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Highly Efficient Wireless Power Transfer System With Single-Switch Step-Up Resonant Inverter

机译:高效无线电力传输系统,具有单开关升压谐振逆变器

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摘要

In this article, a highly efficient wireless power transfer (WPT) system is realized by employing the proposed single-switch step-up resonant inverter with a series–series-compensated network. This resonant inverter has the merits of a simplified circuit structure, low component count, inherent voltage boosting, zero-voltage switching (ZVS), and high efficiency. Based on the equivalent circuit model, the two-coil WPT system is analyzed in the frequency domain, which shows that a quasi-constant current (CC) in the primary side and a corresponding quasi-constant voltage (CV) in the secondary side can theoretically be achieved. A systematic top-down design methodology of the entire WPT system is also provided, which serves as a practical design guideline. The proposed solution benefits real WPT applications by generating a clean and stable dc voltage for the built-in dc–dc battery management system of the receiving device. The experimental results show that the maximum efficiency of the WPT system at the rated output power of 11 W is around 86.4%.
机译:在本文中,通过采用具有系列系列补偿网络的提出的单开关升压谐振逆变器来实现高效的无线电力传输(WPT)系统。该谐振逆变器具有简化电路结构,低分量计数,固有电压升压,零电压切换(ZV)和高效率的优点。基于等效电路模型,在频域中分析了双线圈WPT系统,其示出了初级侧的准恒流(CC)和次级侧的相应的准恒压(CV)理论上是实现的。还提供了整个WPT系统的系统自上而下的设计方法,它是一种实用的设计指南。所提出的解决方案通过为接收设备的内置DC-DC电池管理系统产生清洁稳定的直流电压来利用真实WPT应用。实验结果表明,在11W的额定输出功率下WPT系统的最大效率约为86.4%。

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