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Assessment of the Impact of Geomagnetic Disturbances on Korean Electric Power Systems

机译:评估地磁干扰对韩国电力系统的影响

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Geomagnetic disturbances have the potential to impact the operation of electric power systems, and thus the assessment of their impacts is required as the first step for secure power system operations. While the effects of the disturbances have been observed primarily at higher latitudes, geomagnetic problems are also observed at mid and low latitude locations, in particular including neighboring countries to Korea such as China and Japan. This paper deals with the assessment of impact of geomagnetic disturbances on Korean electric power systems. For the assessment, the geoelectric fields induced by the geomagnetic disturbances are calculated using geomagnetic data measured over the past 20 years in order to quantify the strength of geomagnetic events in Korea. Then, the geomagnetic currents on the grid driven by the geoelectric fields are computed. Finally, the increased reactive power absorption in high voltage transformers is analyzed and accordingly the change of system voltage magnitudes is identified to evaluate whether the system maintains the voltage stability. The systematic study concludes that during a strong geomagnetic disturbance, the Korean electric power system satisfies the associated standards in the U.S. and maintains system stability.
机译:地磁干扰有可能影响电力系统的运行,因此,作为安全的电力系统运行的第一步,需要对其影响进行评估。尽管主要在较高的纬度上观察到了干扰的影响,但在中低纬度地区也观察到了地磁问题,特别是包括韩国和中国等日本的邻国。本文旨在评估地磁干扰对韩国电力系统的影响。为了进行评估,使用过去20年中测得的地磁数据计算了由地磁干扰引起的地电场,以便量化韩国的地磁事件强度。然后,计算由地电场驱动的网格上的地磁电流。最后,分析了高压变压器中增加的无功功率吸收,并因此确定了系统电压幅度的变化,以评估系统是否维持电压稳定性。系统研究得出的结论是,在强烈的地磁扰动下,韩国电力系统满足了美国的相关标准并保持了系统稳定性。

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