IP Library › Granted Patent US 12,114,186
Granted Patent B2
US 12,114,186 · App. 17/372,293 · Granted Oct 8, 2024

Channel monitoring method and device

Inventors: Lixia Xue (Beijing, CN); Zheng Chen (Beijing, CN)
Assignee: Huawei Technologies Co., Ltd.
H04W24/08H04W76/28
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Quick Facts
Patent No.
US 12,114,186
App. No.
17/372,293
Granted
Oct 8, 2024
Kind
B2
Abstract

A channel monitoring method and a device are described. The method includes: monitoring, by a terminal device, a first signal on n transmission occasions in a monitoring periodicity; and when the terminal device detects the first signal on at least one of the n transmission occasions, monitoring, by the terminal device, a downlink control channel and/or a second signal in a first time period in the monitoring periodicity; or when the terminal device does not detect the first signal on the n transmission occasions, skipping, by the terminal device, monitoring a downlink control channel in the monitoring periodicity.

Claims (52)

1. A channel monitoring method carried out by a terminal device, comprising:

monitoring a first signal on n transmission occasions in a monitoring periodicity, wherein n is a positive integer; and

monitoring, in accordance with detecting the first signal during at least one of the n transmission occasions, a downlink control channel and/or a second signal in a first time period in the monitoring periodicity,

wherein timing for the first time period is performed by using a first timer, and timing duration of the first timer is a length of the first time period, and

wherein the method further comprises:

resetting, in accordance with detecting the second signal during monitoring the downlink control signal, the first timer and monitoring the downlink control channel in a timing duration of the reset first timer; or

resetting, in accordance with detecting the second signal in the timing duration of the first timer and the second signal indicates to continue monitoring the downlink control channel, the first timer and monitoring the downlink control channel in a timing duration of the first timer after the resetting the first timer.

2. The method according to claim 1 , wherein the method further comprises:

monitoring, in accordance with not detecting the second signal during monitoring the second signal in the timing duration of the first timer, the downlink control channel.

3. The method according to claim 1 , further comprising:

resetting, in accordance with detecting the second signal in the timing duration of the first timer, the first timer and monitoring the downlink control channel in timing duration of the reset first timer; or

resetting, in accordance with detecting the second signal in the timing duration of the first timer and the second signal indicates to monitor the downlink control channel, the first timer and monitoring the downlink control channel in timing duration of the reset first timer.

4. A channel monitoring method carried out by a network device, the method comprising:

determining to perform data scheduling on a terminal device in a monitoring periodicity;

sending a first signal on n transmission occasions in the monitoring periodicity; and

sending a downlink control channel and/or sending a second signal in a first time period in the monitoring periodicity,

wherein the first signal is used to indicate data scheduling,

wherein n is a positive integer,

wherein timing for the first time period is performed by using a first timer, and timing duration of the first timer is a length of the first time period, and

wherein the method further comprises:

resetting, in accordance with sending the second signal in the timing duration of the first timer, the first timer and sending the downlink control channel in timing duration of the reset first timer; or

resetting, in accordance with sending the second signal in the timing duration of the first timer and the second signal indicates to continue monitoring the downlink control channel, the first timer and sending the downlink control channel in timing duration of the reset first timer.

5. The method according to claim 4 , further comprising:

sending, in accordance with not sending the second signal in the timing duration of the first timer, the downlink control channel.

6. A terminal device, comprising:

a processor, and

a non-transient computer readable medium including computer-executable instructions that, when executed by the processor, facilitate carrying out a method including:

monitoring a first signal on n transmission occasions in a monitoring periodicity, wherein n is a positive integer; and

monitoring, in accordance with detecting the first signal during at least one of the n transmission occasions, a downlink control channel and/or a second signal in a first time period in the monitoring periodicity,

wherein timing for the first time period is performed by using a first timer, and timing duration of the first timer is a length of the first time period, and

wherein the method further comprises:

resetting, in accordance with detecting the second signal during monitoring the downlink control signal, the first timer and monitoring the downlink control channel in a timing duration of the reset first timer; or

resetting, in accordance with detecting the second signal in the time duration of the first timer and the second signal indicates to continue monitoring the downlink control channel, the first timer and monitoring the downlink control channel in a timing duration of the first timer after resetting the first timer.

7. The terminal device according to claim 6 , wherein the method further comprises:

monitoring, in accordance with not detecting the second signal during monitoring the second signal in the timing duration of the first timer, the downlink control channel.

8. The terminal device according to claim 6 , wherein the method further comprises:

resetting, in accordance with detecting the second signal in the timing duration of the first timer, the first timer and monitoring the downlink control channel in timing duration of the reset first timer; or

resetting, in accordance with detecting the second signal in the timing duration of the first timer and the second signal indicates to monitor the downlink control channel, the first timer and monitoring the downlink control channel in timing duration of the reset first timer.

9. A network device, comprising:

a processor, and

a non-transient computer readable medium including computer-executable instructions that, when executed by the processor, facilitate carrying out a method including:

determining to perform data scheduling on a terminal device in a monitoring periodicity;

sending a first signal on n transmission occasions in the monitoring periodicity; and

sending a downlink control channel and/or sending a second signal in a first time period in the monitoring periodicity,

wherein the first signal is used to indicate data scheduling,

wherein n is a positive integer,

wherein timing for the first time period is performed by using a first timer, and timing duration of the first timer is a length of the first time period, and

wherein the method further comprises:

resetting, in accordance with sending the second signal in the timing duration of the first timer, the first timer and sending the downlink control channel in timing duration of the reset first timer; or

resetting, in accordance with sending the second signal in the timing duration of the first timer and the second signal indicates to continue monitoring the downlink control channel, the first timer and sending the downlink control channel in timing duration of the reset first timer.

10. The network device according to claim 9 , wherein the method further comprises:

sending, in accordance with not sending the second signal in the timing duration of the first timer, the downlink control channel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2024
From: XUE, LIXIA; CHEN, ZHENG
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 068430/0071 →
Priority Claims (1)
CN 201910028855.8 · Jan 11, 2019 · national
Continuity (2)
Continuation PCTCN2020070323 · Jan 3, 2020
Related Publication 20210337409A1 · Oct 28, 2021