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Biaxial Optical Accelerometer Based on Ultra-High Numerical Aperture Fiber

机译:基于超高数值孔径光纤的双轴光学加速度计

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In this paper, we describe the implementation and test of a biaxial optical accelerometer based on fiber Bragg gratings using ultra-high numerical aperture (UHNA) optical fiber. The characteristics of the UHNA optical fiber, such as the decrease of the fiber Bragg gratings reflectivity after the sensor mounting, were compared with the GF1 photosensitive one. The proposed sensor enables to measure acceleration in two orthogonal directions, making it suitable for vibration analysis in electrical machines and structural health monitoring. The initial project was based on finite-element analysis, experimental test, and analytical response, where it was passible to predict the resonant frequency of the mechanical system of approximately 650.00 Hz. After mounting with the optical fiber, the system was characterized allowing the determination of the resonant frequencies in both sensitive directions; the values of 1232.50 Hz and 1272.50 Hz were estimated for the x-axis and the y-axis. This paper enabled to validate the application of the UHNA optical fiber in the development of' small sensors and high radius of curvatures, thus providing the motivation for future applications.
机译:在本文中,我们描述了使用超高数值孔径(UHNA)光纤的基于光纤布拉格光栅的双轴光学加速度计的实现和测试。将UHNA光纤的特性(例如传感器安装后光纤布拉格光栅反射率的降低)与GF1光敏光纤进行了比较。所提出的传感器能​​够在两个正交方向上测量加速度,使其适合于电机中的振动分析和结构健康监测。最初的项目基于有限元分析,实验测试和分析响应,因此可以预测大约650.00 Hz的机械系统的共振频率。在安装了光纤之后,对系统进行了表征,从而可以确定两个敏感方向上的谐振频率。 x轴和y轴的估计值分别为1232.50 Hz和1272.50 Hz。本文能够验证UHNA光纤在小传感器和高曲率半径的开发中的应用,从而为将来的应用提供了动力。

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