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A Witricity-Based High-Power Device for Wireless Charging of Electric Vehicles

机译:基于Witricity的电动汽车无线充电设备

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In this paper, a Witricity-based high-power device is proposed for wireless charging of electric vehicles. According to the specific requirements of three-stage charging for electric vehicles, four compensation modes of the Witricity system are analyzed by the Loosely Coupled Theory among transformer coils and the Substitution Theorem in circuit theory. In addition, when combining voltage withstand levels, the current withstand capability, the switching frequency of electronic switching tubes, and the features of the resonant circuit, the series-parallel (SP) compensation mode is selected as the best compensation mode for matching the capacitor of the system. The performances of coils with different ferrite core arrangements are compared by simulations and models. The feasibility of the system is verified theoretically and the system functions are evaluated by the joint simulation of Simplorer and Maxwell. Finally, a Witricity-based high-power device is proposed as designed, and the correctness of theoretical analyses and simulation results are verified.
机译:本文提出了一种基于Witricity的大功率设备,用于电动汽车的无线充电。根据电动汽车三阶段充电的具体要求,利用变压器线圈间的松耦合理论和电路理论中的代换定理,分析了Witricity系统的四种补偿方式。另外,在组合耐压等级,耐电流能力,电子开关管的开关频率以及谐振电路的特性时,选择串联-并联(SP)补偿模式作为匹配电容器的最佳补偿模式。系统的。通过仿真和模型比较了具有不同铁氧体磁心布置的线圈的性能。从理论上验证了该系统的可行性,并通过Simplorer和Maxwell的联合仿真对系统功能进行了评估。最后,提出了一种基于Witricity的大功率器件,并验证了理论分析和仿真结果的正确性。

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