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Distribution grid impact of large number of EV charging with improved characterization

机译:具有改进表征的大量EV充电的分布网格影响

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The impact of EV charging on distribution grids has been extensively investigated by assuming it as a constant active power load. The recent studies, however, contrarily show that the EV charging load is not only a mixture of constant power, constant current, and constant impedance loads but also a significant reactive power could be involved in it. Moreover, the active and reactive powers involved are heavily dependent on the state of charge (SOC) of the EV battery. Nevertheless, these aspects of the EV charging have not reflected in the models of the EV loads for the currently widely available impact analyses. Therefore, this paper proposes a novel method of the impact analysis by incorporating these unaccounted aspects of the EV charging in the EV load model. The proposed methodology has been tested on an IEEE 37 bus test system. The obtained results show that the impact of the EV charging for the proposed method could be considerably different to that for the conventional methods.
机译:通过假设其作为恒定的有功功率负载,通过广泛研究了EV充电对分配网格的影响。然而,最近的研究表明,EV充电负荷不仅是恒定功率,恒定电流和恒定阻抗负荷的混合,而且还可以参与其中显着的无功功率。此外,所涉及的活性和无功功率严重依赖于EV电池的充电状态(SOC)。尽管如此,EV充电的这些方面尚未反映在EV负载的模型中,用于目前可广泛的影响分析。因此,本文提出了一种通过纳入EV负载模型中的EV充电的这些未计算的方面来进行影响分析的新方法。所提出的方法已经在IEEE 37总线测试系统上进行了测试。所得结果表明,对于常规方法,EV充电对所提出的方法的影响可能与传统方法相比不同。

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