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Double-L Cantilever-Based Fiber Bragg Grating Accelerometer

机译:基于双L悬臂的光纤布拉格光栅加速度计

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摘要

Optical accelerometers, especially the fiber Bragg grating accelerometers are the preferred sensors for vibration, and acceleration measurement in several fields of engineering. They are light, compact, immune to electromagnetic interference, and provide better noise immunity due to wavelength encoded nature of signal transduction. In the present work, analytical modeling, numerical simulation, fabrication, and characterization of a novel double-L cantilever based fiber Bragg grating accelerometer is presented. This design not only enhances the sensitivity in comparison to its single-L counterpart, but also provides self-temperature compensation. Modular design of the accelerometer provides flexibility in replacing specific components to achieve desired performance characteristics. Resonant frequency of 86 Hz, sensitivity of 406.7 pm/g with an excellent linearity of 99.86 %, and small temperature sensitivity of 0.016 pm/degrees C have been demonstrated for the fabricated model. The FBG accelerometer has a linear operating range of +/- 6 g.
机译:光学加速度计,特别是光纤布拉格光栅加速度计,是在多个工程领域中用于振动和加速度测量的首选传感器。它们轻巧,紧凑,不受电磁干扰,并且由于信号转导的波长编码特性而具有更好的抗噪性。在目前的工作中,提出了一种新型的基于双L悬臂的光纤布拉格光栅加速度计的分析模型,数值模拟,制造和特性。与单L同类产品相比,该设计不仅提高了灵敏度,而且还提供了自温度补偿。加速度计的模块化设计为更换特定组件提供了灵活性,以实现所需的性能特征。对于所制造的模型,已经证明了共振频率为86 Hz,灵敏度为406.7 pm / g,具有良好的线性度,为99.86%,并且温度灵敏度为0.016 pm /℃。 FBG加速度计的线性工作范围为+/- 6 g。

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