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首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >Analysis of Wireless Power Transfer Using Metamaterial Slabs Made of Ring Resonators at 13.56MHz
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Analysis of Wireless Power Transfer Using Metamaterial Slabs Made of Ring Resonators at 13.56MHz

机译:使用由环形谐振器制成的超材料平板在13.56MHz进行无线功率传输的分析

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This paper analyzes the effects of metamaterial slabs with negative permeability when applied to a two-loop wireless power transmission (WPT) system, both in theory and electromagnetic (EM) simulations. The analysis of magnetic flux focusing provided here assumes quasi-magnetostatics or magnetostatics. The slab structures with negative permeability have been realized using the periodically arrayed ring resonators (RRs) at 13.36MHz. Some examples with ideal lossless slabs of -1, -2, and -3 showed a great enhancement of WPT efficiencies when compared with the free space cases. However, practical lossy slabs made of planar copper RRs did not show significant enhancement of WPT efficiencies due to the relatively high losses in the ring resonator (or in the slab consisting of RRs) near the resonant frequency.
机译:本文从理论和电磁仿真两方面分析了应用于双回路无线电力传输(WPT)系统的具有负磁导率的超材料平板的影响。此处提供的磁通量聚焦分析假定为准静磁或静磁。使用13.36MHz的周期性排列的环形谐振器(RR)实现了具有负磁导率的平板结构。与自由空间情况相比,理想无损平板为-1,-2和-3的一些示例显示WPT效率大大提高。但是,由于环形谐振器(或由RR组成的平板)在谐振频率附近存在相对较高的损耗,所以由平面铜RR制成的实用有损耗平板并未显示出WPT效率的显着提高。

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