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A Class-E-Based Resonant AC-DC Converter With Inherent PFC Capability

机译:基于C类的谐振AC-DC转换器,具有固有的PFC能力

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摘要

This paper investigates the use of the class-E inverter for power factor correction (PFC) applications. Analytical and state-space models are derived showing the class-E inverter’s capability of achieving inherent PFC operation with a constant duty cycle. The inherent PFC operation limits the controller responsibility to the regulation of the output voltage, which is key for resonant converters with challenging control. A converter incorporating a diode bridge, a class-E inverter, and a class-D rectifier is presented for the PFC stage in single-phase offline converters. A prototype is designed to validate the analysis and presented design method. The prototype operates with zero-voltage switching (ZVS) across the load range and achieves up to 211 W of output power at an efficiency of 88%, with an inherent power factor of 0.99 and a total harmonic distortion (THD) of 8.8 %. Frequency modulation is used to achieve lower output power down to 25 W, with a power factor of 0.95, THD of 28 %, and an efficiency of 88 %.
机译:本文调查了E逆变器的使用进行功率因数校正(PFC)应用。通过恒定占空比推导出分析和状态空间模型,示出了eS-E逆变器实现固有的PFC操作的能力。固有的PFC操作将控制器责任限制为输出电压的调节,这是具有具有挑战性控制的谐振转换器的键。在单相离线转换器中为PFC级提供了一种具有二极管桥的转换器,包括二极管桥,逆变器和D类整流器。原型旨在验证分析和呈现的设计方法。原型以负载范围内的零电压开关(ZVS)运行,效率高达211W,效率为88%,固有功率因数0.99,总谐波失真(THD)为8.8%。频率调制用于实现下部的输出功率降至25W,功率因数为0.95,THD为28%,效率为88%。

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