IP Library Patent Application 18795284
Patent Application
App. No. 18/795,284

TRANSMISSION LINE PARAMETER ESTIMATION APPARATUS AND TRANSMISSION LINE PARAMETER ESTIMATION METHOD

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Patent No.
US None
App. No.
18/795,284
Abstract

A transmission line parameter estimation apparatus includes: a storage unit configured to stores in advance a non-linear phase rotation amount distribution obtained by using time waveform data acquired from a receiver, of a first transmission line, and a non-linear phase rotation amount of a second transmission line different from the first transmission line; and a controller configured to refer to data in the storage unit, and obtains a non-linear constant of each span of the second transmission line based on a distribution of the non-linear phase rotation amount.

Claims (41)

1 . A transmission line parameter estimation apparatus comprising:

a storage unit configured to stores in advance a non-linear phase rotation amount distribution obtained by using time waveform data acquired from a receiver, of a first transmission line, and a non-linear phase rotation amount of a second transmission line different from the first transmission line; and

a controller configured to refer to data in the storage unit and obtain a non-linear constant of each span of the second transmission line based on a distribution of the non-linear phase rotation amount.

2 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the first transmission line has a known transmission line parameter, and

the controller stores the non-linear phase rotation amount distribution calculated by using the time waveform data of the known transmission line parameter in the storage unit, and refers to the data in the storage unit, and obtains an unknown non-linear constant of the second transmission line.

3 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the controller collects signal intensity information of digital coherent light transmitted through the second transmission line and estimates the non-linear constant of each span of the second transmission line based on the collected signal intensity information and the data stored in the storage unit.

4 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the controller includes a reference value calculation unit that calculates the non-linear phase rotation amount distribution based on a known transmission condition with a transmission simulation or a measurement system.

5 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the storage unit stores in advance a first chromatic dispersion coefficient, a first non-linear constant, input power at a first fiber input unit, and a first non-linear phase rotation amount at the first fiber input unit of the known first transmission line, and

the controller includes:

a non-linear phase rotation amount estimation unit that estimates a non-linear phase rotation amount distribution at each point of the second transmission line as a function of an accumulated chromatic dispersion amount from a transmission end, based on signal intensity information of signal light collected by an optical reception unit of digital coherent light transmitted through the second transmission line different from the first transmission line,

a span detection unit that detects a chromatic dispersion amount of each span based on the non-linear phase rotation amount distribution,

a chromatic dispersion coefficient estimation unit that calculates a second chromatic dispersion coefficient of each span, from information on a fiber length of each span and the chromatic dispersion amount of each span,

a detection unit that detects a non-linear phase rotation amount at a second fiber input unit of each span, and

a non-linear constant estimation unit calculates the non-linear constant of each span of the second transmission line based on the first chromatic dispersion coefficient, the first non-linear constant, the input power at the first fiber input unit, the first non-linear phase rotation amount at the first fiber input unit, the second chromatic dispersion coefficient, the non-linear phase rotation amount at the second fiber input unit, and information on fiber input power of each span.

6 . The transmission line parameter estimation apparatus according to claim 5 , wherein

the controller acquires the information on the fiber length of each span from design information of the transmission line.

7 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the storage unit stores in advance a first non-linear constant, input power at a first fiber input unit, a first non-linear phase rotation amount at the first fiber input unit, and a slope of the first non-linear phase rotation amount with respect to a chromatic dispersion amount of the known first transmission line, and

the controller includes:

a non-linear phase rotation amount estimation unit that estimates a non-linear phase rotation amount distribution at each point of the second transmission line as a function of an accumulated chromatic dispersion amount from a transmission end, based on signal intensity information of signal light collected by an optical reception unit of digital coherent light transmitted through the second transmission line different from the first transmission line,

a detection unit that detects a non-linear phase rotation amount at a second fiber input unit of each span,

a calculation unit that calculates a slope of a second non-linear phase rotation amount with respect to a chromatic dispersion amount of each span, and

a non-linear constant estimation unit calculates the non-linear constant of each span of the second transmission line based on the first non-linear constant, the input power at the first fiber input unit, the first non-linear phase rotation amount at the first fiber input unit, the slope of the first non-linear phase rotation amount, the non-linear phase rotation amount at the second fiber input unit, the slope of the second non-linear phase rotation amount, and information on fiber input power of each span.

8 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the controller outputs an estimated non-linear constant as an input parameter of a transmission line model that simulates the second transmission line.

9 . The transmission line parameter estimation apparatus according to claim 1 , wherein

the controller includes a threshold value determination unit that compares an estimated non-linear constant with a threshold value determined in advance based on fiber information for each fiber type of the second transmission line and identifies a fiber type of an estimation target span.

10 . The transmission line parameter estimation apparatus according to claim 1 ,

wherein the controller includes a fiber type determination unit that calculates, in a case where there is a span with a specifiable fiber type among a plurality of spans of the second transmission line, a fiber type and a non-linear constant of the span.

11 . The transmission line parameter estimation apparatus according to claim 1 ,

wherein the controller includes:

a span information vector creation unit creates a span information vector in which an estimated chromatic dispersion coefficient and an estimated non-linear constant of each span are arranged for all spans, and

an evaluation unit identifies a combination of fiber types of each span based on a distance over a vector between a chromatic dispersion coefficient and a non-linear constant of a fiber type narrowed down as a candidate in advance.

12 . A transmission line parameter estimation method comprising:

storing in advance a non-linear phase rotation amount distribution obtained by using time waveform data acquired from a receiver, of a first transmission line, and a non-linear phase rotation amount of a second transmission line different from the first transmission line;

referring to data in the storage unit; and

obtaining a non-linear constant of each span of the second transmission line based on a distribution of the non-linear phase rotation amount.

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 6, 2024
From: SHINZAKI, RYU; ETO, MOTOHIKO; SONE, KYOSUKE; YOSHIDA, SETSUO; TAJIMA, KAZUYUKI; TAKEYAMA, TOMOAKI; ODA, SHOICHIRO
To: FUJITSU LIMITED
Reel/Frame 068190/0649 →