New balance detection bias control method for MZ external modulator
An external modulator and bias control technology, which is applied to instruments, transmission monitoring, electromagnetic wave transmission systems, etc., can solve problems such as power fluctuations, link loss, and high cost, and achieve accurate adjustment values and flexible algorithms strategy, the effect of improving accuracy
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specific Embodiment 1
[0039] Specific embodiment one, such as figure 1 , figure 2 Shown:
[0040]The optical carrier output by the laser enters the lithium niobate MZ external modulator. The RF radio frequency signal and the pilot signal are synthesized by the signal synthesizer and then sent to the signal end of the lithium niobate MZ external modulator. The modulated optical signal passes through the optical splitter, and part of it enters the photodetector. The photodetector converts the optical signal into an electrical signal, and obtains the magnitude of the fundamental wave signal of the pilot signal through the fundamental wave detection circuit; the magnitude of the second harmonic distortion signal of the pilot signal is obtained through the second harmonic detection. Both signals reflect the magnitude of the DC voltage bias point of the lithium niobate MZ external modulator. They enter the microprocessor for data processing through A / D acquisition, and use the corresponding formula c...
specific Embodiment 2
[0069] Specific embodiment two, such as Figure 6 Shown:
[0070] The key of the present invention lies in the idea of introducing multiple test quantities for balanced detection. Since there can be one, two or more pilot signals in practice, and there are many harmonic components that can be detected at the output of the MZ modulator, multiple measurable quantities can be detected at the output of the MZ modulator. Perform MZ modulator DC bias control processing.
[0071] Therefore, any method for controlling the DC bias of the MZ modulator by detecting two or more measurable quantities at the output end of the MZ modulator falls within the scope of the present invention. The detectable test quantity should be determined according to the input signal of the MZ modulator, and the specific formula is as follows:
[0072] The input signal of the MZ modulator can have many forms, but all of them can be decomposed into form, where W i is the angular frequency of the i-th s...
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