桥式PFC转换器与分裂升压扼流圈

A. Leban, P. Zajec, D. Voncina
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引用次数: 2

摘要

本文提出了一种单相PFC变换器,采用桥式结构,在交流侧放置分路升压电感。所提出的拓扑结构能够降低开关损耗,并限制当其控制信号暂时重叠时通过晶体管腿的可能短路电流。这两个特点使高功率变换器的建设成为可能。尽管增加了可控功率开关的数量和分割扼流圈的使用,但转换器的操作依赖于市售的PFC控制器(L4981)。由于桥上开关和下开关的脉冲移位,输入电流纹波减小,输出电压纹波减小。根据上述原理,建立了标称输出功率为1kw的实验模型。通过测量和谐波分析验证了其功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bridge PFC converter with split boost choke
The paper presents a single-phase PFC converter built in the bridge configuration with split boost inductor placed on the AC side. The proposed topology enables decreasing of switching losses and limits the possible short circuit current through the transistor leg when its control signals temporary overlap. Both features make a construction of high power converters possible. In spite of an increased number of controllable power switches and the use of split choke, the converter's operation relies on a commercially available PFC controller (L4981). Due to the shifted pulses for the upper and the lower switches in the bridge the input current ripple and consequently the output voltage ripple are reduced. Based on a described principle an experimental model with nominal output power 1 kW has been built. Its functionality has been verified by measurements and harmonic analysis.
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