Electro-optic modulator having gated-dither bias control
First Claim
1. An electro-optic modulator bias control system for maintaining the operating point of an electro-optic modulator at the half-power point, which receives a detected data carrying electrical signal indicative of the electro-optic modulator'"'"'s optical data carrying output signal, the bias control system comprising:
- means for generating a time varying electrical signal;
means for generating a modulation signal having a certain frequency spectrum fm ;
means for modulating said time varying electrical signal with said modulation signal and for providing a dither test tone signal;
a demodulator which demodulates a detected data carrying signal using said modulation signal as the reference and provides an output signal Verror whose value is indicative of the phase and the amount of energy within the frequency spectrum of said detected data carrying signal within said frequency spectrum fm ;
means for integrating over time said output signal Verror and for providing a signal Vbias indicative of the integrated value; and
means for summing said signal Vbias and said dither test tone signal to provide a bias dither signal value for driving the modulator to the half power point.
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Abstract
An electro-optic modulator includes a closed loop bias control system for maintaining the modulator at its half-power point by modulating a time varying signal on and off at a modulation frequency fm. The modulation frequency fm is much lower than the frequency components within the spectrum of the time varying signal, such that, energy within the time varying signal spectrum is recovered at the modulation frequency when the modulator is not operating at the half-power point. A phase sensitive demodulator operating at the modulation frequency fm demodulates a signal indicative of the modulator optical output signal to provide a DC voltage signal value indicative of the half-power point bias error value. The time varying voltage signal may be a dither noise signal or any other time varying signal such as a signal with a single frequency component (e.g. a sine or cosine) or a signal with a plurality of frequency components (e.g., a square wave).
73 Citations
22 Claims
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1. An electro-optic modulator bias control system for maintaining the operating point of an electro-optic modulator at the half-power point, which receives a detected data carrying electrical signal indicative of the electro-optic modulator'"'"'s optical data carrying output signal, the bias control system comprising:
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means for generating a time varying electrical signal; means for generating a modulation signal having a certain frequency spectrum fm ; means for modulating said time varying electrical signal with said modulation signal and for providing a dither test tone signal; a demodulator which demodulates a detected data carrying signal using said modulation signal as the reference and provides an output signal Verror whose value is indicative of the phase and the amount of energy within the frequency spectrum of said detected data carrying signal within said frequency spectrum fm ; means for integrating over time said output signal Verror and for providing a signal Vbias indicative of the integrated value; and means for summing said signal Vbias and said dither test tone signal to provide a bias dither signal value for driving the modulator to the half power point. - View Dependent Claims (2, 3, 14)
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4. An electro-optic modulator system which receives an optical signal from an optical source, and an electrical data carrying input signal, and modulates the optical signal to encode the optical signal with the data content of the electrical data carrying input signal, said system comprising:
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an electro-optic modulator which receives the electrical data carrying input signal and modulates the optical signal with the data carrying input signal to provide an optical data carrying output signal; means for biasing said electro-optic modulator to maintain the operating point of said modulator at the half-power point, comprising means for providing a time varying electrical signal; means for providing a modulation signal and for modulating said time varying electrical signal with said modulation signal to provide a dither test tone signal; means for detecting said optical data carrying output signal within said electro-optic modulator and for providing a detected electrical signal indicative thereof, and means for demodulating said detected electrical signal with said modulation signal to provide a signal Verror, for integrating over time said signal Verror and providing a signal Vbias indicative of the integrated value, and for summing said signal Vbias with said dither test tone signal and applying the resultant summed signal to said electro-optic modulator to maintain said modulator at its half-power point.
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5. An electro-optic modulator system, which receives an optical signal from an optical source, and an electrical data carrying input signal, and modulates the optical signal to encode the optical signal with the data content of the electrical data carrying input signal, said system comprising:
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a biased electro-optic modulator which receives the data carrying input signal and modulates the optical signal with the data carrying input signal to provide an optical data carrying output signal; a first signal source which provides a time varying electrical signal; a second signal source which provides a modulation signal; a closed loop bias control system including, means for maintaining said electro-optic modulator at its half-power point by modulating said time varying electrical signal with said modulation signal to create a dither test tone signal, such that, the frequency spectrum of the optical data carrying output signal contains energy within the frequency spectrum of said modulation signal and provides a signal Verror indicative thereof when said modulator is not operating at the half-power point, means for integrating said signal Verror and providing a signal value Vbias indicative of the integrated value, means for summing said signal value Vbias with said dither test tone signal and means for applying the resultant summed signal to said modulator to maintain the operating point of said modulator at the half-power point.
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6. A bias controlled electro-optic modulator system which receives an electrical data carrying input signal, and an optical signal from a light source, and provides an optical data carrying output signal, comprising:
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an electro-optic modulator which modulates the optical signal with both the data carrying input signal and a biased dither test tone signal to provide said optical data carrying output signal; a bias control system including a first signal generator which provides a time varying electrical signal; a second signal generator which provides a modulation signal; a modulator which modulates said time varying electrical signal with said modulation signal to provide a dither test tone signal; an optical detector which detects said optical data carrying output signal and provides a detected electrical signal indicative thereof; a demodulator which demodulates said detected electrical signal with said modulation signal and provides a signal Verror indicative of the demodulated signal; an integrator which integrates said signal Verror over time and provides a signal Vbias indicative of the integrated value of said signal Verror ; and a summer which sums said signal Vbias with said dither test tone signal and provides said biased dither test tone signal value indicative of the summed value to said electro-modulator to drive said electro-optic modulator to its half-power point. - View Dependent Claims (7, 8, 9, 10, 11, 12, 13)
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15. A bias controlled electro-optic modulator system which receives an electrical data carrying input signal, and an optical signal from a light source, and modulates the optical signal to encode the optical signal with the data within the electrical data carrying input signal to provide an optical data carrying output signal;
- said system comprising;
an electro-optic modulator including waveguides through which the optical signal propagates and a set of input signal electrodes formed across a portion of said waveguide to which the electrical data carrying input signal is applied to modulate the optical signal within said waveguide, and a set of bias signal electrodes also formed across said waveguide and to which a biased dither test tone signal received from a closed loop bias control system is applied to maintain the operating point of said electro-optic modulator at its half-power point, wherein the resultant electro-optic modulator output signal is said optical data carrying output signal; said closed loop bias control system includes an optical detector which detects said optical data carrying output signal and provides a detected electrical signal indicative thereof, a first signal generator which generates a time varying electrical signal; a second signal generator which generates a modulation signal fm ; a modulator which modulates said time varying electrical signal with said modulation signal fm to provide a dither test tone signal; a demodulator which demodulates said detected electrical signal with said modulation signal fm and provides a signal Verror indicative of the demodulated signal; an integrator which integrates said signal Verror over time and provides a signal value Vbias indicative of the integrated value of said signal Verror ; and a summer which sums said signal Vbias with said dither test tone signal and provides said biased dither test tone signal value indicative of the summed value to said second set of electrodes to drive said electro-optic modulator to its half-power point. - View Dependent Claims (16, 17, 18, 19, 20, 21, 22)
- said system comprising;
Specification