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A Novel Long-Distance Wireless Power Transfer System With Constant Current Output Based on Domino-Resonator

机译:基于多米诺谐振器的恒流输出新颖的长距离无线电力传输系统

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摘要

In this article, a novel long-distance wireless power transfer (WPT) system that achieves excellent constant current (CC) output based on a domino-resonator is proposed. A thorough mathematical model of the n-coil domino WPT system is established, and the methodology of calculating and choosing the operating frequency in the CC mode is put forward to achieve high efficiency and the best stability. The zero-phase-angle (ZPA) condition is proven to be realized, in the meantime, by theoretical derivation. The phenomenon that operating frequency slightly shifts away from the resonant frequency in the CC mode due to the magnetic coupling between nonadjacent coils is studied. The efficiency of the system is evaluated. Moreover, system efficiency can be further improved by optimizing the number of coils and layers when the transfer distance is fixed. An experimental setup with an output current of 0.6 A has been built to demonstrate the validity of the proposed system. The experimental results show that the maximum system efficiency of the experimental setup in the CC mode can achieve 70% at the transfer distance of 0.7 m when the number of the coils is 8 and the radius of the coil is 100 mm.
机译:在本文中,提出了一种基于多米诺谐振器实现优异的恒定电流(CC)输出的新型长途无线电力传输(WPT)系统。建立了N线圈Domino WPT系统的彻底数学模型,并提出了在CC模式下计算和选择工作频率的方法,以实现高效率和最佳稳定性。在理论推导的情况下,经过验证的零相位角(ZPA)条件被证明是为了实现。研究了由于非加入线圈之间的磁耦合而在CC模式中略微偏离谐振频率的现象。评估系统的效率。此外,通过在传送距离固定时优化线圈和层数,可以进一步提高系统效率。已经建立了具有0.6A的输出电流的实验设置,以证明所提出的系统的有效性。实验结果表明,当线圈的数量为8时,CC模式中的实验设置的最大系统效率可以在0.7μm的转移距离处实现70%,并且线圈的半径为100mm。

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