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Probabilistic Impact Analysis of Residential Electric Vehicle Charging on Distribution Transformers

机译:居民用电动汽车充电对配电变压器的概率影响分析

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Transportation electrification by means of increasing plug-in electric vehicle (PEV) adoption presents both opportunities and challenges to power system operators. Although the electrification of transportation offers power utilities the opportunity to increase total load served in an era of flat year-over-year electricity sales, the sustainable integration of PEVs over the long term requires improved understanding of overload risks on existing power distribution systems. In this context, we propose a probabilistic model to study the impacts of residential PEV charging load on distribution systems. More specifically, the proposed model captures the uncertainty of PEV charging load and the uncertainty of residential customer load through Poisson and Gaussian distribution models respectively. These models are then utilized in a Monte Carlo simulation approach to calculate the statistical significance of resulting total load profiles and ultimately quantify the overloading risk levels on distribution transformers. The proposed model is utilized to study multiple PEV integration scenarios using residential customer load profile data of Salt Lake City and PEV charging load data available by Idaho National Laboratory.
机译:通过增加插电式电动汽车(PEV)的采用来实现运输电气化给电力系统运营商既带来了机遇,也带来了挑战。尽管运输的电气化为电力公司提供了在电力销售逐年持平的时代增加服务总负荷的机会,但从长远来看,PEV的可持续整合需要更好地了解现有配电系统的过载风险。在这种情况下,我们提出了一个概率模型来研究住宅PEV充电负荷对配电系统的影响。更具体地说,所提出的模型分别通过泊松和高斯分布模型捕获了PEV充电负荷的不确定性和居民用户负荷的不确定性。然后,将这些模型用于蒙特卡洛模拟方法中,以计算得出的总负载曲线的统计显着性,并最终量化配电变压器上的过载风险水平。利用盐湖城的居民用户负荷分布数据和爱达荷州国家实验室提供的PEV充电负荷数据,所提出的模型可用于研究多种PEV集成方案。

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