Optimizing performance of a reduced switch multi‐level inverter with moth‐flame algorithm and SHE‐PWM

Ibrahim Haruna Shanono, Nor Rul Hasma Abdullah, Hamdan Daniyal, Aisha Muhammad
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Abstract

Abstract Multi‐level inverters are widely used in high‐voltage and high‐power applications due to the increasing demand for renewable energy. This study proposes a novel single‐phase reduced switch multi‐level inverter topology that generates 11 levels of output voltage steps, operates in asymmetric mode, and uses fewer power electronic switches with efficient switching control. To optimize the inverter's performance, Moth Flame Optimization (MFO), Particle Swarm Optimization (PSO), and Whale Optimization Technique (WOA) are utilized to apply the selective harmonic elimination technique. The proposed circuit is implemented in PSIM software using optimized switching angles, and the fitness functions and switching angles for the three optimizers are evaluated and reported. The inverter's performance at optimal modulation points for the three optimizers is computed and analyzed, with the Total Harmonic Distortion (THD) measured at 0.82 modulation point before and after filtering. Results show that MFO outperforms PSO and WOA with the lowest THD values of 0.85% and 0.78%, respectively; therefore, complying with the IEEE 519 standard. The experimental validation of MFO's superiority is performed using the Typhoon HIL‐402 hardware device. This study provides a promising solution for the design and optimization of multi‐level inverters, paving the way for more efficient and reliable renewable energy systems.
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采用飞蛾-火焰算法和SHE - PWM优化减开关多电平逆变器的性能
摘要随着可再生能源需求的不断增长,多电平逆变器在高压、大功率应用中得到了广泛的应用。本研究提出了一种新颖的单相减少开关多电平逆变器拓扑结构,该拓扑结构产生11级输出电压阶跃,以非对称模式工作,并且使用更少的功率电子开关,具有高效的开关控制。为了优化逆变器的性能,采用蛾焰优化(MFO)、粒子群优化(PSO)和鲸鱼优化技术(WOA)应用选择性谐波消除技术。利用优化后的开关角在PSIM软件中实现了该电路,并对三种优化器的适应度函数和开关角进行了评估和报告。计算和分析了三种优化器在最优调制点的逆变器性能,并测量了滤波前后在0.82调制点处的总谐波失真(THD)。结果表明,MFO优于PSO和WOA, THD值最低,分别为0.85%和0.78%;因此,符合IEEE 519标准。利用台风HIL‐402硬件设备对MFO的优越性进行了实验验证。本研究为多电平逆变器的设计和优化提供了一个有前途的解决方案,为更高效、更可靠的可再生能源系统铺平了道路。
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