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Optimal Design of DC Fast-Charging Stations for EVs in Low Voltage Grids

机译:低压电网电动汽车直流快速充电站的优化设计

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摘要

DC Fast Charging Station (DCFCS) is essential for widespread use of Electric Vehicle (EVs). It can recharge EVs in direct current in a short period of time. In recent years, the increasing penetration of EVs and their charging systems are going through a series of changes. This paper addresses the design of a new DCFCS for EVs coupled with a local Battery Energy Storage (BES). DCFCS is equipped with a bidirectional AC/DC converter for feeding power back to the grid, two lithium batteriesand a DC/DC converter. This paper proposes an optimal size of the BES to reduce the negative impacts on the power grid through the application of electrical storage systems within the DC fast charging stations. The proposed solution decreases the charging time and the impact on the low voltage (LV) grid significantly. The charger can be used as a multifunctional grid-utility such as congestion management and load levelling. Finally, an optimal design of the DCFSC has been done to evaluate the feasibility and the operability of the system in different EVs load conditions.
机译:直流快速充电站(DCFCS)对于电动汽车(EV)的广泛使用至关重要。可以在短时间内用直流电为电动汽车充电。近年来,电动汽车及其充电系统的日益普及正在经历一系列变化。本文介绍了一种新的电动汽车DCFCS的设计,并结合了本地电池能量存储(BES)。 DCFCS配备了双向AC / DC转换器,用于将功率反馈给电网,两个锂电池和一个DC / DC转换器。本文提出了BES的最佳尺寸,以通过在DC快速充电站内应用蓄电系统来减少对电网的负面影响。所提出的解决方案大大减少了充电时间,并大大降低了对低压(LV)电网的影响。充电器可以用作多功能电网工具,例如拥塞管理和负载均衡。最后,对DCFSC进行了优化设计,以评估系统在不同电动汽车负载条件下的可行性和可操作性。

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