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Analysis of Power Losses due to Magnetic Shielding for Electric Vehicle Wireless Charging

机译:电动汽车无线充电磁屏蔽引起的功率损耗分析

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This paper proposes a design optimization method for a passive shielding in Wireless Power Transfer (WPT) systems. Starting from a charging device developed for electric vehicles, the main objective of this work is to study the effects of different shielding solutions on energy transmission efficiency and electromagnetic emissions. A Finite Element Method (FEM) is used to evaluate the ohmic losses related to different geometric configurations of both the plate shielding and the ferrite bars, as well as to the use of different materials for the shielding. As a result of the optimization procedure, the mutual inductance of the coils is restored to levels comparable to the non-shielded configuration. A separate set of FEM simulations reports reduced electromagnetic emissions for the optimized configuration, compliant with specific safety standard requirements. The final shielding configuration is composed by larger ferrite bars and by a shielding plate with a reduced radius. Finally, aluminium is used for the shield onboard of the electric vehicle, while the use of iron is proposed for the shield related to the ground section of the WPT system.
机译:本文提出了一种用于无线电力传输(WPT)系统中的被动屏蔽的设计优化方法。从为电动汽车开发的充电装置开始,这项工作的主要目的是研究不同屏蔽解决方案对能量传递效率和电磁排放的影响。有限元方法(FEM)用于评估与板屏蔽和铁氧体棒的不同几何构型相关的欧姆损耗,以及使用不同材料进行屏蔽。作为优化过程的结果,线圈的互感恢复到与非屏蔽配置相当的水平。一组单独的有限元模拟报告了优化配置的电磁排放减少,符合特定的安全标准要求。最终屏蔽配置由较大的铁氧体杆和具有减小半径的屏蔽板组成。最后,铝用于电动车辆板上的屏蔽,同时提出使用铁的屏蔽与WPT系统的接地部分相关。

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