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Research on a novel hybrid shielding structure of magnetic coupler for inductive power transfer system

机译:电感电力传输系统磁耦合器新型混合屏蔽结构研究

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With the development of wireless power transfer technology, more and more attention has been paid to its electromagnetic safety. In this paper, a novel hybrid shielding structure composed of the innermost fan-shaped ferrite, the interlayer nanocrystalline strip and the outermost aluminum foil is proposed to shield the electromagnetic field of the inductive power transfer system. Eight structure parameters of the proposed shielding are optimized by finite element simulation, in order to reduce the magnetic leakage of the system and improve the utilization rate of shielding materials. In addition, the proposed structure is compared with two types of typical double-layer hybrid shielding from the perspectives of the weight, the coupling coefficient and the magnetic flux leakage. Both simulation and experiment results show that the cost and weight of the proposed shield are about 60% lower than the traditional disk shield. Moreover, the shielding layer proposed in this paper can not only effectively reduce the magnetic flux leakage of the system, but also maintain a high coupling coefficient.
机译:随着无线电力传输技术的发展,越来越多地关注其电磁安全。本文提出了一种由最内扇形铁氧体,层间纳米晶条和最外铝箔组成的新型混合屏蔽结构,以屏蔽电感动力传递系统的电磁场。通过有限元模拟优化所提出的屏蔽的八种结构参数,以减少系统的磁泄漏,提高屏蔽材料的利用率。此外,将所提出的结构与来自重量,耦合系数和磁通量泄漏的视角的两种类型的双层混合屏蔽进行比较。仿真和实验结果表明,拟议屏蔽的成本和重量比传统的磁盘屏蔽低约60%。此外,本文提出的屏蔽层不仅可以有效地降低系统的磁通量,而且保持高耦合系数。

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