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Power Transfer Efficiency Evaluation of Different Power Pads for Electric Vehicle’s Wireless Charging Systems

机译:电动汽车无线充电系统不同功率垫的功率传输效率评估

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Introduction of wireless charging systems for electric vehicles (EVs) is a revolutionary step in the field of electrified transportation. Misalignments between transmitting and receiving power pads significantly affect the overall power transfer efficiency of EV wireless charging systems. In this paper, three power pads are evaluated for power transfer efficiency in wireless charging systems with respect to various vertical and horizontal misalignments. They are circular power pads, double D (DD) power pads, and a new power pad designed in this research named as double D circular (DDC). Circular and DD power pads are designed following the Society of Automotive Engineers (SAE) recommended practice J2954 using the software, ANSYS Maxwell 3D. The new DDC power pad is designed by combining a circular power pad and a DD power pad. The power transfer efficiency among the three types of power pads is compared in the paper. The new DDC power pad has 14.48% and 18.03% improved performance compared to the circular power pad at 150mm vertical misalignment and 115mm horizontal misalignment, respectively.
机译:电动汽车(EV)的无线充电系统的推出是电气化运输领域的革命性一步。发送和接收电源板之间的未对准会严重影响EV无线充电系统的整体电源传输效率。在本文中,针对各种垂直和水平未对准情况,针对无线充电系统中的三个功率焊盘评估了功率传输效率。它们是圆形电源垫,双D(DD)电源垫,以及在本研究中设计的称为双D圆形(DDC)的新电源垫。根据汽车工程师协会(SAE)建议的实践J2954,使用软件ANSYS Maxwell 3D设计圆形和DD电源垫。新的DDC电源垫是通过组合圆形电源垫和DD电源垫来设计的。本文比较了三种类型的功率垫之间的功率传输效率。与圆形功率垫相比,新型DDC功率垫在垂直未对准150mm和水平不对准115mm的情况下,性能提高了14.48%和18.03%。

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