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用于低相干光纤尖端压力传感器的微机械谐振镜相位调制

Phase modulation with micromachined resonant mirrors for low-coherence fiber-tip pressure sensors.

作者信息

Zhang X M, Liu Yuxiang, Bae H, Pang C, Yu M

机构信息

Department of Applied Physics, Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong S.A.R., China.

出版信息

Opt Express. 2009 Dec 21;17(26):23965-74. doi: 10.1364/OE.17.023965.

Abstract

This letter presents a simple phase modulation scheme for interrogation of low-coherence interferometry based fiber-tip pressure sensors to enable real-time monitoring and miniaturization of the entire sensor system. The key idea is to introduce a sinusoidal modulation signal and retrieve the sensing cavity length change using a simple algorithm, without resorting to any time information. In experiments, phase modulation has been achieved by using a silicon-micromachined tunable Fabry-Pérot interferometer, which is integrated with a light source and a photodiode onto a single chip. Compared with the conventional interrogation methods, this scheme possesses the merits of being less susceptible to disturbance, easy control and easy miniaturization, making it particularly suitable for sensing in constrained spaces and harsh environments.

摘要

本文提出了一种简单的相位调制方案,用于基于低相干干涉测量的光纤尖端压力传感器的询问,以实现整个传感器系统的实时监测和小型化。关键思想是引入一个正弦调制信号,并使用一种简单算法来获取传感腔长度变化,而无需借助任何时间信息。在实验中,通过使用硅微机械可调谐法布里-珀罗干涉仪实现了相位调制,该干涉仪与光源和光电二极管集成在一个芯片上。与传统询问方法相比,该方案具有不易受干扰、易于控制和易于小型化的优点,使其特别适用于受限空间和恶劣环境中的传感。

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