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Metamaterial-enhanced coupling between magnetic dipoles for efficient wireless power transfer

机译:磁偶极子之间的超材料增强耦合,实现高效的无线功率传输

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摘要

Nonradiative coupling between conductive coils is a candidate mechanism for wireless energy transfer applications. In this paper we propose a power relay system based on a near-field metamaterial superlens and present a thorough theoretical analysis of this system. We use time-harmonic circuit formalism to describe all interactions between two coils attached to external circuits and a slab of anisotropic medium with homogeneous permittivity and permeability. The fields of the coils are found in the point-dipole approximation using Sommerfeld integrals which are reduced to standard special functions in the long-wavelength limit. We show that, even with a realistic magnetic loss tangent of order 0.1, the power transfer efficiency with the slab can be an order of magnitude greater than free-space efficiency when the load resistance exceeds a certain threshold value. We also find that the volume occupied by the metamaterial between the coils can be greatly compressed by employing magnetic permeability with a large anisotropy ratio. © 2011 American Physical Society.
机译:导电线圈之间的非辐射耦合是无线能量传输应用的候选机制。在本文中,我们提出了一种基于近场超材料超透镜的功率继电器系统,并对该系统进行了详尽的理论分析。我们使用时谐电路形式来描述连接到外部电路的两个线圈与具有均匀介电常数和磁导率的各向异性介质板之间的所有相互作用。在使用Sommerfeld积分的点偶极子近似中可以找到线圈的场,在长波长范围内将其简化为标准的特殊函数。我们表明,即使实际磁损耗角正切为0.1阶,当负载电阻超过某个阈值时,平板的功率传输效率也可能比自由空间效率高一个数量级。我们还发现,通过使用具有大的各向异性比的磁导率,可以极大地压缩线圈之间的超材料所占据的体积。 ©2011美国物理学会。

著录项

  • 作者

    Urzhumov, Y; Smith, DR;

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  • 年度 2011
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  • 正文语种 en_US
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