IP Library Granted Patent US 11,483,863
Granted Patent B2
US 11,483,863 · App. 16/932,835 · Granted Oct 25, 2022

Method and device for wireless communication in UE and base station

Inventor: Xiaobo Zhang (Shanghai, CN)
Assignee: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
H04W74/0808H04L5/0048H04W16/14H04W72/042H04W72/0446H04W72/0453H04W72/085
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Quick Facts
Patent No.
US 11,483,863
App. No.
16/932,835
Granted
Oct 25, 2022
Kind
B2
Abstract

The present disclosure provides a method and a device in a User Equipment (UE) and a base station used for wireless communications. The UE receives a first radio signal, receives first information, and then performs a first access detection for determining whether an uplink transmission is performed at a first time on a first sub-band; if so, transmits a second radio signal by a second antenna port group at the first time on the first sub-band; if not, drops transmission of a second radio signal at the first time on the first sub-band; wherein a first receiving parameter group is used for receiving the first radio signal, and a second receiving parameter group is used for generating the second antenna port group. The above method improves uplink channel access chance, thus increasing the system capacity.

Claims (44)

1. A method in UE for wireless communications, comprising:

receiving a first radio signal, the first radio signal being transmitted by a first antenna port group;

receiving first information; and

performing a first access detection to determine whether an uplink transmission is performed at a first time on a first sub-band; if so, transmitting a second radio signal by a second antenna port group at the first time on the first sub-band; if not, dropping transmission of a second radio signal at the first time on the first sub-band;

wherein the first antenna port group comprises a positive integer number of antenna port(s), and the second antenna port group comprises a positive integer number of antenna port(s); a first receiving parameter group is used for receiving the first radio signal, and a second receiving parameter group is used for generating the second antenna port group; the first receiving parameter group and the second receiving parameter group both belong to a first receiving parameter space, and the first information and the first receiving parameter group are used together for determining the first receiving parameter space;

the first information is carried by an RRC signaling, or the first information is carried by a physical-layer signaling;

the first information is used for determining a first threshold, and the first receiving parameter group and the first threshold are used together for determining the first receiving parameter space; a correlation coefficient between any receiving parameter group in the first receiving parameter space and the first receiving parameter group is not lower than the first threshold;

a given receiving parameter group is a receiving parameter group in the first receiving parameter space, the given receiving parameter group constitutes the first column vector, the first receiving parameter group constitutes the second column vector, and a correlation coefficient between the given receiving parameter group and the first receiving parameter group is an inner product of the first column vector and the second column vector, norms of the first column vector and the second column vector both being equal to 1.

2. The method according to claim 1 , comprising:

determining the second receiving parameter group out of K1 receiving parameter groups, K1 being a positive integer greater than 1;

wherein each of the K1 receiving parameter groups belongs to the first receiving parameter space.

3. The method according to claim 2 , comprising: receiving K radio signals, K being a positive integer greater than 1; herein, the K radio signals are respectively transmitted by K antenna port groups, and K receiving parameter groups are respectively used for receiving the K radio signals; any receiving parameter group among the K1 receiving parameter groups different from the first receiving parameter group is one of the K receiving parameter groups;

or, in the first receiving parameter space, the UE determines the K1 receiving parameter groups by itself.

4. A method in a base station for wireless communications, comprising:

transmitting a first radio signal, the first radio signal being transmitted by a first antenna port group;

transmitting first information; and

monitoring a second radio signal at a first time on a first sub-band;

wherein a first access detection is used for determining whether an uplink transmission is performed at the first time on the first sub-band; if so, the second radio signal is transmitted by a second antenna port group at the first time on the first sub-band; if not, transmission of the second radio signal is dropped at the first time on the first sub-band; the first antenna port group comprises a positive integer number of antenna port(s), and the second antenna port group comprises a positive integer number of antenna port(s); a first receiving parameter group is used for receiving the first radio signal, and a second receiving parameter group is used for generating the second antenna port group; the first receiving parameter group and the second receiving parameter group both belong to a first receiving parameter space, and the first information and the first receiving parameter group are used together for determining the first receiving parameter space;

the first information is carried by an RRC signaling, or the first information is carried by a physical-layer signaling;

the first information is used for determining a first threshold, and the first receiving parameter group and the first threshold are used together for determining the first receiving parameter space; a correlation coefficient between any receiving parameter group in the first receiving parameter space and the first receiving parameter group is not lower than the first threshold;

a given receiving parameter group is a receiving parameter group in the first receiving parameter space, the given receiving parameter group constitutes the first column vector, the first receiving parameter group constitutes the second column vector, and a correlation coefficient between the given receiving parameter group and the first receiving parameter group is an inner product of the first column vector and the second column vector, norms of the first column vector and the second column vector both being equal to 1.

5. The method according to claim 4 , wherein a receiver of the first information determines the second receiving parameter group out of K1 receiving parameter groups, K1 being a positive integer greater than 1; herein, each of the K1 receiving parameter groups belongs to the first receiving parameter space.

6. The method according to claim 5 , comprising: transmitting K radio signals, K being a positive integer greater than 1; herein, the K radio signals are respectively transmitted by K antenna port groups, and K receiving parameter groups are respectively used for receiving the K radio signals; any receiving parameter group among the K1 receiving parameter groups different from the first receiving parameter group is one of the K receiving parameter groups;

or, in the first receiving parameter space, a receiver of the first information determines the K1 receiving parameter groups by itself.

7. A User Equipment (UE) for wireless communications, comprising:

a first receiver, receiving a first radio signal, the first radio signal being transmitted by a first antenna port group; receiving first information; and

a first transceiver, performing a first access detection for determining whether an uplink transmission is performed at a first time on a first sub-band; if so, transmitting a second radio signal by a second antenna port group at the first time on the first sub-band; if not, dropping transmission of a second radio signal at the first time on the first sub-band;

wherein the first antenna port group comprises a positive integer number of antenna port(s), and the second antenna port group comprises a positive integer number of antenna port(s); a first receiving parameter group is used for receiving the first radio signal, and a second receiving parameter group is used for generating the second antenna port group; the first receiving parameter group and the second receiving parameter group both belong to a first receiving parameter space, and the first information and the first receiving parameter group are used together for determining the first receiving parameter space;

the first information is carried by an RRC signaling, or the first information is carried by a physical-layer signaling;

the first information is used for determining a first threshold, and the first receiving parameter group and the first threshold are used together for determining the first receiving parameter space; a correlation coefficient between any receiving parameter group in the first receiving parameter space and the first receiving parameter group is not lower than the first threshold;

a given receiving parameter group is a receiving parameter group in the first receiving parameter space, the given receiving parameter group constitutes the first column vector, the first receiving parameter group constitutes the second column vector, and a correlation coefficient between the given receiving parameter group and the first receiving parameter group is an inner product of the first column vector and the second column vector, norms of the first column vector and the second column vector both being equal to 1.

8. The UE according to claim 7 , wherein the first transceiver also determines the second receiving parameter group out of K1 receiving parameter groups, K1 being a positive integer greater than 1; wherein each of the K1 receiving parameter groups belongs to the first receiving parameter space.

9. The UE according to claim 8 , wherein the first receiver also receives K radio signals, K being a positive integer greater than 1; herein, the K radio signals are respectively transmitted by K antenna port groups, and K receiving parameter groups are respectively used for receiving the K radio signals; any receiving parameter group among the K1 receiving parameter groups different from the first receiving parameter group is one of the K receiving parameter groups;

or, in the first receiving parameter space, the UE determines the K1 receiving parameter groups by itself.

10. A base station for wireless communications, comprising:

a second transmitter, transmitting a first radio signal, the first radio signal being transmitted by a first antenna port group; transmitting first information; and

a second receiver, monitoring a second radio signal at a first time on a first sub-band;

wherein a first access detection is used for determining whether an uplink transmission is performed at the first time on the first sub-band; if so, the second radio signal is transmitted by a second antenna port group at the first time on the first sub-band; if not, transmission of the second radio signal is dropped at the first time on the first sub-band; the first antenna port group comprises a positive integer number of antenna port(s), and the second antenna port group comprises a positive integer number of antenna port(s); a first receiving parameter group is used for receiving the first radio signal, and a second receiving parameter group is used for generating the second antenna port group; the first receiving parameter group and the second receiving parameter group both belong to a first receiving parameter space, and the first information and the first receiving parameter group are used together for determining the first receiving parameter space;

the first information is carried by an RRC signaling, or the first information is carried by a physical-layer signaling;

the first information is used for determining a first threshold, and the first receiving parameter group and the first threshold are used together for determining the first receiving parameter space; a correlation coefficient between any receiving parameter group in the first receiving parameter space and the first receiving parameter group is not lower than the first threshold;

a given receiving parameter group is a receiving parameter group in the first receiving parameter space, the given receiving parameter group constitutes the first column vector, the first receiving parameter group constitutes the second column vector, and a correlation coefficient between the given receiving parameter group and the first receiving parameter group is an inner product of the first column vector and the second column vector, norms of the first column vector and the second column vector both being equal to 1.

11. The base station according to claim 10 , wherein a receiver of the first information determines the second receiving parameter group out of K1 receiving parameter groups, K1 being a positive integer greater than 1; herein, each of the K1 receiving parameter groups belongs to the first receiving parameter space.

12. The base station according to claim 11 , wherein the second transmitter also transmits K radio signals, K being a positive integer greater than 1; herein, the K radio signals are respectively transmitted by K antenna port groups, and K receiving parameter groups are respectively used for receiving the K radio signals; any receiving parameter group among the K1 receiving parameter groups different from the first receiving parameter group is one of the K receiving parameter groups;

or, in the first receiving parameter space, a receiver of the first information determines the K1 receiving parameter groups by itself.

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 Mar 15, 2021
From: ZHANG, XIAOBO
To: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
Reel/Frame 055585/0388 →
Continuity (2)
Continuation PCTCN2018073966 · Jan 24, 2018
Related Publication 20200367285A1 · Nov 19, 2020
Cited By (2)
US 12,707,313 US 12,713,272