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Two-Stage Optimal Scheduling of Electric Vehicle Charging Based on Transactive Control

机译:基于主动控制的电动汽车充电两阶段最优调度

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摘要

In this paper, a two-stage optimal charging scheme based on transactive control is proposed for the aggregator to manage day-ahead electricity procurement and real-time electric vehicles (EV) charging management in order to minimize its total operating cost. The day-ahead electricity procurement considers both the day-ahead energy cost and expected real-time operation cost. In the real-time charging management, the cost of employing the charging flexibility from the EV owners is explicitly modeled. The aggregator uses a transactive market to manage the real-time charging demand to provide the regulating power. A model predictive control-based method is proposed for the aggregator to clear the transactive market. The real-time charging decisions of the EVs are determined by the clearing of the proposed transactive market according to the real-time requests and preferences of the EV owners. As such, the aggregators decisions in the real-time EV charging management and regulating power markets can be optimized. At the same time, the charging requirements and response preferences of the EV owners are respected. Case studies using real world driving data from the Danish National Travel Surveys were conducted to verify the proposed framework.
机译:本文提出了一种基于主动控制的两阶段最优充电方案,用于聚合器管理日前购电和实时电动汽车(EV)充电管理,以最大程度地降低其总运营成本。提前电力采购同时考虑了提前能源成本和预期的实时运行成本。在实时充电管理中,明确模拟了利用电动汽车所有者的充电灵活性的成本。聚合器使用交易市场来管理实时充电需求以提供调节功率。提出了一种基于模型预测控制的方法来使聚合器清除交易市场。电动汽车的实时充电决策是根据电动汽车所有者的实时请求和偏好,通过清除提议的交易市场来确定的。这样,可以优化实时EV充电管理和调节电源市场中的聚合器决策。同时,尊重电动汽车所有者的充电要求和响应偏好。使用来自丹麦国家旅行调查的真实世界驾驶数据进行了案例研究,以验证提议的框架。

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