Xu Shaoyi, Li Wei, Wang Yuqiao, Xing Fangfang
Appl Opt. 2014 Aug 20;53(24):5486-92. doi: 10.1364/AO.53.005486.
In this paper, a stray current sensor with cylindrical twisted fiber is proposed. The quantitative method of linear birefringence on the sensing fiber is demonstrated. And the temperature-induced linear birefringence is about 4.63 deg per meter at 60 deg centigrade. Then, the demand of circular birefringence is determined based on the polarization division multiplexing model, which is produced by the cylindrical twisted fiber. According to the simulation results, the produced circular birefringence is about 2116.9 deg, which is enough to suppress the linear birefringence. The temperature experiment results indicate the positive effect of the cylindrical twisted fiber, which controls the linear birefringence error within 0.945×10(-5) per degree centigrade. Finally, the performance test results prove the cylindrical twisted fiber improves the accuracy of the stray current sensor. And its repeatability and sensitivity are about 0.367% and 0.0261/A, respectively.
本文提出了一种带有圆柱形扭曲光纤的杂散电流传感器。阐述了传感光纤上线性双折射的定量方法。在60摄氏度时,温度引起的线性双折射约为每米4.63度。然后,基于圆柱扭曲光纤产生的偏振分复用模型确定了圆双折射的需求。根据仿真结果,产生的圆双折射约为2116.9度,足以抑制线性双折射。温度实验结果表明了圆柱扭曲光纤的积极作用,它将线性双折射误差控制在每摄氏度0.945×10(-5)以内。最后,性能测试结果证明圆柱扭曲光纤提高了杂散电流传感器的精度。其重复性和灵敏度分别约为0.367%和0.0261/A。