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Impact of the EHV Power System on Geomagnetically Induced Currents in the UHV Power System

机译:超高压电力系统对超高压电力系统中地磁感应电流的影响

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摘要

Earlier calculations of geomagnetically induced currents (GICs) in Chinese power grids have mainly concentrated on the highest voltage-level system whose geomagnetic risk is considered to be the largest, thus ignoring secondary voltage-level systems. With the 1000-kV system being newly added to China's power system, it is significant to figure out the interaction between GIC in the 500 kV [extremely high voltage (EHV)] system and GIC in the 1000 kV [ultra-high voltage (UHV)] system. Based on the North China-Central China-East China Power Grids, this paper establishes a single-voltage grid by only considering the 1000-kV system and a dual-voltage grid by considering the 1000- and 500-kV systems and investigates GIC in these two grids by developing their GIC “Full-node models.” The impact of the 500-kV system on GIC in the 1000-kV system is analyzed. GIC risks in the UHV and EHV systems are assessed by comparing calculated GIC data with monitored values of GIC. The results show that the impact of the 500-kV system on GIC in the 1000-kV system is obvious, both the EHV and the UHV grid have a high GIC risk. So calculating GIC in the UHV system and in the EHV system should utilize GIC modeling methods for multivoltage power grids.
机译:早期中国电网中的地磁感应电流(GIC)的计算主要集中在地磁风险被认为是最大的最高电压等级系统上,因此忽略了次级电压等级系统。随着1000 kV系统被新添加到中国电力系统中,弄清楚500 kV [极高压(EHV)]系统中的GIC和1000 kV [超高压(UHV)]中的GIC之间的相互作用非常重要。 )]系统。本文基于华北-华中-华东电网,仅考虑1000kV系统建立单电压电网,考虑1000kV和500kV系统建立双电压电网,并研究了GIC。通过开发其GIC“全节点模型”来实现这两个网格。分析了500 kV系统对1000 kV系统中GIC的影响。通过将计算出的GIC数据与GIC的监测值进行比较,可以评估特高压和超高压系统中的GIC风险。结果表明,在1000 kV系统中500 kV系统对GIC的影响是明显的,超高压和特高压电网均具有较高的GIC风险。因此,在特高压系统和超高压系统中计算GIC应该针对多电压电网使用GIC建模方法。

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