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Analytical Method for Ferroresonance Solutions in Series Compensated Power Systems due to GICs: A Graphical Approach

机译:GICS串联补偿电力系统中的分析方法:一种图形方法

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Arising from solar storms, the emerging disturbances imposed on Earth’s magnetic field, can drive the flow of quasi-DC geomagnetically induced currents (GICs) in power transmission systems. The ground connections of power transformers provide a closed path through which GICs flow and push their cores into half-cycle saturation. In addition, series capacitor units are often utilized to compensate HV transmission systems. The half-cycle saturation of power transformers due to GICs, on the one hand, and the proximity of such saturated transformers to capacitor compensation units on the other can lead to the inception of ferroresonance in series compensated power systems. To prevent catastrophic equipment failures due to ferroresonance during GICs, it is crucial to determine ferroresonance solutions of networks. This paper’s principal contribution is to develop an approach to analyze ferroresonance in series capacitor compensated networks during GICs. This is attained by employing a simplified equivalent single-phase model on which to mount the analysis. The authenticity of this method is verified through an EMTP-RV simulation of a benchmark example power system.
机译:从太阳风暴产生,施加在地球磁场上的新出现紊乱,可以驱动电力传输系统中的准直流地磁诱导电流(GICS)的流动。电力变压器的接地连接提供了一个封闭的路径,通过该封闭式路径,并将其核心推入半周期饱和度。此外,串联电容器单元通常用于补偿HV传输系统。电力变压器的半周期饱和因GICS引起的,一方面,这种饱和变压器对电容器补偿单元的接近可能导致串联补偿电力系统中的铁铿。为了防止由于GICS期间Ferroreoniss导致的灾难性设备故障,确定网络的Ferroreonance解决方案至关重要。本文的主要贡献是开发一种方法,可以在GICS期间分析串联电容补偿网络中的Ferroreonance。通过采用简化的等效单相模型来实现该模型来安装分析。通过基准示例电力系统的EMTP-RV模拟来验证该方法的真实性。

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