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Loosely Coupled Transformer Structure and Interoperability Study for EV Wireless Charging Systems

机译:EV无线充电系统的松耦合变压器结构和互操作性研究

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As the wireless power transfer (WPT) technology has been proved to be a convenient and reliable charging method to plug-in hybrid electric vehicles and electric vehicles, the loosely coupled transformer structure and size are the primary and fundamental concern to design an efficient WPT system. In this paper, a double D (DD) coil and a unipolar coil are selected to conduct the study. We focus on the coil structure design to achieve the maximum coupling coefficient as well as efficiency with two situations: 1) with no misalignment, and 2) with a 75-mm door-to-door and 100-mm front-to-back misalignment at which the maximum operating capability can still be achieved. A coil size optimization process is proposed for both the DD coil and the unipolar coil configurations. The relationship between the size of the secondary (receiving) coil, which determines the weight of the pad on the vehicle, and achievable maximum efficiency is studied for both coil topologies. The interoperability between the two coil topologies is studied. The proposed transformer structures with aluminum shielding meet human exposure regulations of the International Commission on Non-Ionizing Radiation Protection guidelines as a foundation. Finally, experiments validated the analyses.
机译:由于无线电力传输(WPT)技术已被证明是插电式混合动力电动汽车和电动汽车的便捷,可靠的充电方法,因此,松耦合变压器的结构和尺寸是设计高效WPT系统的首要和基本考虑因素。在本文中,选择双D(DD)线圈和单极线圈进行研究。我们专注于线圈结构设计,以在两种情况下实现最大的耦合系数和效率:1)无错位,并且2)门对门75mm和前后对角100mm仍然可以达到最大的操作能力。提出了针对DD线圈和单极线圈配置的线圈尺寸优化过程。对于两种线圈拓扑,都研究了次级(接收)线圈的尺寸(确定车辆上垫的重量)与可达到的最大效率之间的关系。研究了两种线圈拓扑之间的互操作性。拟议的带有铝屏蔽层的变压器结构符合国际非电离辐射防护委员会准则的人体暴露规定。最后,实验验证了分析结果。

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