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Modeling and Analysis of Class EF and Class E/F Inverters With Series-Tuned Resonant Networks

机译:具有串联调谐谐振网络的EF级和E / F级逆变器建模与分析

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摘要

Class EF and Class E/F inverters are hybrid inverters that combine the improved switch voltage and current waveforms of Class F and Class F inverters with the efficient switching of Class E inverters. As a result, their efficiency, output power and power output capability can be higher in some cases than the Class E inverter. Little is known about these inverters and no attempt has been made to provide an in depth analysis on their performance. The design equations that have been previously derived are limited and are only applicable under certain assumptions. This paper is the first to provide a comprehensive set of analytical analysis of Class EF and Class E/F inverters. The Class EF inverter is then studied in further detail and three special operation cases are defined that allow it to either operate at maximum power-output capability, maximum switching frequency, or maximum output power. Final design equations are provided to allow for rapid design and development. Experimental results are provided to confirm the accuracy of the performed analysis based on a 23-W Class EF inverter at 6.78-MHz and 8.60-MHz switching frequencies. The results also show that the Class EF inverter achieved an efficiency of 91% compared to a 88% efficiency when operated as a Class E inverter.
机译:EF级和E / F级逆变器是混合型逆变器,将F级和F级逆变器的改进的开关电压和电流波形与E级逆变器的有效切换结合在一起。结果,它们的效率,输出功率和功率输出能力在某些情况下可能会比E类逆变器更高。这些逆变器知之甚少,也没有尝试对其性能进行深入分析。先前推导的设计方程式是有限的,并且仅在某些假设下适用。本文是第一篇对EF级和E / F级逆变器进行全面分析的文章。然后对EF级逆变器进行了更详细的研究,并定义了三种特殊的运行情况,使其可以以最大功率输出能力,最大开关频率或最大输出功率运行。提供最终设计方程式,以便快速进行设计和开发。提供实验结果以确认基于23 W EF类逆变器的6.78 MHz和8.60 MHz开关频率下进行的分析的准确性。结果还表明,与作为E类逆变器运行时的88%效率相比,EF类逆变器实现了91%的效率。

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