Optical add/drop multiplexer and method for adding/dropping optical signal

US2016285582A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016285582-A1
Application numberUS-201615016734-A
CountryUS
Kind codeA1
Filing dateFeb 5, 2016
Priority dateMar 26, 2015
Publication dateSep 29, 2016
Grant date

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Abstract

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OADM processes input light containing reference light and multiplexed optical signals. A splitter splits the input light to generate first and second input light. A receiver generates an electric signal representing the second input light. An estimator estimates a difference in optical frequency between the reference light and a specified optical signal based on the electric signal. Alight source generates first and second light. An optical frequency of the second light is shifted by the estimated difference with respect to that of the first light. A demodulator generates a dropped signal representing the specified optical signal. A drive signal generator generates a drive signal in accordance with an inverted signal of the dropped signal. A modulator modulates the second light with the drive signal to generate a modulated optical signal. The first input light, the first light and the modulated optical signal are input to non-linear optical medium.

First claim

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What is claimed is: 1 . An optical add/drop multiplexer that processes wavelength multiplexed light containing reference light and a wavelength-division multiplexed optical signal in which a plurality of optical signals are multiplexed, the optical add/drop multiplexer comprising: an optical splitter that splits the wavelength multiplexed light to generate first wavelength multiplexed light and second wavelength multiplexed light; a receiver that generates an electric signal representing the second wavelength multiplexed light; a frequency estimator that estimates a difference in optical frequency between the reference light and an optical signal specified from among the plurality of optical signals multiplexed in the wavelength-division multiplexed optical signal, based on the electric signal generated by the receiver; a light source that generates first light and second light, an optical frequency of the second light being shifted by the estimated difference with respect to an optical frequency of the first light; a demodulator that generates a dropped signal representing the specified optical signal based on the electric signal; a drive signal generator that generates a drive signal in accordance with an inverted signal of the dropped signal; an optical modulator that modulates the second light in accordance with the drive signal to generate a modulated optical signal; and a non-linear optical medium to which the first wavelength multiplexed light, the first light and the modulated optical signal are input. 2 . The optical add/drop multiplexer according to claim 1 , wherein the drive signal generator generates the drive signal in accordance with a sum of the inverted signal of the dropped signal and an added signal. 3 . The optical add/drop multiplexer according to claim 1 , further comprising: a dispersion compensator that corrects the electric signal so that dispersion of the wavelength multiplexed light is compensated for; and a dispersion adder configured to correct the drive signal so that dispersion compensated for by the dispersion compensator is added to the modulated optical signal. 4 . The optical add/drop multiplexer according to claim 1 , further comprising: a polarization estimator that estimates a polarization state of the wavelength multiplexed light; and a polarization controller that controls the modulated optical signal so that a polarization state of the modulated optical signal is substantially identical to the polarization state estimated by the polarization estimator. 5 . The optical add/drop multiplexer according to claim 1 , further comprising: a monitor circuit that monitors a state of light output from the non-linear optical medium; and a delay element that delays the drive signal, wherein the monitor circuit controls a delay time of the delay element based on a state of light output from the non-linear optical medium. 6 . The optical add/drop multiplexer according to claim 1 , further comprising: a monitor circuit that monitors a state of light output from the non-linear optical medium; and a phase shifter that adjusts a phase of light output from the light source, wherein the monitor circuit controls a phase shift amount of the phase shifter based on a state of light output from the non-linear optical medium. 7 . The optical add/drop multiplexer according to claim 1 , further comprising: a monitor circuit that monitors a state of light output from the non-linear optical medium; and an optical phase shifter that adjusts a phase of the modulated optical signal with respect to a phase of the first light, wherein the monitor circuit controls the phase shift amount of the optical phase shifter based on a state of light output from the non-linear optical medium. 8 . The optical add/drop multiplexer according to claim 1 , further comprising: a monitor circuit that monitors a state of light output from the non-linear optical medium; and an optical attenuator that adjusts power of the first light and the modulated optical signal, wherein the monitor circuit controls an attenuation amount of the optical attenuator based on a state of light output from the non-linear optical medium. 9 . An optical add/drop multiplexer that processes wavelength multiplexed light containing reference light and a wavelength-division multiplexed optical signal in which a plurality of optical signals are multiplexed, the optical add/drop multiplexer comprising: an optical splitter that splits the wavelength multiplexed light to generate first wavelength multiplexed light and second wavelength multiplexed light; a receiver that generates an electric signal representing the second wavelength multiplexed light; a frequency estimator that estimates a difference in optical frequency between the reference light and an optical signal specified from among the plurality of optical signals multiplexed in the wavelength-division multiplexed optical signal, based on the electric signal generated by the receiver; a light source that generates first light, second light, and third light, an optical frequency of the second light being shifted by the estimated difference with respect to an optical frequency of the first light, and an optical frequency of the third light being shifted by a specified amount with respect to the optical frequency of the first light; a demodulator that generates a dropped signal representing the specified optical signal based on the electric signal; a drive signal generator that generates a first drive signal in accordance with an inverted signal of the dropped signal and a second drive signal in accordance with an added signal; an optical modulator that modulates the second light in accordance with the first drive signal to generate a first modulated optical signal and modulates the third light in accordance with the second drive signal generate a second modulated optical signal; and a non-linear optical medium to which the first wavelength multiplexed light, the first light, the first modulated optical signal and the second modulated optical signal are input. 10 . An optical add/drop multiplexer that processes wavelength multiplexed light containing reference light and a wavelength-division multiplexed optical signal in which a plurality of optical signals are multiplexed, the optical add/drop multiplexer comprising: an optical splitter that splits the wavelength multiplexed light to generate first wavelength multiplexed light and second wavelength multiplexed light; a receiver that generates an electric signal representing the second wavelength multiplexed light; a frequency estimator that estimates a difference frequency between an optical frequency of the reference light and an optical frequency of an optical signal specified from among the plurality of optical signals multiplexed in the wavelength-division multiplexed optical signal, based on the electric signal generated by the receiver; a demodulator that generates a dropped signal representing the specified optical signal based on the electric signal; an oscillator that generates an oscillation signal of the estimated difference frequency; a drive signal generator that generates a drive signal in accordance with an inverted signal of the dropped signal and the oscillation signal; and an optical modulator that modulates the first wavelength multiplexed light in accordance with the drive signal to generate an output wavelength-division multiplexed optical signal. 11 . An optical add/drop multiplexer that processes wavelength multiplexed light containing reference light and a wavelength-division multiplexed optical signal in which a plurality of optical si

Assignees

Inventors

Classifications

  • Add-and-drop multiplexing · CPC title

  • using a separate wavelength · CPC title

  • Performance monitoring and measurement of transmission parameters · CPC title

  • with sub-carrier multiplexing [SCM] · CPC title

  • Monitoring or measuring wavelength · CPC title

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What does patent US2016285582A1 cover?
OADM processes input light containing reference light and multiplexed optical signals. A splitter splits the input light to generate first and second input light. A receiver generates an electric signal representing the second input light. An estimator estimates a difference in optical frequency between the reference light and a specified optical signal based on the electric signal. Alight sour…
Who is the assignee on this patent?
Fujitsu Ltd
What technology area does this patent fall under?
Primary CPC classification H04J14/0298. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Sep 29 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).