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Double Cantilever Beams Accelerometer Using Short Fiber Bragg Grating for Eliminating Chirp

机译:使用短光纤布拉格光栅消除线性调频的双悬臂梁加速度计

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摘要

An accelerometer based on the shorter fiber Bragg grating (FBG) is demonstrated and experimentally researched. The reflective optic spectra of FBG under inhomogeneous strain are researched by using the coupled-mode theory; the theoretical analysis demonstrates that the features of the reflective optic spectra are closely related with the chirping coefficient and the length of FBG under inhomogeneous strain. On these basics, an FBG accelerometer based on the double cantilever beams with small strain gradient is pointedly proposed. Experimental results show that the accelerometer has good response characteristic, and it provides broad flat frequency range from 4 to 30 Hz, corresponding sensitivity range from 7.76 to 10.8 pm/ms−2, while the flatness is less than 3 dB, the cross-axis sensitivity is less than 3.89% of the main-axis sensitivity, and the temperature sensitivity can be effectively eliminated by the self-symmetrical structure.
机译:对基于较短光纤布拉格光栅(FBG)的加速度计进行了演示和实验研究。利用耦合模理论研究了FBG在非均匀应变下的反射光谱。理论分析表明,在非均匀应变下,反射光谱的特征与线性调频coefficient的系数和FBG的长度密切相关。在此基础上,提出了一种基于应变梯度小的双悬臂梁的FBG加速度计。实验结果表明,该加速度计具有良好的响应特性,可提供4至30 Hz的宽平坦频率范围,相应的灵敏度范围为7.76至10.8 pm / ms−2,而平坦度小于3 dB,横轴灵敏度小于主轴灵敏度的3.89%,并且通过自对称结构可以有效地消除温度灵敏度。

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