IP Library Patent Application 19252838
Patent Application
App. No. 19/252,838

OPTICAL TRANSMISSION LINE MONITORING APPARATUS AND OPTICAL TRANSMISSION LINE MONITORING METHOD

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Patent No.
US None
App. No.
19/252,838
Abstract

An optical transmission line monitoring apparatus includes a first compensator that compensates for a part of chromatic dispersion and a part of high-order chromatic dispersion of an optical transmission line with respect to an electric field signal, a nonlinear compensator that compensates for deterioration due to a nonlinear optical effect of the optical transmission line with respect to the electric field signal after compensation by the first compensator, a second compensator that compensates for the residual parts of the chromatic dispersion and the high-order chromatic dispersion with respect to the electric field signal after compensation by the nonlinear compensator, a generator that generates a reference signal based on the electric field signal, and an estimator that estimates a distribution of an optical power based on a correlation between the electric field signal after compensation by the second compensator and the reference signal.

Claims (25)

1 . An optical transmission line monitoring apparatus comprising:

a first compensator that compensates for a part of chromatic dispersion and a part of high-order chromatic dispersion of an optical transmission line with respect to an electric field signal indicating an optical electric field component of an optical signal received by a digital coherent reception from the optical transmission line;

a nonlinear compensator that compensates for deterioration due to a nonlinear optical effect of the optical transmission line with respect to the electric field signal after compensation by the first compensator;

a second compensator that compensates for a residual part of the chromatic dispersion and a residual part of the high-order chromatic dispersion with respect to the electric field signal after compensation by the nonlinear compensator;

a generator that generates a reference signal indicating the optical electric field component of the optical signal at a transmission end of the optical transmission line based on the electric field signal; and

an estimator that estimates a distribution of an optical power based on a correlation between the electric field signal after compensation by the second compensator and the reference signal.

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

the high-order chromatic dispersion is a value obtained by differentiating the chromatic dispersion one or more times with respect to a wavelength.

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

the high-order chromatic dispersion is a dispersion slope.

4 . The optical transmission line monitoring apparatus according to claim 1 , further comprising

a calculator that calculates a first compensation amount to be set in the first compensator and a second compensation amount to be set in the second compensator based on a third order dispersion coefficient, a given transfer function determined in advance, and a distance from a position of the transmission end to a position where the optical power is estimated, when the high-order chromatic dispersion is a dispersion slope;

wherein the first compensator compensates for the part of the high-order chromatic dispersion based on the first compensation amount, and

the second compensator compensates for the residual part of the high-order chromatic dispersion based on the second compensation amount.

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

the first compensator compensates for the part of the high-order chromatic dispersion after compensating for the part of the chromatic dispersion, and

the second compensator compensates for the residual part of the high-order chromatic dispersion after compensating for the residual part of the chromatic dispersion.

6 . An optical transmission line monitoring method comprising:

compensating for a part of chromatic dispersion and a part of high-order chromatic dispersion of an optical transmission line with respect to an electric field signal indicating an optical electric field component of an optical signal received by a digital coherent reception from the optical transmission line;

compensating for deterioration due to a nonlinear optical effect of the optical transmission line with respect to the electric field signal after compensating the part of chromatic dispersion and the part of high-order chromatic dispersion;

compensating for a residual part of the chromatic dispersion and a residual part of the high-order chromatic dispersion with respect to the electric field signal after compensating for the deterioration;

generating a reference signal indicating the optical electric field component of the optical signal at a transmission end of the optical transmission line based on the electric field signal; and

estimating a distribution of an optical power based on the reference signal and a correlation between the electric field signal after compensating the residual part of the chromatic dispersion and the residual part of the high-order chromatic dispersion.

7 . The optical transmission line monitoring method according to claim 6 , further comprising

calculating a first compensation amount for compensating for the part of the high-order chromatic dispersion and a second compensation amount for compensating for the residual part of the high-order chromatic dispersion based on a third order dispersion coefficient, a given transfer function determined in advance, and a distance from a position of the transmission end to a position where the optical power is estimated, when the high-order chromatic dispersion is a dispersion slope.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME FROM 1INFINITY INC. TO 1FINITY INC. PREVIOUSLY RECORDED ON REEL 73090 FRAME 584. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Dec 5, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 073886/0617 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2025
From: FUJITSU LIMITED
To: 1INFINITY INC.
Reel/Frame 073090/0584 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2025
From: ODA, SHOICHIRO; SONE, KYOSUKE; NOMURA, YOSHITAKA; TAJIMA, KAZUYUKI
To: FUJITSU LIMITED
Reel/Frame 071974/0869 →