LAPSE:2023.23656
Published Article

LAPSE:2023.23656
Management and Performance Control Analysis of Hybrid Photovoltaic Energy Storage System under Variable Solar Irradiation
March 27, 2023
Abstract
This paper introduces the management control of a microgrid comprising of photovoltaic panels, battery, supercapacitor, and DC load under variable solar irradiation. The battery is used to store the energy from the photovoltaic panels or to supply the load. The supercapacitor is used to reduce stress on batteries, improve their life cycle, and absorb the fluctuations in the energy produced. The generated photovoltaic power is optimized using Perturb and Observe and Incremental Conductance algorithms to extract the maximum power point tracking. The two algorithms are modified by adding an instantaneous step size to change the direction of the power, so as to reach the maximum power point tracking. The currents of the battery and supercapacitor are managed and controlled using the multi-loop proportional integral controllers. The obtained results show that the multi-loop proportionally integral controllers Perturb and Observe are better than the multi-loop proportional integral controllers Incremental Conductance in terms of stability of injected power. The storage system works perfectly for energy supply, system protection, and fluctuation absorption during the transitions in the solar irradiation. The proposed hybrid storage system can be installed in rural areas as an off-grid system for several uses.
This paper introduces the management control of a microgrid comprising of photovoltaic panels, battery, supercapacitor, and DC load under variable solar irradiation. The battery is used to store the energy from the photovoltaic panels or to supply the load. The supercapacitor is used to reduce stress on batteries, improve their life cycle, and absorb the fluctuations in the energy produced. The generated photovoltaic power is optimized using Perturb and Observe and Incremental Conductance algorithms to extract the maximum power point tracking. The two algorithms are modified by adding an instantaneous step size to change the direction of the power, so as to reach the maximum power point tracking. The currents of the battery and supercapacitor are managed and controlled using the multi-loop proportional integral controllers. The obtained results show that the multi-loop proportionally integral controllers Perturb and Observe are better than the multi-loop proportional integral controllers Incremental Conductance in terms of stability of injected power. The storage system works perfectly for energy supply, system protection, and fluctuation absorption during the transitions in the solar irradiation. The proposed hybrid storage system can be installed in rural areas as an off-grid system for several uses.
Record ID
Keywords
control management, hybrid storage system, maximum power point, Optimization, photovoltaic panel, solar irradiation
Subject
Suggested Citation
Louzazni M, Cotfas DT, Cotfas PA. Management and Performance Control Analysis of Hybrid Photovoltaic Energy Storage System under Variable Solar Irradiation. (2023). LAPSE:2023.23656
Author Affiliations
Louzazni M: National School of Applied Science, Abdelmalek Essaâdi University, Tetouan B.P. 2117, Morocco [ORCID]
Cotfas DT: Department of Electronics and Computers, Transilvania University of Brasov, Eroilor 29, 500036 Brasov, Romania [ORCID]
Cotfas PA: Department of Electronics and Computers, Transilvania University of Brasov, Eroilor 29, 500036 Brasov, Romania
Cotfas DT: Department of Electronics and Computers, Transilvania University of Brasov, Eroilor 29, 500036 Brasov, Romania [ORCID]
Cotfas PA: Department of Electronics and Computers, Transilvania University of Brasov, Eroilor 29, 500036 Brasov, Romania
Journal Name
Energies
Volume
13
Issue
12
Article Number
E3043
Year
2020
Publication Date
2020-06-12
ISSN
1996-1073
Version Comments
Original Submission
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PII: en13123043, Publication Type: Journal Article
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LAPSE:2023.23656
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https://doi.org/10.3390/en13123043
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Mar 27, 2023
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