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Energy Management Scheme for an EV Smart Charger V2G/G2V Application with an EV Power Allocation Technique and Voltage Regulation

机译:具有EV功率分配技术和电压调节的EV智能充电器V2G / G2V应用的能量管理方案

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摘要

The increasing penetration of electric vehicles (EVs) in the distribution grid has established them as a prospective resource for ancillary services. These services require adequate control strategies for prompt and efficient operation. In this study, an energy management scheme (EMS) has been proposed to employ an off-board EV smart charger to support the grid during short-term variance of renewables and reactive load onset. The scheme operates by calculating power references for the charger instantaneously. The EMS incorporates a proportional power division methodology, proposed to allocate power references to the individual EVs connected to the charger DC-bus. This methodology considers the state-of-charge and battery sizes of the EVs, and it can aggregate energy from various types of EVs. The proposed scheme is compared with another power allocation method, and the entire EMS is tested under the scenarios of power mismatch and voltage sag/swell events. The results show that the proposed scheme achieves the goal of the aggregation of EVs at the charger level to support the grid. The EMS also fulfills the objectives of voltage regulation and four-quadrant operation of the smart charger.
机译:电动汽车(EVS)在分配网格中的普及率越来越多地建立为辅助服务的前瞻性资源。这些服务需要适当的控制策略以提示和有效的操作。在这项研究中,已经提出了一种能源管理方案(EMS)来使用外板EV智能充电器,以支持在可再生能源和反应性负荷发作的短期方差期间的网格。该方案通过瞬间计算充电器的功率引用来操作。 EMS包含比例的电力分裂方法,建议为连接到充电器直流总线的各个EVS分配电力引用。该方法考虑了EVS的充电状态和电池尺寸,可以从各种类型的EV中汇总能量。将所提出的方案与另一种功率分配方法进行比较,并且在电源不匹配和电压凹槽/膨胀事件的情况下测试整个EMS。结果表明,该方案达到了在充电器水平上聚集EV的目标,以支持网格。 EMS还满足了电压调节的目标和智能充电器的四象限运行。

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