A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation
In the last two decades, the maximum power point tracking (MPPT) methods for PV system is becoming very interesting subject. Among these methods there is Fuzzy-MPPT, which is mainly based on two inputs and at least 25 rules. This structure need more calculation time and not easy to be implemented in...
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Format: | Article |
Language: | English |
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Kaunas University of Technology
2018-08-01
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Series: | Elektronika ir Elektrotechnika |
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Online Access: | http://eejournal.ktu.lt/index.php/elt/article/view/21476 |
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author | Boualam Benlahbib Noureddine Bouarroudj Saad Mekhilef Tameur Abdelkrim Abdelkader Lakhdari Farid Bouchafaa |
author_facet | Boualam Benlahbib Noureddine Bouarroudj Saad Mekhilef Tameur Abdelkrim Abdelkader Lakhdari Farid Bouchafaa |
author_sort | Boualam Benlahbib |
collection | DOAJ |
description | In the last two decades, the maximum power point tracking (MPPT) methods for PV system is becoming very interesting subject. Among these methods there is Fuzzy-MPPT, which is mainly based on two inputs and at least 25 rules. This structure need more calculation time and not easy to be implemented in hardware. For these reasons and in order to facilitate the MPPT synthesis, this paper proposes an intelligent MPPT controller based on a single-input Takagi–Sugeno fuzzy logic controller (SI-TS-FLC) with three linguistic variables and three rules. The proposed controller is simulated using MATLAB-SIMULINK for a PV system, which consists of a PV generator, DC-DC converter, and resistive load under varied temperature and irradiance levels. An experimental study is conducted using DSPACE 1104 card real-time board under partial shading condition. Simulation and experimental results show that the proposed controller exhibits less settling time and lower overshoot than the commonly used perturb and observe (P&O) algorithm in the transient state and minimum oscillation around the optimal operating point.
DOI: http://dx.doi.org/10.5755/j01.eie.24.4.21476 |
first_indexed | 2024-12-14T10:06:58Z |
format | Article |
id | doaj.art-2db4e1bf8b374e1291458561b0a0ee8b |
institution | Directory Open Access Journal |
issn | 1392-1215 2029-5731 |
language | English |
last_indexed | 2024-12-14T10:06:58Z |
publishDate | 2018-08-01 |
publisher | Kaunas University of Technology |
record_format | Article |
series | Elektronika ir Elektrotechnika |
spelling | doaj.art-2db4e1bf8b374e1291458561b0a0ee8b2022-12-21T23:07:06ZengKaunas University of TechnologyElektronika ir Elektrotechnika1392-12152029-57312018-08-01244384410.5755/j01.eie.24.4.2147621476A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental ValidationBoualam BenlahbibNoureddine BouarroudjSaad MekhilefTameur AbdelkrimAbdelkader LakhdariFarid BouchafaaIn the last two decades, the maximum power point tracking (MPPT) methods for PV system is becoming very interesting subject. Among these methods there is Fuzzy-MPPT, which is mainly based on two inputs and at least 25 rules. This structure need more calculation time and not easy to be implemented in hardware. For these reasons and in order to facilitate the MPPT synthesis, this paper proposes an intelligent MPPT controller based on a single-input Takagi–Sugeno fuzzy logic controller (SI-TS-FLC) with three linguistic variables and three rules. The proposed controller is simulated using MATLAB-SIMULINK for a PV system, which consists of a PV generator, DC-DC converter, and resistive load under varied temperature and irradiance levels. An experimental study is conducted using DSPACE 1104 card real-time board under partial shading condition. Simulation and experimental results show that the proposed controller exhibits less settling time and lower overshoot than the commonly used perturb and observe (P&O) algorithm in the transient state and minimum oscillation around the optimal operating point. DOI: http://dx.doi.org/10.5755/j01.eie.24.4.21476http://eejournal.ktu.lt/index.php/elt/article/view/21476fuzzy controlmaximum power point trackersphotovoltaic systemstakagi-sugeno model. |
spellingShingle | Boualam Benlahbib Noureddine Bouarroudj Saad Mekhilef Tameur Abdelkrim Abdelkader Lakhdari Farid Bouchafaa A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation Elektronika ir Elektrotechnika fuzzy control maximum power point trackers photovoltaic systems takagi-sugeno model. |
title | A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation |
title_full | A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation |
title_fullStr | A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation |
title_full_unstemmed | A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation |
title_short | A Fuzzy Logic Controller Based on Maximum Power Point Tracking Algorithm for Partially Shaded PV Array-Experimental Validation |
title_sort | fuzzy logic controller based on maximum power point tracking algorithm for partially shaded pv array experimental validation |
topic | fuzzy control maximum power point trackers photovoltaic systems takagi-sugeno model. |
url | http://eejournal.ktu.lt/index.php/elt/article/view/21476 |
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