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On the control of energy storage systems for electric vehicles fast charging in service areas

机译:关于服务区域中电动汽车快速充电的储能系统的控制

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This paper presents a real time control strategy for energy storage systems integration in electric vehicles fast charging applications combined with generation from intermittent renewable energy sources. A two steps approach taking advantage of the model predictive control methodology is designed on purpose to optimally allocate the reference charging power while managing the priority among the plugged vehicles and then control the storage for efficiently sustaining the charging process. Two different use cases are considered: in the former the charging area is disconnected from the grid, so that the objective is to minimize the deviation of electric vehicles charging power from the nominal value; in the latter the focus is on the point of connection to the grid and the need of mitigating the related power flow. In both cases the fundamental requirement for feasible control system operation is to guarantee stability of the storage's state of charge over the time. Simulation results are provided and discussed in detail, showing the effectiveness of the proposed approach.
机译:本文提出了一种实时控制策略,用于电动汽车快速充电应用中的能量存储系统集成以及间歇性可再生能源的发电。专门设计了一种利用模型预测控制方法的两步方法,以便在管理插电式车辆之间的优先级的同时,优化分配参考充电功率,然后控制存储以有效维持充电过程。考虑了两种不同的使用情况:在前一种情况下,充电区域与电网断开连接,目的是使电动汽车的充电功率与标称值之间的偏差最小。在后者中,重点在于与电网的连接点以及减轻相关电力流的需求。在这两种情况下,可行的控制系统操作的基本要求都是要保证存储在一段时间内的充电状态稳定。仿真结果提供并进行了详细讨论,表明了该方法的有效性。

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