Cui Jingxian, Liu Zhengyong, Gunawardena Dinusha Serandi, Zhao Zhiyong, Tam Hwa-Yaw
Opt Express. 2019 Jul 22;27(15):20848-20856. doi: 10.1364/OE.27.020848.
We propose and demonstrate a novel orientation-sensitive two-dimensional accelerometer based on fiber Bragg gratings inscribed in a multi-core fiber. Through monitoring of the wavelength shifts of three of the seven cores, including the central core and two outer cores which are not aligned in a straight line, information on vibration orientation as well as acceleration can be obtained simultaneously. Performance of the proposed accelerometer in terms of frequency, acceleration and vibration orientation are experimentally investigated. The designed two-dimensional accelerometer is capable of obtaining all these three parameters simultaneously. A sensitivity which is strongly dependent on the orientation is achieved, with a best orientation accuracy of 0.127° over a range of 0-180°. Moreover, the resonance frequency and the sensitivity can be optimized through adjusting the length and weight of the free-fiber. The ease of fabrication as well as the versatility of the proposed sensor makes it potentially useful in dynamic monitoring for industrial applications.
我们提出并演示了一种基于写入多芯光纤的光纤布拉格光栅的新型方向敏感二维加速度计。通过监测七个芯中的三个芯(包括中心芯和两个不在直线上对齐的外芯)的波长偏移,可以同时获得振动方向以及加速度的信息。对所提出的加速度计在频率、加速度和振动方向方面的性能进行了实验研究。所设计的二维加速度计能够同时获得所有这三个参数。实现了强烈依赖于方向的灵敏度,在0 - 180°范围内最佳方向精度为0.127°。此外,通过调整自由光纤的长度和重量,可以优化共振频率和灵敏度。所提出的传感器易于制造且具有通用性,使其在工业应用的动态监测中具有潜在的用途。