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Comparison of Leakage Magnetic Field from Matched and Mismatched Double-D Coil based Wireless Charging System for Electric Vehicles

机译:电动车辆偏离和错配的双D线圈无线充电系统泄漏磁场比较

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摘要

In this paper, a magnetic shield design is proposed for a matched and mismatched coil based high-power wireless charging system (WCS). The high-power WCS are highly prone to exceed the safety limits of both the electric and magnetic field leakage. The leakage magnetic field from the mismatched pads are higher than the matched pads. In a mismatched system, the receiver is usually made much smaller than the transmitter, which requires higher amp-turns in the coils to transfer the same amount of power. In addition, coupling factor is lower in mismatched systems. Therefore, the electromagnetic field (EMF) emission is higher for a mismatched system, compared to matched system where both the transmitter and receiver are similar and large. This phenomenon applies for both the nonpolarized-circular and DD pads. In this paper, the leakage magnetic field is compared for the matched-DD and mismatched-DD coil-based WCS. The leakage field is evaluated through finite element analysis (FEA) and verified experimentally through an 11 kW mismatched DD system. The results show that, the leakage magnetic field is much higher for a mismatched WCS, compared to a matched WCS.
机译:在本文中,提出了一种磁屏蔽设计,用于匹配和错配的线圈的高功率无线充电系统(WCS)。高功率WCS高度容易超过电磁场泄漏的安全限制。来自不匹配焊盘的泄漏磁场高于匹配的焊盘。在不匹配的系统中,接收器通常比发射机小得多,这需要线圈中的更高的AMP匝以传送相同的功率。此外,不匹配的系统中的耦合因子较低。因此,与发射器和接收器都相似且大的匹配系统相比,电磁场(EMF)发射较高。这种现象适用于非极化圆形和DD焊盘。在本文中,比较漏磁场与匹配DD和基于混浊线圈的WCS进行比较。通过有限元分析(FEA)评估泄漏场,并通过11kW不匹配的DD系统通过实验验证。结果表明,与匹配的WCS相比,泄漏磁场对于不匹配的WCS来说高得多。

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