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Enhanced wireless power transfer using magnetostatic volume modes in anisotropic magnetic metamaterials

机译:使用各向异性磁性超材料中的磁静压体积增强无线电力传输

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According to the perfect lens theory, wireless power transfer (WPT) efficiency can be improved significantly by positioning a magnetic metamaterial (MM) slab with effective permeability of -1 between a transmitter and receiver. However, it is not practically preferred because the actual space between the transmitter and the receiver will be compromised by the existence of the MM slab. In this paper, we propose to place an anisotropic MM (AMM) slab to back the transmitter coil, which can enhance the WPT by modulating magnetostatic volume wave resonant modes within the slab, and more importantly avoid the obstruction of the transfer space by the slab. Both simulations and experiments verified this enhancement due to the Fabry-Perot-like (FPL) resonances of the magnetostatic volume waves (MVWs), which increases the magnetic field intensity and eventually the inductance of WPT. Influences of key variables such as the MM slab dimensions on the induction of WPT are further investigated.
机译:根据完美的镜头理论,通过将磁性超材料(MM)板位于发射器和接收器之间的有效渗透率的磁性超材料(MM)板,可以显着提高无线电力传输(WPT)效率。然而,它实际上是优选的,因为发送器和接收器之间的实际空间将被MM板的存在损害。在本文中,我们建议将各向异性MM(AMM)板置于发射器线圈上,可以通过调制板内的磁化体积波谐振模式来增强WPT,更重要的是避免板坯阻塞转移空间的阻塞。模拟和实验均验证了由于磁静态体波(MVWS)的法布里 - 珀罗类似(FPL)谐振而产生的增强,这增加了磁场强度并最终是WPT的电感。进一步研究了关键变量如MM板尺寸对WPT诱导的影响。

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