Grid interconnected H-bridge multilevel inverter for renewable power applications using repeating units and level boosting network

Sumit Trimukhe, Sanjeevkumar R A
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引用次数: 3

Abstract

In today's world, development in technology need good converters, among which multilevel inverter is the area to be focused as it minimizes the losses and reduces power quality issues. This research article proposes a grid connected H-bridge multilevel inverter for renewable applications. Which is interconnected to repeating units and level boosting network. The proposed system is developed to reduces the power losses as it is integrated with repeating units, which enhance the output voltage. Further reduction in power losses and increase in efficiency is achieved by generating intermediate levels with the help of level boosting network. The bidirectional flow of power is achieved with the help of grid interconnected H-bridge. The proposed multilevel inverter generates 4n + 3 number of output levels. The work is carried out using two repeating units and one level boosting network with grid integrated H-bridge for 11 levels. The main objective of the proposed method, to reduce number of switches and sources is achieved. Which influences the additional saving of generating power apart from renewable source. The analysis is carried out for different modes of operation and compared with other topologies using MATLAB Simulink.

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使用重复单元和电平升压网络的可再生能源应用的电网互联h桥多电平逆变器
当今世界,技术的发展需要好的变换器,其中多电平逆变器是一个备受关注的领域,因为它可以最大限度地减少损耗,减少电能质量问题。本文提出了一种可再生能源并网h桥多电平逆变器。它与重复单元和升压网络相连。所提出的系统是为了减少功率损耗而开发的,因为它与重复单元集成在一起,提高了输出电压。在升压电网的帮助下产生中间电平,进一步降低了功率损耗,提高了效率。并网h桥实现了电力的双向流动。提出的多电平逆变器产生4n + 3个输出电平。该工作采用两个重复单元和一个带网格集成h桥的11级升压网络进行。该方法的主要目标是减少开关和源的数量。这影响了可再生能源发电的额外节省。利用MATLAB Simulink对不同的工作模式进行了分析,并与其他拓扑结构进行了比较。
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