一种新型双向三相相模块升压式AC/DC变换器

D. Menzi, D. Bortis, J. Kolar
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引用次数: 9

摘要

本文介绍了一种新的相模双向三相升压型交/直流变换器拓扑结构。它的三个相位模块都是独立运行的,由一个升压转换器组成,允许通过一次只调制两个转换器级中的一个直接将交流电压转换为任意直流电压,其中交流电压被施加到所有相位的共同参考点上。因此,可以实现单级高频能量转换,从而实现高度紧凑和高效的变换器系统。在第一步中,相位模块变换器(PMC)的基本结构推导自众所周知的三相升压型整流器和随后的DC/DC降压变换器的级联排列,然后讨论了其工作原理和特征波形。在此基础上,提出了相应的直流输出电压控制方案,实现了各相模块降压和升压的无缝转换。最后,通过简单指标和关于效率和功率密度的二维Pareto优化,比较了相模变换器与传统两级系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Bidirectional Three-Phase Phase-Modular Boost-Buck AC/DC Converter
In this paper, a new phase-modular bidirectional three-phase boost-buck AC/DC converter topology is introduced. Each of its three phase modules is operated independently and consists of a boost-buck converter, allowing to directly convert an AC voltage into an arbitrary DC voltage by only modulating one of the two converter stages at a time, where the AC voltages are applied against a reference point common to all phases. Hence, single-stage high-frequency energy conversion is enabled, resulting in a highly compact and highly efficient converter system realization. In a first step, the basic structure of the phase-modular converter (PMC) is derived from the well known cascaded arrangement of a three-phase boost-type rectifier and a subsequent DC/DC buck converter, followed by a discussion of its operating principle and characteristic waveforms. Furthermore, the corresponding DC output voltage control scheme is presented which allows a seamless transition between buck and boost operation in each phase module. Finally, the phase-modular converter and the conventional two-stage system are compared by means of simple indices as well as a two-dimensional Pareto optimization concerning efficiency $\eta$and power density $ \rho $.
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