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首页> 外文期刊>Sensors and Actuators, A. Physical >Interrogation technique using a novel spectra bandwidth measurement method with a blazed FBG and a fiber-optic array for an FBG displacement sensor
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Interrogation technique using a novel spectra bandwidth measurement method with a blazed FBG and a fiber-optic array for an FBG displacement sensor

机译:使用新颖的光谱带宽测量方法的询问技术,该方法具有用于FBG位移传感器的炽热FBG和光纤阵列

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摘要

A double-arched-beam-based fiber Bragg grating (FBG) displacement sensor is presented. Unlike most interrogation methods by measuring the resonance wavelength shifts, this kind of FBG sensor is proposed to measure the displacement by measuring the FBG's reflective spectra bandwidth using a blazed fiber Bragg grating (blazed FBG) and a fiber optic array. According to the strain distribution on the novel double-arched beam surface, the positive and negative strain will act on only one FBG, which is stuck on the beam surface. Thus, the positive and negative strain will make the spectra broaden as the displacement increases. What is more, the problem of cross-sensitivity in the FBG sensor is solved because temperature only affects the wavelength shift, but not the spectra bandwidth. The reflective signal of FBG sensor will be lead into a blazed FBG and the radiation light from blazed FBG with a certain radiation angle will be received by a fiber optic array, and then recorded by the infrared linear detector (IRLD). Based on the Gauss distribution theory, the radiation light spot size related to the FBG's reflective spectra bandwidth can be determined. Simulation and preliminary experimental results indicate the feasibility of the proposed idea.
机译:提出了一种基于双拱梁的光纤布拉格光栅(FBG)位移传感器。与大多数通过测量谐振波长偏移的询问方法不同,这种FBG传感器被提议通过使用闪耀光纤布拉格光栅(闪耀FBG)和光纤阵列测量FBG的反射光谱带宽来测量位移。根据新颖的双拱形梁表面上的应变分布,正应变和负应变将仅作用于一个固定在梁表面的FBG。因此,正应变和负应变将使光谱随着位移的增加而变宽。此外,由于温度仅影响波长偏移,而不影响光谱带宽,因此解决了FBG传感器的交叉灵敏度问题。 FBG传感器的反射信号将被导入到闪耀的FBG中,并且以一定的辐射角从闪耀的FBG发出的辐射光将被光纤阵列接收,然后由红外线性检测器(IRLD)进行记录。基于高斯分布理论,可以确定与FBG的反射光谱带宽有关的辐射光斑大小。仿真和初步实验结果表明了该想法的可行性。

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