首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Siusoidal phase-modulating laser diode interferometer insensitive to intensity modulation for real-time displacement measurement with feedback control system
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Siusoidal phase-modulating laser diode interferometer insensitive to intensity modulation for real-time displacement measurement with feedback control system

机译:对强度调制不敏感的正弦相位调制激光二极管干涉仪,用于带反馈控制系统的实时位移测量

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摘要

In sinusoidal phase modulating laser diode (LD) interferometer, the injection current of the LD is sinusoidally modulated to realize the modulation of the wavelength. However, the light intensity of LD is also modulated, which affects the measurement accuracy. An all-fiber sinusoidal phase modulating LD interferometer for real-time displacement measurement is proposed where the influence of the intensity modulation is eliminated with a new algorithm. It is made clear that an optimal depth of the sinusoidal phase modulation (SPM) exists in the algorithm. Moreover, the SPM depth is locked at the optimal value by controlling the injection current with a feedback control system. The feasibility of the proposed interferometer for displacement measurement is verified by experiments.
机译:在正弦相位调制激光二极管(LD)干涉仪中,对LD的注入电流进行正弦调制以实现波长的调制。但是,LD的光强度也会被调制,这会影响测量精度。提出了一种用于实时位移测量的全光纤正弦相位调制LD干涉仪,其中通过一种新算法消除了强度调制的影响。很明显,算法中存在正弦相位调制(SPM)的最佳深度。此外,通过使用反馈控制系统控制注入电流,可以将SPM深度锁定在最佳值。实验证明了所提出的干涉仪用于位移测量的可行性。

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