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Secondary Reserve Provision through a Smart Aggregation Strategy of Electric Vehicles

机译:二级储备通过电动汽车的智能聚合策略提供

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The electric vehicles (EVs) are flexible loads that can be controlled to provide secondary reserve services (RSs) to transmission network operator (TNO) via charging or stop charging the batteries. An aggregator, as an intermediary agent between the EVs owners and the TNO, can schedule RSs through EV charging control. This paper proposes a smart aggregation strategy for the EV charging control that allows the aggregator's participation in the reserve market, while guaranteeing the energy required by the EVs for transportation. The smart strategy, based on a linear programming model, coordinates the charging of EVs, and allows offering RSs and selling energy produced by distributed generation units to maximize the aggregator’s profit. Results for a case study with 1,000 vehicles show that the strategy effectively contributes to the offering of RSs to the TNO, while satisfying the energy requirements of the EV owners.
机译:电动车辆(EVS)是可以控制的柔性负载,以通过充电或停止为电池充电或停止向传输网络运营商(TNO)提供辅助储备服务(RSS)。 作为EVS所有者和TNO之间的中间代理的聚合器可以通过EV充电控制来安排RS。 本文提出了展示EV充电控制的智能聚合策略,允许聚集器参与储备市场,同时保证EVS运输所需的能量。 基于线性规划模型的智能策略协调EVS的充电,并允许提供由分布式发电单元产生的RSS和销售能量,以最大化聚合器的利润。 结果有1000辆车的案例研究表明,该策略有效地有助于为TNO提供RSS,同时满足EV业主的能源需求。

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