Operation and Design of Series-Resonant Current-Source Full-Bridge DC-DC Converter

I. Verbytskyi, A. Blinov, D. Vinnikov, D. Peftitsis
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引用次数: 2

Abstract

This paper presents a detailed analysis of a series LC resonant isolated current source converter (SR-CSC) with the focus on a buck operation mode. Topologies of this type are generally proposed for PV, fuel cell, battery charging or DC microgrid applications. The switching processes on the example of the full-bridge topology are described and the corresponding mathematical equations derived. Further, the operational parameters of the converter, including switching frequency as well as transistor voltage and current stresses are estimated. The performed analysis is may be used to determine the component values for the optimal design of the DC-DC converter for a case study system. The obtained findings are verified with a simulation model of a 3.3 kVA SR-CSC.
串联谐振电流源全桥DC-DC变换器的工作与设计
本文详细分析了串联LC谐振隔离电流源变换器(SR-CSC)的降压工作模式。这种类型的拓扑结构通常用于光伏、燃料电池、电池充电或直流微电网应用。以全桥拓扑为例,描述了开关过程,并推导了相应的数学方程。此外,还估计了变换器的工作参数,包括开关频率以及晶体管电压和电流应力。所进行的分析可用于确定实例研究系统中DC-DC转换器的最佳设计的元件值。用3.3 kVA的SR-CSC仿真模型验证了所得结果。
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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