具有最小开关的可重构多电平逆变器,用于电池充电和可再生能源应用

Sindhuja R, S. K, P. E., P. S
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引用次数: 5

摘要

近年来,h桥级联多电平逆变器、飞电容和飞电容多电平逆变器等经典逆变器在电动汽车和非常规能源应用中做出了贡献。由于更高的开关和传导损耗,以及更多的功率开关和驱动电路,传统的多电平逆变器不能达到最高的性能。为了获得更高的性能,同时降低功率损耗和总谐波失真,单个开关由逻辑门控制。在本工作中,一个逆变器被认为是对称电压,另一个是不对称电压,以实现这些有效的拓扑结构。采用所提出的对称和非对称多电平逆变器的单相七电平电压输出和电流来测试预期的计算。使用MATLAB/Simulink工具来实现和研究所提出的拓扑的各种参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Reconfigurable Multilevel Inverters with Minimal Switches for Battery Charging and Renewable Energy Applications
In recent years, classical inverters such as the H-bridged cascaded multilevel inverter, flying capacitor, and flying capacitor multilevel inverter have contributed in electric vehicle and non-conventional energy applications. Due to higher switching and conduction losses, as well as a greater number of power switches and driver circuits, conventional multilevel inverters do not achieve the highest performance. To obtain higher performance while reducing power losses and total harmonic distortion, individual switches are controlled by logic gates. In this proposed work, one of the inverters is considered symmetrical voltage another is asymmetrical voltage for implementing these effective topologies. The proposed single-phase seven-level voltage output and current for both symmetric and asymmetric multilevel inverters are employed to test the intended computation. The MATLAB/Simulink tool is used to implement and investigate the various parameters of proposed topologies.
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