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A Step-Up Multilevel Inverter Topology Using Novel Switched Capacitor Converters With Reduced Components

机译:使用具有减少组件的新型开关电容转换器的升压多级逆变器拓扑

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摘要

In this article, basic cell (BC) of a novel swi-tched capacitor converter (SCC) has been proposed first. After that, the generalized structure of proposed SCC is developed. The developed SCC requires reduced number of switches, drivers, diodes, capacitors, and lower number of conducting switches in current flow paths and capacitor charging paths as compared to the other recently developed SCCs. A switched capacitor multilevel inverter (SCMLI) utilizing two numbers of generalized SCCs is developed next. Further, cascaded extension of proposed SCMLI is realized and analyzed for symmetric and asymmetric dc source configurations. A detail analysis of optimum selection of capacitance for switched capacitors of 13-level SCMLI is presented. An extensive comparison study shows that the proposed SCMLI requires lower number of components as compared to other SCMLIs. Further, the proposed structure has minimum cost function per level per boosting factor as compared to the other SCMLIs. Extensive experimental results considering fundamental switching frequency scheme are presented to validate the merits and effectiveness of the proposed structure.
机译:在本文中,首先提出了新型SWI-TCHED电容器转换器(SCC)的基本单元(BC)。之后,开发了所提出的SCC的广义结构。与另一个最近开发的SCC相比,开发的SCC需要减少电流流路径和电容器充电路径的电流电流和电容器充电路径的少量数量。接下来开发了利用两个概括的SCC的开关电容器多级逆变器(SCMLI)。此外,实现并分析了所提出的SCMLI的级联扩展,用于对称和不对称直流源配置。提出了13级SCMLI的开关电容电容最佳选择的详细分析。广泛的比较研究表明,与其他SCMLIS相比,所提出的SCMLI需要较少数量的组分。此外,与其他SCMLIS相比,所提出的结构具有每级的最小成本函数。提出了考虑基本开关频率方案的广泛实验结果,以验证所提出的结构的优点和有效性。

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