一种新的单相21电平逆变器拓扑结构,减少了可再生能源应用中的开关和电源数量

Md. Tariqul Islam, Md. Shahidul Islam, Arnob Kumar Bairagi
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引用次数: 6

摘要

近年来,多电平逆变器在中压和大功率应用中发挥着新兴的作用。它具有低开关损耗、高dv/dt应力、低THD等优点。但对于高电平要求的开关器件较多、体积大、成本高等缺点。本文主要提出了一种新发明的拓扑结构,该拓扑结构由8个开关、4个电压源和2个功率二极管组成,可以产生21个电平的电压波形。该逆变器的主要优点是体积小,损耗小,安装成本低,适用于高功率应用。分析并给出了不同开关角计算方法,特别是等相位法和半高法的仿真结果。通过MATLAB软件对该逆变器进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Single Phase 21 Level Inverter Topology with Reduced Number of Switches and Sources for Renewable Energy Applications
Lately, a multilevel inverter takes an emergent role for medium voltage and high-power applications. It has many advantages like low switching loss, high dv/dt stress, low THD. But it has also disadvantage like for higher level required more switching devices, huge size, high cost. This paper mainly proposed a newly invented topology with a reduced switch belongs to only eight switches, four voltage sources, and two power diodes to produce twenty-one level voltage waveforms. The major advantage of this proposed inverter ends in diminished size, lesser loss, along with low installation cost, and it is suitable for high power applications. The simulation results for different switching angle calculation methods especially Equal Phase (EP) method and Half Height (HH) method are analyzed and presented. The proposed inverter has been simulated through MATLAB software.
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