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Extreme fast charging station architecture for electric vehicles with partial power processing

机译:具有部分功率处理的电动汽车的超快速充电站架构

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This paper introduces a power delivery architecture for an Extreme Fast Charging (XFC) station that is meant to simultaneously charge multiple electric vehicles (EVs) with a 300-mile range battery pack in about 15 minutes. The proposed approach can considerably improve overall system efficiency as it eliminates redundant power conversion by making use of partial power rated dc-dc converters to charge the individual EVs as opposed to a traditional fast charging station structure based on full rated dedicated charging converters. Partial power processing enables independent charging control over each EV, while processing only a fraction of the total battery charging power. Energy storage (ES) and renewable energy systems such as photovoltaic (PV) arrays can be easily incorporated in the versatile XFC station architecture to minimize the grid impacts due to multi-mega watt charging. A control strategy is discussed for the proposed XFC station. Experimental results from a scaled down laboratory prototype are provided to validate the functionality, feasibility and cost-effectiveness of the proposed XFC station power architecture.
机译:本文介绍了一种用于极端快速充电(XFC)站的供电架构,该架构旨在在15分钟左右的时间内用300英里范围的电池组同时为多辆电动汽车(EV)充电。与传统的基于全额定专用充电转换器的快速充电站结构相比,该方法可通过使用额定部分功率的dc-dc转换器为单个EV充电,从而消除了冗余功率转换,因此可显着提高整体系统效率。部分电源处理可对每个EV进行独立的充电控制,而仅处理总电池充电功率的一小部分。能量存储(ES)和可再生能源系统(例如光伏(PV)阵列)可以轻松地集成到多功能XFC站架构中,以最大程度地减少因多兆瓦充电而对电网造成的影响。讨论了所建议的XFC站的控制策略。提供了按比例缩小的实验室原型的实验结果,以验证所提出的XFC站电源架构的功能,可行性和成本效益。

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