并网服务区储能系统与插电式电动汽车快速充电的最优控制

F. Liberati, Roberto Germanà, Emanuele De Santis, A. Giorgio
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引用次数: 0

摘要

由于汽车制造商在新一代插电式电动汽车(pev)中实施的充电率不断提高,充电点运营商也在不断调整充电基础设施。为了最大限度地提高充电运营商的投资回报,并最大限度地减少对电网的影响,一个关键方面是找到技术解决方案,允许缩小充电站/充电区域与电网之间连接点的标称功率流,因为运营费用受到该参数的显著影响。为此,本研究探讨了储能系统(ESS)和电动汽车快速充电的最优控制,以减少充电区域内充电负荷对电网的影响。在限制从电网中提取的充电功率和限制给定参考点周围ESS充电状态的波动,同时保持充电功率接近标称功率之间实现了一种权衡。我们提出了一个确定性的解决方案,在现实的假设下,充电运营商知道在控制期间的总充电功率需求的分段常量估计。数值仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Control of an Energy Storage System and Plug-in Electric Vehicles Fast Charging in a Grid-connected Service Area
As a result of the increasing charging rate implemented by car manufacturers in the new generation of plug-in electric vehicles (PEVs), charging point operators are continuously adjusting the charging infrastructure accordingly. In order to maximize the charging operator’s return of investment and minimize the impact on the electricity grid, a key aspect is finding technical solutions which allow to downsize the nominal power flow at the point of connection between the charging station/charging area and the electricity grid, as the operating expenses are significantly affected by this parameter. In this regard, this study discusses the optimal control of an energy storage system (ESS) and PEVs fast charging for reducing the impact on the grid of the charging load in a charging area. A trade-off is achieved between the objectives of keeping limited the charging power withdrawal from the grid and the one of keeping limited the fluctuation of the state of charge of the ESS around a given reference, while keeping the charging power near to the nominal one. We present a deterministic solution, under the realistic assumption that the charging operator knows a piece-wise constant estimate of the aggregated charging power demand over the control period. Numeric simulations are provided to validate the proposed approach.
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