A Genetic Algorithm based Improve P&O-PI MPPT Controller for Stationary and Tracking Grid-Connected Photovoltaic System

L. Zaghba, M. Khennane, A. Borni, A. Fezzani, A. Bouchakour, I. H. Mahammed, S. H. Oudjana
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引用次数: 4

Abstract

This paper deals the performance comparison and efficiencies of single-axis and dual-axis tracking PV system to an identical fixed-mount PV system for two typical clear sunny days (Ghardaia area), two typical days are chosen, the first day in winter and the second day in the summer. For the three types of PV systems, P&O-PI MPPT techniques optimized with a genetic algorithm is proposed. This paper has two different objectives. 1stly, a proposed MPPT technique has been presented to optimize P&O-PI controller via the GA technique to increase the tracking response of MPP with high efficiency and that improves the limitations of the traditional MPPT techniques. 2ndly, a performance comparison of efficiencies of single-axis and dual-axis tracking system and an identical fixed inclination system. Simulation results with MATLAB/SIMULINK are presented and discussed to verify the satisfactory performance of the proposed MPPT control, in which the optimized P&O-PI controller by GA algorithms gives the better performance. The simulation results also have shown that both single-axis and dual-axis are highly efficient in terms of the electrical energy output when compared to the fixed mount system. The results show the effectiveness of the tracking system of about 25% in energy efficiency.
静止与跟踪并网光伏系统基于遗传算法的改进P&O-PI MPPT控制器
本文研究了在两个典型晴天(Ghardaia地区),即冬季第一天和夏季第二天,单轴和双轴跟踪光伏系统对同一固定安装光伏系统的性能和效率的比较。针对这三种类型的光伏系统,提出了采用遗传算法优化的P&O-PI MPPT技术。本文有两个不同的目的。首先,提出了一种MPPT技术,通过遗传算法对P&O-PI控制器进行优化,提高了MPP的跟踪响应效率,改善了传统MPPT技术的局限性。其次,对单轴跟踪系统和双轴跟踪系统以及同一固定倾角系统的效率进行了性能比较。通过MATLAB/SIMULINK的仿真结果验证了所提出的MPPT控制的良好性能,其中采用遗传算法优化的P&O-PI控制器具有更好的性能。仿真结果还表明,与固定安装系统相比,单轴和双轴系统在电能输出方面都是高效的。结果表明,该跟踪系统的节能效果约为25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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