A Mach–Zehnder Fabry–Perot Hybrid Fibre-Optic Interferometer for a Large Measurement Range Based on the Kalman Filter

Optics Pub Date : 2024-05-16 DOI:10.3390/opt5020020
Yixuan Wang, Peigang Yang, Tao Jin
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Abstract

To solve the short working distance and small measurement range of an all-fibre interferometer, we proposed a Mach–Zehnder Fabry–Perot hybrid fibre-optic interferometry system based on sinusoidal phase modulation. In this paper, a low-finesse fibre interferometer with a larger linear operating range for displacement measurement is realised using a self-collimating probe and incorporating a Kalman filter-based phase demodulation algorithm. Through experimental comparisons, it is demonstrated that the interferometer proposed in this paper can effectively reduce the phase delay, compensate for the depth of modulation drift, and correct the error due to parasitic interference introduced by the optical path structure through the algorithm. A linear large measurement working range of 20 cm is realised.
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基于卡尔曼滤波器的大测量范围马赫-泽恩德法布里-珀罗混合光纤干涉仪
为了解决全光纤干涉仪工作距离短、测量范围小的问题,我们提出了一种基于正弦相位调制的马赫-泽恩德法布里-珀罗混合光纤干涉测量系统。本文使用自准直探头,并结合基于卡尔曼滤波器的相位解调算法,实现了具有更大线性工作范围的低精细度光纤干涉仪,用于位移测量。通过实验对比证明,本文提出的干涉仪能有效减少相位延迟,补偿调制漂移深度,并通过算法修正光路结构引入的寄生干扰造成的误差。实现了 20 厘米的线性大测量工作范围。
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