Parallel Power Flow AC/DC Converter with High Input Power Factor and Tight Output Voltage Regulation for Universal Voltage Application

A. K. Jha, K. Babu, B. Karan
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引用次数: 11

Abstract

In this paper, a new parallel-connected single phase power factor correction (PFC) topology using flyback converter in parallel with forward converter is proposed to improve the input power factor with simultaneously output voltage regulation taking consideration of current harmonic norms. Paralleling of converter modules is a well-known technique that is often used in medium-power applications to achieve the desired output power by using smaller size of high frequency transformers and inductors. The proposed approach offers cost effective, compact and efficient AC-DC converter by the use of parallel power processing. Forward converter primarily regulates output voltage with fast dynamic response and it acts as master which processes 60% of the power. Flyback converter with AC/DC PFC stage regulates input current shaping and PFC, and processes the remaining 40% of the power as a slave. This paper presents a design example and circuit analysis for 300 W power supply. A parallel-connected interleaved structure offers smaller passive components, less loss even in continuous conduction inductor current mode, and reduced volt-ampere rating of DC/DC stage converter. MATLAB/Simulink is used for implementation and simulation results show the performance improvement.
具有高输入功率因数和严格输出稳压的通用电压并联潮流AC/DC变换器
本文提出了一种采用反激变换器与正激变换器并联并联的单相功率因数校正(PFC)拓扑结构,在考虑电流谐波规范的同时调节输出电压,从而提高输入功率因数。转换器模块并联是一种众所周知的技术,通常用于中功率应用,通过使用较小尺寸的高频变压器和电感器来获得所需的输出功率。该方法采用并联电源处理,提供了一种经济、紧凑、高效的交直流变换器。正激变换器主要调节输出电压,动态响应快,起主控作用,处理60%的功率。带AC/DC PFC级的反激变换器调节输入电流整形和PFC,剩余40%的功率作为从机处理。本文给出了300w电源的设计实例和电路分析。并联交错结构提供了更小的无源元件,即使在连续传导电感电流模式下也更少的损耗,并降低了DC/DC级变换器的伏安额定值。利用MATLAB/Simulink进行了实现,仿真结果表明了性能的提高。
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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