考虑低谐波含量的级联多电平逆变器控制——基于萤火虫算法与牛顿·拉夫森算法的比较研究

L. Manai, Mounir Dabboussi, F. Armi, M. Besbes
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引用次数: 5

摘要

本文研究了一种非对称级联多电平逆变器的控制设计。因此,这种结构提供了以更低的开关频率以更高的速度产生更高电压的能力,这具有固有的低开关损耗和高转换器效率。提出了一种用于非对称多电平CHB逆变器控制的选择性谐波消除方法。切换角度的估计采用了萤火虫算法(FFA)。与Newton Raphson算法(NR)相比,FFA具有更强的鲁棒性和更少的计算时间。仿真结果证明了FFA技术相对于NR算法的有效性。该方法有效地消除了一些特定的低次谐波,使输出电压的总谐波失真很小。利用FPGA对非对称级联h桥九电平逆变器控制中的FFA和NR算法进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cascaded multilevel inverter control considering low harmonic content based on comparison study between firefly and Newton Raphson Algorithm
This paper deals with the control design of an asymmetrical cascaded multilevel inverter. This structure therefore provides the capability to produce higher voltages at higher speeds with low switching frequency which has inherent low switching losses and high converter efficiency. Selective harmonic elimination(SHE) for asymmetrical multilevel CHB inverter control is proposed. The technique utilized in the estimation of switching angles involves Firefly Algorithm (FFA). Compared to Newton Raphson algorithm (NR), FFA is more robust and entails less computation time. Simulation results prove the effectiveness of FFA technique compared to NR algorithm. The proposed method does effectively eliminate a number of specific low order harmonics, and the output voltage is resulted in low total harmonic distortion. FFA and NR algorithm for asymmetrical cascaded H-bridge nine level inverter control are experimentally tested on a prototype using FPGA.
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