基于选择性谐波消除技术的多电平逆变器广义减分量拓扑

Amrita Singh, Sulata Bhandari, J. Kumar, Vikram Singh
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引用次数: 1

摘要

近年来,多电平逆变器(MLIs)被开发出来用于将可再生能源(RES)接入公用电网。由于MLI在大功率、谐波少、输出电压和效率方面优于传统逆变器,研究一直集中在开发新的MLI拓扑结构上。本文提出了一种新的广义MLI拓扑结构,即简化开关单源MLI。与最近开发的MLI拓扑结构相比,RSSS MLI所需的开关和电压源数量更少。为了消除输出电压和电流中的谐波含量,采用牛顿-拉夫森(NR)选择性谐波消除技术。在7级和11级RSSS MLI上进行了谐波消除,并对结果进行了讨论。通过MATLAB仿真对所开发的RSSS MLI进行了验证和验证。
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Generalized Topology with Reduced Components for Multilevel Inverter Using Selective Harmonic Elimination Technique
Recently, Multilevel Inverters (MLIs) are developed for integrating the Renewable Energy Sources (RES) to the utility grid. Due to the dominance of MLIs over conventional inverters with respect to high power capability, less harmonics, greater levels in the output voltage and efficiency, research has been focused on development of new MLI topology. This paper presents the new generalized topology for MLI structure named as Reduced Switch Single Source (RSSS) MLI. Proposed RSSS MLI requires less number of switches and voltage source compared with some recently developed MLI topologies. For the elimination of harmonic contents from output voltage and current, Selective Harmonic Elimination (SHE) with Newton Raphson (NR) technique is used. This elimination of harmonics is done on seven and eleven level RSSS MLI and results have been discussed. The developed RSSS MLI is verified and validated through several MATLAB simulation.
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