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用于询问多腔光纤法布里-珀罗传感器中最短腔的双波长解调技术。

Dual-wavelength demodulation technique for interrogating a shortest cavity in multi-cavity fiber-optic Fabry-Pérot sensors.

作者信息

Ren Qianyu, Jia Pinggang, An Guowen, Liu Jia, Fang Guocheng, Liu Wenyi, Xiong Jijun

出版信息

Opt Express. 2021 Sep 27;29(20):32658-32669. doi: 10.1364/OE.438258.

Abstract

This paper demonstrates, for the first time, a novel demodulation technique that can be applied for interrogating a shortest cavity in multi-cavity Fabry-Pérot (F-P) sensors. In this demodulation technique, using an amplified spontaneous emission (ASE) light source and two optical fiber broadband filters, the interference only occurs in a shortest F-P cavity that is shorter than the half of the coherence length. Using a signal calibration algorithm, two low-coherence interference optical signals with similar coherence lengths were calibrated to obtain two quadrature signals. Then, the change in the cavity length of the shortest F-P cavity was interrogated by the two quadrature signals and the arctangent algorithm. The experimental results show that the demodulation technique successfully extracted 1 kHz and 500 Hz vibration signals with 39.28 µm and 64.84 µm initial cavity lengths, respectively, in a multi-cavity F-P interferometer. The demodulation speed is up to 500 kHz, and the demodulation technique makes it possible for multi-cavity F-P sensors to measure dynamic and static parameters simultaneously. The results show that the demodulation technique has wide application potential in the dynamic measurement of multi-cavity F-P sensors.

摘要

本文首次展示了一种新型解调技术,该技术可用于询问多腔法布里 - 珀罗(F - P)传感器中的最短腔。在这种解调技术中,使用放大自发辐射(ASE)光源和两个光纤宽带滤波器,干涉仅发生在长度短于相干长度一半的最短F - P腔中。利用信号校准算法,对两个具有相似相干长度的低相干干涉光信号进行校准以获得两个正交信号。然后,通过这两个正交信号和反正切算法来询问最短F - P腔的腔长变化。实验结果表明,在多腔F - P干涉仪中,该解调技术分别成功提取了初始腔长为39.28 µm和6‏4.84 µm时的1 kHz和500 Hz振动信号。解调速度高达500 kHz,并且该解调技术使多腔F - P传感器能够同时测量动态和静态参数。结果表明,该解调技术在多腔F - P传感器的动态测量中具有广泛的应用潜力。

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