IP Library › Granted Patent US 12,512,896
Granted Patent B2
US 12,512,896 · App. 17/517,851 · Granted Dec 30, 2025

Techniques for signaling a common downlink and uplink beam

Inventors: Tianyang Bai (Somerville, NJ); Yan Zhou (San Diego, CA); Tao Luo (San Diego, CA); Junyi Li (Fairless Hills, PA)
Assignee: QUALCOMM Incorporated
H04B7/06966H04L1/1812H04W72/23
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Quick Facts
Patent No.
US 12,512,896
App. No.
17/517,851
Granted
Dec 30, 2025
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. A user equipment (UE) may be configured to receive, from a base station, a first downlink control information (DCI) message scheduling a first transmission between the UE and the base station. The first DCI message may include an indication of a first beam associated with the first transmission and a second beam associated with a second transmission, where the second beam is associated with the first beam. The UE may then communicate with the base station via the second beam associated with the second transmission based on the first DCI message including the indication of the second beam, where the second transmission is scheduled by a second message different from the first DCI message.

Claims (65)

1 . A method for wireless communication at a user equipment (UE), comprising:

transmitting, to a network entity, a capability report indicating a capability of the UE to support a joint transmission configuration indication state in a first downlink control information message;

receiving, from the network entity and based at least in part on the capability report, the first downlink control information message scheduling a first transmission between the UE and the network entity, the first downlink control information message comprising an indication of a first beam associated with the first transmission and a second beam associated with a second transmission, the second beam associated with the first beam; and

communicating with the network entity via the second beam associated with the second transmission based at least in part on the first downlink control information message comprising the indication of the second beam, wherein the second transmission is scheduled by a second message different from the first downlink control information message.

2 . The method of claim 1 , further comprising:

receiving, via the first downlink control information message, an indication of the second transmission associated with the second beam, wherein communicating with the network entity via the second beam is based at least in part on receiving the indication of the second transmission.

3 . The method of claim 1 , further comprising:

receiving, from the network entity, a control message comprising an indication of a relationship between the first transmission and the second transmission, wherein communicating with the network entity via the second beam is based at least in part on receiving the control message.

4 . The method of claim 1 , wherein the second transmission comprises a hybrid automatic repeat request response associated with the first transmission.

5 . The method of claim 1 , wherein the first transmission and the second transmission are scheduled within a common component carrier, within a common bandwidth part, or both.

6 . The method of claim 1 , wherein the indication of the second beam associated with the first beam comprises one or more bit field values associated with a transmission configuration indication state field within the first downlink control information message.

7 . The method of claim 1 , wherein:

the first beam is associated with a first transmission configuration indication state; and

the second beam is associated with a second transmission configuration indication state different from the first transmission configuration indication state.

8 . The method of claim 1 , wherein the first beam and the second beam are associated with the joint transmission configuration indication state.

9 . The method of claim 1 , further comprising:

determining a spatial filter associated with the first beam based at least in part on the first downlink control information message, wherein communicating with the network entity via the second beam is based at least in part on the determined spatial filter.

10 . The method of claim 1 , further comprising:

transmitting, to the network entity, a second capability report indicating a capability of the UE to selectively adjust the second beam scheduled by the second message based at least in part on the first downlink control information message, wherein communicating with the network entity via the second beam is based at least in part on transmitting the second capability report.

11 . The method of claim 1 , wherein:

the first transmission comprises a downlink transmission, the first transmission comprising one or more of a physical downlink shared channel transmission or a channel state information reference signal; and

the second transmission comprises an uplink transmission, the second transmission comprising one or more of a physical uplink shared channel transmission, a physical uplink control channel transmission, or a sounding reference signal.

12 . A method for wireless communication at a network entity, comprising:

receiving, from a user equipment (UE), a capability report indicating a capability of the UE to support a joint transmission configuration indication state in a first downlink control information message;

transmitting, to the UE and based at least in part on the capability report, the first downlink control information message scheduling a first transmission between the UE and the network entity, the first downlink control information message comprising an indication of a first beam associated with the first transmission and a second beam associated with a second transmission, the second beam associated with the first beam; and

communicating with the UE via the second beam associated with the second transmission based at least in part on the first downlink control information message comprising the indication of the second beam, wherein the second transmission is scheduled by a second message different from the first downlink control information message.

13 . The method of claim 12 , further comprising:

transmitting, via the first downlink control information message, an indication of the second transmission associated with the second beam, wherein communicating with the UE via the second beam is based at least in part on transmitting the indication of the second transmission.

14 . The method of claim 12 , further comprising:

transmitting, to the UE, a control message comprising an indication of a relationship between the first transmission and the second transmission, wherein communicating with the UE via the second beam is based at least in part on transmitting the control message.

15 . A user equipment (UE), comprising:

one or more memories storing processor-executable code; and

one or more processors coupled with the one or more memories and individually or collectively operable to execute the code to cause the UE to:

transmit, to a network entity, a capability report indicating a capability of the UE to support a joint transmission configuration indication state in a first downlink control information message;

receive, from the network entity and based at least in part on the capability report, the first downlink control information message scheduling a first transmission between the UE and the network entity, the first downlink control information message comprising an indication of a first beam associated with the first transmission and a second beam associated with a second transmission, the second beam associated with the first beam; and

communicate with the network entity via the second beam associated with the second transmission based at least in part on the first downlink control information message comprising the indication of the second beam, wherein the second transmission is scheduled by a second message different from the first downlink control information message.

16 . The UE of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:

receive, via the first downlink control information message, an indication of the second transmission associated with the second beam, wherein communicating with the network entity via the second beam is based at least in part on receiving the indication of the second transmission.

17 . The UE of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:

receive, from the network entity, a control message comprising an indication of a relationship between the first transmission and the second transmission, wherein communicating with the network entity via the second beam is based at least in part on receiving the control message.

18 . The UE of claim 15 , wherein the second transmission comprises a hybrid automatic repeat request response associated with the first transmission.

19 . The UE of claim 15 , wherein the first transmission and the second transmission are scheduled within a common component carrier, within a common bandwidth part, or both.

20 . The UE of claim 15 , wherein the indication of the second beam associated with the first beam comprises one or more bit field values associated with a transmission configuration indication state field within the first downlink control information message.

21 . The UE of claim 15 , wherein:

the first beam is associated with a first transmission configuration indication state; and

the second beam is associated with a second transmission configuration indication state different from the first transmission configuration indication state.

22 . The UE of claim 15 , wherein the first beam and the second beam are associated with the joint transmission configuration indication state.

23 . The UE of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:

determine a spatial filter associated with the first beam based at least in part on the first downlink control information message, wherein communicating with the network entity via the second beam is based at least in part on the determined spatial filter.

24 . The UE of claim 15 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the UE to:

transmit, to the network entity, a second capability report indicating a capability of the UE to selectively adjust the second beam scheduled by the second message based at least in part on the first downlink control information message, wherein communicating with the network entity via the second beam is based at least in part on transmitting the second capability report.

25 . The UE of claim 15 , wherein:

the first transmission comprises a downlink transmission, the first transmission comprising one or more of a physical downlink shared channel transmission or a channel state information reference signal; and

the second transmission comprises an uplink transmission, the second transmission comprising one or more of a physical uplink shared channel transmission, a physical uplink control channel transmission, or a sounding reference signal.

26 . A network entity, comprising:

one or more memories storing processor-executable code; and

one or more processors coupled with the one or more memories and individually or collectively operable to execute the code to cause the network entity to:

receive, from a user equipment (UE), a capability report indicating a capability of the UE to support a joint transmission configuration indication state in a first downlink control information message;

transmit, to the UE and based at least in part on the capability report, the first downlink control information message scheduling a first transmission between the UE and the network entity,

the first downlink control information message comprising an indication of a first beam associated with the first transmission and a second beam associated with a second transmission, the second beam associated with the first beam; and

communicate with the UE via the second beam associated with the second transmission based at least in part on the first downlink control information message comprising the indication of the second beam, wherein the second transmission is scheduled by a second message different from the first downlink control information message.

27 . The network entity of claim 26 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:

transmit, via the first downlink control information message, an indication of the second transmission associated with the second beam, wherein communicating with the UE via the second beam is based at least in part on transmitting the indication of the second transmission.

28 . The network entity of claim 26 , wherein the one or more processors are individually or collectively further operable to execute the code to cause the network entity to:

transmit, to the UE, a control message comprising an indication of a relationship between the first transmission and the second transmission, wherein communicating with the UE via the second beam is based at least in part on transmitting the control message.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: BAI, TIANYANG; ZHOU, YAN; LUO, TAO; LI, JUNYI
To: QUALCOMM INCORPORATED
Reel/Frame 058206/0069 →
Continuity (2)
Provisional Application 63110220 · Nov 5, 2020
Related Publication 20220141862A1 · May 5, 2022
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