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A novel wireless converter topology for dynamic EV charging

机译:用于动态EV充电的新型无线转换器拓扑

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This paper presents a novel topology, based on inductive power transfer (IPT) that is suitable for dynamic charging of electric vehicles (EVs). The proposed topology is novel in that a super capacitor (SC) is used in conjunction with the EV IPT secondary converter to combine power transfer and energy storage in a single converter. In comparison to existing dynamic EV IPT systems, this topology requires no additional switching components, while offering the benefit of a SC energy buffer. Operational modes of the system are described in terms of the switching waveforms required to transfer energy between the grid powered primary IPT pad and the EV. A mathematical model that describes the power transfer within the system is presented along with a simple control strategy to regulate power flow. Simulated and experimental performance of a small scale prototype system in a typical dynamic charging scenario is presented to confirm the validity of the mathematical model and the control strategy.
机译:本文提出了一种基于感应功率传输(IPT)的新型拓扑,适用于电动汽车(EV)的动态充电。提出的拓扑是新颖的,因为超级电容器(SC)与EV IPT次级转换器结合使用,可以在单个转换器中组合功率传输和能量存储。与现有的动态EV IPT系统相比,此拓扑不需要额外的开关组件,同时具有SC能量缓冲器的优势。根据在电网供电的主IPT垫和EV之间传输能量所需的开关波形描述了系统的操作模式。提出了描述系统内功率传输的数学模型,以及用于调节功率流的简单控制策略。为了验证数学模型和控制策略的有效性,提出了在典型的动态充电场景下小规模原型系统的仿真和实验性能。

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