电动汽车无线充电:平面二次线圈位置与磁场

T. Campi, S. Cruciani, F. Maradei, M. Feliziani
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引用次数: 2

摘要

本文对无线电力传输(WPT)系统对电动汽车(EV)电池充电时产生的磁场进行了参数化研究,该磁场改变了汽车车底二次线圈的位置。所考虑的WPT充电系统工作频率为85千赫,功率为7.7千瓦。WPT系统产生非常强的磁场,对人体暴露于电磁场(EMF)和植入医疗设备的免疫力至关重要。车辆的导电体框架的存在允许屏蔽车内的磁场,但在车辆之外的磁场水平是显著的。几个因素(二次线圈的安装位置;线圈对齐;车辆形状和尺寸;地面间隙;体材料;等)影响磁场行为的因素。研究了不同的EV-WPT线圈结构,并通过数值模拟预测了磁场水平。根据所得结果,给出了WPT系统最优位置的一般准则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wireless Charging of Electric Vehicles: Planar Secondary Coil Position vs. Magnetic Field
The paper provides a parametric investigation on the magnetic field produced by a wireless power transfer (WPT) system to recharge the battery of an electric vehicle (EV), varying the position of the secondary coil in the car underbody. The considered WPT charging system operates at the frequency of 85 kHz with a power of 7.7 kW. The WPT system creates a very strong magnetic field that can be critical for human exposure to electromagnetic fields (EMF) and for immunity of implanted medical devices. The presence of the conductive body-frame of the vehicle permits to shield the magnetic field inside the cabin, but beside the vehicle the field level is significant. Several factors (installation position of the secondary coil; coil alignment; vehicle shape and dimensions; ground clearance; body material; etc.) that influence the magnetic field behavior are considered. Different EV-WPT coil configurations are examined and the magnetic field levels are predicted by numerical simulations. From the obtained results general guidelines for the optimal position of the WPT system are provided.
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