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Digital simulation of multicarrier PWM strategy for multi-level inverter

机译:多电平逆变器的多载波PWM策略的数字仿真

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This paper presents a design of a Multi-Carrier Pulse Width Modulation (MCPWM) Strategy for an eleven level inverter. The emergence of multilevel inverters (MLI) has increased since the last decade. They are suitable for high voltage and high power applications, due to their ability to synthesize waveforms with a better harmonic spectrum. Numerous topologies have been introduced and widely studied, for utility and drive applications. Multi-level inverters are commonly modulated, by using multicarrier pulse width modulation techniques, such as phase-shifted multicarrier modulation, and level-shifted multicarrier modulation. Amongst these, the level-shifted multicarrier modulation technique produces the best harmonic performance. This work studies a multilevel inverter with equal DC sources, using the level shifting MCPWM technique. By applying this concept, harmonics can be eliminated, and in the output voltage, the Total Harmonic Distortion (THD) can be improved. A procedure to achieve the appropriate level shifting is presented in this paper.
机译:本文提出了一种用于十一电平逆变器的多载波脉冲宽度调制(MCPWM)策略的设计。自最近十年以来,多电平逆变器(MLI)的出现有所增加。它们具有合成具有更好谐波频谱的波形的能力,因此它们适合于高电压和高功率应用。已经针对实用程序和驱动器应用引入了许多拓扑并对其进行了广泛研究。通常,通过使用多载波脉冲宽度调制技术(例如相移多载波调制和电平移位多载波调制)来调制多电平逆变器。其中,电平移位多载波调制技术可产生最佳的谐波性能。这项工作使用电平转换MCPWM技术研究了具有相等直流电源的多电平逆变器。通过应用这一概念,可以消除谐波,并在输出电压中改善总谐波失真(THD)。本文提出了实现适当电平转换的过程。

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