Optimization of Magnetic Coupling Resonance Coils

Sen Wang, Xicong Sun, Wei Feng, Xianchao Ma, Yongzhi Jing, Songqi Li
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引用次数: 2

Abstract

In some practical applications of low-power coupled resonant wireless power transmission, besides the transmission efficiency, the anti-radial offset ability of the transceiver coils is also an important parameter to measure system performance. Consider that the positive correlation between the transmission efficiency and coupling coefficient of the coils, the symmetrical double-layer circular coils structure is proposed under the condition of maximizing the coupling coefficient in this paper. Based on the finite element method, the Maxwell simulation software is used to analyze different models. Simulation shows that the double-layer structure which reduces the number of outer layer turns can improve the coupling coefficient and the ability to resist radial offset both. It provides an idea for improving the system transmission efficiency and anti-radial offset ability both.
磁耦合共振线圈的优化设计
在一些低功率耦合谐振无线电力传输的实际应用中,除了传输效率外,收发线圈的抗径向偏移能力也是衡量系统性能的重要参数。考虑到线圈的耦合系数与传输效率呈正相关关系,本文提出了以耦合系数最大化为条件的对称双层圆线圈结构。基于有限元法,利用Maxwell仿真软件对不同模型进行分析。仿真结果表明,双层结构减少了外层匝数,提高了耦合系数和抗径向偏移的能力。为提高系统的传输效率和抗径向偏移能力提供了思路。
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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