNG DINH; ABDELGHAFFAR, MUHAMMAD SAYED KHAIRY
To: QUALCOMM INCORPORATED
Reel/Frame 057854/0383 →
Continuity (2)
Provisional Application 63085074 · Sep 29, 2020
Related Publication 20220103324A1 · Mar 31, 2022