Equivalent circuits for modelling geomagnetically induced currents from a neighbouring network

D. Boteler, A. J. C. Lackey, L. Marti, S. Shelemy
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引用次数: 23

Abstract

Geomagnetically induced currents (GIC) can pose a problem for power system operation. To assess the geomagnetic threat requires modelling of the GIC in the power system. However, as well as the characteristics of the system itself, GIC are affected by connections to neighbouring systems. This paper considers three choices of equivalent circuit for a neighbouring system. Model calculations are made for the Ontario system with equivalent circuits for the neighbouring Manitoba system, and vice versa. Values from these calculations are compared with the exact values determined from model calculations for the combined Ontario and Manitoba systems. The calculations with equivalent circuits produce errors in the GIC at substations that diminish with increasing distance of the substation from the connection to the neighbour. Comparison of the results showed that the best choice for an equivalent circuit comprises the induced voltage and resistance for the first transmission line into the neighbouring system.
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模拟邻近网络地磁感应电流的等效电路
地磁感应电流(GIC)是电力系统运行中的一个问题。为了评估地磁威胁,需要对电力系统中的GIC进行建模。但是,除了系统本身的特性外,GIC还受到与邻近系统连接的影响。本文考虑了相邻系统等效电路的三种选择。模型计算为安大略省系统与等效电路为邻近的马尼托巴系统,反之亦然。将这些计算的值与安大略省和马尼托巴省联合系统的模型计算确定的精确值进行比较。等效电路的计算在变电站的GIC中产生误差,该误差随着变电站与邻居的连接距离的增加而减小。比较结果表明,等效电路的最佳选择是第一输电线路到邻近系统的感应电压和感应电阻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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