一种改进的开关电容多级逆变器拓扑结构,具有升压能力和减少元件数量

Vijay Sirohi, J. Kumar, Tejinder Singh Saggu, Bob Gill
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引用次数: 0

摘要

升压能力被认为是变换器电路的一个非常令人印象深刻的特点,因为这些变换器电路适用于电动汽车、暖通空调、分布式发电以及光伏应用。提出了一种改进的开关电容多电平逆变器(SC-MLI)拓扑结构。所提出的拓扑结构不仅实现了升压特性,而且具有更高的输出电平数(11-Level)。SC-MLI在其配置中仅使用两个输入源,十个功率电子开关,一个电容器和一个二极管。本文介绍了该系统的电路结构、工作模式、全谐波畸变和调制技术。在MATLAB/Simulink中对所提出的MLI进行了仿真。并根据开关个数、直流电源和电容等参数的不同,与近年来开发的多路集成电路的配置进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved switched capacitor multi-level inverter topology with boosting capability and reduced component count
Boosting capability is considered to be a very impressive feature of a converter circuit as these converter circuits are suitable for electric vehicles, HVAC, distributed power generation as well as photovoltaic applications. This article presents an improved switched capacitor multilevel inverter (SC-MLI) topology. The proposed topology not only attains boosting feature but also has a higher number of output levels (11-Level). The SC-MLI employs only two input source, ten power electronic switches, one capacitor and one diode in its configuration. The circuit configuration, operating modes, Total harmonic distortion and modulation technique are presented in the article. The presented MLI is simulated in the MATLAB/Simulink. A comparison is also made with the recently developed configurations of MLIs on the basis of different parameters like number of switch requirement, DC sources and capacitors.
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