IP Library Patent Application 19338683
Patent Application
App. No. 19/338,683

OPTICAL RECEIVER AND OPTICAL RECEVING METHOD

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Patent No.
US None
App. No.
19/338,683
Abstract

An optical receiver includes a dispersion compensation circuit that compensates for chromatic dispersion of an optical transmission line, for an electric signal corresponding to an optical signal received through the optical transmission line, an adaptive equalization circuit that adaptively compensates for residual chromatic dispersion remaining due to insufficient compensation in the dispersion compensation circuit, for a compensated electric signal by the dispersion compensation circuit, and a monitor circuit that monitors a dispersion slope of the residual chromatic dispersion based on a tap coefficient of the adaptive equalizer circuit. The dispersion compensation circuit compensates for the chromatic dispersion based on a monitor value of the dispersion slope.

Claims (32)

1 . An optical receiver comprising:

a dispersion compensation circuit that compensates for chromatic dispersion of an optical transmission line, for an electric signal corresponding to an optical signal received through the optical transmission line;

an adaptive equalization circuit that adaptively compensates for residual chromatic dispersion remaining due to insufficient compensation in the dispersion compensation circuit, for a compensated electric signal by the dispersion compensation circuit; and

a monitor circuit that monitors a dispersion slope of the residual chromatic dispersion based on a tap coefficient of the adaptive equalizer circuit, wherein

the dispersion compensation circuit compensates for the chromatic dispersion based on a monitor value of the dispersion slope.

2 . The optical receiver according to claim 1 wherein

the monitor circuit monitors the residual chromatic dispersion based on the tap coefficient, and

the dispersion compensation circuit compensates for the chromatic dispersion based on a monitor value of the dispersion slope and a monitor value of the residual chromatic dispersion.

3 . The optical receiver according to claim 2 wherein

the monitor circuit calculates the residual chromatic dispersion and the dispersion slope by fitting a relationship between a monitor value of the residual chromatic dispersion and a difference from a center wavelength of the optical signal to a linear function.

4 . The optical receiver according to claim 3 wherein

the monitor circuit determines a range in which the relationship matches the linear function based on a signal band of the optical transmission line.

5 . The optical receiver according to claim 2 , wherein

the monitor circuit calculates a monitor value of the dispersion slope after the monitor value of the residual chromatic dispersion is compensated to be equal to or less than a threshold value.

6 . The optical receiver according to claim 2 , wherein

the monitor circuit calculates a monitor value of the dispersion slope based on a monitor value of the residual chromatic dispersion for each subcarrier when subcarrier modulation is applied to the transmission of the optical signal.

7 . An optical receiving method comprising:

compensating for chromatic dispersion of an optical transmission line, for an electric signal corresponding to an optical signal received through the optical transmission line;

adaptively compensating for residual chromatic dispersion remaining due to insufficient compensation in the dispersion compensation circuit, for a compensated electric signal;

monitoring a dispersion slope of the residual chromatic dispersion based on a tap coefficient of an adaptive equalizer circuit that adaptively compensates for the residual chromatic dispersion; and

compensating for the chromatic dispersion based on a monitor value of the dispersion slope.

8 . The optical receiving method according to claim 7 , wherein

the monitoring includes monitoring the residual chromatic dispersion based on the tap coefficient, and

the compensating includes compensating for the chromatic dispersion based on a monitor value of the dispersion slope and a monitor value of the residual chromatic dispersion.

9 . The optical receiving method according to claim 8 , wherein

the monitoring includes calculating the residual chromatic dispersion and the dispersion slope by fitting a relationship between a monitor value of the residual chromatic dispersion and a difference from a center wavelength of the optical signal to a linear function.

10 . The optical receiving method according to claim 9 , wherein

the monitoring includes determining a range in which the relationship matches the linear function based on a signal band of the optical transmission line.

11 . The optical receiving method according to claim 8 , wherein

the monitoring includes calculating a monitor value of the dispersion slope after the monitor value of the residual chromatic dispersion is compensated to be equal to or less than a threshold value.

12 . The optical receiving method according to claim 8 , wherein

the monitoring includes calculating a monitor value of the dispersion slope based on a monitor value of the residual chromatic dispersion for each subcarrier when subcarrier modulation is applied to the transmission of the optical signal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2026
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 074099/0229 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2025
From: NAKASHIMA, HISAO; IRIE, HIROYUKI; SUGITANI, KIICHI; KANAYAMA, YASUTAKA; KISHIDA, TATSURO; KOSUGE, YUTAKA
To: FUJITSU LIMITED
Reel/Frame 072895/0034 →