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Distributed Power Profile Tracking for Heterogeneous Charging of Electric Vehicles

机译:电动汽车异构充电的分布式功率曲线跟踪

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Coordinated charging of plug-in electric vehicles (PEVs) can effectively mitigate the negative effects imposed on the power distribution grid by uncoordinated charging. Simultaneously, coordinated charging algorithms can accommodate the PEV user’s needs in terms of desired state-of-charge and charging time. In this paper, the problem of tracking an arbitrary power profile by coordinated charging of PEVs is formulated as a discrete scheduling process, while accounting for the heterogeneity in charging rates and restricting the charging to only the maximum rated power. Then, a novel distributed algorithm is proposed to coordinate the PEV charging and eliminate the need for a central aggregator. It is guaranteed to track, and not exceed, the power profile imposed by the utility, while maximizing the user convenience. A formal optimality analysis is provided to show that the algorithm is asymptotically optimal in case of Homogeneous charging, while it has a very small optimality gap for the heterogeneous case. Numerical simulations considering realistic charging scenarios with different penetration levels and tracking of a valley-filing profile are presented to validate the proposed charging algorithm.
机译:插电式电动汽车(PEV)的协调充电可以有效减轻不协调充电对配电网造成的负面影响。同时,协调的充电算法可以根据所需的充电状态和充电时间满足PEV用户的需求。在本文中,通过考虑PEV的协调充电来追踪任意速率的问题,将PEV的协调充电跟踪为一个离散的调度过程,同时考虑了充电速率的异质性并将充电限制为仅最大额定功率。然后,提出了一种新颖的分布式算法来协调PEV充电并消除对中央聚合器的需求。它保证跟踪而不超过公用事业公司强加的功率曲线,同时最大程度地提高了用户的便利性。提供形式上的最优性分析,以表明该算法在同质充电的情况下是渐近最优的,而对于异质情况则具有很小的最优间隙。提出了考虑具有不同渗透水平的现实装料方案并跟踪谷底剖面的数值模拟,以验证所提出的装料算法。

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