Performance Analysis of Harmonic-Reduced Modified PUC Multi-Level Inverter Based on an MPC Algorithm

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-07-13 DOI:10.3390/inventions8040090
Umapathi Krishnamoorthy, Ushaa Pitchaikani, Eugen Rusu, H. H. Fayek
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引用次数: 1

Abstract

Renewable and distributed energy generation includes wind turbines, fuel cells, solar cells, and batteries. These distributed energy sources need special power converters in order to connect them to the grid and make the generated power available for public use. Solar energy is the most readily available energy source; hence, if utilized properly, it can power up both domestic and industrial loads. Solar cells produce DC power, and this should be converted to an AC source with the help of inverters. A multi-level inverter for an application is selected based on a trade-off between cost, complexity, losses, and total harmonic distortion (THD). A packed U-cell (PUC) topology is composed of power switches and voltage sources connected in a series-parallel fashion. This basic unit can be extended to a greater number of output voltage levels. The significance of this design is the reduced use of power switches, gate drivers, protection circuits, and capacitors. The converter presented in this paper is a 31-level topology switched by a variable switching frequency-based model predictive controller that helps in achieving optimal output with reduced harmonics to a great extent. The gate driver circuit is also optimized in terms of power consumption and size complexity. A comparison of the 9-level and the 31-level PUC inverters is carried out to study the impact of the number of levels on the total harmonic distortion. The simulation results depict that the total harmonic distortion (THD) for a nominal modulation index of 0.8 is 11.54% and 3.27% for the 9-level multi-level inverter (MLI) and the 31-level modified packed U-cell multi-level inverter (MPUC-MLI), respectively. The reduction in THD is attributed to the increased number of steps in the output when using the model predictive controller.
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基于MPC算法的谐波抑制改进型PUC多电平逆变器性能分析
可再生和分布式能源发电包括风力涡轮机、燃料电池、太阳能电池和电池。这些分布式能源需要特殊的电力转换器,以便将其连接到电网,并使产生的电力可供公众使用。太阳能是最容易获得的能源;因此,如果使用得当,它可以为家庭和工业负载供电。太阳能电池产生直流电,应该在逆变器的帮助下将其转换为交流电源。根据成本、复杂性、损耗和总谐波失真(THD)之间的权衡选择应用的多电平逆变器。压缩U单元(PUC)拓扑结构由以串并联方式连接的电源开关和电压源组成。这个基本单元可以扩展到更多数量的输出电压电平。这种设计的意义在于减少了电源开关、栅极驱动器、保护电路和电容器的使用。本文提出的转换器是一个31级拓扑结构,由基于可变开关频率的模型预测控制器进行切换,这在很大程度上有助于在降低谐波的情况下实现最佳输出。栅极驱动器电路也在功耗和尺寸复杂性方面进行了优化。对9电平和31电平PUC逆变器进行了比较,以研究电平数量对总谐波失真的影响。仿真结果表明,在标称调制指数为0.8的情况下,9电平多电平逆变器(MLI)和31电平改进型U单元多电平逆变器的总谐波失真(THD)分别为11.54%和3.27%。THD的降低归因于当使用模型预测控制器时输出中的步数增加。
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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