IP Library Granted Patent US 11,109,374
Granted Patent B2
US 11,109,374 · App. 16/699,120 · Granted Aug 31, 2021

Method and device in UE and base station for wireless communication

Inventors: Qi Jiang (Shanghai, CN); XiaoBo Zhang (Shanghai, CN); Lin Yang (Shanghai, CN)
Assignee: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
H04W72/0446H04W72/0413H04W72/0453H04W88/06H04W88/10
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Quick Facts
Patent No.
US 11,109,374
App. No.
16/699,120
Granted
Aug 31, 2021
Kind
B2
Abstract

The disclosure provides a method and a device in a User Equipment (UE) and a base station for wireless communication. The UE first receives a first signaling, the first signaling indicating to transmit a first bit block in a first time-frequency resource block, then receives a second signaling, the second signaling indicating to transmit a second bit block in a second time-frequency resource block, and finally transmits a second radio signal in the second time-frequency resource block; the second bit block is used for generating the second radio signal; the first bit block includes a first bit subblock and a second bit subblock; the transmission mode in the first time-frequency resource block is associated with a relationship between an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock and a start time of the second time-frequency resource block.

Claims (60)

1. A method in a User Equipment (UE) for wireless communication, comprising:

receiving a first signaling, the first signaling indicating to transmit a first bit block in a first time-frequency resource block;

receiving a second signaling, the second signaling indicating to transmit a second bit block in a second time-frequency resource block; and

transmitting a second radio signal in the second time-frequency resource block;

wherein an end time of the second time-frequency resource block is behind a start time of the first time-frequency resource block, and the second bit block is used for generating the second radio signal; the first bit block comprises a first bit subblock and a second bit subblock; when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is behind a start time of the second time-frequency resource block, and the method in the UE for wireless communication comprises:

giving up wireless transmission in the first time-frequency resource block;

wherein the second bit block comprises the first bit subblock;

when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the method in the UE for wireless communication comprises:

transmitting a first radio signal in the first time-frequency resource block;

wherein the first bit subblock is used for generating the first radio signal.

2. The method according to claim 1 , wherein when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the method in the UE for wireless communication comprises:

giving up wireless transmission after the end time of the time-frequency resources in the first time-frequency resource block assigned to the first bit subblock.

3. The method according to claim 1 , comprising:

determining that a first time window and a second time window are overlapping in time domain;

wherein the first time window comprises time-domain resources occupied by the first time-frequency resource block, and the second time window comprises time-domain resources occupied by the second time-frequency resource block.

4. The method according to claim 1 , comprising:

receiving a third radio signal;

wherein the first bit subblock is used for determining whether the third radio signal is correctly received.

5. The method according to claim 1 , comprising:

receiving a fourth radio signal;

wherein the second bit block is used for determining whether the fourth radio signal is correctly received.

6. A method in a base station for wireless communication, comprising:

transmitting a first signaling, the first signaling indicating to receive a first bit block in a first time-frequency resource block;

transmitting a second signaling, the second signaling indicating to receive a second bit block in a second time-frequency resource block; and

receiving a second radio signal in the second time-frequency resource block;

wherein an end time of the second time-frequency resource block is behind a start time of the first time-frequency resource block, and the second bit block is used for generating the second radio signal; the first bit block comprises a first bit subblock and a second bit subblock; when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is behind a start time of the second time-frequency resource block, and the method in the base station for wireless communication comprises:

giving up wireless receiving in the first time-frequency resource block;

wherein the second bit block comprises the first bit subblock;

when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the method in the base station for wireless communication comprises:

receiving a first radio signal in the first time-frequency resource block;

wherein the first bit subblock is used for generating the first radio signal.

7. The method according to claim 6 , wherein when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the method in the base station for wireless communication comprises:

giving up wireless receiving after the end time of the time-frequency resources in the first time-frequency resource block assigned to the first bit subblock.

8. The method according to claim 6 , comprising:

determining that a first time window and a second time window are overlapping in time domain;

wherein the first time window comprises time-domain resources occupied by the first time-frequency resource block, and the second time window comprises time-domain resources occupied by the second time-frequency resource block.

9. The method according to claim 6 , comprising:

transmitting a third radio signal;

wherein the first bit subblock is used for determining whether the third radio signal is correctly received.

10. The method according to claim 6 , comprising:

transmitting a fourth radio signal;

wherein the second bit block is used for determining whether the fourth radio signal is correctly received.

11. A UE for wireless communication, comprising:

a first receiver, to receive a first signaling, the first signaling indicating to transmit a first bit block in a first time-frequency resource block;

a second receiver, to receive a second signaling, the second signaling indicating to transmit a second bit block in a second time-frequency resource block; and

a first transmitter, to transmit a second radio signal in the second time-frequency resource block;

wherein an end time of the second time-frequency resource block is behind a start time of the first time-frequency resource block, and the second bit block is used for generating the second radio signal; the first bit block comprises a first bit subblock and a second bit subblock; when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is behind a start time of the second time-frequency resource block, the first transmitter further gives up wireless transmission in the first time-frequency resource block, and the second bit block comprises the first bit subblock; when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the first transmitter further transmits a first radio signal in the first time-frequency resource block, and the first bit subblock is used for generating the first radio signal.

12. The UE according to claim 11 , wherein when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the first transmitter further gives up wireless transmission after the end time of the time-frequency resources in the first time-frequency resource block assigned to the first bit subblock.

13. The UE according to claim 11 , wherein the first transmitter further determines that a first time window and a second time window are overlapping in time domain; the first time window comprises time-domain resources occupied by the first time-frequency resource block, and the second time window comprises time-domain resources occupied by the second time-frequency resource block.

14. The UE according to claim 11 , wherein the first receiver further receives a third radio signal; and the first bit subblock is used for determining whether the third radio signal is correctly received.

15. The UE according to claim 11 , wherein the second receiver further receives a fourth radio signal; and the second bit block is used for determining whether the fourth radio signal is correctly received.

16. A base station for wireless communication, comprising:

a second transmitter, to transmit a first signaling, the first signaling indicating to receive a first bit block in a first time-frequency resource block;

a third transmitter, to transmit a second signaling, the second signaling indicating to receive a second bit block in a second time-frequency resource block; and

a third receiver, to receive a second radio signal in the second time-frequency resource block;

wherein an end time of the second time-frequency resource block is behind a start time of the first time-frequency resource block, and the second bit block is used for generating the second radio signal; the first bit block comprises a first bit subblock and a second bit subblock; when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is behind a start time of the second time-frequency resource block, the third receiver gives up wireless receiving in the first time-frequency resource block, and the second bit block comprises the first bit subblock; when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the third receiver further receives a first radio signal in the first time-frequency resource block, and the first bit subblock is used for generating the first radio signal.

17. The base station according to claim 16 , wherein when an end time of time-frequency resources in the first time-frequency resource block assigned to the first bit subblock is before a start time of the second time-frequency resource block, the third receiver further gives up wireless receiving after the end time of the time-frequency resources in the first time-frequency resource block assigned to the first bit subblock.

18. The base station according to claim 16 , wherein the third receiver determines that a first time window and a second time window are overlapping in time domain; the first time window comprises time-domain resources occupied by the first time-frequency resource block, and the second time window comprises time-domain resources occupied by the second time-frequency resource block.

19. The base station according to claim 16 , wherein the second transmitter transmits a third radio signal; and the first bit subblock is used for determining whether the third radio signal is correctly received.

20. The base station according to claim 16 , wherein the third transmitter transmits a fourth radio signal; and the second bit block is used for determining whether the fourth radio signal is correctly received.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2025
From: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
To: APOGEE NETWORKS, LLC
Reel/Frame 071083/0872 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2019
From: JIANG, QI; ZHANG, XIAOBO; YANG, LIN
To: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
Reel/Frame 051137/0296 →
Priority Claims (1)
CN 201811464456.8 · Dec 3, 2018 · national
Continuity (1)
Related Publication 20200178249A1 · Jun 4, 2020