Asymmetric snubberless current-fed full-bridge isolated DC-DC converters

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Control and Communication Engineering Pub Date : 2018-07-01 DOI:10.2478/ecce-2018-0001
R. Kosenko, A. Blinov, D. Vinnikov, A. Chub
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引用次数: 5

Abstract

Abstract This paper presents two isolated current-fed fullbridge DC-DC converters that can be used to interface a lower voltage source into a DC bus of higher voltage. The first topology uses a resonant circuit to force current redistribution between low-voltage-side transistors and a passive rectifier. The second topology utilizes an active rectifier with secondary modulation to achieve the same goal. The resonant circuit can be formed by using transformer leakage inductance and the parasitic capacitances of the switches. The converters feature soft switching of semiconductors over a wide range of operating conditions. This is achieved with decreased energy circulation when compared to existing topologies with symmetric control and with fewer semiconductors than in those with phase-shift control. The topologies can be implemented in renewable, supercapacitor, battery, fuel cell, and DC microgrid applications. Steady-state operation and design aspects of the converters are presented and verified experimentally with 400 W prototypes
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不对称无缓冲电流馈送全桥隔离DC-DC转换器
摘要本文介绍了两个隔离的电流馈电全桥DC-DC转换器,可用于将较低电压源连接到较高电压的DC总线。第一种拓扑结构使用谐振电路来强制在低压侧晶体管和无源整流器之间重新分配电流。第二种拓扑结构利用具有次级调制的有源整流器来实现相同的目标。谐振电路可以通过使用变压器漏电感和开关的寄生电容来形成。转换器的特点是在各种操作条件下对半导体进行软开关。与具有对称控制的现有拓扑结构相比,这是通过减少能量循环来实现的,并且与具有相移控制的拓扑结构相比具有更少的半导体。该拓扑结构可用于可再生能源、超级电容器、电池、燃料电池和直流微电网应用。介绍了转换器的稳态运行和设计方面,并用400W原型进行了实验验证
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
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14.30%
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审稿时长
12 weeks
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