Xu Shaoyi, Shao Haiming, Li Chuansheng, Xing Fangfang, Wang Yuqiao, Li Wei
School of Mechanical and Electrical Engineering, China University of Mining and Technology, Xuzhou 221116, China.
National Institute of Metrology (NIM), Beijing 100029, China.
Sensors (Basel). 2017 Jul 3;17(7):1556. doi: 10.3390/s17071556.
In this work, a linear birefringence measurement method is proposed for an optical fiber current sensor (OFCS). First, the optical configuration of the measurement system is presented. Then, the elimination method of the effect of the azimuth angles between the sensing fiber and the two polarizers is demonstrated. Moreover, the relationship of the linear birefringence, the Faraday rotation angle and the final output is determined. On these bases, the multi-valued problem on the linear birefringence is simulated and its solution is illustrated when the linear birefringence is unknown. Finally, the experiments are conducted to prove the feasibility of the proposed method. When the numbers of turns of the sensing fiber in the OFCS are about 15, 19, 23, 27, 31, 35, and 39, the measured linear birefringence obtained by the proposed method are about 1.3577, 1.8425, 2.0983, 2.5914, 2.7891, 3.2003 and 3.5198 rad. Two typical methods provide the references for the proposed method. The proposed method is proven to be suitable for the linear birefringence measurement in the full range without the limitation that the linear birefringence must be smaller than π/2.
在这项工作中,提出了一种用于光纤电流传感器(OFCS)的线性双折射测量方法。首先,介绍了测量系统的光学配置。然后,论证了消除传感光纤与两个偏振器之间方位角影响的方法。此外,确定了线性双折射、法拉第旋转角和最终输出之间的关系。在此基础上,对线性双折射的多值问题进行了模拟,并说明了在未知线性双折射时的解决方法。最后,通过实验证明了该方法的可行性。当OFCS中传感光纤的匝数分别约为15、19、23、27、31、35和39时,用该方法测得的线性双折射分别约为1.3577、1.8425、2.0983、2.5914、2.7891、3.2003和3.5198弧度。两种典型方法为该方法提供了参考。结果表明,该方法适用于全范围内的线性双折射测量,不受线性双折射必须小于π/2的限制。