Claims
- 1. An optical repeater circuit comprising:
- an optical amplifier means for optically amplifying an RZ intensity modulated signal light propagated through an optical fiber transmission path;
- an optical branch circuit means for branching a part of an output light of said optical amplifier means;
- an optical phase modulator means connected with a first output terminal of said optical branch circuit, for phase-modulating an output light of said optical branch circuit means and outputting a phase-modulated signal light to an outlet optical fiber transmission path;
- a receiving circuit means connected with a second output terminal of said optical branch circuit, for converting an output light of said optical branch circuit means to an electric signal;
- a timing extraction circuit means for extracting a timing signal from said electric signal of said receiving circuit means;
- an optical phase modulator driving circuit means for setting said timing signal in a predetermined amplitude of voltage, as well as setting said timing signal in a predetermined phase based on a phase difference signal and driving said optical phase modulator; and
- a phase detection circuit means for detecting a phase difference between an output signal phase of said optical phase modulator driving circuit means and an envelope signal phase of the input signal into said optical phase modulator means, and outputting said phase difference as said phase difference signal.
- 2. An optical repeater circuit comprising:
- an optical amplifier means for optically amplifying an RZ intensity modulated signal light propagated through an optical fiber transmission path;
- an optical branch circuit means for branching a part of an output light of said optical amplifier means;
- an optical phase modulator means connected with a first output terminal of said optical branch circuit means, for phase-modulating an output light of said optical branch circuit means and outputting a phase-modulated signal light to an outlet optical fiber transmission path;
- a receiving circuit means connected with a second output terminal of said optical branch circuit means, for converting an output light of said optical branch circuit means to an electric signal;
- a timing extraction circuit means for extracting a timing signal from said electric signal of said receiving circuit means;
- a sinusoidal signal generator means for generating a sine-wave signal of the same frequency as that of said timing signal based on a first phase difference signal;
- a first phase detection circuit means for detecting a first phase difference phase between a phase of an output signal of said sinusoidal signal generator means and a phase of said timing signal, and feeding back said first difference phase as said first phase difference signal to said sinusoidal signal generator;
- an optical phase modulator driving circuit means for setting an output signal of said sinusoidal signal generator means in a predetermined amplitude of voltage, as well as setting said output signal in a predetermined phase based on a second phase difference signal; and
- a second phase detection circuit means for detecting a second phase difference between a phase of an output signal of said phase modulator driving circuit means and a phase of an output signal of said receiving circuit means, outputting said second phase difference as said second phase difference signal.
- 3. An optical repeater circuit comprising:
- an optical amplifier means for optically amplifying a signal light propagated through an optical fiber transmission path;
- an optical branch circuit means for branching a part of an output light of said optical amplifier means;
- an optical phase modulator means connected with a first output terminal of said optical branch circuit means, for phase-modulating an output light of said optical branch circuit and outputting a phase-modulated signal light to an outlet optical fiber transmission path;
- a receiving circuit means connected with a second output terminal of said optical branch circuit means, for converting an output light of said optical branch circuit means to an electric signal;
- an equalization circuit means for equalizing an output signal of said receiving circuit means close to the envelope waveform of light signal input to said optical phase modulator means;
- an optical phase modulator driving circuit means for converting an output signal of said equalization circuit means to a predetermined amplitude of voltage, as well as setting said output signal in a predetermined phase based on a phase difference signal and driving said optical phase modulator; and
- a phase detection circuit means for detecting a phase difference between an output signal phase of said optical phase modulator driving circuit means and an envelope signal phase input to said optical phase modulator means, and outputting said phase difference as said phase difference signal.
- 4. An optical repeater circuit comprising:
- an optical amplifier means for optically amplifying a signal light propagated through an optical fiber transmission path;
- an optical branch circuit means for branching a part of an output light of said optical amplifier means;
- an optical phase modulator means connected with a first output terminal of said optical branch circuit, for phase-modulating an output light of said optical branch circuit means and outputting the phase-modulated signal light to an outlet optical fiber transmission path;
- a receiving circuit means connected with a second output terminal of said optical branch circuit, for converting an output light of said optical branch circuit means to an electric signal;
- a timing extraction circuit means for extracting a timing signal from said electric signal of said receiving circuit means;
- a discrimination decision circuit means for discriminating said electric signal of said receiving circuit means referring said timing signal as a clock signal;
- an equalization circuit means for equalizing an output signal of said discrimination decision circuit means close to an envelope waveform of a light signal input to said optical phase modulator means;
- an optical phase modulator driving circuit means for converting an output signal of said equalization circuit means to a predetermined amplitude of voltage, as well as setting said output signal in a predetermined phase based on a phase difference signal and driving said optical phase modulator; and
- a phase detection circuit means for detecting a phase difference between an output signal phase of said optical phase modulator driving circuit means and an envelope signal phase input to said optical phase modulator means, outputting said phase difference as said phase difference signal.
Priority Claims (3)
Number |
Date |
Country |
Kind |
3-271615 |
Oct 1991 |
JPX |
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3-271617 |
Oct 1991 |
JPX |
|
3-271619 |
Oct 1991 |
JPX |
|
Parent Case Info
This is a division of application Ser. No. 07/964,398, filed Oct. 21, 1992, now U.S. Pat. No. 5,392,147.
US Referenced Citations (3)
Non-Patent Literature Citations (3)
Entry |
Saito et al., "Prechirp Technique for Dispersion Compensation for a High Speed Long-Span Transmission" pp. 74-76; IEEE Photonics Tech. Ltrs. vol. 3, No. 1, Jan. 1991. |
Henmi et al., Technical Digest PD8 (Post Deadline Paper #8); Inter National Comference on Fiber Communication, 1990 pp. 1-4. |
K. Nakagawa et al.; "Trunk and Distribution Network Application of Erbium-Doped Fiber Amplifier". J. of Lightwave Tech; vol. 9, No. 2, Feb. 1991, pp. 198-208. |
Divisions (1)
|
Number |
Date |
Country |
Parent |
964398 |
Oct 1992 |
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