首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Apodized fibre Bragg grating acousto-ultrasonic sensor under arbitrary strain using dual Fabry-Perot filters
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Apodized fibre Bragg grating acousto-ultrasonic sensor under arbitrary strain using dual Fabry-Perot filters

机译:使用双Fabry-Perot滤波器在任意应变下的切趾光纤Bragg光栅声波超声传感器

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摘要

This paper describes a novel acousto-ultrasonic (AU) sensing system in which a fibre Bragg grating (FBG) is permanently built in a structure for in situ health monitoring. The AU wave detection using an FBG can be realized by a demodulation technique using an optical filter or light source narrower than the FBG spectrum. However, since the spectral wavelength shift induced from structural strain is much larger than the spectral oscillation induced from the AU wave, it is difficult for the demodulation wavelength to follow the spectral shift. For this work, we introduce a passive demodulation method regardless of the spectral shift based on an apodized FBG (AFBG) and dual fibre Fabry - Perot (FFP) filters. The free spectral range (FSR) of a high-finesse FFP filter is matched to the full-bandwidth of the AFBG without side lobes. Therefore, a part of the AFBG spectrum is always filtered by one of the multiple interferometric peaks. However, the wavelength regime near the maximum or minimum reflectivity of the AFBG provides insufficient sensitivity with respect to the wave. Therefore, another 1/4 FSR-biased FFP filter with the same FSR is simultaneously operated.
机译:本文介绍了一种新颖的声-超声(AU)传感系统,其中在结构中永久地构建了光纤布拉格光栅(FBG),用于现场健康监测。使用FBG的AU波检测可以通过使用比FBG光谱窄的光学滤波器或光源的解调技术来实现。但是,由于由结构应变引起的光谱波长偏移比由AU波引起的光谱振荡大得多,因此解调波长难以跟随该光谱偏移。对于这项工作,我们基于变迹的FBG(AFBG)和双光纤Fabry-Perot(FFP)滤波器引入了一种无源解调方法,而不考虑频谱偏移。高端FFP滤波器的自由频谱范围(FSR)与无旁瓣的AFBG的全带宽匹配。因此,AFBG频谱的一部分始终被多个干涉峰之一过滤。但是,接近AFBG的最大或最小反射率的波长范围对波的灵敏度不足。因此,同时运行具有相同FSR的另一个1/4 FSR偏置的FFP滤波器。

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