一种用于电动汽车无线充电的矩形/圆形组合电源垫

Marwan H. Mohammed, Y. Ameen, A. A. S. Mohamed
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引用次数: 2

摘要

感应功率传输(IPT)技术使电动汽车无需物理连接即可安全有效地充电。磁耦合器(电源垫)结构是IPT系统的一个重要组成部分,它决定了电力传输的能力和效率。此外,耦合器必须对接收和发送耦合线圈之间的不对准具有鲁棒性。为此,本文提出了一种将传统的矩形充电垫与圆形充电垫相结合的新型充电垫——矩形/圆形充电垫。将该天线与双d (DD)天线进行了偏差效应和耦合系数的比较。采用基于ANSYS MAXWELL软件的三维有限元分析对系统性能进行了设计和评价。结果表明,与DD结构相比,该结构所需的导线更少,且对不同的横向和旋转错位不敏感。为了进一步研究RC充电垫的性能,利用MATLAB Simulink建立了WPT1 (3.7 kVA)/Z1磁隙IPT模型。该充电器的功率传输效率(PTE)达到了98.85%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Combined Rectangular/Circular Power Pad for Electric Vehicles Wireless Charging
Inductive power transfer (IPT) technology enables electric vehicles to be charged safely and effectively without physical connection. A main element in IPT system is the magnetic coupler (power pads) structures that contributes to the power transmission capability and efficiency. In addition, the coupler must show robustness against misalignment between receiver and transmitter coupling coils. Therefore, this paper presents a novel charging pad named Rectangular/Circular (RC) that integrates the traditional rectangular and circular pads. The proposed pad is compared to the double-D (DD) pad in terms of the misalignment effect and the coupling coefficient. A three-dimensional finite-element analysis based on the ANSYS MAXWELL software is used to design and evaluate the system performance. The results show that the proposed pad requires less wire than DD structure, and is less sensitive to different lateral and rotational misalignments. To more studying the RC charging pad performance, a WPT1 (3.7 kVA)/Z1 magnetic gap IPT model is built by using MATLAB Simulink. A power transfer efficiency (PTE) of 98.85% for the designed charger has been achieved.
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