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A new fiber Bragg grating accelerometer

机译:新型光纤布拉格光栅加速度计

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摘要

A design method for a novel differential fiber Bragg grating (FBG) accelerometer is presented in this paper. The resonance frequency is increased via this sensing element design, which is combining the big beam and the two tiny beams. The differential double FBGs design increases the accelerometer sensitivity and resolves the temperature compensation. The mathematics model of the sensing element is established, the static and modal mechanics character is simulated by finite element method, the results indicate that the system sensitivity is 53.1pm/g and resonance frequency is 250Hz which is three times than that of the conventional cantilever-mass FBG accelerometer. The problem of being not able to increase the sensitivity and the resonance frequency simultaneously for the conventional FBG accelerometer has been resolved radically. Finally, the test system is set up, the testing data of the sensing element structure characteristic are acquired and analyzed.
机译:本文提出了一种新型的差分光纤布拉格光栅(FBG)加速度计的设计方法。通过将大光束和两个小光束结合在一起的传感元件设计,可以提高共振频率。差分双FBG设计提高了加速度计的灵敏度并解决了温度补偿问题。建立了传感元件的数学模型,通过有限元方法模拟了静力学和模态力学特性,结果表明系统灵敏度为53.1pm / g,共振频率为250Hz,是传统悬臂梁的三倍。 -质量FBG加速度计。彻底解决了传统FBG加速度计无法同时提高灵敏度和谐振频率的问题。最后,建立了测试系统,获取并分析了传感元件结构特性的测试数据。

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