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A Fiber Bragg Grating Sensing-Based Micro-Vibration Sensor and Its Application

机译:基于光纤光栅传感的微振动传感器及其应用

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摘要

This paper proposes a fiber Bragg grating sensing-based micro-vibration sensor. The optical fiber has been directly treated as an elastomer to design the micro-vibration sensor, which possesses two FBGs. The mass is fixed on the middle of the fiber, and the vertical vibration of the mass has been converted into the axial tension/compression of the fiber. The principle of the sensor has been introduced, and the experiment conclusions show that the sensor sensitivity is 2362 pm/g within the range of 200–1200 mm/s2, which is consistent with theoretical analysis sensitivity of 2532.6 pm/g, and it shows an excellent linearity of 1.376%, while the resonant frequency of the sensor is 34 Hz, and the flat frequency range resides in the 0–22 Hz range. When used to measure micro-vibrations, its measured frequency relative error is less than 1.69% compared with the values acquired with a MEMS accelerometer, and the amplitude values of its measured vibration signal are consistent with the MEMS accelerometer under different excitation conditions too, so it can effectively realize the micro-vibration measurements.
机译:本文提出了一种基于光纤布拉格光栅传感的微振动传感器。光纤已直接用作弹性体,以设计具有两个FBG的微振动传感器。团块固定在纤维的中间,团块的垂直振动已转换为纤维的轴向拉伸/压缩。介绍了传感器的原理,实验结论表明,在200–1200 mm / s 2 范围内,传感器的灵敏度为2362 pm / g,与理论分析灵敏度相符。 2532.6 pm / g,它显示出1.376%的出色线性度,而传感器的谐振频率为34 Hz,平坦频率范围位于0-22 Hz范围内。当用于测量微振动时,与使用MEMS加速度计获得的值相比,其测量的频率相对误差小于1.69%,并且在不同的激励条件下,其测量的振动信号的幅度值也与MEMS加速度计一致,因此它可以有效地实现微振动测量。

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