IP Library › Granted Patent US 9,882,642
Granted Patent B2
US 9,882,642 · App. 15/251,165 · Granted Jan 30, 2018

Optical remodulator that remodulates modulated optical signal and optical remodulation method

Inventor: Takeshi Hoshida (Kawasaki, JP)
Assignee: FUJITSU LIMITED
H04B10/2504H04B10/29H04J14/02H04J14/06H04Q11/0005H04B2210/256H04Q2011/0009H04Q2011/0015H04Q2011/0039H04Q2011/0041
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Quick Facts
Patent No.
US 9,882,642
App. No.
15/251,165
Granted
Jan 30, 2018
Kind
B2
Abstract

An optical remodulator includes: a polarization diversity modulator configured to modulate an input optical signal to generate an output optical signal by using a first optical modulator implemented for a first polarization state and a second optical modulator implemented for a second polarization state that is orthogonal to the first polarization state; a photo detector configured to optical-to-electrical convert the input optical signal or the output optical signal or both of the optical signals into an electric signal; and a drive signal generator configured to generate a first drive signal that drives the first optical modulator and a second drive signal that drives the second optical modulator based on the electric signal generated by the photo detector.

Claims (56)

1. An optical remodulator comprising:

a polarization diversity modulator configured to modulate an input optical signal to generate an output optical signal by using a first optical modulator implemented for a first polarization state and a second optical modulator implemented for a second polarization state that is orthogonal to the first polarization state;

a photo detector configured to optical-to-electrical convert the input optical signal or the output optical signal or both of the optical signals into an electric signal; and

a drive signal generator configured to generate a first drive signal that drives the first optical modulator and a second drive signal that drives the second optical modulator based on the electric signal generated by the photo detector, wherein

the input optical signal is guided to the first optical modulator, and

an optical signal output from the first optical modulator is guided to the second optical modulator.

2. An optical remodulator comprising:

a polarization diversity modulator configured to modulate an input optical signal to generate an output optical signal by using a first optical modulator implemented for a first polarization state and a second optical modulator implemented for a second polarization state that is orthogonal to the first polarization state;

a photo detector configured to optical-to-electrical convert the input optical signal or the output optical signal or both of the optical signals into an electric signal; and

a drive signal generator configured to generate a first drive signal that drives the first optical modulator and a second drive signal that drives the second optical modulator based on the electric signal generated by the photo detector, wherein

the first optical modulator and the second optical modulator are phase modulators,

the photo detector optical-to-electrical converts a component of the first polarization state in the input optical signal so as to generate a first electric signal, and optical-to-electrical converts a component of the second polarization state in the input optical signal so as to generate a second electric signal, and

the drive signal generator respectively filters the first electric signal and the second electric signal by using low pass filters, so as to generate the first drive signal and the second drive signal.

3. An optical remodulator comprising:

a polarization diversity modulator configured to modulate an input optical signal to generate an output optical signal by using a first optical modulator implemented for a first polarization state and a second optical modulator implemented for a second polarization state that is orthogonal to the first polarization state;

a photo detector configured to optical-to-electrical convert the input optical signal or the output optical signal or both of the optical signals into an electric signal; and

a drive signal generator configured to generate a first drive signal that drives the first optical modulator and a second drive signal that drives the second optical modulator based on the electric signal generated by the photo detector, wherein

the first optical modulator and the second optical modulator are intensity modulators,

the photo detector optical-to-electrical converts the input optical signal so as to generate the electric signal, and

the drive signal generator recovers, according to the electric signal, a clock signal synchronized with a data signal transmitted by the input optical signal, and provides the clock signal to the first optical modulator and the second optical modulator as the first drive signal and the second drive signal, respectively.

4. An optical remodulator comprising:

a polarization diversity modulator configured to modulate an input optical signal to generate an output optical signal by using a first optical modulator implemented for a first polarization state and a second optical modulator implemented for a second polarization state that is orthogonal to the first polarization state;

a photo detector configured to optical-to-electrical convert the input optical signal or the output optical signal or both of the optical signals into an electric signal; and

a drive signal generator configured to generate a first drive signal that drives the first optical modulator and a second drive signal that drives the second optical modulator based on the electric signal generated by the photo detector, wherein

the first optical modulator and the second optical modulator are I/Q modulators,

the photo detector optical-to-electrical converts the input optical signal so as to generate a first electric signal, and optical-to-electrical converts the output optical signal so as to generate a second electric signal,

the drive signal generator includes:

an oscillator configured to generate first to fourth oscillation signals having a specified identical frequency,

a delay circuit configured to delay the first to fourth oscillation signals, and

a phase controller configured to control delay amounts of the first to fourth oscillation signals in the delay circuit, such that a phase difference between the first oscillation signal and the second oscillation signal is to be π/2, a phase difference between the third oscillation signal and the fourth oscillation signal is to be π/2, and a correlation between the first electric signal and the second electric signal increases, and

the first and second oscillation signals output from the delay circuit are respectively provided, as the first drive signal, to an I-arm and a Q-arm of the first optical modulator, and the third and fourth oscillation signals output from the delay circuit are respectively provided, as the second drive signal, to an I-arm and a Q-arm of the second optical modulator.

5. An optical remodulator that remodulates an input optical signal modulated by a first data signal and a second data signal to generate an output optical signal, a symbol rate of the second data signal being different from a symbol rate of the first data signal, the optical remodulator comprising:

a detector configured to optical-to-electrical convert the input optical signal or the output optical signal or both of the optical signals into an electric signal;

a drive signal generator configured to generate a drive signal based on the electric signal; and

a modulator configured to remodulate the input optical signal with the drive signal, so as to generate the output optical signal, wherein

the second data signal is superimposed on the input optical signal by frequency modulation,

the detector includes:

an optical bandpass filter configured to transmit a portion of a spectrum of the input optical signal; and

a photo detector configured to convert an output light of the optical bandpass filter into an intensity modulated signal,

the drive signal generator includes:

a signal recovery configured to recover the second data signal according to the intensity modulated signal; and

a signal generating circuit configured to generate, according to the second data signal recovered by the signal recovery, the drive signal that controls a carrier frequency of the input optical signal such that the second data signal is deleted from the output optical signal, or such that the second data signal is rewritten with a third data signal in the output optical signal.

6. The optical remodulator according to claim 5 , wherein

the signal generating circuit generates, according to a result of subtracting the second data signal recovered by the signal recovery from the third data signal, the drive signal that controls the carrier frequency of the input optical signal.

7. An optical remodulation method by using a polarization diversity modulator that includes a first optical phase modulator implemented for a first polarization state and a second optical phase modulator implemented for a second polarization state that is orthogonal to the first polarization state, the method comprising:

optical-to-electrical converting a component of the first polarization state in an input optical signal of the polarization diversity modulator so as to generate a first electric signal;

optical-to-electrical converting a component of the second polarization state in the input optical signal so as to generate a second electric signal;

filtering the first electric signal by using a first low pass filter so as to generate a first drive signal that drives the first optical phase modulator;

filtering the second electric signal by using a second low pass filter so as to generate a second drive signal that drives the second optical phase modulator; and

generating an output optical signal according to the first drive signal and the second drive signal by using the first optical phase modulator and the second optical phase modulator.

8. An optical remodulation method for remodulating an input optical signal modulated by a first data signal and a second data signal to generate an output optical signal, a symbol rate of the second data signal is different from a symbol rate of the first data signal, the second data signal being superimposed on the input optical signal by frequency modulation, the optical remodulation method comprising:

filtering the input optical signal by using an optical bandpass filter to transmit a portion of a spectrum of the input optical signal;

optical-to-electrical converting an output light of the optical bandpass filter into an intensity modulated signal;

recovering the second data signal according to the intensity modulated signal;

generating, according to the recovered second data signal, a drive signal that controls a carrier frequency of the input optical signal such that the second data signal is deleted from the output optical signal, or such that the second data signal is rewritten with a third data signal in the output optical signal; and

remodulating the input optical signal with the drive signal to generate the output optical signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2016
From: HOSHIDA, TAKESHI
To: FUJITSU LIMITED
Reel/Frame 039871/0972 →
Priority Claims (1)
JP 2015-201124 · Oct 9, 2015 · national
Continuity (1)
Related Publication 20170104535A1 · Apr 13, 2017