IP Library Granted Patent US 9,780,867
Granted Patent B2
US 9,780,867 · App. 15/029,489 · Granted Oct 3, 2017

Optical communication system and optical communication abnormality-recovery method

Inventors: Tomoaki Yoshida (Yokosuka, JP); Shin Kaneko (Yokosuka, JP); Shunji Kimura (Atsugi, JP)
Assignee: Nippon Telegraph and Telephone Corporation
H04B10/032H04B10/272H04J14/0256H04J14/0268H04J14/0282H04J14/0294H04J14/08H04Q11/0067H04L41/0663H04L43/0864H04Q2011/0016H04Q2011/0081H04Q2213/1301
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Quick Facts
Patent No.
US 9,780,867
App. No.
15/029,489
Granted
Oct 3, 2017
Kind
B2
Abstract

In an optical communication abnormality-recovery system and method, when an abnormality occurs in transmission and reception of one wavelength of an optical line terminal of a PON system, an optical network unit that is performing communication at a certain wavelength switches the wavelength for performing the communication to another backup wavelength that is instructed in advance. The optical line terminal also performs switching so that the communication is performed using the same backup wavelength as in the optical network unit.

Claims (64)

1. An optical communication system comprising:

a plurality of optical network units; and

an optical line terminal connected with the plurality of optical network units, wherein the optical network units and the optical line terminal switch between a plurality of wavelengths and perform communication,

wherein the optical network units and the optical line terminal perform the communication using a main communication wavelength,

wherein, when an abnormality is detected to occur in the communication between the optical line terminal and an optical network unit using the main communication wavelength, the optical network unit changes from the main communication wavelength for performing the communication with the optical line terminal to a backup communication wavelength, and wherein the backup communication wavelength is held in the optical network unit in advance of the change of the wavelength.

2. An optical communication system comprising:

a plurality of optical network units; and

an optical line terminal connected with the plurality of optical network units, wherein the optical network units and the optical line terminal switch between a plurality of wavelengths and perform communication,

wherein the optical network units and the optical line terminal perform the communication using a main communication wavelength,

wherein, when an abnormality is detected to occur in the communication between the optical line terminal and an optical network unit using the main communication wavelength, the optical network unit changes from the main communication wavelength for performing the communication with the optical line terminal to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of the change of the wavelength, and

wherein the optical line terminal includes a dynamic wavelength and bandwidth allocation circuit that allocates the backup wavelength to the optical network unit.

3. An optical communication system comprising:

a plurality of optical network units; and

an optical line terminal connected with the plurality of optical network units, wherein the optical network units and the optical line terminal switch between a plurality of wavelengths and perform communication,

wherein the optical network units and the optical line terminal perform the communication using a main communication wavelength,

wherein, when an abnormality is detected to occur in the communication between the optical line terminal and an optical network unit using the main communication wavelength, the optical network unit changes from the main communication wavelength for performing the communication with the optical line terminal to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of the change of the wavelength,

wherein the optical line terminal performs an initial connection operation including at least measurement of a round-trip delay time of the communication between the optical line terminal and the optical network unit using the backup communication wavelength to which the optical network unit has changed, and gives an instruction to the optical network unit indicating the main communication wavelength and the backup communication wavelength with which the optical network unit performs the communication with the optical line terminal to the optical network unit after the initial connection operation, and

wherein the optical network unit changes the wavelength for performing the communication with the optical line terminal from the backup communication wavelength to the main communication wavelength.

4. An optical communication system comprising:

a plurality of optical network units; and

an optical line terminal connected with the plurality of optical network units, the optical network units and the optical line terminal switch between a plurality of wavelengths and perform communication,

wherein the optical network units and the optical line terminal perform the communication using a main communication wavelength,

wherein, when an abnormality is detected to occur in the communication between the optical line terminal and an optical network unit using the main communication wavelength, the optical network unit changes from the main communication wavelength for performing the communication with the optical line terminal to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of the change of the wavelength,

wherein the optical network unit includes a recovery standby protection timer that measures a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength, and

wherein, when the period of time measured by the recovery standby protection timer exceeds a recovery standby period of time that is instructed in advance, the optical network unit determines that the communication between the optical network unit and the optical line terminal using the backup communication wavelength is in an abnormal state.

5. An optical communication abnormality-recovery method of changing a wavelength for performing communication between an optical network unit and an optical line terminal in an optical communication system in which a plurality of optical network units is connected with an optical line terminal, and the optical network units and the optical line terminal switch between a plurality of wavelengths, and perform communication, the optical communication abnormality-recovery method comprising, in order:

an abnormality detection process of detecting, by the optical network unit, an abnormality in communication between the optical network unit and the optical line terminal when using a main communication wavelength; and

a wavelength switching process of changing the wavelength with which the optical network unit performs the communication with the optical line terminal from the main communication wavelength to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of changing the wavelength when the abnormality is detected by the abnormality detection process.

6. An optical communication abnormality-recovery method of changing a wavelength for performing communication between an optical network unit and an optical line terminal in an optical communication system in which a plurality of optical network units is connected with an optical line terminal, and the optical network units and the optical line terminal switch between a plurality of wavelengths, and perform communication, the optical communication abnormality-recovery method comprising, in order:

an abnormality detection process of detecting, by the optical network unit, an abnormality in communication between the optical network unit and the optical line terminal when using a main communication wavelength;

a wavelength switching process of changing the wavelength with which the optical network unit performs the communication with the optical line terminal from the main communication wavelength to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of changing the wavelength when the abnormality is detected by the abnormality detection process; and

a dynamic wavelength and bandwidth allocation process of allocating the backup communication wavelength to the optical network unit.

7. An optical communication abnormality-recovery method of changing a wavelength for performing communication between an optical network unit and an optical line terminal in an optical communication system in which a plurality of optical network units is connected with an optical line terminal, and the optical network units and the optical line terminal switch between a plurality of wavelengths, and perform communication, the optical communication abnormality-recovery method comprising, in order:

an abnormality detection process of detecting, by the optical network unit, an abnormality in communication between the optical network unit and the optical line terminal when using a main communication wavelength;

a wavelength switching process of changing the wavelength with which the optical network unit performs the communication with the optical line terminal from the main communication wavelength to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of changing the wavelength when the abnormality is detected by the abnormality detection process;

an initial connection operation process of performing, by the optical line terminal and the optical network unit, an initial connection operation including at least measurement of a round-trip delay time of the communication between the optical line terminal and the optical network unit using the backup communication wavelength, giving, by the optical line terminal to the optical network unit, an instruction indicating the main communication wavelength and the backup communication wavelength with which the optical network unit performs the communication with the optical line terminal after the initial connection operation, and changing, by the optical network unit, the wavelength with which the optical network unit performs the communication with the optical line terminal from the backup communication wavelength to the main communication wavelength after the wavelength switching process.

8. An optical communication abnormality-recovery method of changing a wavelength for performing communication between an optical network unit and an optical line terminal in an optical communication system in which a plurality of optical network units is connected with an optical line terminal, and the optical network units and the optical line terminal switch between a plurality of wavelengths, and perform communication, the optical communication abnormality-recovery method comprising, in order:

an abnormality detection process of detecting, by the optical network unit, an abnormality in communication between the optical network unit and the optical line terminal when using a main communication wavelength;

a wavelength switching process of changing the wavelength with which the optical network unit performs the communication with the optical line terminal from the main communication wavelength to a backup communication wavelength, wherein the backup communication wavelength is held in the optical network unit in advance of changing the wavelength when the abnormality is detected by the abnormality detection process;

a standby period of time measurement process of measuring, by the optical network unit, a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength,

wherein when the period of time measured by the standby period of time measurement process exceeds a recovery standby period of time that is instructed in advance, the communication between the optical network unit and the optical line terminal using the backup communication wavelength is determined to be in an abnormal state.

9. The optical communication system according to claim 2 ,

wherein the optical line terminal performs an initial connection operation including at least measurement of a round-trip delay time of the communication between the optical line terminal and the optical network unit using the backup communication wavelength to which the optical network unit has switched, and gives an instruction to the optical network unit indicating the main communication wavelength and the backup communication wavelength with which the optical network unit performs the communication with the optical line terminal to the optical network unit after the initial connection operation, and

wherein the optical network unit changes the wavelength with which the optical network unit performs the communication with the optical line terminal from the backup communication wavelength to the main communication wavelength.

10. The optical communication system according to claim 2 ,

wherein the optical network unit further includes a recovery standby protection timer that measures a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength, and

wherein when the period of time measured by the recovery standby protection timer exceeds a recovery standby period of time that is instructed in advance, the optical network unit determines that the communication between the optical network unit and the optical line terminal using the backup communication wavelength is in an abnormal state.

11. The optical communication system according to claim 3 ,

wherein the optical network unit further includes a recovery standby protection timer that measures a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength, and

wherein when the period of time measured by the recovery standby protection timer exceeds a recovery standby period of time that is instructed in advance, the optical network unit determines that the communication between the optical network unit and the optical line terminal using the backup communication wavelength is in an abnormal state.

12. The optical communication system according to claim 9 ,

wherein the optical network unit further includes a recovery standby protection timer that measures a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength, and

wherein when the period of time measured by the recovery standby protection timer exceeds a recovery standby period of time that is instructed in advance, the optical network unit determines that the communication between the optical network unit and the optical line terminal using the backup communication wavelength is in an abnormal state.

13. The optical communication abnormality-recovery method according to claim 6 , further comprising:

an initial connection operation process of performing, by the optical line terminal and the optical network unit, an initial connection operation including at least measurement of a round-trip delay time of the communication between the optical line terminal and the optical network unit using the backup communication wavelength, giving, by the optical line terminal to the optical network unit, an instruction indicating the main communication wavelength and the backup communication wavelength with which the optical network unit performs the communication with the optical line terminal, after the initial connection operation, and changing, by the optical network unit, the wavelength with which the optical network unit performs the communication with the optical line terminal, from the backup communication wavelength to the main communication wavelength after the wavelength switching process.

14. The optical communication abnormality-recovery method according to claim 6 , further comprising:

a standby period of time measurement process of measuring, by the optical network unit, a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength,

wherein when the period of time measured by the standby period of time measurement process exceeds a recovery standby period of time that is instructed in advance, the communication between the optical network unit and the optical line terminal using the backup communication wavelength is determined to be in an abnormal state.

15. The optical communication abnormality-recovery method according to claim 7 , further comprising:

a standby period of time measurement process of measuring, by the optical network unit, a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength,

wherein when the period of time measured by the standby period of time measurement process exceeds a recovery standby period of time that is instructed in advance, the communication between the optical network unit and the optical line terminal using the backup communication wavelength is determined to be in an abnormal state.

16. The optical communication abnormality-recovery method according to claim 13 , further comprising:

a standby period of time measurement process of measuring, by the optical network unit, a period of time after an abnormality occurs in the communication between the optical line terminal and the optical network unit or a period of time after the wavelength is changed to the backup communication wavelength,

wherein when the period of time measured by the standby period of time measurement process exceeds a recovery standby period of time that is instructed in advance, the communication between the optical network unit and the optical line terminal using the backup communication wavelength is determined to be in an abnormal state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2016
From: YOSHIDA, TOMOAKI; KANEKO, SHIN; KIMURA, SHUNJI
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 038289/0262 →
Priority Claims (1)
JP 2013-221859 · Oct 25, 2013 · national
Continuity (1)
Related Publication 20160269105A1 · Sep 15, 2016