Class EF2 inverters for wireless power transfer applications

S. Aldhaher, G. Kkelis, D. Yates, P. Mitcheson
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引用次数: 12

Abstract

Class EF inverters are hybrid inverters that combine the improved switch voltage and current waveforms of Class F and Class F-1 inverters with the efficient switching of Class E inverters. As a result, their switch voltage and current stresses are reduced, and their efficiency, output power and power-output capability can be higher than the Class E inverter. These improved features of Class EF inverters over Class E inverters can be beneficial in a wireless power transfer (WPT) via magnetic induction application. This paper demonstrates the application of a Class EF inverter operating at a 6.78MHz for a 25W WPT system. A sixth-order piecewise-linear state space model is presented to analyse the inverter and to derive values of its components to achieve optimum switching operation. Experimental results are provided to confirm validity of the state-space model and the design of the inverter and a DC-DC efficiency of 87% was achieved.
用于无线电力传输应用的EF2类逆变器
EF类逆变器是混合逆变器,将F类和F-1类逆变器的改进开关电压和电流波形与E类逆变器的高效开关相结合。因此,它们的开关电压和电流应力减小,效率、输出功率和功率输出能力可以高于E类逆变器。与E类逆变器相比,EF类逆变器的这些改进特性在通过磁感应应用的无线电力传输(WPT)中是有益的。本文演示了工作频率为6.78MHz的EF级逆变器在25W WPT系统中的应用。提出了一种六阶分段线性状态空间模型对逆变器进行分析,并推导出逆变器各分量的取值,以实现最优的开关操作。实验结果验证了状态空间模型和逆变器设计的有效性,实现了87%的DC-DC效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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