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Using artificial magnetic conductors to improve the efficiency of wireless power transfer

机译:使用人造磁导体提高无线电力传输的效率

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In this study, an advanced wireless power transfer (WPT) system of two coils with the artificial magnetic conductors (AMC) is explored through simulations and experiments. The AMC structure is added on the transmitter coil, and the multiple resonant modes on the surface of the AMC can be energized. On the other hand, the AMC structure act as a magnetic field shield, which leads to the magnetic field above AMC structure is localized. Therefore, the localized resonant magnetic field enhance the transmission coefficient of the WPT system. The results show that the WPT transmission coefficient is increased from 16% to 35% in the experiment at 26.2 MHz resonant frequency when transmission distance is 3 cm. The experimental results agree with the simulation results. Additionally, AMC has the advantages of low-cost and can easily be installed on the WPT system.
机译:在这项研究中,通过仿真和实验探索了一种先进的由两个线圈和人造磁导体(AMC)组成的无线功率传输(WPT)系统。在发射器线圈上添加了AMC结构,并且可以激励AMC表面上的多个共振模式。另一方面,AMC结构充当磁场屏蔽,这导致AMC结构上方的磁场被局部化。因此,局部共振磁场增强了WPT系统的传输系数。结果表明,当传输距离为3 cm时,在26.2 MHz谐振频率下,实验中的WPT传输系数从16%增加到35%。实验结果与仿真结果吻合。另外,AMC具有成本低廉的优点,可以轻松地安装在WPT系统上。

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