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A Survey on Multi-Active Bridge DC-DC Converters: Power Flow Decoupling Techniques, Applications, and Challenges

机译:多源桥式DC-DC转换器综述:潮流去耦技术、应用与挑战

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摘要

Multi-port DC-DC converters are a promising solution for a wide range of applications involving multiple DC sources, storage elements, and loads. Multi-active bridge (MAB) converters have attracted the interest of researchers over the past two decades due to their potential advantages such as high power density, high transfer ratio, and galvanic isolation, for example, compared to other solutions. However, the coupled power flow nature of MAB converters makes their control implementation difficult, and due to the multi-input, multi-output (MIMO) structure of their control systems, a decoupling control strategy must be designed. Various control and topology-level strategies are proposed to mitigate the coupling effect. This paper discusses the operating principles, applications, methods for analyzing power flow, advanced modulation techniques, and small signal modelling of the MAB converter. Having explained the origin of cross-coupling, the existing power flow decoupling methods are reviewed, categorized, and compared in terms of effectiveness and implementation complexity.
机译:多端口 DC-DC 转换器是一种很有前途的解决方案,适用于涉及多个直流电源、存储元件和负载的广泛应用。在过去的二十年中,多源桥式 (MAB) 转换器因其与其他解决方案相比具有高功率密度、高传输比和电流隔离等潜在优势,吸引了研究人员的兴趣。然而,MAB转换器的耦合潮流特性使其控制难以实现,并且由于其控制系统的多输入多输出(MIMO)结构,必须设计一种去耦控制策略。提出了各种控制和拓扑级策略来减轻耦合效应。本文讨论了MAB转换器的工作原理、应用、潮流分析方法、高级调制技术和小信号建模。在解释了交叉耦合的起源之后,对现有的潮流去耦方法进行了回顾、分类和比较,并从有效性和实现复杂性方面进行了比较。

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