IP Library › Granted Patent US 11,937,278
Granted Patent B2
US 11,937,278 · App. 17/892,486 · Granted Mar 19, 2024

Transmission pattern indication and selection for sidelink grant free transmission

Inventors: Yu Cao (Kanata, CA); Amine Maaref (Ottawa, CA); Jianglei Ma (Ottawa, CA)
Assignee: Huawei Technologies Co., Ltd.
H04W72/51H04W28/26H04W36/0055H04W72/02H04W72/044
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Quick Facts
Patent No.
US 11,937,278
App. No.
17/892,486
Granted
Mar 19, 2024
Kind
B2
Abstract

With sidelink reservation signals sent together with the sidelink data, there is the possibility of interference with other sidelink signals. In order to address this, systems and methods are provided in which a first UE transmits a reservation signal to indicate at least one time-frequency resource for transmitting sidelink data. Following this, the first UE transmits at least one sidelink data transmission to a second UE using the at least one time-frequency resource indicated by the reservation signal. The reservation signal is transmitted before the at least one sidelink data transmission signal so that a third UE may detect the reservation signal and use the reservation signal to avoid using the at least one time-frequency resource indicated in the reservation signal.

Claims (90)

1. A method, comprising:

selecting, by a first user equipment (UE), first at least one time-frequency resource for first at least one sidelink data transmission from the first UE to a fourth UE;

transmitting, by the first UE, a first reservation signal indicating the first at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE;

receiving, by the first UE from a second UE, a second reservation signal to indicate second at least one time-frequency resource for second at least one sidelink data transmission from the second UE to a third UE, the second reservation signal for the first UE to avoid using the second at least one time-frequency resource indicated by the second reservation signal;

determining, by the first UE, an overlap or a partial overlap between the second at least one time-frequency resource indicated by the second reservation signal and the first at least one time-frequency resource selected for the first at least one sidelink data transmission from the first UE to the fourth UE;

re-selecting, by the first UE, third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE;

transmitting, by the first UE, the first at least one sidelink data transmission using the third at least one time-frequency resource; and

transmitting, by the first UE, a third reservation signal indicating the third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE.

2. The method of claim 1 , wherein the second reservation signal further indicates a second priority of the second at least one sidelink data transmission, the re-selecting comprising:

re-selecting, by the first UE, the third at least one time-frequency resource based on the determining the overlap or the partial overlap and based on the second priority being higher than a first priority of the first at least one sidelink data transmission.

3. The method of claim 1 , further comprising:

performing, by the first UE, short term sensing before the first at least one sidelink data transmission; and

determining, by the first UE, whether to perform the transmitting the first at least one sidelink data transmission based on the short term sensing.

4. The method of claim 1 , the second reservation signal reserving multiple repetitions of a transport block (TB).

5. A first user equipment (UE), comprising:

at least one processor; and

a non-transitory computer readable storage medium storing programming, the programming including instructions that, when executed by the at least one processor, cause the first UE to perform operations including:

selecting first at least one time-frequency resource for first at least one sidelink data transmission from the first UE to a fourth UE;

transmitting a first reservation signal indicating the first at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE;

receiving, from a second UE, a second reservation signal to indicate second at least one time-frequency resource for second at least one sidelink data transmission from the second UE to a third UE, the second reservation signal for the first UE to avoid using the second at least one time-frequency resource indicated by the second reservation signal;

determining an overlap or a partial overlap between the second at least one time-frequency resource indicated by the second reservation signal and the first at least one time-frequency resource selected for the first at least one sidelink data transmission from the first UE to the fourth UE;

re-selecting third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE;

transmitting the first at least one sidelink data transmission using the third at least one time-frequency resource; and

transmitting a third reservation signal indicating the third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE.

6. The first UE of claim 5 , wherein the second reservation signal further indicates a second priority of the second at least one sidelink data transmission, the re-selecting comprising:

re-selecting the third at least one time-frequency resource based on the determining the overlap or the partial overlap and based on the second priority being higher than a first priority of the first at least one sidelink data transmission.

7. The first UE of claim 5 , the operations further comprising:

performing short term sensing before the first at least one sidelink data transmission; and

determining whether to perform the transmitting the first at least one sidelink data transmission based on the short term sensing.

8. The first UE of claim 5 , the second reservation signal reserving multiple repetitions of a transport block (TB).

9. A method, comprising:

receiving, by a second user equipment (UE) from a first UE, a first reservation signal indicating first at least one time-frequency resource selected by the first UE for first at least one sidelink data transmission from the first UE to a fourth UE;

transmitting, by the second UE to the first UE, a second reservation signal to indicate second at least one time-frequency resource for second at least one sidelink data transmission from the second UE to a third UE, the second reservation signal for the first UE to avoid using the second at least one time-frequency resource indicated by the second reservation signal,

wherein the first UE determines an overlap or a partial overlap between the second at least one time-frequency resource indicated by the second reservation signal and the first at least one time-frequency resource selected for the first at least one sidelink data transmission from the first UE to the fourth UE,

wherein the first UE re-selects third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE, and

wherein the first UE transmits the first at least one sidelink data transmission using the third at least one time-frequency resource; and

receiving, by the second UE from the first UE, a third reservation signal indicating the third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE.

10. The method of claim 9 ,

wherein the second reservation signal further indicates a second priority of the second at least one sidelink data transmission, and

wherein the first UE re-selects the third at least one time-frequency resource based on determining of the overlap or the partial overlap and based on the second priority being higher than a first priority of the first at least one sidelink data transmission.

11. The method of claim 9 ,

wherein the first UE performs short term sensing before the first at least one sidelink data transmission, and

wherein the first UE determines whether to perform the transmitting the first at least one sidelink data transmission based on the short term sensing.

12. The method of claim 9 , the second reservation signal reserving multiple repetitions of a transport block (TB).

13. A second user equipment (UE), comprising:

at least one processor; and

a non-transitory computer readable storage medium storing programming, the programming including instructions that, when executed by the at least one processor, cause the second UE to perform operations including:

receiving, from a first UE, a first reservation signal indicating first at least one time-frequency resource selected by the first UE for first at least one sidelink data transmission from the first UE to a fourth UE;

transmitting, to the first UE, a second reservation signal to indicate second at least one time-frequency resource for second at least one sidelink data transmission from the second UE to a third UE, the second reservation signal for the first UE to avoid using the second at least one time-frequency resource indicated by the second reservation signal,

wherein the first UE determines an overlap or a partial overlap between the second at least one time-frequency resource indicated by the second reservation signal and the first at least one time-frequency resource selected for the first at least one sidelink data transmission from the first UE to the fourth UE,

wherein the first UE re-selects third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE, and

wherein the first UE transmits the first at least one sidelink data transmission using the third at least one time-frequency resource; and

receiving, from the first UE, a third reservation signal indicating the third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE.

14. The second UE of claim 13 ,

wherein the second reservation signal further indicates a second priority of the second at least one sidelink data transmission, and

wherein the first UE re-selects the third at least one time-frequency resource based on determining of the overlap or the partial overlap and based on the second priority being higher than a first priority of the first at least one sidelink data transmission.

15. The second UE of claim 13 ,

wherein the first UE performs short term sensing before the first at least one sidelink data transmission, and

wherein the first UE determines whether to perform the transmitting the first at least one sidelink data transmission based on the short term sensing.

16. The second UE of claim 13 , the second reservation signal reserving multiple repetitions of a transport block (TB).

17. A method, comprising:

receiving, by a fourth user equipment (UE) from a first UE, a first reservation signal indicating first at least one time-frequency resource selected by the first UE for first at least one sidelink data transmission from the first UE to a fourth UE,

wherein the first UE receives from a second UE, a second reservation signal to indicate second at least one time-frequency resource for second at least one sidelink data transmission from the second UE to a third UE, the second reservation signal for the first UE to avoid using the second at least one time-frequency resource indicated by the second reservation signal,

wherein the first UE determines an overlap or a partial overlap between the second at least one time-frequency resource indicated by the second reservation signal and the first at least one time-frequency resource selected for the first at least one sidelink data transmission from the first UE to the fourth UE,

wherein the first UE re-selects third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE;

receiving, by the fourth UE from the first UE, the first at least one sidelink data transmission using the third at least one time-frequency resource; and

receiving, by the fourth UE from the first UE, a third reservation signal indicating the third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE.

18. The method of claim 17 ,

wherein the second reservation signal further indicates a second priority of the second at least one sidelink data transmission, and

wherein the first UE re-selects the third at least one time-frequency resource based on determining of the overlap or the partial overlap and based on the second priority being higher than a first priority of the first at least one sidelink data transmission.

19. The method of claim 17 ,

wherein the first UE performs short term sensing before the first at least one sidelink data transmission, and

wherein the first UE determines whether to perform transmitting the first at least one sidelink data transmission based on the short term sensing.

20. The method of claim 17 , the second reservation signal reserving multiple repetitions of a transport block (TB).

21. A fourth user equipment (UE), comprising:

at least one processor; and

a non-transitory computer readable storage medium storing programming, the programming including instructions that, when executed by the at least one processor, cause the fourth UE to perform operations including:

receiving, from a first UE, a first reservation signal indicating first at least one time-frequency resource selected by the first UE for first at least one sidelink data transmission from the first UE to a fourth UE,

wherein the first UE receives from a second UE, a second reservation signal to indicate second at least one time-frequency resource for second at least one sidelink data transmission from the second UE to a third UE, the second reservation signal for the first UE to avoid using the second at least one time-frequency resource indicated by the second reservation signal,

wherein the first UE determines an overlap or a partial overlap between the second at least one time-frequency resource indicated by the second reservation signal and the first at least one time-frequency resource selected for the first at least one sidelink data transmission from the first UE to the fourth UE,

wherein the first UE re-selects third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE;

receiving, from the first UE, the first at least one sidelink data transmission using the third at least one time-frequency resource; and

receiving, from the first UE, a third reservation signal indicating the third at least one time-frequency resource for the first at least one sidelink data transmission from the first UE to the fourth UE.

22. The fourth UE of claim 21 ,

wherein the second reservation signal further indicates a second priority of the second at least one sidelink data transmission, and

wherein the first UE re-selects the third at least one time-frequency resource based on determining of the overlap or the partial overlap and based on the second priority being higher than a first priority of the first at least one sidelink data transmission.

23. The fourth UE of claim 21 ,

wherein the first UE performs short term sensing before the first at least one sidelink data transmission, and

wherein the first UE determines whether to perform transmitting the first at least one sidelink data transmission based on the short term sensing.

24. The fourth UE of claim 21 , the second reservation signal reserving multiple repetitions of a transport block (TB).

Continuity (3)
Continuation 16737170 · Jan 8, 2020
Provisional Application 62791722 · Jan 11, 2019
Related Publication 20220400479A1 · Dec 15, 2022
Cited By (1)
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