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Comparison of Magnetic Field Emission from Unipolar and Bipolar Coil-Based Wireless Charging Systems

机译:基于单极性和双极性线圈的无线充电系统的磁场发射比较

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In this study, the leakage magnetic field (LMF) from the unipolar (circular, rectangular, etc.) and bipolar (double-D) coil-based wireless charging systems (WCSs) are investigated and compared. The unipolar and bipolar pads, which are the two most widely adopted charging-pads, have significantly different magnetic field emission characteristics. In this paper, the spatial-distribution and vector-pattern of the leakage magnetic field are studied and compared for similar 11 kW unipolar and bipolar coil-based WCSs. The field emissions are simulated using finite element analysis (FEA) and tested experimentally with an 11 kW bipolar coil-based WCS prototype. The results show that the leakage magnetic field of the unipolar and bipolar pads have widely different vector-orientation and spatial distributions of the leakage magnetic field. The results show that the unipolar coil based WCS has a dominant vertical and the bipolar pads coil-based WCS has dominant horizontally aligned leakage magnetic field. Considering the shielding, the aluminum plate is found highly effective for the unipolar pad and almost ineffective for bipolar pads.
机译:在这项研究中,对来自单极(圆形,矩形等)和基于双极(双D)线圈的无线充电系统(WCS)的泄漏磁场(LMF)进行了研究和比较。单极性和双极性垫是最广泛使用的两个充电垫,具有明显不同的磁场发射特性。本文研究和比较了类似的基于11 kW单极和双极线圈的WCS泄漏磁场的空间分布和矢量模式。使用有限元分析(FEA)对场发射进行仿真,并使用基于11 kW双极线圈的WCS原型进行实验测试。结果表明,单极垫和双极垫的泄漏磁场具有不同的矢量方向和泄漏磁场的空间分布。结果表明,基于单极线圈的WCS具有主要的垂直方向,而基于双极垫线圈的WCS具有主要的水平方向的漏磁场。考虑到屏蔽,发现铝板对单极垫非常有效,而对双极垫几乎无效。

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