用电压级扩展法推导飞行型多电平变换器拓扑

C. Wei, Xibo Yuan, Wenzhi Zhou, Jun Wang
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引用次数: 0

摘要

多电平变换器在各种工业应用中越来越受欢迎。多电平变换器的一个重要研究课题是如何获得新的和现有的拓扑结构。本文提出了一种电压级扩展方法,通过对现有的多电平变换器进行扩展,可以简单地推导出一系列飞行型多电平变换器。本文推导出了一些新型的飞行型变换器,通过提出的VLE方法可以得到更多的多层拓扑结构。以一种新型飞行式变换器为例进行了详细分析。利用一种新的冗余电平调制(RLM)成功地控制了传统方法无法实现的电容器电压。仿真和实验结果验证了相应的理论分析。在VLE方法和RLM方法的基础上,可以发明更多新的多层拓扑,并将其用于新兴的工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Derivation of Flying-Type Multilevel Converter Topologies with a Voltage-Level Extension Method
Multilevel converters have become more and more popular in various industrial applications. One of the important research topics for multilevel converters is how to obtain new and existing topologies. This paper has presented a voltage-level extension (VLE) method, which can derive a series of flying-type multilevel converters in a simple way by extending the existing multilevel converters. This paper derives some new flying-type converters and more multilevel topologies can be obtained through the proposed VLE method. A novel flying-type converter is analyzed in detail as an example. A new redundant level modulation (RLM) is used to control the capacitor voltages successfully, where conventional methods cannot achieve. The simulation and experimental results are provided to verify the corresponding theoretical analysis. Based on the VLE method and the RLM method, it is expected more new multilevel topologies can be invented and used for emerging industrial applications.
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