A comparison of seven-level inverter topologies for multilevel DC-AC power conversion

P. Salodkar, N. Sandeep, P. Kulkarni, R. Udaykumar
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引用次数: 25

Abstract

Multilevel inverter (MLI) performance is high compared to the conventional two level inverters since they offer high power capability, associated with lower output harmonics and lower commutation losses. However the main drawback of MLI is their increased number of power devices, passive components, complex pulse width modulation control and balancing of capacitor voltages. In this paper the most popular topologies like diode-clamped inverter (neutral-point clamped), cascaded multicell with separate dc sources, and transistor clamped H-Bridge inverter are discussed. A simplified multilevel inverter (Switched Transistor MLI) is proposed and its performance is compared with the above said topologies. Component count and the % total harmonic distortion (THD) of the output voltage are considered as the indexes of the comparative performance. The operating principle of each topology, the most relevant modulation method of all the topologies and the detailed analysis of the proposed Switched Transistor MLI is included. The selection of topology and control techniques depends and varies according to power demands of inverter. Simulation study of all the topologies considered is carried out on MATLAB/SIMULINK platform and the performance of the proposed topology is verified experimentally by the tests performed on a scaled laboratory prototype.
多电平直流-交流功率转换的七电平逆变器拓扑比较
与传统的双电平逆变器相比,多电平逆变器(MLI)性能高,因为它们提供高功率能力,具有较低的输出谐波和较低的换流损耗。然而,MLI的主要缺点是功率器件数量增加,无源元件数量增加,脉宽调制控制复杂,电容器电压平衡困难。本文讨论了最流行的二极管箝位逆变器(中性点箝位)、具有单独直流源的级联多室和晶体管箝位h桥逆变器等拓扑结构。提出了一种简化的多电平逆变器(开关晶体管MLI),并与上述拓扑结构进行了性能比较。分量计数和输出电压的总谐波失真% (THD)作为比较性能的指标。包括每种拓扑的工作原理,所有拓扑中最相关的调制方法以及所提出的开关晶体管MLI的详细分析。拓扑和控制技术的选择取决于逆变器的功率需求。在MATLAB/SIMULINK平台上对所考虑的所有拓扑进行了仿真研究,并通过在缩放的实验室原型上进行的测试验证了所提出拓扑的性能。
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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