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A comprehensive study of classical and hybrid multilevel inverter topologies for renewable energy applications

机译:对可再生能源应用的经典和混合多电平逆变器拓扑的全面研究

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摘要

Over the last few decades, multilevel inverters (MLIs) are being extensively utilized in many industrial and grid connected applications due to their numerous merits. With the recent development of renewable energy systems (RES), applications of classical MLI topologies are hindered due to their performance issues such as poor power quality, uneconomical structure and low efficiency. These performance issues and limitations in classical MLI topologies have attracted the researchers toward evolving new hybrid MLI topologies. In this article, a comprehensive analysis of these recent hybrid MLI topologies is done on the basis of some qualitative and quantitative performance indices. Special focus has been given to extensively review the influence of MLIs in grid connected renewable energy applications such as photovoltaic (PV) systems, wind energy conversion systems (WECS) and micro-grid. In order to provide the better insight about the working and performance of these MLI topologies, simulation results performed in MATLAB/Simulink environment are also presented.
机译:在过去的几十年中,由于多级逆变器(MLI)的众多优点,它们已在许多工业和电网连接应用中得到广泛利用。随着可再生能源系统(RES)的最新发展,传统的MLI拓扑由于其性能问题(例如,电能质量差,结构不经济且效率低)而受到阻碍。经典MLI拓扑中的这些性能问题和局限性吸引了研究人员朝不断发展的新混合MLI拓扑发展。在本文中,基于一些定性和定量性能指标对这些最新的混合MLI拓扑进行了综合分析。特别关注了MLI在并网可再生能源应用(例如光伏(PV)系统,风能转换系统(WECS)和微电网)中的影响。为了更好地了解这些MLI拓扑的工作原理和性能,还介绍了在MATLAB / Simulink环境中执行的仿真结果。

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