Directional force measurement technology based on fiber optical laser heterodyning demodulation

Jingyi Gao, Han Wang, Xi Guo, Chengang Lyu
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Abstract

Distributed Bragg Reflector (DBR) polarimetric optical fiber laser sensors have been attracting great interests due to harsh environment capability and high signal-to-noise ratio .We demonstrate directional force measurement technology using dual-polarization DBR optical fiber laser as a sensor. The influences of external force (bending, current and ultrasonic signal) could be analyzed by inducing a DFB polarimetric laser sensor to detect the beating signals shifts when the cavity is perturbed. We present the analysis of sensing mechanism on the DBR geometric construction and demodulation of directional information by separating the dual orthogonal polarization modes. With loading angles at 35°, 45°, 55°with 10° interval, the DBR laser sensor has shown orientation recognization ability corresponding to beating signals shifts, offering a potential for vector force directional detection.
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基于光纤激光外差解调的定向力测量技术
分布式布拉格反射器(DBR)偏振光纤激光传感器因其在恶劣环境下的性能和高信噪比而引起了人们的广泛关注,本文介绍了双偏振DBR光纤激光器作为传感器的定向力测量技术。通过诱导DFB偏振激光传感器检测腔体受扰动时跳动信号的位移,分析外力(弯曲、电流和超声信号)的影响。分析了DBR几何结构的传感机理,并通过分离双正交偏振模式对方向信息进行解调。加载角度为35°、45°、55°,间隔为10°,DBR激光传感器显示出与跳动信号位移相对应的方向识别能力,为矢量力方向检测提供了可能。
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