A method for Selecting the Control Inputs for Zero Voltage Switching and Efficiency Optimization of Bidirectional Wireless Power Transfer System

Kuseso Onai, O. Ojo
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Abstract

The bidirectional wireless power transfer system (BD-WPT) system allows power flow in both directions between a source and a load. High frequency is required to increase the power transfer efficiency and reduce the size of the magnetic components. However, high frequency operation leads to an increase in switching losses of the converter. To reduce these losses, zero voltage switching (ZVS) operation of the converter is required. This paper presents a method of optimizing the coil-to-coil efficiency of the BD-WPT system whilst ensuring that ZVS is achieved. To achieve this goal, harmonic decomposition of the input voltages is used for the ZVS, which gives a better accuracy when compared to the fundamental harmonic approximation method and avoids the complexity of time domain analysis. Lagrange optimization was employed to optimize the efficiency of the coil for a given power requirements. It was shown that for optimum efficiency operation of the converter, the current in the primary and secondary coils should be equal.
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双向无线电力传输系统零电压开关控制输入选择及效率优化方法
双向无线电力传输系统(BD-WPT)系统允许电力在源和负载之间双向流动。高频是提高功率传输效率和减小磁性元件尺寸的必要条件。然而,高频工作导致变换器的开关损耗增加。为了减少这些损耗,需要转换器的零电压开关(ZVS)操作。本文提出了一种优化BD-WPT系统线圈-线圈效率的方法,同时确保实现零电压。为了实现这一目标,ZVS采用了输入电压的谐波分解,与基频谐波近似方法相比,该方法具有更好的精度,并且避免了时域分析的复杂性。在给定的功率要求下,采用拉格朗日优化法优化线圈的效率。结果表明,为使变流器的工作效率达到最佳,一次线圈和二次线圈的电流应相等。
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