Communication device and wavelength adjustment method

US2016294479A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016294479-A1
Application numberUS-201615080939-A
CountryUS
Kind codeA1
Filing dateMar 25, 2016
Priority dateApr 1, 2015
Publication dateOct 6, 2016
Grant date

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  1. Title

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Abstract

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A communication device that receives received signal light from another communication device, the communication device includes: a receiver configured to receive signal light output from an optical filter that outputs signal light of a given wavelength included the received signal light; and a transmitter configured to transmit, to the another communication device, a control signal for controlling a wavelength of laser light for use in generation of the signal light of the given wavelength, wherein the receiver is configured to detect power of the signal light output from the optical filter; and the transmitter is configured to set, when the signal light is not successfully received in the receiver, the control signal so as to cause the another communication device to control the wavelength of the laser light, based on the power.

First claim

Opening claim text (preview).

What is claimed is: 1 . A communication device that receives received signal light from another communication device, the communication device comprising: a receiver configured to receive signal light output from an optical filter that outputs signal light of a given wavelength included the received signal light; and a transmitter configured to transmit, to the another communication device, a control signal for controlling a wavelength of laser light for use in generation of the signal light of the given wavelength, wherein the receiver is configured to detect power of the signal light output from the optical filter; and the transmitter is configured to set, when the signal light is not successfully received in the receiver, the control signal so as to cause the another communication device to control the wavelength of the laser light, based on the power. 2 . The communication device according to claim 1 , wherein the optical filter outputs signal light of a plurality of wavelengths included in the received signal light, and the receiver includes a plurality of sub-receivers corresponding to the plurality of wavelengths, respectively. 3 . The communication device according to claim 2 , wherein each of the sub-receivers includes: a converter configured to perform photoelectric conversion of the signal light output from the optical filter; a linear amplifier configured to amplify a photoelectric-converted signal; a reception processor configured to perform reception processing on an amplified signal; a logarithmic amplifier configured to amplify the photoelectric-converted signal; and a power detector configured to detect power of the signal light output from the optical filter based on the amplified signal amplified by the logarithmic amplifier. 4 . The communication device according to claim 2 , wherein the transmitter, when power of signal light of a wavelength other than the given wavelength is largest among the plurality of wavelengths, is configured to set the control signal based on a difference between the given wavelength and the wavelength of the signal light having the largest power. 5 . The communication device according to claim 2 , wherein the transmitter, when power of the signal light of the given wavelength is largest among the plurality of wavelengths is configured to set the control signal so as to increase the power of the signal power of the given wavelength. 6 . The communication device according to claim 5 , wherein the transmitter is configured to repeatedly transmits the control signal to the another communication device. 7 . The communication device according to claim 3 , wherein the power detector, when the power of the signal power from the optical filter is less than or equal to a first threshold, is configured to determine that the laser light is not output by the another communication device. 8 . The communication device according to claim 3 , wherein the reception processor, when power of signal light to be subjected to the reception processing derives is less than or equal to a second threshold, is configured to determine that the signal light is not successfully received. 9 . A wavelength adjustment method comprising: receiving signal light of a given wavelength, through an optical filter, included in received signal light output by another communication device,; detecting power of the signal light output from the optical filter; setting, when the signal light is not successfully received, a control signal for controlling a wavelength of laser light for use in generation of the signal light of the given wavelength so as to cause the another communication device to control the wavelength of the laser light, based on the power; and transmitting the control signal to the another communication device. 10 . The wavelength adjustment method according to claim 9 , further comprising: performing photoelectric conversion on signal light output from the optical filter; amplifying a signal obtained by the photoelectric conversion by a logarithmic amplifier; and detecting, based on the signal amplified by the logarithmic amplifier, power of the signal power output from the optical filter. 11 . The wavelength adjustment method according to claim 9 , further comprising: performing, photoelectric conversion, on signal light output from the optical filter; amplifying a signal obtained by the photoelectric conversion by a linear amplifier; and preforming reception processing on the signal amplified by the linear amplifier. 12 . The wavelength adjustment method according to claim 9 , wherein signal light of a plurality of wavelengths is received through the optical filter from the another communication device, and the control signal, when power of signal light of a wavelength other than the given wavelength is largest among the plurality of wavelengths, is set based on a difference between the given wavelength and the wavelength of the signal light having the largest power. 13 . The wavelength adjustment method according to claim 9 , wherein signal light of a plurality of wavelengths is received through the optical filter from the another communication device, and the control signal, when power of the signal light of the given wavelength is largest among the plurality of wavelengths, the control signal is set so as to increase the power of the signal light of the given wavelength. 14 . The wavelength adjustment method according to claim 13 , wherein the control signal is repeatedly transmitted to the another communication device. 15 . The wavelength adjustment method according to claim 9 , further comprising: determining, when power of signal light output from the optical filter is less than or equal to a first threshold, that the laser light is not output by the another communication device. 16 . The wavelength adjustment method according to claim 11 , further comprising: determining, when power of signal light to be subjected to the reception processing is less than or equal to a second threshold, that the signal light is not successfully received.

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What does patent US2016294479A1 cover?
A communication device that receives received signal light from another communication device, the communication device includes: a receiver configured to receive signal light output from an optical filter that outputs signal light of a given wavelength included the received signal light; and a transmitter configured to transmit, to the another communication device, a control signal for controll…
Who is the assignee on this patent?
Fujitsu Ltd
What technology area does this patent fall under?
Primary CPC classification H04B10/572. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Oct 06 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).