一种新的多电平双向对称分频pi变换器拓扑结构

V. Monteiro, Catia F. Oliveira, Ana M. C. Rodrigues, T. Sousa, Delfim Pedrosa, Luís Machado, J. Afonso
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引用次数: 3

摘要

智能电网的范例鼓励了电力电子转换器的新发展,例如,从可再生能源和电动汽车应用的角度来看。根据这一观点,本文提出了一种新颖的多电平双向对称(MBS)劈开pi dc-dc变换器拓扑结构。作为一个中心区别特征,它在直流两侧(0,vdc/2, vdc)具有三个电压电平,这意味着与传统的分路pi转换器相比,每个半导体中的电压应力降低了,并且它基于交错操作原理在控制变量(电压和电流)下工作,尽管它不是交错分路pi转换器。正如本文所展示的,MBS分路pi转换器可以通过任何直流接口的电流或电压反馈来控制,而公共直流链路电压由连接源的直流接口控制。给出了所采用的电流和电压控制方案以及脉宽调制,并进行了全面的说明。对主要工作模式进行了验证,其中有可能验证所提出的MBS分裂-pi转换器所声称的区别特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Topology of Multilevel Bidirectional and Symmetrical Split-Pi Converter
The paradigm of smart grids has encouraged new developments of power electronics converters, for instance, in the perspective of renewables and electric mobility applications. Aligned with this perspective, this paper proposes a novel topology of a multilevel bidirectional and symmetrical (MBS) split-pi dc-dc converter. As a central distinguishing feature, it operates with three voltage levels in both dc sides (0, vdc/2, vdc), meaning that the voltage stress in each semiconductor is reduced when compared with the conventional split-pi converters, and it operates with controlled variables (voltage and current) based on the interleaved principle of operation, although it is not an interleaved split-pi converter. As demonstrated along the paper, the MBS split-pi converter can be controlled with current or voltage feedback in any of the dc interfaces, while the common dc-link voltage is controlled by the dc interface where the source is connected. The adopted current and voltage control schemes, as well as the pulse-width modulation, are presented and comprehensively explained. The validation is presented for the main operation modes, where it is possible to verify the claimed distinguishing features of the proposed MBS split-pi converter.
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