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Experimental analysis of EMC immunity for field installed intelligent equipment, of intelligent substation

机译:智能变电站现场安装智能设备EMC抗扰度的实验分析

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With the construction of intelligent substation, it is a trend that the secondary intelligent devices are field installed. After field installation of intelligent devices, the electromagnetic environment in switch yard is much more serious than which in relay protection room. After the abnormal condition of the 100kV intelligent substation occurred, the EMC experiments are carried out and the structure of merging unit is improved. For quantitatively analyzing the strength of the disturbance signal, the electromagnetic disturbance signals are recorded when the switch operated. Besides, when another 500kV intelligent substation starts, the electromagnetic disturbance signals are also recorded. The amplitude and time-frequency characteristics of the electromagnetic disturbance signals are analyzed. Based on the results of EMC experiments and the amplitude and time-frequency characteristics of disturbance signals, this paper analyzes the applicability of EMC test standard used in China. And it is pointed out that the test standard is not enough to check the field installation secondary intelligent device. Finally, some suggestions to improving the EMC performance of field installation secondary intelligent devices are put forward.
机译:随着智能变电站的建设,二次智能设备的现场安装已成为一种趋势。经过智能设备的现场安装,开关场的电磁环境比继电保护室的电磁环境更为严重。在100kV智能变电站发生异常情况后,进行了EMC实验,对合并单元的结构进行了改进。为了定量分析干扰信号的强度,当开关操作时记录电磁干扰信号。此外,当另一个500kV智能变电站启动时,也会记录电磁干扰信号。分析了电磁干扰信号的幅度和时频特性。基于EMC实验的结果以及干扰信号的幅值和时频特性,分析了EMC测试标准在我国的适用性。并指出,该测试标准还不足以对现场安装的二次智能设备进行检查。最后,提出了提高现场安装二次智能设备EMC性能的一些建议。

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