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Wireless Power Transfer Using Class E Inverter With Saturable DC-Feed Inductor

机译:使用具有饱和直流馈电电感器的E类逆变器进行无线功率传输

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摘要

Resonant converters used as coil drivers in inductive links generally operate efficiently at optimum switching conditions for constant load values and ranges. Changes in load and range can shift the operation of the coil driver to a non-optimum switching state which results in higher switching losses and reduced output power levels. This paper presents a method to adapt to variations in range for a Class E inverter used as a coil driver in a wireless power transfer (WPT) system based on inductive coupling. It is shown that by controlling the duty cycle of the inverter’s switch and the value of its DC-feed inductance, the Class E inverter can be tuned to operate at optimum switching conditions as the distance between the coils of the WPT system changes. Mathematical analysis is presented based on a linear piecewise state-space representation of the inverter and the inductive link. Extensive experimental results are presented to verify the performed analysis and validity of the proposed tuning procedure.
机译:电感转换器中用作线圈驱动器的谐振转换器通常在最佳开关条件下针对恒定的负载值和范围有效运行。负载和范围的变化会将线圈驱动器的操作切换到非最佳开关状态,从而导致更高的开关损耗和降低的输出功率水平。本文提出一种方法,以适应基于电感耦合的无线功率传输(WPT)系统中用作线圈驱动器的E类逆变器的范围变化。结果表明,通过控制逆变器开关的占空比和直流馈电电感的值,可以随着WPT系统线圈之间的距离变化,将E类逆变器调整为在最佳开关条件下运行。基于逆变器和感应环节的线性分段状态空间表示,进行了数学分析。提出了广泛的实验结果,以验证所进行的分析和所提出的调整程序的有效性。

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