Experimental Investigation on Single-Phase Multilevel Inverter for Generating 21-Level Output Voltage Using Four H-Bridge Units

T. Chakraborty, A. Anan, Sakhawat Hossen Rakib
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引用次数: 1

Abstract

In this paper, an experimental investigation has been carried out on single-phase multilevel inverter to obtain 21-level output voltage using cascaded four H-bridge units. The proposed system consists of four cascaded H-bridge MOSFET-based voltage source inverters, a microcontroller-based Arduino module, four separate input dc sources and isolating circuit. The gate drive signals for MOSFETs of the four H-bridge inverters are generated by using ATmega 2560 microcontroller-based Arduino board. The microcontroller has been used to reduce the complexity of generating gate drive signals for higher levels of inverter output voltage. Different-level output voltages have been obtained from experimental works. It is found that the proposed system requires less number of power switching devices and total harmonic distortion is reduced with increasing number of levels at the output voltage of the multilevel inverter.
用4个h桥单元产生21电平输出电压的单相多电平逆变器的实验研究
本文对采用4个h桥单元级联的单相多电平逆变器获得21电平输出电压进行了实验研究。该系统由四个级联的h桥mosfet电压源逆变器、一个基于微控制器的Arduino模块、四个独立的输入直流电源和隔离电路组成。四个h桥逆变器的mosfet的栅极驱动信号由基于atmega2560微控制器的Arduino板产生。该微控制器已被用于降低产生高电平逆变器输出电压的栅极驱动信号的复杂性。通过实验得到了不同水平的输出电压。结果表明,该系统所需的功率开关器件数量较少,且在多电平逆变器输出电压处,随着电平数的增加,总谐波失真减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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