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Earth Fault Distance Estimation Using Active Traveling Waves in Energized-Compensated MV Networks

机译:有源补偿MV网络中使用行进波的接地故障距离估计

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In Nordic countries, distribution networks are traditionally unearthed and increasingly compensated. For such networks, switching their neutral point to the earth is practically applied through a resistor for better selectivity functions of earth faults. In this paper, the neutral switching and, consequently, an arrival time of the aerial mode traveling wave reflected from the fault point are utilized to accurately determine the earth fault distance. A concept to create traveling waves is implemented by earthing the neutral via a controlled thyristor that provides a short period of high fault current and produces traveling waves to estimate the fault distance. Much higher transient signals are generated by earthing through an opposite charged capacitor. A capacitor-resistor divider is utilized to measure the reflected surge over a heterogeneous distribution feeder. An adaptive setting is proposed for stamping the arrival surge. The results provide evidence of the efficacy of the proposed fault distance estimation.
机译:在北欧国家,配电网络传统上是发掘的,并且得到了越来越多的补偿。对于此类网络,实际上是通过电阻器将其中性点切换到大地,以实现更好的接地故障选择性功能。在本文中,利用中性点开关以及因此从故障点反射的空中模式行波的到达时间来准确确定接地故障距离。通过经由可控硅将中性点接地来实现产生行波的概念,该可控硅可提供短时间的高故障电流并产生行波以估计故障距离。通过反向充电的电容器接地会产生更高的瞬态信号。电容-电阻分压器用于测量异构配电馈线上的反射浪涌。提出了一种自适应设置来标记到达浪涌。结果提供了所提出的故障距离估计的有效性的证据。

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