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Resonant Analysis of Magnetic Coupling Wireless Power Transfer Systems

机译:磁耦合无线电力传输系统的共振分析

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For a general multi-coil magnetic coupling wireless power transfer (MC-WPT) system with different coil properties and non-negligible cross couplings, there is no analytical solution that connects the resonant frequencies of the system to its electric parameters. Establishing such a generalized analytical solution not only permits quantitative analysis of resonant points but also provides a generic platform for the physical interpretation of resonance. For this purpose, a novel modeling and analysis method of integrating time domain and frequency domain is proposed in this paper, with that all possible resonant points of arbitrary coil MC-WPT systems can be quickly and accurately determined. First, an accurate state-space model of a general MC-WPT system with arbitrary number of transmitters, repeaters, and receivers is established and the analytical current response on each circuit is derived. Then, several key system concepts about resonance are elucidated, based on which the generalized analytical expressions of resonant points of MC-WPT systems, including resonant frequencies and corresponding powers and efficiencies, are derived. Furthermore, the physical interpretation along with the mathematic relationships of several key easy-confusing concepts are deduced, which provides a systematic theoretical criteria for the selection of operating frequency to achieve the resonant states for MC-WPT systems.
机译:对于具有不同线圈特性和不可忽略的交叉耦合的通用多线圈磁耦合无线电力传输(MC-WPT)系统,没有分析解决方案,将系统的谐振频率连接到其电参数。建立这种广义的分析解决方案不仅允许对谐振点的定量分析,而且还提供了用于物理解释的通用平台。为此目的,本文提出了一种集成时域和频域的新颖建模和分析方法,并且可以快速准确地确定任意线圈MC-WPT系统的所有可能的谐振点。首先,建立具有任意数量的发射器,中继器和接收器的一般MC-WPT系统的精确状态空间模型,并且导出了每个电路的分析电流响应。然后,阐述了关于共振的几个关键系统概念,基于MC-WPT系统的共振点的广义分析表达,包括共振频率和相应的功率和效率。此外,推导出物理解释以及几个关键易于混淆概念的数学关系,这提供了用于选择工作频率的系统理论标准,以实现MC-WPT系统的谐振状态。

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