交错双向DC-DC变换器运行策略与问题挑战综述

Mario Norman Syah, E. Firmansyah, Dzuhri Radityo Utomo
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引用次数: 4

摘要

双向dc-dc变换器是在两个潮流方向上连接不同电压电平的重要拓扑结构。它可以应用于混合储能系统(HESS)、电动汽车、直流微电网和许多其他应用。该拓扑结构可以相互交错,以获得诸如电流和电压纹波减小以及提高功率处理能力等优点。交错双向变换器必须在特定的导通模式下工作,以避免高频开关和反向恢复二极管造成的损耗。目前已经提出了许多交错式双向变换器。本文试图从传导方式、控制策略及其面临的挑战等方面对一些已提出的论文进行综述。本文综述的目的是为具体应用的交错双向变换器的新方法的开发提供比较基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interleaved Bidirectional DC-DC Converter Operation Strategies and Problem Challenges: An Overview
A bidirectional dc-dc converter is an important topology for interfacing different voltage levels in both power flow directions. It can be applied to hybrid energy storage systems (HESS), electric vehicles, dc microgrids, and many other applications. The topology can be interleaved in order to gain advantages such as current and voltage ripple reduction and increase power handling capability. The interleaved bidirectional converter has to operate in a specific conduction mode to avoid the losses due to high-frequency switching and reverse recovery diode. There are many interleaved bidirectional converters that have been proposed. This paper tries to review some of those proposed papers from the point of view of conduction mode, control strategy, and their challenges. This review aims to provide a comparative basis for developing new approaches of interleaved bidirectional converters for specific applications.
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