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Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems

In order to extract efficient power generation, a wind turbine (WT) system requires an accurate maximum power point tracking (MPPT) technique. Therefore, a novel robust variable-step perturb-and-observe (RVS-P&O) algorithm was developed for the machine-side converter (MSC). The control strategy...

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Autores principales: Toumi, Ilham, Meghni, Billel, Hachana, Oussama, Azar, Ahmad Taher, Boulmaiz, Amira, Humaidi, Amjad J., Ibraheem, Ibraheem Kasim, Kamal, Nashwa Ahmad, Zhu, Quanmin, Fusco, Giuseppe, Bahgaat, Naglaa K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9140852/
https://www.ncbi.nlm.nih.gov/pubmed/35626614
http://dx.doi.org/10.3390/e24050731
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author Toumi, Ilham
Meghni, Billel
Hachana, Oussama
Azar, Ahmad Taher
Boulmaiz, Amira
Humaidi, Amjad J.
Ibraheem, Ibraheem Kasim
Kamal, Nashwa Ahmad
Zhu, Quanmin
Fusco, Giuseppe
Bahgaat, Naglaa K.
author_facet Toumi, Ilham
Meghni, Billel
Hachana, Oussama
Azar, Ahmad Taher
Boulmaiz, Amira
Humaidi, Amjad J.
Ibraheem, Ibraheem Kasim
Kamal, Nashwa Ahmad
Zhu, Quanmin
Fusco, Giuseppe
Bahgaat, Naglaa K.
author_sort Toumi, Ilham
collection PubMed
description In order to extract efficient power generation, a wind turbine (WT) system requires an accurate maximum power point tracking (MPPT) technique. Therefore, a novel robust variable-step perturb-and-observe (RVS-P&O) algorithm was developed for the machine-side converter (MSC). The control strategy was applied on a WT based permanent-magnet synchronous generator (PMSG) to overcome the downsides of the currently published P&O MPPT methods. Particularly, two main points were involved. Firstly, a systematic step-size selection on the basis of power and speed measurement normalization was proposed; secondly, to obtain acceptable robustness for high and long wind-speed variations, a new correction to calculate the power variation was carried out. The grid-side converter (GSC) was controlled using a second-order sliding mode controller (SOSMC) with an adaptive-gain super-twisting algorithm (STA) to realize the high-quality seamless setting of power injected into the grid, a satisfactory power factor correction, a high harmonic performance of the AC source, and removal of the chatter effect compared to the traditional first-order sliding mode controller (FOSMC). Simulation results showed the superiority of the suggested RVS-P&O over the competing based P&O techniques. The RVS-P&O offered the WT an efficiency of 99.35%, which was an increase of 3.82% over the variable-step P&O algorithm. Indeed, the settling time was remarkably enhanced; it was 0.00794 s, which was better than for LS-P&O (0.0841 s), SS-P&O (0.1617 s), and VS-P&O (0.2224 s). Therefore, in terms of energy efficiency, as well as transient and steady-state response performances under various operating conditions, the RVS-P&O algorithm could be an accurate candidate for MPP online operation tracking.
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spelling pubmed-91408522022-05-28 Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems Toumi, Ilham Meghni, Billel Hachana, Oussama Azar, Ahmad Taher Boulmaiz, Amira Humaidi, Amjad J. Ibraheem, Ibraheem Kasim Kamal, Nashwa Ahmad Zhu, Quanmin Fusco, Giuseppe Bahgaat, Naglaa K. Entropy (Basel) Article In order to extract efficient power generation, a wind turbine (WT) system requires an accurate maximum power point tracking (MPPT) technique. Therefore, a novel robust variable-step perturb-and-observe (RVS-P&O) algorithm was developed for the machine-side converter (MSC). The control strategy was applied on a WT based permanent-magnet synchronous generator (PMSG) to overcome the downsides of the currently published P&O MPPT methods. Particularly, two main points were involved. Firstly, a systematic step-size selection on the basis of power and speed measurement normalization was proposed; secondly, to obtain acceptable robustness for high and long wind-speed variations, a new correction to calculate the power variation was carried out. The grid-side converter (GSC) was controlled using a second-order sliding mode controller (SOSMC) with an adaptive-gain super-twisting algorithm (STA) to realize the high-quality seamless setting of power injected into the grid, a satisfactory power factor correction, a high harmonic performance of the AC source, and removal of the chatter effect compared to the traditional first-order sliding mode controller (FOSMC). Simulation results showed the superiority of the suggested RVS-P&O over the competing based P&O techniques. The RVS-P&O offered the WT an efficiency of 99.35%, which was an increase of 3.82% over the variable-step P&O algorithm. Indeed, the settling time was remarkably enhanced; it was 0.00794 s, which was better than for LS-P&O (0.0841 s), SS-P&O (0.1617 s), and VS-P&O (0.2224 s). Therefore, in terms of energy efficiency, as well as transient and steady-state response performances under various operating conditions, the RVS-P&O algorithm could be an accurate candidate for MPP online operation tracking. MDPI 2022-05-20 /pmc/articles/PMC9140852/ /pubmed/35626614 http://dx.doi.org/10.3390/e24050731 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Toumi, Ilham
Meghni, Billel
Hachana, Oussama
Azar, Ahmad Taher
Boulmaiz, Amira
Humaidi, Amjad J.
Ibraheem, Ibraheem Kasim
Kamal, Nashwa Ahmad
Zhu, Quanmin
Fusco, Giuseppe
Bahgaat, Naglaa K.
Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems
title Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems
title_full Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems
title_fullStr Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems
title_full_unstemmed Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems
title_short Robust Variable-Step Perturb-and-Observe Sliding Mode Controller for Grid-Connected Wind-Energy-Conversion Systems
title_sort robust variable-step perturb-and-observe sliding mode controller for grid-connected wind-energy-conversion systems
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9140852/
https://www.ncbi.nlm.nih.gov/pubmed/35626614
http://dx.doi.org/10.3390/e24050731
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