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Hybrid Bidirectional Wireless EV Charging System Tolerant to Pad Misalignment

机译:混合式双向无线EV充电系统可容忍不对中

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摘要

Electric vehicles (EVs) are becoming increasingly popular as a means of future transport for sustainable living. However, wireless charging of EVs poses a number of challenges related to interoperability, safety, pad misalignment, etc. In particular, pad misalignments invariably cause changes in system parameters which in turn lead to increase in losses as well as reduction in power throughput, making the charging process long and inefficient. Consequently, wireless charging systems that are less sensitive to pad misalignments have become preferable. This paper, therefore, presents a hybrid wireless power transfer (WPT) system that charges EVs at constant rate despite large misalignments between charging pads. The proposed charging system uses a combination of two different resonant networks to realize a constant and efficient charging process. A mathematical model is also developed, showing as to how the two resonant networks can be combined to compensate for pad misalignments. To demonstrate the validity of the proposed concept as well as the accuracy of the mathematical model, theoretical performance is compared with both simulations and experimental results of a prototype 3.3 kW hybrid bidirectional WPT system. Results clearly indicate that the proposed hybrid WPT system is efficient and offers a constant charging profile over a wide range of spatial (three-dimensional) pad misalignments.
机译:电动汽车(EV)作为未来实现可持续生活运输的手段正变得越来越流行。但是,EV的无线充电带来了与互操作性,安全性,焊盘未对准等相关的许多挑战。特别是,焊盘未对准始终会导致系统参数发生变化,进而导致损耗增加以及功率吞吐量降低,从而充电过程漫长且效率低下。因此,对垫未对准不太敏感的无线充电系统已成为优选。因此,本文提出了一种混合式无线电力传输(WPT)系统,即使充电板之间存在较大的未对准情况,该系统也可以以恒定速率为EV充电。所提出的充电系统使用两个不同的谐振网络的组合来实现恒定而有效的充电过程。还开发了一个数学模型,展示了如何将两个谐振网络结合起来以补偿焊盘失准。为了证明所提出概念的有效性以及数学模型的准确性,将理论性能与3.3 kW混合双向WPT原型系统的仿真和实验结果进行了比较。结果清楚地表明,所提出的混合式WPT系统是有效的,并且在很宽的空间(三维)焊盘未对准范围内提供恒定的充电曲线。

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