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Partial scanning frequency division multiplexing for interrogation of low-reflective fiber Bragg grating-based sensor array

机译:基于低反射光纤布拉格光栅传感器阵列询问的部分扫描频分复用

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摘要

Interrogation using partial spectrum scanning for a low-reflective fiber Bragg grating (FBG)-based sensor array is proposed. The sensor head is a Fabry-Perot interferometer (FPI) consisting of low-reflective fiber Bragg gratings. An FPI consisting of low-reflective FBGs (FBG-FPI) has a spectrum with a sinusoidal structure with a period determined by the length of the FBG-FPI. Multiple point sensing is possible by installing multiple low-reflective FBG-FPIs on one fiber and analyzing the reflection spectrum of that fiber by the frequency division multiplexing method. A coherent wavelength-swept light source is necessary to acquire the reflection spectrum; however, but the sweep speed of a commercially available wavelength-swept light source that satisfies the condition is only approximately several tens of hertz. Therefore, we propose to conduct a wavelength sweep by injection current modulation of a laser diode. Wavelength sweeping with a modulated laser diode allows fast sweeping at 100 Hz or more, and the sweep range is as narrow as several hundred picometers. Reading only a part of the reflection spectrum of a low-reflective FBG-FPI sensor array using a modulated laser diode enables high-speed multipoint measurement through frequency analysis. Theoretical requirements for successful interrogation using the partial reflection spectrum are shown. A demonstration experiment to simultaneously measure strain applied to two low-reflective FBG-FPI sensors with a measurement time of 10 ms is reported.
机译:提出了使用局部频谱扫描的询问,用于低反射光纤布拉格光栅(FBG)基于传感器阵列。传感器头是由低反射光纤布拉格光栅组成的法布里 - 珀罗干涉仪(FPI)。由低反射FBG(FBG-FPI)组成的FPI具有具有正弦结构的光谱,其通过FBG-FPI的长度确定的周期。通过在一个光纤上安装多个低反射FBG-FPI并通过频分复用方法分析该光纤的反射谱可以进行多点感测。需要相干波长的光源来获取反射光谱;然而,但满足条件的市售波长光源的扫描速度仅为大约几十赫兹。因此,我们建议通过喷射电流调制来开导波长扫描激光二极管。用调制激光二极管扫描的波长允许快速扫描100 Hz或更大,并且扫描范围与几百个微微镜线一样窄。使用调制激光二极管仅读取低反射FBG-FPI传感器阵列的反射谱的一部分,通过频率分析启用高速多点测量。示出了使用部分反射谱进行成功询问的理论要求。报告了一种用于同时测量施加到两个低反射FBG-FPI传感器的菌株的示范实验,其测量时间为10 ms。

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