IP Library Patent Application 18840132
Patent Application
App. No. 18/840,132

OPTICAL TRANSMISSION SYSTEM AND FAILURE POINT IDENTIFYING METHOD

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Quick Facts
Patent No.
US None
App. No.
18/840,132
Abstract

An optical transmission system includes nodes connected to each other by optical transmission lines, and includes: monitoring parts each configured to collect signal information in time series at at least one signal collection point of a transmission end of a respective node, a reception end of the respective node, and a location at or between devices in the respective node; and an operation system configured to control the monitoring parts. The operation system extracts a component estimated to include a failure location by causing the monitoring parts to observe signal information on a reception end of a component, and, in the component, identifies the failure location by causing the monitoring parts to observe a temporal change of the signal information at the signal collection point to detect an abnormality.

Claims (23)

1 . An optical transmission system including a plurality of nodes connected to each other by optical transmission lines, the optical transmission system comprising:

a plurality of monitoring parts respectively provided in the plurality of nodes and each configured to collect signal information in time series at at least one signal collection point of a transmission end of the respective node, a reception end of the respective node, and a location at or between devices in the respective node; and

an operation system configured to control the plurality of monitoring parts,

wherein the operation system is configured to perform:

a failure-suspected component extraction process of, for a component including one or more of the plurality of nodes and zero or more optical transmission lines between the one or more of the plurality of nodes, causing the one or more monitoring parts respectively provided in the one or more of the plurality of nodes to observe signal information on a reception end of the component to extract the component as a failure-suspected component estimated to include a failure location, and

a failure location identification process of identifying the failure location in the extracted failure-suspected component by causing each of the one or more monitoring parts in the extracted failure-suspected component to observe a temporal change of the signal information at the at least one signal collection point in the respective node to detect an abnormality of the temporal change of the signal information.

2 . The optical transmission system according to claim 1 ,

wherein the plurality of monitoring parts are each further configured to perform optical spectrum analysis to acquire a waveform and an optical signal-to-noise ratio of a collected signal, and

wherein the operation system is further configured to, in the failure location identification process, identify the failure location by causing each of the one or more monitoring parts in the extracted failure-suspected component to detect the abnormality of the temporal change in at least one of: a signal output, a signal input, the waveform, and the optical signal-to-noise ratio.

3 . The optical transmission system according to claim 1 ,

wherein the failure-suspected component estimated to include the failure location is a first failure-suspected component, and

wherein the operation system is further configured to, when the failure location is not identified from the first failure-suspected component by the failure location identification process, perform the failure location identification process on a second failure-suspected component other than the first failure-suspected component, the second failure-suspected component including at least one of: one or more optical transmission lines having a first wavelength of a signal based on which the first failure-suspected component has been estimated to include the failure location in the failure-suspected component extraction process; and an optical transmission line having a second wavelength adjacent to the first wavelength.

4 . The optical transmission system according to claim 1 ,

wherein each of the one or more monitoring parts in the extracted failure-suspected component observes, in the failure location identification process, the temporal change of the signal information in a period of a predetermined length before and after a time point at which a signal based on which the failure-suspected component has been estimated to include the failure location has been collected.

5 . The optical transmission system according to claim 1 ,

wherein each of the one or more monitoring parts in the extracted failure-suspected component determines, in the failure location identification process, the abnormality of the temporal change of the signal information using, as a reference, a range of a temporal fluctuation in a period not including a time point at which a signal based on which the failure-suspected component has been estimated to include the failure location has been collected.

6 . A failure location identification method of identifying a failure location of an optical transmission system including a plurality of nodes connected to each other by optical transmission lines, the failure location identification method comprising:

a collection step of collecting, for each of the plurality of nodes, signal information in time series at at least one signal collection point of a transmission end of the node, a reception end of the node, and a location at or between devices in the node;

a failure-suspected component extraction step of, for a component including one or more of the plurality of nodes and zero or more optical transmission lines between the one or more of the plurality of nodes, observing signal information on a reception end of the component to extract the component as a failure-suspected component estimated to include a failure location, and

a failure location identification step of identifying the failure location in the extracted failure-suspected component by observing a temporal change of the signal information at the at least one signal collection point in each of the one or more of the plurality of nodes to detect an abnormality of the temporal change of the signal information.

7 . The failure location identification method according to claim 6 ,

wherein the failure-suspected component estimated to include the failure location is a first failure-suspected component, and

wherein when the failure location is not identified from the first failure-suspected component by the failure location identification step, the failure location identification step is performed on a second failure-suspected component other than the first failure-suspected component, the second failure-suspected component including at least one of: one or more optical transmission lines having a first wavelength of a signal based on which the first failure-suspected component has been estimated to include the failure location in the failure-suspected component extraction step; and an optical transmission line having a second wavelength adjacent to the first wavelength.

Assignments (2)
CHANGE OF NAME Recorded Aug 14, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072462/0905 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2024
From: DATE, HIROKI; KUBO, TAKASHI; WATANABE, KOHEI; AOYAGI, KENICHI; SHIMAZAKI, DAISAKU; MAEDA, HIDEKI
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 068485/0420 →