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Network constrained transactive control for electric vehicles integration

机译:网络约束的电动汽车集成式主动控制

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摘要

Electric vehicles (EVs) are commonly recognized as smart grid assets in addition to their environmental benefits. However, uncoordinated charging or sole cost minimization based charging of electric vehicles may bring undesirable peak demands and voltage violations in the distribution system. This paper applies the transactive control concept to integrate electric vehicles into the power distribution system with the purpose of minimizing the charging cost of electric vehicles as well as preventing grid congestions and voltage violations. A hierarchical EV management system is proposed where three actors are considered: distribution system operator (DSO), fleet operators and EV owners. In the lower level of the hierarchy, the fleet operator centrally manages the charging schedule of electric vehicles; in the upper level of the hierarchy, the DSO uses transactive control technique to coordinate the aggregated charging behavior of fleet operators. Detailed models are presented to illustrate the operation of the hierarchical EV management system. In the end, simulations are presented to show the effectiveness of the proposed solutions.
机译:电动汽车(EV)除了具有环保优势外,通常也被视为智能电网资产。然而,基于不协调的充电或基于唯一成本最小化的电动车辆的充电可能在配电系统中带来不期望的峰值需求和电压违规。本文应用无源控制概念将电动汽车集成到配电系统中,以最小化电动汽车的充电成本,并防止电网拥堵和电压违规。提出了一个分级的EV管理系统,其中考虑了三个参与者:配电系统运营商(DSO),车队运营商和EV所有者。在层次结构的较低级别,车队运营商集中管理电动汽车的充电时间表;在层次结构的上层,DSO使用主动控制技术来协调车队运营商的汇总收费行为。提出了详细的模型来说明分层EV管理系统的操作。最后,仿真表明了所提出解决方案的有效性。

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