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Magnetic-Field-Model Based Analysis of Two-Phase Magnetically Coupled Resonant Wireless Power Transfer System

机译:基于磁场模型的两相磁耦合谐振无线电力传输系统分析

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Wireless power transfer (WPT) that is essentially based on electromagnetic induction has been attracted increasing attention recently. Most of the previous work revealed that the transfer characteristics of the system would be greatly influenced by the spatial positions between the sending coils and the receiving coils. This paper focuses on a two-phase magnetically coupled resonant (MCR) WPT system, which incorporates two orthogonal sending coils excited by two equivalent ac sources with phase-shift angle control and a single receiving coil, and investigates the distribution of magnetic field around the sending coils under different angular misalignment of the receiving coil. The calculation of the magnitude of magnetic field, the induced voltage, and the output power are given in detail, along with the simulation verification by Maxwell. Finally, a prototype is built and tested to verify the theoretical analysis.
机译:基本上基于电磁感应的无线电力传输(WPT)最近被吸引着越来越多地受到关注。最前面的工作中的大多数都透露,系统的传递特性将受到发送线圈和接收线圈之间的空间位置的大大影响。本文侧重于两相磁耦合的谐振(MCR)WPT系统,其包括两个等效的AC源激发的两个正交发送线圈,其中两个等效的AC源与相移角度控制和单个接收线圈,并研究了磁场周围的分布在接收线圈的不同角度未对准下发送线圈。详细介绍了磁场,感应电压和输出功率的幅度的计算,以及Maxwell的仿真验证。最后,建立并测试了原型以验证理论分析。

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