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High precision optical current measurement system based on the faraday-effect with a large bandwidth

机译:基于法拉第效应的大带宽高精度光学电流测量系统

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摘要

In this paper, a high dynamic, high precision optical current measurement system based on the Faraday-effect is presented. First, the sensor concept is explained and different sensor constructions are analyzed. Then, an implementation of the concept based on a rare-earth iron garnet film is investigated. This measurement system uses multiple signal processing channels to increase the signal-to-noise ratio. Furthermore, the range of the rotation of the polarization plane exceeds 90 ° and therefore requires a counting mechanism to count the number of rotations. Finally, the precision of the presented system is analyzed. The precision is determined to be 4.9 ppm for a rotation range of 3300°.
机译:本文提出了一种基于法拉第效应的高动态,高精度光学电流测量系统。首先,解释了传感器的概念,并分析了不同的传感器结构。然后,研究了基于稀土铁石榴石薄膜的概念的实现。该测量系统使用多个信号处理通道来增加信噪比。此外,偏振面的旋转范围超过90°,因此需要计数机构来对旋转数进行计数。最后,对所提出系统的精度进行了分析。对于3300°的旋转范围,精度确定为4.9 ppm。

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