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Impact of electric vehicle fast charging on power system voltage stability

机译:电动汽车快速充电对电力系统电压稳定性的影响

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The electric vehicle (EV) brings a sustainable future for the next generation of automobiles. Market penetration of EV has been increasing drastically in the recent past. However, EV integration into power grids adds more challenges for power system engineers worldwide. It is essential to evaluate potential grid impacts due to EV integration to guarantee consistent grid operation. Even though a number of power system impact studies have been performed covering several aspects of the problem, the impact on voltage stability has remained almost unattended. The lack of accurate load models to represent EV load for system stability studies is found to be a major gap. Hence, a static load model is developed in this study as an essential base for realistic stability studies. A specific EV load behavior which has not yet been revealed in the literature is identified during the study. Subsequently, the influence of EV load on power system voltage stability is evaluated under different scenarios. The study has discovered that integration of EV fast charging stations may significantly reduce the steady state voltage stability of the power grid.
机译:电动汽车(EV)为下一代汽车带来了可持续的未来。近年来,电动汽车的市场渗透率急剧上升。但是,将电动汽车集成到电网中给全球电力系统工程师带来了更多挑战。必须评估由于电动汽车集成而对电网造成的潜在影响,以确保电网运行稳定。尽管已经进行了许多电力系统影响研究,涵盖了问题的多个方面,但对电压稳定性的影响几乎没有人注意。发现缺乏精确的负荷模型来代表系统稳定性研究的EV负荷是一个主要的空白。因此,在本研究中开发了静载荷模型,作为进行实际稳定性研究的必要基础。在研究过程中确定了尚未在文献中揭示的特定电动汽车负荷行为。随后,评估了在不同情况下电动汽车负载对电力系统电压稳定性的影响。研究发现,电动汽车快速充电站的集成可能会大大降低电网的稳态电压稳定性。

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