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Design of conductive shield for wireless power transfer system for electric vehicle considering automotive body

机译:考虑车身的电动汽车无线电力传输系统的导电屏蔽设计

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摘要

In this paper, we quantitatively investigated the undesirable effects of the automotive body on the performance of and the magnetic field distribution around the wireless power transfer (WPT) system for electric vehicle (EV), and what is more, we found that the magnetically coupled coils of WPT system for EV can almost completely be shielded from the detrimental influences of the automotive body by employing the intermediate conductive shield only with the diameter which is at least 4 times larger than the air gap length. The simulation and measurement data show that, by employing the intermediate conductive shield, the spot value of the magnetic near field is reduced by at least 70 % and the power transfer efficiency as high as 96 % can be achieved under the automotive body.
机译:在本文中,我们定量研究了车身对电动汽车(EV)的无线功率传输(WPT)系统的性能和磁场分布的不利影响,此外,我们发现磁耦合通过仅使用直径至少比气隙长度大四倍的中间导电屏蔽层,几乎可以完全屏蔽用于电动汽车的WPT系统的线圈,使其免受车身的有害影响。仿真和测量数据表明,通过采用中间导电屏蔽,在汽车车身下,磁场近场的光斑值至少降低了70%,并且可以实现高达96%的功率传输效率。

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