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Automated Impedance Matching System for Robust Wireless Power Transfer via Magnetic Resonance Coupling

机译:自动化阻抗匹配系统,通过磁共振耦合实现可靠的无线功率传输

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摘要

Recently, a highly efficient midrange wireless transfer technology using electromagnetic resonance coupling has been proposed and has received much attention due to its practical range and efficiency. The resonance frequency of the resonators changes as the gap between the resonators changes. However, when this technology is applied in the megahertz range, the usable frequency is bounded by the industrial, scientific, and medical (ISM) band. Therefore, to achieve maximum power transmission efficiency, the resonance frequency has to be fixed within the ISM band. In this paper, an automated impedance matching (IM) system is proposed to increase the efficiency by matching the resonance frequency of the resonator pair to that of the power source. The simulations and experiments verify that the IM circuits can change the resonance frequency to 13.56 MHz (in the ISM band) for different air gaps, improving the power transfer efficiency. Experiments also verified that automated IM can be easily achieved just by observing and minimizing the reflected wave at the transmitting side of the system.
机译:近来,已经提出了使用电磁谐振耦合的高效中程无线传输技术,并且由于其实用范围和效率而受到了广泛关注。谐振器的谐振频率随着谐振器之间的间隙变化而变化。但是,当此技术应用于兆赫兹范围时,可用频率受工业,科学和医学(ISM)频带的限制。因此,为了获得最大的功率传输效率,必须将谐振频率固定在ISM频带内。本文提出了一种自动阻抗匹配(IM)系统,通过将谐振器对的谐振频率与电源的谐振频率进行匹配来提高效率。仿真和实验证明,IM电路可以针对不同的气隙将谐振频率更改为13.56 MHz(在ISM频段),从而提高了功率传输效率。实验还证明,仅通过观察和最小化系统发射侧的反射波即可轻松实现自动IM。

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