Efficiency Enhancement in Mid-Range RWPT Systems by GRIN Metasurface Lenses

Í. V. Soares, F. M. Freitas, U. C. Resende
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引用次数: 2

Abstract

The Magnetic Resonant Wireless Power Transfer (RWPT) is one of the best suitable techniques for mid-range applications. Therefore, there are different approaches to enhance RWPT efficiency, many of them based on metamaterial devices. In this work, the GRadient-INdex (GRIN) technique is applied to increase the coupling between transmitter and receiver coils and collimate the magnetic field, reducing its dispersion. This proposed lens topology operates at 28 MHz and is formed by a 5x5 planar and periodic arrangement of Split Ring Resonators (SRR) unit cells. In each one, a lumped capacitor is added to reduce the lens’s size and radially create a refractive index gradient. Then, a four-coil RWPT system is designed at the same operating frequency. Finally, the coils and lenses are prototyped, and the RWPT efficiency is measured in three cases: without any lenses, with a conventional (uniform) metasurface, and with the proposed GRIN lens. The experimental results demonstrate that the RWPT efficiency, which is about 8% without any lenses, becomes almost four times higher (33%) after the inclusion of metasurface GRIN lenses. When the same measurement is carried out with a uniform lens, typical topology in literature, the obtained efficiency is 17.59%, nearly half of the obtained with the proposed metasurface.
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GRIN超表面透镜提高中程RWPT系统的效率
磁谐振无线电力传输(RWPT)是最适合中端应用的技术之一。因此,有不同的方法来提高RWPT效率,其中许多是基于超材料器件。在这项工作中,采用梯度指数(GRIN)技术来增加收发线圈之间的耦合并准直磁场,降低其色散。这种提出的透镜拓扑结构工作在28 MHz,由一个5x5的平面和分裂环谐振器(SRR)单元组成。在每一个,一个集总电容器被添加到减少透镜的尺寸和径向创建一个折射率梯度。然后,在相同的工作频率下,设计了一个四圈RWPT系统。最后,对线圈和透镜进行了原型设计,并在三种情况下测量了RWPT效率:没有透镜,具有常规(均匀)超表面,以及使用所提出的GRIN透镜。实验结果表明,在没有透镜的情况下,RWPT效率约为8%,而在加入超表面GRIN透镜后,RWPT效率提高了近4倍(33%)。当使用均匀透镜(文献中典型的拓扑结构)进行相同的测量时,获得的效率为17.59%,接近所提出的超表面的一半。
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