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Quantitative Analysis of Mutual Inductance for Optimal Wireless Power Transfer via Magnetic Resonant Coupling

机译:磁共振耦合优化无线功率传输互感的定量分析

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This paper presents the quantitative analysis for the optimal design of wireless power transmission (WPT) systems based on magnetic resonant coupling (MRC) mechanism. In this paper, the exemplified MRC-based WPT system adopts the series-series topology and one resonant coil, which shows that the energy efficiency and transferred power are both significantly affected by the mutual inductance of the primary-resonant coils and the resonant-secondary coils. In addition, the simulated and experimental results are both provided to illustrate the influence of the mutual inductance on the performance of MRC-based WPT systems regulating the relative displacement among coils. Thus, this quantitative analysis can offer the significant theoretical and experimental basis for the optimal design of MRC-based WPT systems in various application fields.
机译:本文提出了基于磁共振耦合(MRC)机制的无线电力传输(WPT)系统优化设计的定量分析。本文中,基于MRC的WPT系统示例采用串联-串联拓扑和一个谐振线圈,这表明能量效率和传输功率都受到初级谐振线圈和次级谐振线圈互感的显着影响。线圈。此外,提供的仿真结果和实验结果均说明了互感对基于MRC的WPT系统性能的影响,该系统调节线圈之间的相对位移。因此,这种定量分析可以为在各种应用领域中基于MRC的WPT系统的优化设计提供重要的理论和实验基础。

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