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Optimization of coils and control strategy for a three-phase magnetically coupled resonant wireless power transfer system oriented by the optimal output power characteristics

机译:面向最优输出功率特性的三相磁耦合谐振无线电力传输系统的线圈和控制策略的优化

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Multi-phase magnetically coupled resonant (MCR) wireless power transfer (WPT) technology, which can effectively reduce the limits of coils spatial locations on power transfer, has become one of the most promising technologies in the mid-range applications. In this paper, a three-phase MCR WPT system was investigated and the equivalent circuit model was built and simplified. Based on the theoretical analysis of the simplified model, the influential factors on output power of the system were revealed, including the phase-shifted angle between each phase, coil turns and spatial locations of receiving coil. Further, coil turns and control strategy of the phase-shifted angle were optimized to ensure the system realize the optimal output power characteristics that was defined as the one with high amplitude and minor fluctuations within the full range of angular misalignment. Finally, the experiments had been carried out to confirm the theoretical analysis.
机译:多相磁耦合谐振(MCR)无线功率传输(WPT)技术可有效降低功率传输中线圈空间位置的限制,已成为中档应用中最有前途的技术之一。本文研究了三相MCR WPT系统,建立并简化了等效电路模型。在简化模型的理论分析基础上,揭示了影响系统输出功率的因素,包括各相之间的相移角,线圈匝数和接收线圈的空间位置。此外,对线圈匝数和相移角的控制策略进行了优化,以确保系统实现最佳输出功率特性,该特性被定义为在角度未对准的整个范围内具有高幅度和小波动的输出功率。最后,进行了实验以证实理论分析。

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