基于太阳能光伏的十七级减小开关对称多电平逆变器拓扑结构馈电感应电机

Ujwal Gajula, Kalpanadevi Manivannan, N. M. Reddy
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引用次数: 0

摘要

与典型的两电平逆变器相比,多电平逆变器能够提供更多的电压电平,因此近年来备受关注。由于这一特性,多电平逆变器可以产生近似正弦波的输出波形,从而显著降低谐波失真。减少开关对称多电平逆变器拓扑结构的出现,让许多不同的电力转换系统大开眼界。这些新型拓扑结构具有众多优势,包括更高的输出电压质量、更少的谐波失真和更高的功率转换效率。将这些逆变器用于感应电机馈电是其众多突出用途之一。本文介绍了一种 17 级多电平逆变器(MLI)拓扑结构,它减少了开关数量,降低了谐波,从而提高了电能质量。逆变器由作为直流电源的隔离等效光伏电池板供电。为降低复杂性,采用混合脉宽调制技术产生开关脉冲,并将其设计为控制器。通过使用 MATLAB/Simulink,验证了一种独特的基于级联多电平逆变器的减少开关对称逆变器的性能评估,该逆变器为感应电机驱动器供电。通过减少开关获得的谐波失真为 7.47%,与传统的级联 H 桥拓扑结构相比,谐波失真相对较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar PV based seventeen level reduced switch symmetrical multilevel inverter topology fed induction motor
Multilevel inverters have received a lot of interest in recent years due to their ability to deliver more voltage levels than typical two-level inverters. Because of this property, multilevel inverters can produce output waveforms that closely resemble sinusoidal waveforms, lowering harmonic distortion dramatically. The emergence of reduced switch symmetrical multilevel inverter topologies has developed the curiosity of many different power conversion systems. These new topologies offer numerous advantages, including greater output voltage quality, fewer harmonic distortions, and increased power conversion efficiency. The inclusion of these inverters in the feeding of induction motors is one of their many prominent uses. A 17 levels of multi-level inverter (MLI) topology is presented with reduced switch count and harmonic reduction for power quality improvement. The inverter is fed by isolated equal photovoltaic panels which act as direct current or DC source. To reduce complexity, switching pulses are generated using hybrid pulse width modulation technique which is designed as controller. Through the use of MATLAB/Simulink, the performance assessment of a unique cascaded multilevel inverter-based reduced switch symmetrical inverter feeding an induction motor drive has been verified. The harmonic distortion with reduced switches obtained is 7.47% which is comparatively less than when compared with conventional cascaded H-bridge topology.
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