采用光纤作为法拉第传感器的光电流互感器的现场试验

T. Kumai, H. Nakabayashi, Y. Hirata, M. Takahashi, K. Terai, T. Kaminishi, K. Uehara
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引用次数: 13

摘要

研制了以二氧化硅光纤作为法拉第传感器的光电流互感器,并在275 kV变电站进行了为期2年的现场测试,以验证其长期可靠性。对于初始性能,用于测量的OCT的电流特性或比值误差满足日本电工委员会(JEC)-1201级1PS,用于保护的OCT的电流特性或比值误差在-20/spl°C至55/spl°C范围内满足1T级。在现场性能方面,用于测量的OCT的比值误差稳定在/spl plusmn/1%以内2年。测量用OCT的比值误差电流特性满足1PS级,保护用OCT也取得了较好的效果。此外,oct还能准确地测量系统故障引起的暂态电流。因此,我们通过现场试验确认了OCT在现场的长期可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field trial of optical current transformer using optical fiber as Faraday sensor
The optical current transformers (OCTs) using silica optical fiber as Faraday sensor were manufactured and tested in the field (275 kV substation) for 2 years to confirm their long-term reliability. Regarding the initial performance the current characteristic or the ratio error of the OCT for measurement satisfied the Japanese Electrotechnical Committee (JEC)-1201 class 1PS and that of the OCT for protection satisfied class 1T in the range from -20/spl deg/C to 55/spl deg/C. Regarding the field performance the ratio error of the OCT for measurement was stable within /spl plusmn/1% for 2 years. The current characteristic of the ratio error of the OCT for measurement satisfied class 1PS and a good result was also obtained for the OCT for protection. Also the OCTs measured accurately transient current that arose from a fault in the system. Therefor we confirm the long-term reliability of the OCT in the field through the field trial.
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