Integrated Control and Optimization for Grid-Connected Photovoltaic Systems: A Model-Predictive and PSO Approach

被引:7
作者
Boubii, Chaymae [1 ]
El Kafazi, Ismail [2 ]
Bannari, Rachid [1 ]
El Bhiri, Brahim [2 ]
Mobayen, Saleh [3 ]
Zhilenkov, Anton [4 ]
Bossoufi, Badre [5 ]
机构
[1] Ibn Tofail Univ, Lab Syst Engn ENSA, Kenitra 14000, Morocco
[2] EMSI, Moroccan Sch Engn Sci, Lab SMARTILAB, Rabat 10150, Morocco
[3] Natl Yunlin Univ Sci & Technol, Grad Sch Intelligent Data Sci, 123 Univ Rd,Sect 3, Touliu 640301, Taiwan
[4] St Petersburg State Marine Tech Univ, Dept Cyber Phys Syst, St Petersburg 190121, Russia
[5] Sidi Mohamed Ben Abdellah Univ, Fac Sci Dhar El Mahraz, LIMAS Lab, Fes 30000, Morocco
关键词
photovoltaic system; maximum power point tracking; model predictive control; incremental conductance; particle swarm optimization; POWER-GENERATION; SINGLE; PARAMETERS; WIND; SIMULATION; INVERTERS;
D O I
10.3390/en16217390
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
To propel us toward a greener and more resilient future, it is imperative that we adopt renewable sources and implement innovative sustainable solutions in response to the escalating energy crisis. Thus, renewable energies have emerged as a viable solution to the global energy crisis, with photovoltaic energy being one of the prominent sources in this regard. This paper represents a significant step in the desired direction by focusing on detailed, comprehensive dynamic modeling and efficient control of photovoltaic (PV) systems as grid-connected energy sources. The ultimate goal is to enhance system reliability and ensure high power quality. The behavior of the suggested photovoltaic system is tested under varying sun radiation conditions. The PV system is complemented by a boost converter and a three-phase pulse width modulation (PWM) inverter, with MATLAB software employed for system investigation. This research paper enhances photovoltaic (PV) system performance through the integration of model-predictive control (MPC) with a high-gain DC-DC converter. It improves maximum power point tracking (MPPT) efficiency in response to the variability of solar energy by combining MPC with the traditional incremental conductance (IN-C) method. Additionally, the system incorporates a DC-AC converter for three-phase pulse width modulation, which is also controlled by predictive control technology supported by Particle Swarm Optimization (PSO) to further enhance performance. PSO was selected due to its capability to optimize complex systems and its proficiency in handling nonlinear functions and multiple variables, making it an ideal choice for improving MPC control performance. The simulation results demonstrate the system's ability to maintain stable energy production despite variations in solar irradiation levels, thus highlighting its effectiveness.
引用
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页数:22
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