IP Library Patent Application 18887071
Patent Application
App. No. 18/887,071

OPTICAL TRANSMISSION LINE MONITORING DEVICE AND OPTICAL TRANSMISSION LINE MONITORING METHOD

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Quick Facts
Patent No.
US None
App. No.
18/887,071
Abstract

Monitoring device is used in optical transmission system that transmits frames between first and second nodes via optical transmission line. First SOP data representing SOP detected in the first node and second SOP data representing SOP detected in the second node are stored in storage. Processor detects first time at which polarization fluctuation component caused by polarization fluctuation arrives at the monitoring device and generates reference data by extracting the first SOP data near the first time. The processor detects second time at which polarization fluctuation component caused by the polarization fluctuation arrives at the second node by searching for a section having SOP similar to the SOP represented by the reference data in the second SOP data. The processor determines a position where the polarization fluctuation occurs based on the first time and the second time.

Claims (48)

1 . An optical transmission line monitoring device provided in a first terminal node of one set of terminal nodes in an optical transmission system that transmits a frame bidirectionally between the one set of terminal nodes via an optical transmission line, the optical transmission line monitoring device comprising:

a polarization state monitor that monitors a state of polarization of the optical transmission line;

a first storage unit that stores first polarization state data representing a state of polarization detected by the polarization state monitor;

a second storage unit that stores second polarization state data representing a state of polarization of the optical transmission line, the second polarization state data being detected by a correspondent node device provided in a second terminal node of the one set of terminal nodes; and

a processor configured to

detect a first time representing a time at which a polarization fluctuation component caused by polarization fluctuation generated in the optical transmission line arrives at the optical transmission line monitoring device by comparing a polarization fluctuation value representing a fluctuation speed of polarization detected by the polarization state monitor with a specified threshold level,

generate reference data by extracting the first polarization state data near the first time from the first storage unit,

detect a second time representing a time at which a polarization fluctuation component caused by the polarization fluctuation arrives at the correspondent node device by searching for a section having a polarization state similar to the polarization state represented by the reference data in the second polarization state data, and

determine a polarization fluctuation position representing a position where the polarization fluctuation occurs based on the first time and the second time.

2 . The optical transmission line monitoring device according to claim 1 , wherein

the first time represents a time at which the polarization fluctuation value detected by the polarization state monitor exceeds the specified threshold level.

3 . The optical transmission line monitoring device according to claim 1 , wherein

the processor searches the second polarization state data for a section having a polarization state similar to the polarization state represented by the reference data in a time region corresponding to a round-trip time (RTT) between the optical transmission line monitoring device and the correspondent node device from the first time.

4 . The optical transmission line monitoring device according to claim 1 , wherein

the first polarization state data includes a plurality of polarization fluctuation values detected at a specified time interval by the polarization state monitor,

the second polarization state data includes a plurality of polarization fluctuation values detected at the specified time interval by the correspondent node device,

the reference data is configured of 2N polarization fluctuation values including N polarization fluctuation values immediately before the first time and N polarization fluctuation values immediately after the first time in the first polarization state data, and

the processor calculates a plurality of difference values by calculating a sum of differences between 2N polarization fluctuation values included in the reference data and corresponding 2N polarization fluctuation values in the second polarization state data while shifting a position of the reference data with respect to the second polarization state data, and

the processor determines 2N polarization fluctuation values in the second polarization state data corresponding to a minimum difference value among the plurality of difference values to detect the second time representing a time at which a polarization fluctuation component caused by the polarization fluctuation arrives at the correspondent node device.

5 . The optical transmission line monitoring device according to claim 1 , wherein

the processor calculates a propagation difference time by dividing a difference between the first time and the second time by two, and

the processor determines that the polarization fluctuation occurs at a position where light has propagated from the correspondent node device through the optical transmission line by the propagation difference time.

6 . An optical transmission line monitoring system that monitors an optical transmission line in an optical transmission system that bidirectionally transmits a frame in a specified frame cycle between a first terminal node and a second terminal node via the optical transmission line, the optical transmission line monitoring system comprising:

an optical transmission line monitoring device provided at the first terminal node; and

a correspondent node device provided at the second terminal node, wherein

the optical transmission line monitoring device includes:

a polarization state monitor that monitors state of polarization of the optical transmission line;

a first storage unit that stores first polarization state data representing a state of polarization detected by the polarization state monitor;

a second storage unit that stores second polarization state data representing a state of polarization of the optical transmission line, the second polarization state data being detected by the correspondent node device;

a processor configured to

detect a first time representing a time at which a polarization fluctuation component caused by polarization fluctuation generated in the optical transmission line arrives at the optical transmission line monitoring device by comparing a polarization fluctuation value representing a fluctuation speed of polarization detected by the polarization state monitor with a specified threshold level,

generate reference data by extracting the first polarization state data near the first time from the first storage unit,

detect a second time representing a time at which a polarization fluctuation component caused by the polarization fluctuation arrives at the correspondent node device by searching for a section having a polarization state similar to the polarization state represented by the reference data in the second polarization state data, and

determine a polarization fluctuation position representing a position where the polarization fluctuation occurs based on the first time and the second time, and

the correspondent node device includes:

a second polarization state monitor that monitors a state of polarization of the optical transmission line;

a frame generation unit that generates a transmission frame including a polarization fluctuation value detected by the second polarization state monitor in the specified frame cycle; and

a transmission unit that transmits the transmission frame to the optical transmission line monitoring device in the specified frame cycle.

7 . The optical transmission line monitoring system according to claim 6 , wherein

the frame generation unit inserts a plurality of polarization fluctuation values detected by the second polarization state monitor into each transmission frame.

8 . An optical transmission line monitoring method for monitoring an optical transmission line in an optical transmission system that bidirectionally transmits a frame between one set of terminal nodes via the optical transmission line, the method comprising:

monitoring a state of polarization of the optical transmission line in a first terminal node of the one set of terminal nodes;

storing first polarization state data representing a state of polarization detected at the first terminal node;

storing second polarization state data representing a state of polarization of the optical transmission line, the second polarization state data being detected at a second terminal node of the one set of terminal nodes;

detecting a first time representing a time at which a polarization fluctuation component caused by a polarization fluctuation generated in the optical transmission line arrives at the first terminal node by comparing a polarization fluctuation value representing a fluctuation speed of the polarization detected in the first terminal node with a specified threshold level;

generating reference data by extracting the first polarization state data near the first time;

detecting a second time representing a time at which a polarization fluctuation component caused by the polarization fluctuation arrives at the second terminal node by searching for a section having a polarization state similar to the polarization state represented by the reference data in the second polarization state data; and

determining a polarization fluctuation position representing a position where the polarization fluctuation occurs based on the first time and the second time.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2026
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 073988/0164 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2024
From: SUGIYAMA, JUNICHI; KANAI, ATSUSHI
To: FUJITSU LIMITED
Reel/Frame 068607/0168 →