An improved bridgeless interleaved boost PFC rectifier with optimized magnetic utilization and reduced sensing noise

Guoen Cao, Heejun Kim
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引用次数: 8

Abstract

An improved bridgeless interleaved boost PFC rectifier is proposed to improve power efficiency and component utilization in this paper. By combining the conventional bridge-less PFC circuit and the interleaved technology, the proposed rectifier is comprised of two interleaved boost branches without the front-end diode bridge. Auxiliary diodes are employed to eliminate undesired circulating loop. The magnetic component utilization is improved by symmetrically coupling two inductors on unique core. According to the interleaved approach, each switch can operate in the whole-line cycle. Moreover, this circuit not only decreases the current stress of the switching devices but also reduces the current and voltage ripple. As operating in critical-conduction-mode (CrM), all the switches can achieve soft-switching characteristics to reduce the switching loss and evidently raise the conversion efficiency. Using a conventional interleaved controller, simple control scheme can be employed to the proposed converter. The operational principle and theoretical analysis of the proposed converter are presented. Finally, an 600 W experimental prototype was built to verify the theoretical analysis and feasibility of the proposed converter. The system efficiency was achieved up to 97.3% with very low current THD.
一种改进的无桥交错升压PFC整流器,具有优化的磁利用率和降低的传感噪声
本文提出了一种改进的无桥交错升压整流器,以提高功率效率和元件利用率。将传统的无桥PFC电路与交错技术相结合,提出的整流器由两个交错的升压支路组成,没有前端二极管桥。辅助二极管用于消除不需要的循环回路。通过在独特的磁芯上对称耦合两个电感,提高了磁性元件的利用率。根据交错方式,每个开关可以在全线周期内工作。此外,该电路不仅降低了开关器件的电流应力,而且减小了电流和电压纹波。由于工作在临界导通模式(CrM)下,所有开关都能实现软开关特性,降低开关损耗,明显提高转换效率。采用传统的交错控制器,可以对所提出的变换器采用简单的控制方案。介绍了该变换器的工作原理和理论分析。最后,建立了一个600w的实验样机,验证了该变换器的理论分析和可行性。在极低的电流THD下,系统效率高达97.3%。
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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