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An Elimination Method of Temperature-Induced Linear Birefringence in a Stray Current Sensor

机译:杂散电流传感器中温度引起的线性双折射的消除方法

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摘要

In this work, an elimination method of the temperature-induced linear birefringence (TILB) in a stray current sensor is proposed using the cylindrical spiral fiber (CSF), which produces a large amount of circular birefringence to eliminate the TILB based on geometric rotation effect. First, the differential equations that indicate the polarization evolution of the CSF element are derived, and the output error model is built based on the Jones matrix calculus. Then, an accurate search method is proposed to obtain the key parameters of the CSF, including the length of the cylindrical silica rod and the number of the curve spirals. The optimized results are 302 mm and 11, respectively. Moreover, an effective factor is proposed to analyze the elimination of the TILB, which should be greater than 7.42 to achieve the output error requirement that is not greater than 0.5%. Finally, temperature experiments are conducted to verify the feasibility of the elimination method. The results indicate that the output error caused by the TILB can be controlled less than 0.43% based on this elimination method within the range from ?20 °C to 40 °C.
机译:在这项工作中,提出了一种使用圆柱螺旋光纤(CSF)消除杂散电流传感器中的温度感应线性双折射(TILB)的方法,该方法会产生大量的圆形双折射以基于几何旋转效应消除TILB 。首先,推导表示CSF元件极化演化的微分方程,并基于琼斯矩阵演算建立输出误差模型。然后,提出了一种精确的搜索方法来获取CSF的关键参数,包括圆柱二氧化硅棒的长度和曲线螺旋的数量。优化结果分别为302 mm和11。此外,提出了一个有效的因素来分析TILB的消除,该消除因子应大于7.42才能达到不大于0.5%的输出误差要求。最后,进行了温度实验以验证消除方法的可行性。结果表明,在20℃至40℃的范围内,采用这种消除方法,可将TILB引起的输出误差控制在0.43%以内。

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