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首页> 外文期刊>Journal of magnetism and magnetic materials >Wave propagation control and switching for wireless power transfer using tunable 2-D magnetic metamaterials
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Wave propagation control and switching for wireless power transfer using tunable 2-D magnetic metamaterials

机译:使用可调2-D磁性超材料的波传播控制和用于无线电力传输的切换

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摘要

Magnetic metamaterials operating at low megahertz frequencies provide various important commercial and research applications. In this work, we investigate the control of wave propagation in two-dimensional (2-D) tunable magnetic metamaterials for wireless power transfer (WPT). The propagation control is achieved by using reconfigurable defect cavities formed in the metamaterial, which allows for the dynamic creation of various waveguide configurations with switching control. The physical mechanism for creating the cavity is described using Fano interference, in which the resonant frequency of the cavity falls into the bandgap of the metasurface. And the routing and transmission control of the proposed waveguide is easily achieved by resonant switching. The proposed approach allows highly localized, strong field confinement in the deep subwavelength scale of 2.6 lambda x 10(-3). The transmission losses and bandwidths of various dynamically tunable metamaterial waveguides are experimentally characterized. This result can find useful applications for integrated surface wave devices and planar WPT.
机译:低Megahertz频率运行的磁性超材料提供各种重要的商业和研究应用。在这项工作中,我们研究了无线电力传输(WPT)中二维(2-D)可调磁性超材料中波传播的控制。通过使用在超材料中形成的可重新配置的缺陷腔来实现传播控制,这允许动态创建具有开关控制的各种波导配置。使用FANO干扰描述用于产生腔的物理机制,其中腔的谐振频率落入质量表面的带隙。并且通过谐振切换容易实现所提出的波导的路由和传输控制。该方法允许高度本地化,强大的远场限制为2.6λ×10(-3)的深层亚波长。各种动态可调谐的超材料波导的传输损耗和带宽是通过实验表征的。该结果可以找到集成表面波设备和平面WPT的有用应用。

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