Design of an EMF Suppressing Magnetic Shield for a 100-kW DD-Coil Wireless Charging System for Electric Vehicles

Mostak Mohammad, J. Pries, O. Onar, V. Galigekere, G. Su, Saeed Anwar, Jonathan Wilkins, Utkarsh D. Kavimandan, Devendra Patil
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引用次数: 22

Abstract

This study investigates the electromagnetic field (EMF) emissions of a 100-kW Double-D (DD) wireless charging system (WCS). A shielding technique is proposed to suppress the magnetic field emissions below the limits set by the International Commission on Non-Ionizing Radiation Protection (ICNIRP). The leakage pattern produced by the DD coil is different than unipolar (circular, rectangular, etc.) pads and traditional eddy current based aluminum shields are not effective at suppressing this leakage field. Therefore, a methodically designed magnetic shield could be more effective. This study proposes a shielding technique for DD coils using a combination of aluminum shielding and a low reluctance magnetic shield to suppress the magnetic field emissions. The shielding effectiveness is evaluated through finite element analysis (FEA) models and tested experimentally. The effectiveness of the proposed magnetic shielding and the limits of the conventional aluminum shielding are studied. A prototype 11-kW DD coil wireless charging system is used to experimentally validate the proposed shielding technique. The experimental results show that the aluminum shield increases the emissions of DD coils by 25% and the proposed magnetic shield can be employed to suppress the emission by 60%.
用于100kw电动汽车dd线圈无线充电系统的电磁抑制磁屏蔽设计
本研究研究了100 kw双d无线充电系统(WCS)的电磁场(EMF)发射。提出了一种屏蔽技术,将磁场发射抑制在国际非电离辐射防护委员会(ICNIRP)规定的限值以下。DD线圈产生的泄漏模式不同于单极(圆形、矩形等)焊盘,传统的基于涡流的铝屏蔽不能有效地抑制这种泄漏场。因此,系统地设计磁屏蔽可能会更有效。本研究提出了一种采用铝屏蔽和低阻磁屏蔽相结合的DD线圈屏蔽技术来抑制磁场发射。通过有限元分析(FEA)模型对屏蔽效果进行了评估,并进行了实验测试。研究了电磁屏蔽的有效性和传统铝屏蔽的局限性。利用一个11kw的DD线圈无线充电系统原型,对所提出的屏蔽技术进行了实验验证。实验结果表明,铝屏蔽层可使DD线圈的辐射增加25%,而磁屏蔽层可使DD线圈的辐射抑制60%。
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