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Research on the performance of a fiber optical current transformer for high voltage filtering capacitor unbalanced current measurement

机译:一种光纤电流互感器在高压滤波电容不平衡电流测量中的性能研究

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摘要

Subject of study. A fiber-optic measurement scheme for the unbalanced current of a high-voltage filtering capacitor is proposed, where an all-fiber temperature sensor based on temperature birefringence is presented to realize the real-time correction of temperature errors. Method. Prototypes of an all-fiber filter unbalanced fiber optical current transformer type and a magneto-optical crystal type with a rated current of 1 A and a rated voltage of 258 kV have been developed and performance tested. Main results. After temperature correction, the accuracy of the all-fiber filter unbalanced fiber optical current transformer type in the range of -40 degrees C to 70 degrees C meets the error limit requirements of class 0.2 specified in the Chinese Standard GB/T 20840.8-2007 (Instrument transformers-Part 8: Electronic current transformers standard), whose accuracy, integration, reliability, and anti-interference ability are better than the magneto-optical crystal type. The proposed scheme has the ability of small current (less than 20 mA) measurement in high voltage (more than 110 kV) scenarios. (C) 2022 Optica Publishing Group
机译:研究主题。提出了一种高压滤波电容不平衡电流的光纤测量方案,提出了一种基于温度双折射的全光纤温度传感器,实现了温度误差的实时校正。方法。开发了额定电流为1 A、额定电压为258 kV的全光纤滤波器不平衡光纤电流互感器型和磁光晶体型的样机,并进行了性能测试。主要结果。经温度校正后,全光纤滤波器不平衡光纤电流互感器型在-40°C至70°C范围内的精度满足中国标准GB/T 20840.8-2007(互感器第8部分:电子式电流互感器标准)规定的0.2级误差限值要求,其精度、集成度、可靠性和抗干扰能力均优于磁光晶体型。该方案具有在高压(大于110 kV)场景下进行小电流(小于20 mA)测量的能力。(C) 2022 Optica 出版集团

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