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首页> 外文期刊>Optics Letters >Simultaneous measurement of bending and temperature based on a single sampled chirped fiber Bragg grating embedded on a flexible cantilever beam
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Simultaneous measurement of bending and temperature based on a single sampled chirped fiber Bragg grating embedded on a flexible cantilever beam

机译:基于嵌入在柔性悬臂梁中的单个采样chi光纤布拉格光栅,同时测量弯曲和温度

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摘要

We propose and experimentally demonstrate a simple and practical scheme for simultaneous measurement of bending and temperature based on a single sampled chirped fiber Bragg grating with multiple resonant peaks, which is embedded on a flexible cantilever beam. The wavelength spacing of the grating can be changed by adjusting the bending curvature change, since the compressive strain gradient induced by the bending of the cantilever beam changes the chirp ratio of the fiber grating. However, the wavelength spacing of the fiber grating is not changed by the temperature variation; the multiple resonant wavelengths are only shifted into the longer wavelength because of the positive thermal-expansion and thermo-optic coefficients of the fiber grating. Consequently, the proposed scheme allows for discrimination between two effects of bending and temperature.
机译:我们提出并通过实验证明了一种简单而实用的方案,该方案基于具有多个共振峰的单采样chi光纤布拉格光栅,同时嵌入弯曲悬臂梁中,可以同时测量弯曲和温度。可以通过调节弯曲曲率的变化来改变光栅的波长间隔,这是因为由悬臂梁的弯曲引起的压缩应变梯度改变了光纤光栅的线性调频比。但是,光纤光栅的波长间隔不会因温度变化而变化;因此,不能改变光纤光栅的波长间隔。由于光纤光栅的正热膨胀系数和热光系数,多个共振波长仅移至更长的波长。因此,提出的方案允许区分弯曲和温度的两种影响。

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