OPTICAL TRANSMISSION LINE MONITORING APPARATUS AND OPTICAL TRANSMISSION LINE MONITORING METHOD
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.
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.