IP Library › Granted Patent US 12,132,555
Granted Patent B2
US 12,132,555 · App. 18/349,705 · Granted Oct 29, 2024

Methods and systems for receive and transmit beam pairing in full duplex systems

Inventors: Xi Zhang (Kanata, CA); Jianglei Ma (Kanata, CA)
Assignee: HUAWEI TECHNOLOGIES CO., LTD.
H04B7/0695H04B7/0408H04B17/318H04B17/336H04L5/0051H04L5/14H04L25/0226H04W76/11
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,132,555
App. No.
18/349,705
Granted
Oct 29, 2024
Kind
B2
Abstract

Aspects of the present disclosure provide a manner of avoiding excessive latency and resource consumption due to exhaustive beam searching and pairing for finding an appropriate bi-directional beam pair combination with manageable mutual interference to enable point-to-point FD transmission. Aspects of the present disclosure also provide a solution for enabling multi-user transmission where one or all UEs are with FD capability and the cross-UE interference raised from FD transmission are measured and taken into account during multi-user pairing.

Claims (81)

1. A method comprising:

receiving, by an apparatus, configuration information comprising a set of candidate angles that the apparatus beamforms to receive a signal from or transmit a signal towards;

selecting, by the apparatus, one or multiple apparatus transmit and apparatus receive angle pairs, wherein an apparatus transmit angle and apparatus receive angle of the one or multiple apparatus transmit and apparatus receive angle pairs belongs to the set of candidate angles;

for each apparatus transmit and apparatus receive angle pair:

transmitting, by the apparatus, a reference signal (RS) on the apparatus transmit angle, wherein the RS is for at least one of self-interference estimation, self-isolation estimation, or cross-apparatus interference measurement;

measuring, by the apparatus, interference signal strength of the RS on the apparatus receive angle;

determining, by the apparatus, self-interference, self-isolation or cross-apparatus interference for the apparatus transmit angle and the apparatus receive angle based on the measured interference signal strength;

selecting, an apparatus transmit and apparatus receive angle pair based on the determined self-interference, self-isolation or cross-apparatus interference, wherein the selected apparatus transmit and apparatus receive angle pair belongs to the one or multiple apparatus transmit and apparatus receive angle pairs; and

transmitting, by the apparatus, an identification of an apparatus transmit angle and an identification of an apparatus receive angle of the selected apparatus transmit and apparatus receive angle pair.

2. The method of claim 1 , wherein the selecting the apparatus transmit and apparatus receive angle pair based on determined self-interference, self-isolation or cross-apparatus interference comprises selecting at least one of:

the apparatus transmit and apparatus receive angle pair with a highest self-isolation;

the apparatus transmit and apparatus receive angle pair with a lowest self-interference;

the apparatus transmit and apparatus receive angle pair with a self-isolation no less than a threshold value; or

the apparatus transmit and apparatus receive angle pair with a self-interference no more than a threshold value.

3. The method of claim 1 further comprising transmitting, by the apparatus, an identification of at least one of:

a self-interference or self-isolation value between the apparatus transmit angle and the apparatus receive angle of the selected apparatus transmit and apparatus receive angle pair; or

an occasion or index of the reference signal transmitted by the apparatus.

4. The method of claim 1 , wherein the identification of the apparatus transmit angle and the identification of the apparatus receive angle comprises a relative index among the candidate angles.

5. The method of claim 1 further comprising:

after selecting the apparatus transmit and apparatus receive angle pair, transmitting, by the apparatus to a user equipment (UE), identification of a base station transmit angle being used between the apparatus and the base station.

6. The method of claim 1 further comprising:

receiving, by the apparatus from a neighbor user equipment (UE), identification of a base station transmit angle being used between the neighbor UE and the base station; and

wherein selecting the apparatus transmit and apparatus receive angle pair further comprises considering the identification of the base station transmit angle being used between the neighbor UE and the base station as part of the selecting.

7. The method of claim 6 further comprising:

receiving, by the apparatus from the neighbor UE, a reference signal (RS) on an apparatus receive angle,

measuring, by the apparatus, interference signal strength of the RS on the apparatus receive angle; and

determining, by the apparatus, cross interference for the apparatus receive angle based on the measured interference signal strength.

8. An apparatus comprising:

at least one processor coupled with a computer-readable medium having stored thereon computer executable instructions, when the instructions executed by the at least one processor, cause the apparatus to:

receive configuration information comprising a set of candidate angles that the apparatus beamforms to receive a signal from or transmit a signal towards;

select, by the apparatus, one or multiple apparatus transmit and apparatus receive angle pairs, wherein an apparatus transmit angle and apparatus receive angle of the one or multiple apparatus transmit and apparatus receive pairs belongs to the set of candidate angles;

for each apparatus transmit and apparatus receive angle pair:

transmit a reference signal (RS) on the apparatus transmit angle wherein the RS is for at least one of self-interference estimation, self-isolation estimation, or cross-apparatus interference measurement;

measure interference signal strength of the RS on the apparatus receive angle;

determine self-interference, self-isolation or cross-apparatus interference for the transmit angle and the receive angle based on the measured interference signal strength;

select an apparatus transmit and apparatus receive angle pair based on the determined self-interference, self-isolation or cross-apparatus interference, wherein the selected apparatus transmit and apparatus receive angle pair belongs to the one or multiple apparatus transmit and apparatus receive angle pairs; and

transmit an identification of an apparatus transmit angle and an identification of an apparatus receive angle of the selected apparatus transmit and apparatus receive angle pair.

9. The apparatus of claim 8 , wherein the computer executable instructions, that when executed, cause the apparatus to select the apparatus transmit and apparatus receive angle pair based on determined self-interference, self-isolation or cross-apparatus interference comprise selecting at least one of:

the apparatus transmit and apparatus receive angle pair with a highest self-isolation;

the apparatus transmit and apparatus receive angle pair with a lowest self-interference;

the apparatus transmit and apparatus receive angle pair with a self-isolation no lower than a threshold value; or

the apparatus transmit and apparatus receive angle pair with a self-interference no more than a threshold value.

10. The apparatus of claim 8 , wherein the computer executable instructions, that when executed, further cause the apparatus to transmit an identification of at least one of:

a self-interference or self-isolation value between the apparatus transmit angle and the apparatus receive angle of the selected apparatus transmit and apparatus receive angle pair; or

an occasion or index of the reference signal transmitted by the apparatus.

11. The apparatus of claim 8 , wherein the computer executable instructions, that when executed, further cause the apparatus to:

after selecting the apparatus transmit and apparatus receive angle pair, transmit to a user equipment (UE), identification of a base station transmit angle being used between the apparatus and the base station.

12. The apparatus of claim 8 , wherein the computer executable instructions, that when executed, further cause the apparatus to:

receive from a neighbor user equipment (UE), identification of a base station transmit angle being used between the neighbor UE and the base station; and

wherein the computer executable instructions, that when executed, cause the apparatus to select the apparatus transmit and apparatus receive angle pairs further causes the apparatus to consider the identification of the base station transmit angle being used between the neighbor UE and the base station as part of the selecting.

13. The apparatus of claim 12 , wherein the computer executable instructions, that when executed, further cause the apparatus to:

receive, from the neighbor UE, a reference signal (RS) on an apparatus receive angle;

measure interference signal strength of the RS on the apparatus receive angle; and

determine cross interference for the apparatus receive angle based on the measured interference signal strength.

14. A non-transitory computer-readable storage medium having stored thereon computer-executable instructions, that when executed by a processor, cause the processor to:

receive configuration information comprising a set of candidate angles that an apparatus beamforms to receive a signal from or transmit a signal towards;

select one or multiple apparatus transmit and apparatus receive angle pairs, wherein an apparatus transmit angle and apparatus receive angle of the one or multiple apparatus transmit and apparatus receive angle pairs belongs to the set of candidate angles;

for each apparatus transmit and apparatus receive angle pair:

transmit a reference signal (RS) on the apparatus transmit angle, wherein the RS is for at least one of self-interference estimation, self-isolation estimation, or cross-apparatus interference measurement;

measure interference signal strength of the RS on the apparatus receive angle;

determine self-interference, self-isolation or cross-apparatus interference for the apparatus transmit angle and the apparatus receive angle based on the measured interference signal strength;

select an apparatus transmit and apparatus receive angle pair based on the determined self-interference, self-isolation or cross-apparatus interference, wherein the selected apparatus transmit and apparatus receive angle pair belongs to the one or multiple apparatus transmit and apparatus receive angle pairs; and

transmit an identification of an apparatus transmit angle and an identification of an apparatus receive angle of the selected apparatus transmit and apparatus receive angle pair.

15. The non-transitory computer-readable storage medium of claim 14 , wherein the computer executable instructions, that when executed, cause the processor to select the apparatus transmit and apparatus receive angle pair based on determined self-interference, self-isolation or cross-apparatus interference comprise selecting at least one of:

the apparatus transmit and apparatus receive angle pair with a highest self-isolation;

the apparatus transmit and apparatus receive angle pair with a lowest self-interference;

the apparatus transmit and apparatus receive angle pair with a self-isolation no less than a threshold value; or

the apparatus transmit and apparatus receive angle pair with a self-interference no more than a threshold value.

16. The non-transitory computer-readable storage medium of claim 14 wherein the computer executable instructions, when executed, further cause the processor to transmit an identification of at least one of:

a self-interference or self-isolation value between the apparatus transmit angle and the apparatus receive angle of the selected apparatus transmit and apparatus receive angle pair; or

an occasion or index of the reference signal transmitted by the apparatus.

17. The non-transitory computer-readable storage medium of claim 14 , wherein the identification of the apparatus transmit angle and the identification of the apparatus receive angle comprises relative index among the candidate angles.

18. The non-transitory computer-readable storage medium of claim 14 , wherein the computer executable instructions, when executed, further cause the processor to:

after selecting the apparatus transmit and apparatus receive angle pair, transmit identification of a base station transmit angle being used.

19. The non-transitory computer-readable storage medium of claim 14 , wherein the computer executable instructions, when executed, further cause the processor to:

receive from a neighbor user equipment (UE), identification of a base station transmit angle being used between the neighbor UE and the base station; and

wherein the computer executable instructions, that when executed, cause the apparatus to select the apparatus transmit and apparatus receive angle pair further causes the processor to consider the identification of the base station transmit angle being used between the neighbor UE and the base station as part of the selecting.

20. The non-transitory computer-readable storage medium of claim 19 , wherein the computer executable instructions, when executed, further cause the processor to:

receive from the neighbor UE, a reference signal (RS) on a receive angle,

measure interference signal strength of the RS on the receive angle; and

determine cross interference for the receive angle based on the measured interference signal strength.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2023
From: ZHANG, XI; MA, JIANGLEI
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 064237/0791 →
Continuity (2)
Continuation 17011645 · Sep 3, 2020
Related Publication 20240007171A1 · Jan 4, 2024