Optical transmission device and optical transmission method

US2017170907A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2017170907-A1
Application numberUS-201515118349-A
CountryUS
Kind codeA1
Filing dateFeb 16, 2015
Priority dateFeb 25, 2014
Publication dateJun 15, 2017
Grant date

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Abstract

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This invention provides an optical transmitter that internally compensates for PDL with a high degree of precision and can output high-quality transmission signals. The optical transmitter is provided with the following: a light-outputting means for generating an optical signal; a data-outputting means for outputting a data sequence generated on the basis of information to be transmitted; a driving means for applying, to an optical modulator, a bias voltage with a pilot signal superimposed thereon; the optical modulator, which, upon the application of the bias voltage, modulates the abovementioned optical signal on the basis of the aforementioned data sequence and outputs the modulated signal; and a controlling means for controlling the bias voltage in accordance with the strength of the pilot signal extracted from the modulated signal.

First claim

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1 . An optical transmission device comprising: an optical output unit that generates and outputs an optical signal; a data output unit that generates and outputs first data and second data based on transmission information; a driving unit that generates two voltages and generates, based on received bias control information, a first pilot signal and a second pilot signal of which frequencies are different from each other, and superimposing the first pilot signal and the second pilot signal to the two voltages to output the voltages as a first bias voltage and a second bias voltage; an optical modulation device including a split unit that splitting the output optical signal into two optical signals, a first modulation unit driven by the first bias voltage that modulates one of the split optical signals based on the output first data, and outputs a first modulation signal, a second modulation unit driven by the second bias voltage that modulates the other of the split optical signals based on the output second data, and outputs a second modulation signal, and a combining unit that combines the first modulation signal and second modulation signal and outputs a modulation signal; and a control unit that extracts the first pilot signal and the second pilot signal from the output modulation signal, and generates and outputs the bias control information based on a strength ratio of the extracted first pilot signal and the extracted second pilot signal. 2 . The optical transmission device according to claim 1 , wherein the first pilot signal and the second pilot signal are signals in a low frequency region. 3 . The optical transmission device according to claim 1 , wherein the data output unit adjusts and outputs amplitudes of the first data and the second data in such a way as to attain a predetermined magnitude based on the received amplitude information, and the control unit generates and outputs the amplitude information based on a strength ratio of the extracted first pilot signal and the extracted second pilot signal. 4 . The optical transmission device according to claim 1 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 5 . An optical transmission method using an optical modulation device including a split unit that splits a received optical signal into two optical signals, a first modulation unit driven by the first bias voltage that modulates one of the split optical signals based on first data, and outputs a first modulation signal, a second modulation unit driven by the second bias voltage that modulates the other of the split optical signals based on second data, and outputs a second modulation signal, and a combining unit that combines the first modulation signal and second modulation signal and outputs a modulation signal, the optical transmission method comprising: generating an optical signal and outputting the optical signal to the optical modulation device; extracting a first pilot signal and a second pilot signal from the output modulation signal, and generating and outputting bias control information based on a strength ratio of the first pilot signal and the second pilot signal; generating the first data and the second data based on transmission information and outputting the first data and the second data to the optical modulation device; and generating two voltages based on the output bias control information and superimposing a first pilot signal and a second pilot signal of which frequencies are different from each other to the two generated voltages to output the voltages to the optical modulation device as a first bias voltage and a second bias voltage. 6 . The optical transmission method according to claim 5 , wherein the first pilot signal and the second pilot signal are signals in a low frequency region. 7 . The optical transmission method according to claim 5 , further comprising generating and outputting the amplitude information based on a strength ratio of the first pilot signal and the second pilot signal, and adjusting amplitudes of the generated first data and the generated second data in such a way as to attain a predetermined magnitude based on the output amplitude information, and outputting the first data and the second data to the optical modulation device. 8 . The optical transmission method according to claim 5 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 9 . The optical transmission device according to claim 2 , wherein the data output unit adjusts and outputs amplitudes of the first data and the second data in such a way as to attain a predetermined magnitude based on the received amplitude information, and the control unit generates and outputs the amplitude information based on a strength ratio of the extracted first pilot signal and the extracted second pilot signal. 10 . The optical transmission device according to claim 2 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 11 . The optical transmission device according to claim 3 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 12 . The optical transmission device according to claim 9 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 13 . The optical transmission method according to claim 6 , further comprising generating and outputting the amplitude information based on a strength ratio of the first pilot signal and the second pilot signal, and adjusting amplitudes of the generated first data and the generated second data in such a way as to attain a predetermined magnitude based on the output amplitude information, and outputting the first data and the second data to the optical modulation device. 14 . The optical transmission method according to 6 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 15 . The optical transmission method according to 7 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 16 . The optical transmission method according to 13 , wherein the split unit outputs an X polarization optical signal to the first modulation unit, and outputs a Y polarization optical signal to the second modulation unit. 17 . An optical transmission device comprising: optical output means for generating and outputting an optical signal; data output means for generating and outputting first data and second data based on transmission information; driving means for generating two voltages and generating, based on received bias control information, a first pilot signal and a second pilot signal of which frequencies are different from each other, and superimposing the first pilot signal and the second pilot signal to the two voltages to output the voltages as a first bias voltage and a second bias voltage; an optical modulation device including split means for splitting the output optical signal into two optical signals, first m

Assignees

Inventors

Classifications

  • H04B10/532Primary

    Polarisation modulation · CPC title

  • to control the modulator DC bias · CPC title

  • G02F1/0123Primary

    Circuits for the control or stabilisation of the bias voltage, e.g. automatic bias control [ABC] feedback loops · CPC title

  • using a pilot tone · CPC title

  • Polarisation dependent · CPC title

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What does patent US2017170907A1 cover?
This invention provides an optical transmitter that internally compensates for PDL with a high degree of precision and can output high-quality transmission signals. The optical transmitter is provided with the following: a light-outputting means for generating an optical signal; a data-outputting means for outputting a data sequence generated on the basis of information to be transmitted; a dri…
Who is the assignee on this patent?
Nec Corp
What technology area does this patent fall under?
Primary CPC classification H04B10/532. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jun 15 2017 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).