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Analysis on the Impact of Geomagnetic Storm on Reactive Power and Voltage in Extrahigh Voltage Power Grid

机译:地磁风暴对超高压电网无功功率和电压的影响分析

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With the growing scale of the power grid and the improvement of the voltage level, the geomagnetically induced currents (GICs) generated by geomagnetic storms has become one of the leading factors that cause large-scale power outages in power grid. Considering the global simultaneity characteristic of geomagnetic storms, this paper presents the concept of mass reactive power disturbance for the first time, analyzes the mechanism of GIC reactive power loss of transformer and reveals the mechanism of mass reactive power disturbance’s influence on voltage. Finally, combined with the practical situation of 750kV EHV power grid in China, the reactive power loss and voltage distribution under the geomagnetic storms at various intensities are calculated, with the grid operating in two typical modes, and the impact of the geomagnetic storm on voltage is illustrated, which provides the theoretical basis for the study of voltage stability.
机译:随着电网规模的扩大和电压水平的提高,地磁风暴​​产生的地磁感应电流(GIC)已成为导致电网大规模停电的主要因素之一。考虑到地磁风暴的全球同步性,本文首次提出了质量无功扰动的概念,分析了变压器GIC无功损耗的机理,揭示了质量无功扰动对电压的影响。最后,结合我国750kV超高压电网的实际情况,计算了各种强度的地雷暴下无功功率损耗和电压分布,并以两种典型模式运行,并探讨了地雷暴对电压的影响。进行了说明,为电压稳定性的研究提供了理论基础。

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