IP Library › Granted Patent US 11,956,758
Granted Patent B2
US 11,956,758 · App. 17/204,418 · Granted Apr 9, 2024

Method and apparatus for configuration of sidelink channel resource units

Inventors: Jin Yang (Shenzhen, CN); Youxiong Lu (Shenzhen, CN)
Assignee: ZTE CORPORATION
H04W72/02H04L27/26025H04W72/0446H04W72/0453H04W72/20
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Quick Facts
Patent No.
US 11,956,758
App. No.
17/204,418
Granted
Apr 9, 2024
Kind
B2
Abstract

A method and apparatus for configuration of sidelink channel resource units for sidelink communications in a wireless communication network is disclosed. In one embodiment, a method performed by a first wireless communication device, comprising: performing sidelink communication on a first sidelink channel resource unit of a first sidelink channel, determining a second sidelink channel resource unit of a second sidelink channel according to the first sidelink channel in a sidelink channel couple; and performing sidelink communication on the second sidelink channel resource unit; wherein the sidelink channel couple comprises the first sidelink channel and the second sidelink channel, and wherein a first sidelink channel resource unit comprises a first number of first resource units in the time domain and a second number of second resource units in the frequency domain, and the second sidelink channel resource unit comprises a third number of first resource units in the time domain and a fourth number of second resource units in the frequency domain.

Claims (64)

1. A method performed by a wireless communication device, comprising:

performing sidelink communication on a first sidelink channel resource unit of a first sidelink channel,

determining a second sidelink channel resource unit of a second sidelink channel according to the first sidelink channel in a sidelink channel couple;

performing sidelink communication on the second sidelink channel resource unit; and

determining, according to a third starting position in the time domain of the first sidelink channel resource unit, a first starting position in the time domain of the second sidelink channel resource unit being a starting symbol in a time slot;

wherein the sidelink channel couple comprises the first sidelink channel and the second sidelink channel, and wherein the first sidelink channel resource unit comprises a first number of first resource units in a time domain and a second number of second resource units in a frequency domain, and the second sidelink channel resource unit comprises a third number of first resource units in the time domain and a fourth number of second resource units in the frequency domain.

2. The method of claim 1 , wherein:

the first sidelink channel is a Physical Sidelink Control Channel (PSCCH), and

the second sidelink channel is a Physical Sidelink Shared Channel (PSSCH).

3. The method of claim 1 , wherein the determining further comprises:

determining, according to an indication in the first sidelink channel, the fourth number of second resource units in the frequency domain of the second sidelink channel resource unit, wherein the indication in the first sidelink channel is sidelink control information (SCI).

4. The method of claim 1 , wherein the determining further comprises:

determining at least one of the following of the second sidelink channel resource unit according the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit.

5. The method of claim 1 , wherein the determining further comprises:

determining at least one of the following of the second sidelink channel resource unit according the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit; and determining the second starting position in the frequency domain of the second sidelink channel resource unit according to a fourth starting position in the frequency domain of the first sidelink channel resource unit, wherein the second starting position in the frequency domain of the second sidelink channel resource unit is a starting RB for sidelink communication.

6. The method of claim 1 , wherein the first sidelink channel is a Physical Sidelink Shared Channel (PSSCH) and the second sidelink channel is a physical sidelink channel carrying sidelink feedback control information.

7. A method performed by a wireless communication node, comprising:

indicating a first sidelink channel resource unit of a first sidelink channel to a wireless communication device; and

determining a second sidelink channel resource unit of a second sidelink channel according to the first sidelink channel in a sidelink channel couple; and

determining, according to a third starting position in the time domain of the first sidelink channel resource unit, a first starting position in the time domain of the second sidelink channel resource unit being a starting symbol in a time slot,

wherein the sidelink channel couple comprises the first sidelink channel and the second sidelink channel, and wherein the first sidelink channel resource unit comprises a first number of first resource units in a time domain and a second number of second resource units in a frequency domain, and the second sidelink channel resource unit comprises a third number of first resource units in the time domain and a fourth number of second resource units in the frequency domain.

8. The method of claim 7 , wherein:

the first sidelink channel is a Physical Sidelink Control Channel (PSCCH), and

the second sidelink channel is a Physical Sidelink Shared Channel (PSSCH).

9. The method of claim 7 , wherein the determining further comprises:

determining at least one of the following of the second sidelink channel resource unit according to the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit.

10. The method of claim 7 , wherein the determining further comprises:

determining at least one of the following of the second sidelink channel resource unit according to the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit; and

determining the second starting position in the frequency domain of the second sidelink channel resource unit according to a fourth starting position in the frequency domain of the first sidelink channel resource unit, wherein the second starting position in the frequency domain of the second sidelink channel resource unit is a starting RB for sidelink communication.

11. The method of claim 7 , wherein the first sidelink channel is a Physical Sidelink Shared Channel (PSSCH) and the second sidelink channel is a physical sidelink channel carrying sidelink feedback control information.

12. A wireless communication device comprising:

a memory storing instructions; and

a processor in communication with the memory, wherein, when the processor executes the instructions, the processor is configured to cause the wireless communication device to:

perform sidelink communication on a first sidelink channel resource unit of a first sidelink channel,

determine a second sidelink channel resource unit of a second sidelink channel according to the first sidelink channel in a sidelink channel couple;

perform sidelink communication on the second sidelink channel resource unit; and

determine, according to a third starting position in the time domain of the first sidelink channel resource unit, a first starting position in the time domain of the second sidelink channel resource unit being a starting symbol in a time slot;

wherein the sidelink channel couple comprises the first sidelink channel and the second sidelink channel, and wherein the first sidelink channel resource unit comprises a first number of first resource units in a time domain and a second number of second resource units in a frequency domain, and the second sidelink channel resource unit comprises a third number of first resource units in the time domain and a fourth number of second resource units in the frequency domain.

13. The wireless communication device of claim 12 , wherein:

the first sidelink channel is a Physical Sidelink Control Channel (PSCCH), and

the second sidelink channel is a Physical Sidelink Shared Channel (PSSCH).

14. The wireless communication device of claim 12 , wherein, when the processor is configured to cause the wireless communication device to determine the second sidelink channel resource unit of the second sidelink channel, the processor is configured to further cause the wireless communication device to:

determine, according to an indication in the first sidelink channel, the fourth number of second resource units in the frequency domain of the second sidelink channel resource unit, wherein the indication in the first sidelink channel is sidelink control information (SCI).

15. The wireless communication device of claim 12 , when the processor is configured to cause the wireless communication device to determine the second sidelink channel resource unit of the second sidelink channel, the processor is configured to further cause the wireless communication device to:

determine at least one of the following of the second sidelink channel resource unit according the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit.

16. The wireless communication device of claim 12 , when the processor is configured to cause the wireless communication device to determine the second sidelink channel resource unit of the second sidelink channel, the processor is configured to further cause the wireless communication device to:

determine at least one of the following of the second sidelink channel resource unit according the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit; and determine the second starting position in the frequency domain of the second sidelink channel resource unit according to a fourth starting position in the frequency domain of the first sidelink channel resource unit, wherein the second starting position in the frequency domain of the second sidelink channel resource unit is a starting RB for sidelink communication.

17. The wireless communication device of claim 12 , wherein the first sidelink channel is a Physical Sidelink Shared Channel (PSSCH) and the second sidelink channel is a physical sidelink channel carrying sidelink feedback control information.

18. A wireless communication node comprising:

a memory storing instructions; and

a processor in communication with the memory, wherein, when the processor executes the instructions, the processor is configured to cause the wireless communication node to:

indicate a first sidelink channel resource unit of a first sidelink channel to a wireless communication device;

determine a second sidelink channel resource unit of a second sidelink channel according to the first sidelink channel in a sidelink channel couple; and

determine, according to a third starting position in the time domain of the first sidelink channel resource unit, a first starting position in the time domain of the second sidelink channel resource unit being a starting symbol in a time slot,

wherein the sidelink channel couple comprises the first sidelink channel and the second sidelink channel, and wherein the first sidelink channel resource unit comprises a first number of first resource units in a time domain and a second number of second resource units in a frequency domain, and the second sidelink channel resource unit comprises a third number of first resource units in the time domain and a fourth number of second resource units in the frequency domain.

19. The wireless communication node of claim 18 , wherein:

the first sidelink channel is a Physical Sidelink Control Channel (PSCCH), and

the second sidelink channel is a Physical Sidelink Shared Channel (PSSCH).

20. The wireless communication node of claim 18 , wherein, when the processor is configured to cause the wireless communication node to determine the second sidelink channel resource unit of the second sidelink channel, the processor is configured to further cause the wireless communication node to:

determine at least one of the following of the second sidelink channel resource unit according to the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit.

21. The wireless communication node of claim 18 , wherein, when the processor is configured to cause the wireless communication node to determine the second sidelink channel resource unit of the second sidelink channel, the processor is configured to further cause the wireless communication node to:

determine at least one of the following of the second sidelink channel resource unit according to the first sidelink channel: the first starting position in the time domain and a second starting position in the frequency domain of the second sidelink channel resource unit; and

determine the second starting position in the frequency domain of the second sidelink channel resource unit according to a fourth starting position in the frequency domain of the first sidelink channel resource unit, wherein the second starting position in the frequency domain of the second sidelink channel resource unit is a starting RB for sidelink communication.

22. The wireless communication node of claim 18 , wherein the first sidelink channel is a Physical Sidelink Shared Channel (PSSCH) and the second sidelink channel is a physical sidelink channel carrying sidelink feedback control information.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2021
From: YANG, JIN; LU, YOUXIONG
To: ZTE CORPORATION
Reel/Frame 055626/0984 →
Continuity (2)
Continuation PCTCN2018108017 · Sep 27, 2018
Related Publication 20210400632A1 · Dec 23, 2021