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High-Resolution FBG-Based Inclination Sensor Using Eigen Decomposition of Reflection Spectrum

机译:基于高分辨率的FBG倾斜传感器,使用反射谱的特征分解

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This article addresses the analysis and design of a high-resolution and temperature-insensitive inclination sensor using fiber Bragg grating (FBG). The sensor uses a pendulum-based structure with FBG attached to its cantilever arm. Initially, strain analysis of the proposed inclination sensor is carried out using the finite-element method (FEM) to optimize the structure and materials for its fabrication. Experimental analysis is carried out on the inclination sensors by varying the inclination angle, and its results are compared with the FEM-based results. The shift in Bragg wavelength of FBG due to the generated strain at the cantilever arm is observed on optical interrogator. To measure the subpicometer wavelength shift with enhanced resolution and lower uncertainty, eigen decomposition of the reflection spectrum using Karhunen-Loeve transform (KLT) is implemented. The range of measurement of tilt angle is found to be 0 degrees-3 degrees with a resolution of 0.0008 degrees. The satisfactory linearity of the measured angle versus true angle, excellent repeatability, and very high resolution validates the feasibility of the proposed inclination sensor.
机译:本文通过光纤布拉格光栅(FBG)解决了高分辨率和温度不敏感倾斜传感器的分析和设计。该传感器采用基于摆锤的结构,其中FBG连接到其悬臂臂。最初,使用有限元方法(FEM)进行所提出的倾斜传感器的应变分析,以优化其制造的结构和材料。通过改变倾斜角度在倾斜传感器上进行实验分析,并将其结果与基于FEM的结果进行比较。在光学询问器上观察到由于悬臂臂处产生的应变引起的FBG波长的偏移。为了测量具有增强的分辨率和较低的不确定性的沉降仪波长偏移,实现了使用Karhunen-Loeve变换(KLT)的反射光谱的特征分解。发现倾斜角度的测量范围是0度-3度,分辨率为0.0008度。测量角度与真角度,优异的重复性和非常高分辨率的令人满意的线性度验证了所提出的倾斜传感器的可行性。

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