Distance and Efficiency Improvement in Wireless Power Transfer Systems through Steering Magnetic Field using Metasurface with Negative Permeability

Said Choukri, H. Takhedmit, O. El Mrabet, Mahdi Hamidouche, L. Cirio
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Abstract

This work presents a new Wireless Power Transfer (WPT) system with improved transfer distance and power efficiency. The enhancement of power transmission is provided by integrating a metasurface with negative permeability in the middle of the transfer distance between the Tx and Rx antennas. A new design of magnetic dipole antenna is done, and used for both Tx and Rx sides. Simulation and measurement results show that the Power Transfer Efficiency (PTE) of the TxZRx elements achieves 29 % and 27.30 %, respectively, while when integrating the metasurface the PTE is about 72.67 % and 57.77 %, respectively, hence 30.47 % of PTE improvement is achieved in experiments at the transfer distance of 60 mm.
利用负磁导率超表面引导磁场提高无线电力传输系统的距离和效率
本文提出了一种新的无线电力传输(WPT)系统,提高了传输距离和功率效率。通过在Tx和Rx天线之间的传输距离中间集成一个负磁导率的超表面来增强功率传输。设计了一种新的磁偶极子天线,并将其应用于天线的Tx和Rx两侧。仿真和测量结果表明,TxZRx元件的功率传输效率(PTE)分别达到29%和27.30%,而集成超表面时的PTE分别为72.67%和57.77%,因此在60 mm传输距离下,实验的PTE提高了30.47%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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