用于可再生能源的对称和非对称多电平逆变器的设计与分析

P. N. V. S. Ayyappa, S. Andrade, Y. Manjunatha
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引用次数: 0

摘要

多电平变换器提供高功率容量,高质量输出和低补偿损失。多电平逆变器(MLI)在可再生能源中的高电压目标的应用已经变得更加普遍。本文首先提出了子多电平逆变器的另一种拓扑结构,然后提出了子多电平逆变器的排列关联作为一个总合的多电平逆变器。所提出的多电平逆变器减少了交换器件的数量。为了获得理想的结构,考虑了不同的标准,例如,开关的数量,开关上的驻电压,直流电压源的数量,等等。所提出的多电平逆变器在9电平对称和31电平非对称配置下进行了解剖。交换措施采用等步进技术和基频切换策略,并对两者进行了比较研究。利用MATLAB/SIMULINK编程对论述结果进行了验证,并利用基频开关技术实现了31级非对称结构的实验室样机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and analysis of symmetric and asymmetric multilevel inverter for renewable energy applications
Multilevel converters offer high power capacity, connected with high quality output and lower compensation misfortunes. Utilization of multilevel inverters (MLI) for higher voltage objectives in renewable vitality has turned out to be more prevalent. In this paper, at first another topology for sub-multilevel inverter is proposed and afterward arrangement association of the sub-multilevel inverters is proposed as a summed up multilevel inverter. The proposed multilevel inverter utilizes lessened number of exchanging gadgets. Uncommon consideration has been paid to acquire ideal structures seeing diverse criteria, for example, number of switches, standing voltage on the switches, number of dc voltage sources, and so forth. The proposed multilevel inverter has been dissected in both 9-level symmetric and 31-level asymmetric configurations. For exchanging measure up to equal step technique and fundamental frequency switching strategies are utilized and near investigation is done between them. Verification of the expository results is performed utilizing MATLAB/SIMULINK programming and Laboratory proto type was implemented for 31-level asymmetric configuration with fundamental frequency switching technique.
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