首页> 外文会议>International Conference on Electrical Engineering(ICEE 2009): towards a safe, reliable, sustainable, intelligent power system;ICEE 2009 >Development of DC Optical Current Transformer for Cable Protective Relay in Hokkaido-Honshu HVDC Link
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Development of DC Optical Current Transformer for Cable Protective Relay in Hokkaido-Honshu HVDC Link

机译:北海道-本州高压直流输电线路电缆保护继电器用直流光电流互感器的研制

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We have developed an optical current transformer (OCT) based on the Faraday effect using a reflection Sagnac interferometer for DC current measurement, and we have been performing a field test on the Hokkaido-Honshu HVDC Link in Japan since Feb. 2008 in order to confirm its stability over time and under severe environment conditions. The developed OCT was designed to be installed under the cable head bushing without disassembling it. Therefore, the diameter of the sensor head is comparatively large: about 2m. The rated current is DC±1200A. For about one year of the field test, the variation of ambient temperature around the sensor head was from -15°C to 27°C, and we confirmed that the accuracy of our developed OCT conformed to the Japanese Electrotechnical Committee (JEC)- 1201 class 1PS requirements. This is the standard of AC current transformers, but the required error is lower than the full scale error generally used for DC current measurement. Therefore, in order to ensure the accuracy of our developed OCT in the small current region, the OCT is estimated by this standard. About one year of field data shows that the performance of our developed OCT is stable with no significant change.
机译:我们已经开发出了基于法拉第效应的光学电流互感器(OCT),使用了反射Sagnac干涉仪进行直流电流测量,并且我们从2008年2月开始在日本的北海道-本州HVDC链路上进行了现场测试,以确认在一段时间内以及在恶劣的环境条件下其稳定性。研发的OCT设计为无需拆卸即可安装在电缆头套管下。因此,传感器头的直径比较大:大约2m。额定电流为DC±1200A。在大约一年的现场测试中,传感器头周围的环境温度从-15°C到27°C,并且我们确认我们开发的OCT的精度符合日本电工委员会(JEC)-1201 1PS级要求。这是交流电流互感器的标准,但是所需的误差低于通常用于直流电流测量的满量程误差。因此,为了确保我们开发的OCT在小电流区域中的准确性,OCT以此标准估算。大约一年的现场数据表明,我们开发的OCT的性能稳定,无明显变化。

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