多功能电动汽车快速充电技术

Bingkun Song, Lei Wang, U. Madawala, C. Baguley
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摘要

对于许多配电网运营商(DNOs)来说,单相负荷所连接的相位是未知的。这可能会导致各阶段负载不平衡的问题,而未来大型电动汽车(EV)充电负载的影响将大大加剧这一问题。此外,电动汽车充电系统的实施可能会在电力系统上产生显着的谐波,这是转换器运行的结果。因此,本文提出了一种结合相位平衡和谐波抑制特性的电动汽车快速充电技术。这使得通过安装一个单元就可以实现改善本地配电网运行所必需的多种重要功能。因此,基于该技术的机组适合配电网的大规模和战略性部署。本文详细介绍了该技术,给出了相关理论和控制策略。为了证明该技术的适用性,给出了50kw快速电动汽车充电器在各种不平衡负载条件下的仿真结果。
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A Multi-functional Fast Electric Vehicle Charging Technique
For many distribution network operators (DNOs), the phases to which single-phase loads are connected is unknown. This can present a problem in terms of unbalanced loading across phases, which will be significantly exacerbated by the future impact of large-scale electric vehicle (EV) charging loads. In addition, the implementation of EV charging systems can give rise to the presence of significant harmonics on power systems, as a result of converter operation. Therefore, this paper proposes a fast EV charging technique that incorporates phase balancing and harmonic suppression features. This allows multiple and important functions that are necessary for the improved operation of a local distribution network to be achieved through the installation of a single unit. Consequently, units based on the proposed technique suit the large-scale and strategic deployment in distribution networks. The paper describes the technique in detail, presenting relevant theory and the control strategy. To demonstrate the applicability of the proposed technique, simulated results of a 50 kW fast EV charger are presented under various unbalanced load conditions.
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