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一种基于双频超材料的无线电能传输系统 被引量:3
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作者 郑益田 郑宗华 陈庆彬 《电力电子技术》 CSCD 北大核心 2020年第7期58-61,共4页
在无线电能传输(WPT)系统中增加磁负超材料是一种提高传输效率的有效方法。针对传统磁负超材料介质板工作频点单一,无法适用于多频WPT的问题,此处分析讨论了磁负超材料提高WPT效率的机理,并设计了一种双频磁负超材料。仿真与实验结果表... 在无线电能传输(WPT)系统中增加磁负超材料是一种提高传输效率的有效方法。针对传统磁负超材料介质板工作频点单一,无法适用于多频WPT的问题,此处分析讨论了磁负超材料提高WPT效率的机理,并设计了一种双频磁负超材料。仿真与实验结果表明:在WPT系统中加入双频磁负超材料板,传输距离为220 mm时,在6.78 MHz工作频点处,传输效率提高了23%,在13.56 MHz工作频点处,传输效率提高了17%。 展开更多
关键词 无线电能传输 双频超材料 传输效率
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A Wide-Spaced Dual-Band Metamaterial Absorber Based on 2.5D Frequency Selective Surfaces and Magnetic Material
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作者 DENG Junyu LIU Shaobin +1 位作者 LI Wei WU Chen 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第5期800-806,共7页
By applying meander-line for electrical loss and magnetic material for magnetic loss,we present a metamaterial absorber which is wide-spaced and dual-band(1.35—2.24 GHz and 10.37—12.37 GHz).The novelty of this study... By applying meander-line for electrical loss and magnetic material for magnetic loss,we present a metamaterial absorber which is wide-spaced and dual-band(1.35—2.24 GHz and 10.37—12.37 GHz).The novelty of this study mainly lies in a combination of two kinds of losses to consume electromagnetic energy,which can get better dual-band absorption.In the electrical loss layer,meander-line structures are printed on both surfaces of the substrate and the structure series with resistors.Considering the need for miniaturization,we connect eight metallic vias with these meander-line areas to form a compact 2.5-dimensional(2.5D)structure.The dimension of the unit cell is miniaturized to be 5.94 mm×5.94 mm,about 0.035λat the center frequency of the lower absorption band.In the magnetic loss layer,the 0.4 mm thick magnetic material is employed on a metallic ground plane.In addition,the complex permittivity and complex permeability of the magnetic material are given.Finally,we fabricate a prototype of the proposed absorber and obtain a measurement result which is in good agreement with the full-wave simulation result. 展开更多
关键词 metamaterial absorber DUAL-BAND frequency selective surfaces magnetic material
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