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Hierarchical Coordinated Control of Plug-in Electric Vehicles Charging in Multifamily Dwellings

机译:多户住宅中的插电式电动汽车充电的分层协调控制

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This paper presents a hierarchical optimal control framework to coordinate the charging of plug-in electric vehicles in multifamily dwellings. A particular scenario is considered where distributed urban residential communities access electric power supplies through a common primary distribution transformer. We first formulate a centralized finite-horizon control problem. The proposed multistage mixed-integer program seeks to maximize the total utility of the charging service provider while satisfying customers' charge demands and transformer capacity constraints. By exploiting the structure of the centralized model, we decompose the centralized problem with respect to each parking deck based on the Lagrangian relaxation method and design an effective heuristic method to find feasible solutions to speed up convergence. Case studies on operations of five parking decks following different charging strategies are carried out. Simulation results demonstrate that the proposed distributed hierarchical charging strategy outperforms the centralized charging strategy from the perspective of computational requirements. System reliability and customer privacy protection are also discussed.
机译:本文提出了一种分层的最优控制框架,以协调多户住宅中插电式电动汽车的充电。考虑一种特殊的情况,即分散的城市居民社区通过公用的初级配电变压器访问电源。我们首先提出集中式有限水平控制问题。拟议的多级混合整数程序旨在最大程度地提高充电服务提供商的总效用,同时满足客户的充电需求和变压器容量约束。通过利用集中模型的结构,我们基于拉格朗日松弛方法分解了每个停车位的集中问题,并设计了一种有效的启发式方法,以找到可行的解决方案以加快收敛速度​​。根据不同的收费策略,对五个停车甲板的操作进行了案例研究。仿真结果表明,从计算需求的角度来看,本文提出的分布式分层计费策略优于集中式计费策略。还讨论了系统可靠性和客户隐私保护。

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