A novel B3C converter

M. Frivaldský, B. Dobrucký, P. Spánik, Koscelnik
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Abstract

The paper deals with investigation of novel B3C converter which can be utilized as a part of power semiconductor system in traction, automotive, or industrial applications like renewable energy sources. Proposed solution of main circuit of B3C converter is based on buck-boost topology (BB), whereby energy transfer from source to load and vice versa is possible - bidirectional converter (B). Due to this description the designation of B3C was made. Based on previous abilities, parameters of electrical variables like voltage, current and power are able to be adapted based on the current requirements of application. Due to natural behvior of proposed topology their values can be increased or decreased in first (energy transfer from source to load) or in third (energy transfer from load to source) quadrant of converter's operation. The boost effect of output voltage can be increased - if it is not sufficient one - by appropriated ratio of number of inductor windings. In this paper the novel B3C converter will be presented together with analysis of operational intervals both for simulation as well as for experimental measurement.
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一种新型B3C变换器
本文研究了一种新型的B3C变换器,它可以作为牵引、汽车或可再生能源等工业应用的功率半导体系统的一部分。B3C变换器的主电路方案基于buck-boost拓扑(BB),可以实现源与负载之间的能量传递——双向变换器(B)。基于这种描述,给出了B3C的命名。基于之前的能力,电压、电流、功率等电气变量的参数可以根据应用的电流要求进行调整。由于所提出的拓扑结构的自然行为,它们的值可以在变流器运行的第一象限(从源到负载的能量传递)或第三象限(从负载到源的能量传递)中增加或减少。如果输出电压的升压效果不够,可以通过适当比例的电感绕组数来增加。本文将介绍一种新型的B3C变换器,并对其运行间隔进行仿真分析和实验测量。
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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