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Comprehensive harmonic optimization in cascaded h-bridge multilevel inverters using variable DC sources

机译:使用可变直流电源的级联H桥多电平逆变器的综合谐波优化

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OMTHD and SHEPWM strategies are two prevalent methods, have been independently exploited for voltage harmonic reduction in multilevel inverters. While both aforesaid methods are effective, obtrusive presence of low order harmonics after THD minimization and considerable overall harmonic level after elimination of selected harmonics, can be sometimes troublesome. Moreover, inexistence of feasible solution for the entire range of modulation indices is also another possible problem. This paper presents a comprehensive formulation for harmonic rejection and output voltage improvement in multilevel inverters. Simultaneous, depending on the emphasis weighted, THD minimization and low order harmonics rejection, considering regulation of the fundamental voltage, are advantages of the proposed method. Furthermore, alterable DC sources are considered for harmonic optimization in the output waveform. A relatively new, Bat-inspired metaheuristic algorithm is utilized to solve nonlinear equations. The comparison of simulation results with standard OMTHD and SHE switching strategies, validates the efficaciousness of the proposed scheme.
机译:OMTHD和SHEPWM策略是两种流行的方法,已被独立开发用于降低多电平逆变器中的电压谐波。尽管上述两种方法都是有效的,但总谐波失真最小化后低阶谐波的突出存在以及消除所选谐波后相当大的总体谐波水平有时会带来麻烦。此外,对于整个调制指数范围,不存在可行的解决方案也是另一个可能的问题。本文提出了一种用于多电平逆变器中谐波抑制和输出电压改善的综合公式。同时,根据强调的加权,考虑基波电压的调节,THD最小化和低阶谐波抑制是该方法的优势。此外,可以考虑使用可变的直流电源来优化输出波形中的谐波。一种相对较新的,受蝙蝠启发的元启发式算法用于求解非线性方程。将仿真结果与标准OMTHD和SHE切换策略进行比较,验证了所提方案的有效性。

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