Design and Simulation of a Power System Composed of Grid-tied Five-level Inverter with LCL Filter

O. Elamri, A. Oukassi, Alla Eddine Toubal Maamar, L. El Bahir
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Abstract

This paper presents the analysis, design, and simulation of a power system composed of a grid-tied single-phase five-level inverter with an LCL filter. First, the analysis of the proposed system has been carried out in the decoupled Direct-Quadrature frame, where the Phase-Lock-Loop technique has been used for synchronizing the LCL-filter-connected-grid with the five-level inverter. Next, the design of the LCL filter has been discussed. In this paper, we focused on the active power control based on grid current adjustment using a proportional-integral regulator and a high-frequency modulation technique for the switching of a five-level inverter, where the Sinusoidal-Pulse-Width-Modulation technique is selected. All circuit design and control schemes are discussed step by step to provide the effectiveness of the system analysis. The theoretical analysis is verified through simulation results in MATLAB/Simulink environments. An important finding when using the five-level inverter in a grid-connect system is improving the system output voltage; the total standing voltage and the total harmonic distortion are decreased compared to a conventional H-bridge inverter. The results indicate that the total harmonic distortion of grid-current is less than 0.2%, which is according to the international standards.
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带LCL滤波器并网五电平逆变器电力系统的设计与仿真
本文介绍了一种带LCL滤波器的并网单相五电平逆变器组成的电力系统的分析、设计和仿真。首先,在解耦的直接正交框架中对所提出的系统进行了分析,其中锁相环技术已用于将lc滤波器连接的电网与五电平逆变器同步。其次,对LCL滤波器的设计进行了讨论。在本文中,我们重点研究了基于电网电流调节的有功功率控制,使用比例积分调节器和高频调制技术用于五电平逆变器的开关,其中选择了正弦脉宽调制技术。逐步讨论了所有电路设计和控制方案,以提供系统分析的有效性。通过MATLAB/Simulink环境下的仿真结果验证了理论分析的正确性。在并网系统中使用五电平逆变器的一个重要发现是提高了系统输出电压;与传统的h桥逆变器相比,总驻电压和总谐波失真有所降低。结果表明,电网电流总谐波畸变小于0.2%,符合国际标准。
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