IP Library › Granted Patent US 10,499,268
Granted Patent B2
US 10,499,268 · App. 16/225,712 · Granted Dec 3, 2019

Radio link failure detection method and apparatus for wireless communication system

Inventors: Kyeong In Jeong (Hwaseong-si, KR); Gert-Jan Van Lieshout (Apeldoorn, NL); Chengjun Sun (Beijing, CN)
Assignee: Samsung Electronics Co., Ltd.
H04W24/08H04B17/24H04B17/26H04B17/309H04W24/04H04W28/18H04W76/18H04W76/28
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Quick Facts
Patent No.
US 10,499,268
App. No.
16/225,712
Granted
Dec 3, 2019
Kind
B2
Abstract

A radio link failure detection method of a user equipment transitioning between a Discontinuous Reception (DRX) mode and non-DRX mode cyclically in a wireless communication system includes transitioning between a Discontinuous Reception (DRX) mode and a non-DRX mode in a wireless communication system. The method also includes adjusting, when a mode transition occurs, a size of a monitoring window for a transitioned operation mode; reporting a radio channel condition acquired by monitoring and averaging the channel condition within the monitoring window; and repeating adjustment of the monitoring window size and report of the radio channel condition while moving the monitoring window as time progress.

Claims (30)

1. A method for monitoring a radio link by a terminal in a wireless communication system, the method comprising:

estimating a radio link condition based on channel conditions measured during a first evaluation period in a first reception mode;

for a duration of time after transitioning from the first reception mode to a second reception mode, estimating a radio link condition based on channel conditions measured during an evaluation period, the evaluation period used during the duration of time in the second reception mode; and

estimating a radio link condition based on channel conditions measured during a second evaluation period in the second reception mode, after the duration of time,

wherein the evaluation period is not less than a minimum of the first evaluation period and the second evaluation period,

wherein the evaluation period is not less than the first evaluation period based on the first evaluation period being shorter than the second evaluation period.

2. The method of claim 1 , wherein the first reception mode is one of a Discontinuous Reception (DRX) mode and a non-DRX mode and the reception second mode is another of the DRX mode and the non-DRX mode.

3. The method of claim 1 , wherein the duration of time is equal to the second evaluation period.

4. The method of claim 1 , wherein the evaluation period is not less than the second evaluation period based on the second evaluation period being shorter than the first evaluation period.

5. The method of claim 1 , wherein, if the first reception mode is a non-DRX mode, a length of the first evaluation period is a preset value.

6. The method of claim 1 , wherein a length of the first evaluation period is 200 milliseconds (ms).

7. The method of claim 1 , wherein a length of the first evaluation period or the second evaluation period is defined as M cycles times a DRX cycle length, wherein M is an integer.

8. The method of claim 7 , wherein the M cycles denote an elapse of time sufficient to determine a complete transition from the first reception mode to the second reception mode.

9. The method of claim 1 , wherein the evaluation period is an arbitrary value plus a minimum among the first evaluation period and the second evaluation period.

10. A terminal for monitoring a radio link in a wireless communication system, the terminal comprising:

a transceiver configured to transmit and receive a signal; and

at least one processor configured:

to estimate a radio link condition based on channel conditions measured during a first evaluation period in a first reception mode,

for a duration of time after transitioning from the first reception mode to a second reception mode, to estimate a radio link condition based on channel conditions measured during an evaluation period, the evaluation period used during the duration of time in the second reception mode, and

to estimate a radio link condition based on channel conditions measured during a second evaluation period in the second reception mode, after the duration of time,

wherein the evaluation period is not less than a minimum of the first evaluation period and the second evaluation period,

wherein the evaluation period is not less than the first evaluation period based on the first evaluation period being shorter than the second evaluation period.

11. The terminal of claim 10 , wherein the first reception mode is one of a Discontinuous Reception (DRX) mode and a non-DRX mode and the second reception mode is another of the DRX mode and the non-DRX mode.

12. The terminal of claim 10 , wherein the duration of time is equal to the second evaluation period.

13. The terminal of claim 10 , wherein the evaluation period is not less than the second evaluation period based on the second evaluation period being shorter than the first evaluation period.

14. The terminal of claim 10 , wherein, if the first reception mode is a non-DRX mode, a length of the first evaluation period is a preset value.

15. The terminal of claim 10 , wherein a length of the first evaluation period is 200 milliseconds (ms).

16. The terminal of claim 10 , wherein a length of the first evaluation period or the second evaluation period is defined as M cycles times a DRX cycle length, wherein M is an integer.

17. The terminal of claim 16 , wherein the M cycles denote an elapse of time sufficient to determine a complete transition from the first reception mode to the second reception mode.

18. The terminal of claim 10 , wherein the evaluation period is an arbitrary value plus a minimum among the first evaluation period and the second evaluation period.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2018
From: JEONG, KYEONG IN; VAN LIESHOUT, GERT-JAN; SUN, CHENGJUN
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 047818/0400 →
Priority Claims (1)
KR 10-2008-0109576 · Nov 5, 2008 · national
Continuity (3)
Continuation 15489516 · Apr 17, 2017
Continuation 12590312 · Nov 5, 2009
Related Publication 20190124531A1 · Apr 25, 2019