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基于具有游标效应的光纤环形微波光子滤波器的灵敏度增强型光纤传感器。

Sensitivity enhanced fiber sensor based on a fiber ring microwave photonic filter with the Vernier effect.

作者信息

Xu Zuowei, Shu Xuewen, Fu Hongyan

出版信息

Opt Express. 2017 Sep 4;25(18):21559-21566. doi: 10.1364/OE.25.021559.

Abstract

A temperature sensor employing the Vernier effect generated from a cascaded fiber rings based microwave photonic filter (MPF) is proposed and experimentally demonstrated. The structure of the fiber ring is used as a sensing element as well as the sampling and delaying component of the MPF in our proposed sensing scheme. The sensing characteristics of both single ring and cascaded fiber rings based sensors have been studied and compared. By employing two cascaded fiber rings of slightly different length, the Vernier effect can be generated in the frequency response of the MPF. The sensing interrogation of the cascaded fiber rings based sensor is conducted by detecting the frequency shift of the upper envelope of the measured frequency response curve. The experimental results show that the sensitivity of the cascaded fiber rings based sensor can be improved about 30 times compared with the single fiber ring based temperature sensor.

摘要

提出并通过实验证明了一种利用基于级联光纤环的微波光子滤波器(MPF)产生的游标效应的温度传感器。在我们提出的传感方案中,光纤环的结构既用作传感元件,又用作MPF的采样和延迟组件。研究并比较了基于单环和级联光纤环的传感器的传感特性。通过采用两个长度略有不同的级联光纤环,可以在MPF的频率响应中产生游标效应。基于级联光纤环的传感器的传感询问是通过检测测量的频率响应曲线上包络的频移来进行的。实验结果表明,与基于单光纤环的温度传感器相比,基于级联光纤环的传感器的灵敏度可提高约30倍。

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