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Fiber-Optic Current Sensor for Electrowinning of Metals

机译:用于金属电解沉积的光纤电流传感器

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摘要

A highly accurate fiber-optic current sensor for direct currents up to 500 kA is presented. Applications include the control of the electrolysis process for the production of metals such as aluminum, copper, zinc, magnesium, and others. The sensor offers significant advantages with regard to performance and ease of use compared to state-of-the-art Hall-effect-based current transducers. The sensor makes use of the Faraday effect in an optical fiber loop around the current-carrying bus bars. A novel scheme of a polarization-rotated reflection interferometer and fiber gyroscope technology is used to measure the magneto-optic phase shifts. An appropriate technique has been developed for packaging the sensing fiber in a flexible strip of fiber-reinforced epoxy for loop diameters of up to several meters. Sensor accuracy and repeatability are well within $pm$ 0.1% over a wide range of currents and temperatures. The sensor calibration is valid, regardless of the given magnetic field distribution, and remains stable under repeated manipulation of the flexible sensing strip.
机译:提出了一种用于高达500 kA直流电的高精度光纤电流传感器。应用包括控制电解过程的生产,以生产金属,例如铝,铜,锌,镁等。与最新的基于霍尔效应的电流传感器相比,该传感器在性能和易用性方面均具有显着优势。该传感器在载流母线周围的光纤环路中利用法拉第效应。一种偏振旋转反射干涉仪和光纤陀螺仪技术的新方案用于测量磁光相移。已经开发出一种合适的技术,用于将传感光纤包装在纤维增强的环氧树脂的柔性带中,以使环路直径达到几米。在广泛的电流和温度范围内,传感器的精度和可重复性都在0.1%以内。不管给定的磁场分布如何,传感器校准都是有效的,并且在反复操作柔性传感条时保持稳定。

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