基于全桥拓扑的全数字控制3KW单级功率因数校正变换器

Hang Li-jun, Yang Yue-feng, Su Bin, Lu Zheng-yu, Qian Zhao-ming
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引用次数: 4

摘要

本文研究了一种基于隔离式全桥变换器的3kw功率因数校正电路。简单分析了该变换器的工作原理。本文阐述了基于隔离型PFC变换器的小信号动态建模的数字设计思想。研究了单级PFC变换器数字控制的实现策略和成本效益。变压器用于提供电流隔离,使输出电压范围宽,低于或高于输入电压,允许多输出解决方案。所采用的数字控制策略在不增加输入前馈的情况下具有快速的动态响应和良好的稳态调节特性。通过将FB主电路与数字控制相结合,实现了高功率因数和高效率。大大提高了系统的灵活性,可以进一步促进分布式电源系统的系统集成研究。在不增加输入前馈的情况下,由于数字控制策略的灵活性,可以实现快速动态。通过输出功率为3 KW, PFC工作频率为110 K的实验样机验证了上述优良性能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fully Digital Controlled 3KW, Single-Stage Power Factor Correction Converter Based on Full-Bridge Topology
This paper deals with a 3 KW power factor correction (PFC) circuit based on the isolated full-bridge (FB) converter. The operation principle of the very converter is simply analyzed. Digital design consideration based on the small-signal dynamic modeling of the isolated PFC converter is specified in this paper. Implementation strategy and cost effectiveness of digital control for the single-stage PFC converter are studied. A transformer is used to provide galvanic isolation enables a wide range of output voltages, either lower or higher than the input voltage, allowing multi-output solutions. The adopted digital control strategy features fast dynamic response and excellent steady regulation characteristic without multiplying the input feedforward. High power factor and high efficiency are both achieved by combining FB main circuit and digital control. That flexibility is greatly increased can further contribute to system integration research on distributed power system. Without multiplying the input feedforward, fast dynamic can be achieved due to the flexibility of digital control strategy. The above excellent performances are verified by an experimental prototype, whose output power is 3 KW and PFC operating frequency is 110 K
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