A Novel Topology of Modular Multilevel Bidirectional Non-Isolated dc-dc Converter

Vítor Monteiro, T. Sousa, J. Afonso, Vítor Monteiro, J. Afonso
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引用次数: 2

Abstract

The paradigm of smart grids has been continuously addressing new challenges in terms of power electronics converters, for instance, to deal with technologies like renewables, electric mobility, energy storage, and hybrid power grids. Allied with this context, a novel topology of modular multilevel bidirectional (MMB) non-isolated dc-dc converter is proposed in this paper. Taking into consideration the nature of the proposed MMB dc-dc converter, it is appropriated to operate as back-end converter linked to front-end ac-dc converters based on cascade structures, i.e., with more than one dc-link. As unique features, the proposed MMB dc-dc converter can operate with five-voltage levels, allowing to reduce the voltage stress in each semiconductor, and it is controlled based on the interleaved principle of operation, although it is not an interleaved converter. A dedicated pulse-width modulation, as well as voltage and current control strategies, are proposed and clearly explained along the paper. The claimed distinctive features of the proposed MMB dc-dc converter are supported by analytic description and by computer simulation validation, considering steady-state and transient-state operations in relevant conditions of the dc interfaces.
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模块化多电平双向非隔离dc-dc变换器的一种新型拓扑
智能电网的范例一直在不断应对电力电子转换器方面的新挑战,例如,应对可再生能源、电动汽车、能源存储和混合电网等技术。结合这一背景,本文提出了一种新型的模块化多电平双向非隔离dc-dc变换器拓扑结构。考虑到所提出的MMB dc-dc变换器的性质,它适合作为基于级联结构连接到前端ac-dc变换器的后端变换器,即具有多个dc链路。作为独特的特点,所提出的MMB dc-dc转换器可以在五个电压水平上工作,从而减少每个半导体中的电压应力,并且它是基于交错工作原理控制的,尽管它不是交错转换器。本文提出并清楚地解释了专用脉宽调制以及电压和电流控制策略。考虑到直流接口在相关条件下的稳态和瞬态操作,分析描述和计算机仿真验证支持了所提出的MMB dc-dc转换器的独特特性。
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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