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首页> 外文期刊>Journal of Lightwave Technology >High Temporal and Spatial Resolution Distributed Fiber Bragg Grating Sensors Using Time-Stretch Frequency-Domain Reflectometry
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High Temporal and Spatial Resolution Distributed Fiber Bragg Grating Sensors Using Time-Stretch Frequency-Domain Reflectometry

机译:使用时延频域反射计的高时空分辨率分布式光纤光栅传感器

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摘要

A novel interrogation technique for fully distributed linearly chirped fiber Bragg grating (LCFBG) strain sensors with simultaneous high temporal and spatial resolution based on optical time-stretch frequency-domain reflectometry (OTS-FDR) is proposed and experimentally demonstrated. LCFBGs is a promising candidate for fully distributed sensors thanks to its longer grating length and broader reflection bandwidth compared to normal uniform FBGs. In the proposed system, two identical LCFBGs are employed in a Michelson interferometer setup with one grating serving as the reference grating whereas the other serving as the sensing element. Broadband spectral interferogram is formed and the strain information is encoded into the wavelength-dependent free spectral range (FSR). Ultrafast interrogation is achieved based on dispersion-induced time stretch such that the target spectral interferogram is mapped to a temporal interference waveform that can be captured in real-time using a single-pixel photodetector. The distributed strain along the sensing grating can be reconstructed from the instantaneous RF frequency of the captured waveform. High-spatial resolution is also obtained due to high-speed data acquisition. In a proof-of-concept experiment, ultrafast real-time interrogation of fully distributed grating sensors with various strain distributions is experimentally demonstrated. An ultrarapid measurement speed of 50 MHz with a high spatial resolution of 31.5 μm over a gauge length of 25 mm and a strain resolution of 9.1 μϵ have been achieved.
机译:提出了一种基于光时延频域反射法(OTS-FDR)的同时具有高时空分辨率的全分布线性chi光纤光栅(LCFBG)应变传感器的新型询问技术,并进行了实验验证。与普通的均匀FBG相比,LCFBG具有更长的光栅长度和更宽的反射带宽,因此是全分布式传感器的有希望的候选者。在提出的系统中,在迈克尔逊干涉仪设置中使用了两个相同的LCFBG,其中一个光栅用作参考光栅,另一个光栅作为传感元件。形成宽带光谱干涉图,并将应变信息编码到与波长有关的自由光谱范围(FSR)中。基于色散引起的时间延长实现超快询问,从而将目标光谱干涉图映射到可以使用单像素光电探测器实时捕获的时间干涉波形。可以从捕获波形的瞬时RF频率重建沿传感光栅的分布应变。由于高速数据采集,还可以获得高空间分辨率。在概念验证实验中,实验证明了具有各种应变分布的全分布光栅传感器的超快实时询问。已经实现了50 MHz的超快速测量速度,在25 mm的标距上具有31.5μm的高空间分辨率,以及9.1μl的应变分辨率。

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