IP Library › Granted Patent US 12,568,528
Granted Patent B2
US 12,568,528 · App. 18/069,109 · Granted Mar 3, 2026

Channel access procedure

Inventors: Ling Yang (Shenzhen, CN); Li Tian (Shenzhen, CN); Yajun Zhao (Shenzhen, CN)
Assignee: ZTE Corporation
H04W74/0808H04B7/0408
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Quick Facts
Patent No.
US 12,568,528
App. No.
18/069,109
Granted
Mar 3, 2026
Kind
B2
Abstract

Disclosed are devices, systems and methods for channel access procedures that include a listen-before-talk (LBT) rule for preventing a mismatch between a sensing beam and a transmission beam. In some implementations, a data communication method includes detecting an idle channel by performing, by a communication node, an energy detection operation based on at least one of a transmission beam or a reception beam, and transmitting, upon detection of the idle channel in at least one of the transmission beam or the reception beam, messages through the transmission beam corresponding to the idle channel.

Claims (23)

1 . A data communication method, comprising:

detecting an idle channel by performing, by a communication node, an energy detection operation based on a transmission beam and a reception beam; and

transmitting, upon detection of the idle channel in at least one of the transmission beam or the reception beam, messages through the transmission beam corresponding to the idle channel,

wherein the energy detection operation is performed by: comparing a detected energy on the transmission beam with a first detection threshold; and comparing a detected energy on the reception beam with the first detection threshold, wherein, in a case that there is a difference between the detected energy on the transmission beam and the detected energy on the reception beam, the energy detection operation is performed by comparing the difference with a second detection threshold.

2 . The method of claim 1 , wherein the detection thresholds are determined based on a mode of at least one of the transmission beam or the reception beam, wherein the mode includes at least one of a directional beam mode, a wide directional beam mode, an omni directional beam mode, or a multiple directional beam mode.

3 . A data communication method, comprising:

detecting an idle channel by performing, by a communication node, an energy detection operation based on at least one of a transmission beam or a reception beam, wherein the energy detection operation is performed using one or more detection thresholds; and

transmitting, upon detection of the idle channel in at least one of the transmission beam or the reception beam, messages through the transmission beam corresponding to the idle channel, wherein the one or more detection thresholds are updated or determined based on whether there is a mismatch between a clear channel assessment energy detection beam and the transmission beam.

4 . The method of claim 1 , wherein, upon detection that the detected energy on the transmission beam or the reception beam is lower than or equal to the first detection threshold, the corresponding channel is determined as idle, and upon detection that the detected energy on the transmission beam or the reception beam is larger than the first detection threshold, the corresponding channel is determined as busy.

5 . The method of claim 1 , wherein the energy detection operation is performed based on the first and second detection thresholds such that, if the detected energy on at least one of the transmission beam or the reception beam is lower than the first detection threshold, and a difference in a detected energy between the transmission beam and the reception beam is lower than or equal to the second detection threshold, a channel corresponding to the transmission beam is determined as idle.

6 . The method of claim 1 , wherein the energy detection operation is performed based on the first and second detection thresholds such that, if the detected energy on at least one of the transmission beam or the reception beam is larger than or equal to the first detection threshold, and lower than or equal to the second detection threshold, a channel corresponding to the transmission beam is determined as idle.

7 . The method of claim 1 , further comprising, making, upon failing to detect any idle channel in at least one of the transmission beam or the reception beam, a change to at least one of a listen-before-talk mechanism, a listen-before-talk mode, a beam direction for a listen-before-talk procedure.

8 . The method of claim 1 , wherein the first and second detection thresholds are updated or determined based on whether there is a mismatch between a clear channel assessment energy detection beam and the transmission beam.

9 . An apparatus for wireless communication, comprising a memory and a processor, wherein the processor reads code from the memory and implements a method, comprising:

detecting an idle channel by performing, by a communication node, an energy detection operation based on a transmission beam and a reception beam; and

transmitting, upon detection of the idle channel in at least one of the transmission beam or the reception beam, messages through the transmission beam corresponding to the idle channel,

wherein the energy detection operation is performed by: comparing a detected energy on the transmission beam with a first detection threshold; and comparing a detected energy on the reception beam with the first detection threshold, wherein, in a case that there is a difference between the detected energy on the transmission beam and the detected energy on the reception beam, the energy detection operation is performed by comparing the difference with a second detection threshold.

10 . The apparatus of claim 9 , wherein the detection thresholds are determined based on a mode of at least one of the transmission beam or the reception beam, wherein the mode includes at least one of a directional beam mode, a wide directional beam mode, an omni directional beam mode, or a multiple directional beam mode.

11 . The apparatus of claim 9 , wherein the first and second detection thresholds are updated or determined based on whether there is a mismatch between a clear channel assessment energy detection beam and the transmission beam.

12 . The apparatus of claim 9 , wherein, upon detection that the detected energy on the transmission beam or the reception beam is lower than or equal to the first detection threshold, the corresponding channel is determined as idle, and upon detection that the detected energy on the transmission beam or the reception beam is larger than the first detection threshold, the corresponding channel is determined as busy.

13 . The apparatus of claim 9 , wherein the energy detection operation is performed based on the first and second detection thresholds such that, if the detected energy on at least one of the transmission beam or the reception beam is lower than the first detection threshold, and a difference in a detected energy between the transmission beam and the reception beam is lower than or equal to the second detection threshold, a channel corresponding to the transmission beam is determined as idle.

14 . The apparatus of claim 9 , wherein the energy detection operation is performed based on the first and second detection thresholds such that, if the detected energy on at least one of the transmission beam or the reception beam is larger than or equal to the first detection threshold, and lower than or equal to the second detection threshold, a channel corresponding to the transmission beam is determined as idle.

15 . The apparatus of claim 9 , where the method further comprises: making, upon failing to detect any idle channel in at least one of the transmission beam or the reception beam, a change to at least one of a listen-before-talk mechanism, a listen-before-talk mode, a beam direction for a listen-before-talk procedure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2022
From: YANG, LING; TIAN, LI; ZHAO, YAJUN
To: ZTE CORPORATION
Reel/Frame 062164/0234 →
Continuity (2)
Continuation PCTCN2020107954 · Aug 7, 2020
Related Publication 20230126765A1 · Apr 27, 2023
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