A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules

Modeling the photovoltaic (PV) generating unit is one of the most important and crucial tasks when assessing the accurate performance of the PV system in power systems. The modeling of the PV system refers to the assigning of the optimal parameters of the PV’s equivalent circuit. Identifying these p...

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Published in:Sustainability
Main Authors: Hossam Hassan Ali, Mohamed Ebeed, Ahmed Fathy, Francisco Jurado, Thanikanti Sudhakar Babu, Alaa A. Mahmoud
Format: Text
Language:English
Published: Multidisciplinary Digital Publishing Institute 2023
Subjects:
Online Access:https://doi.org/10.3390/su151411089
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spelling ftmdpi:oai:mdpi.com:/2071-1050/15/14/11089/ 2023-08-20T04:05:34+02:00 A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules Hossam Hassan Ali Mohamed Ebeed Ahmed Fathy Francisco Jurado Thanikanti Sudhakar Babu Alaa A. Mahmoud agris 2023-07-16 application/pdf https://doi.org/10.3390/su151411089 EN eng Multidisciplinary Digital Publishing Institute Energy Sustainability https://dx.doi.org/10.3390/su151411089 https://creativecommons.org/licenses/by/4.0/ Sustainability; Volume 15; Issue 14; Pages: 11089 multi-population HGTO-BWO parameters estimation PV cell/panel Text 2023 ftmdpi https://doi.org/10.3390/su151411089 2023-08-01T10:53:05Z Modeling the photovoltaic (PV) generating unit is one of the most important and crucial tasks when assessing the accurate performance of the PV system in power systems. The modeling of the PV system refers to the assigning of the optimal parameters of the PV’s equivalent circuit. Identifying these parameters is considered to be a complex optimization problem, especially with the deviation of the solar irradiance and the ambient temperature. In this regard, this paper proposes a novel hybrid multi-population gorilla troops optimizer and beluga whale optimization (HMGTO-BWO) model to evaluate the optimal parameters of the PV cell/panel; it is based on a multi-population strategy to improve its diversity and to avoid the stagnation of the conventional GTO. The BWO explorative and exploitative powers, which are based on synchronized motion and Lévy flight, are used. The suggested HGTO-BWO is implemented to minimize the root mean square error (RMSE) between the simulated and measured data for each cell/panel represented by a double diode model (DDM) and triple diode model (TDM). The proposed HGTO-BWO is investigated according to the standard and CEC-2019 benchmark functions, and the obtained results are compared with seven other optimization techniques in terms of statistical analysis, convergence characteristics, boxplots, and the Wilcoxon rank sum test. The minimum obtained RMSE values of the PVW 752 cell were 2.0886 × 10−4 and 1.527 × 10−4 for the DDM and TDM, respectively. Furthermore, the minimum fetched fitness value for the STM6-40/36 modules was 1.8032 × 10−3. The obtained results proved the effectiveness and preference of the suggested HGTO-BWO in estimating the parameters of the PV modules. Text Beluga Beluga whale Beluga* MDPI Open Access Publishing Sustainability 15 14 11089
institution Open Polar
collection MDPI Open Access Publishing
op_collection_id ftmdpi
language English
topic multi-population
HGTO-BWO
parameters estimation
PV cell/panel
spellingShingle multi-population
HGTO-BWO
parameters estimation
PV cell/panel
Hossam Hassan Ali
Mohamed Ebeed
Ahmed Fathy
Francisco Jurado
Thanikanti Sudhakar Babu
Alaa A. Mahmoud
A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules
topic_facet multi-population
HGTO-BWO
parameters estimation
PV cell/panel
description Modeling the photovoltaic (PV) generating unit is one of the most important and crucial tasks when assessing the accurate performance of the PV system in power systems. The modeling of the PV system refers to the assigning of the optimal parameters of the PV’s equivalent circuit. Identifying these parameters is considered to be a complex optimization problem, especially with the deviation of the solar irradiance and the ambient temperature. In this regard, this paper proposes a novel hybrid multi-population gorilla troops optimizer and beluga whale optimization (HMGTO-BWO) model to evaluate the optimal parameters of the PV cell/panel; it is based on a multi-population strategy to improve its diversity and to avoid the stagnation of the conventional GTO. The BWO explorative and exploitative powers, which are based on synchronized motion and Lévy flight, are used. The suggested HGTO-BWO is implemented to minimize the root mean square error (RMSE) between the simulated and measured data for each cell/panel represented by a double diode model (DDM) and triple diode model (TDM). The proposed HGTO-BWO is investigated according to the standard and CEC-2019 benchmark functions, and the obtained results are compared with seven other optimization techniques in terms of statistical analysis, convergence characteristics, boxplots, and the Wilcoxon rank sum test. The minimum obtained RMSE values of the PVW 752 cell were 2.0886 × 10−4 and 1.527 × 10−4 for the DDM and TDM, respectively. Furthermore, the minimum fetched fitness value for the STM6-40/36 modules was 1.8032 × 10−3. The obtained results proved the effectiveness and preference of the suggested HGTO-BWO in estimating the parameters of the PV modules.
format Text
author Hossam Hassan Ali
Mohamed Ebeed
Ahmed Fathy
Francisco Jurado
Thanikanti Sudhakar Babu
Alaa A. Mahmoud
author_facet Hossam Hassan Ali
Mohamed Ebeed
Ahmed Fathy
Francisco Jurado
Thanikanti Sudhakar Babu
Alaa A. Mahmoud
author_sort Hossam Hassan Ali
title A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules
title_short A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules
title_full A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules
title_fullStr A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules
title_full_unstemmed A New Hybrid Multi-Population GTO-BWO Approach for Parameter Estimation of Photovoltaic Cells and Modules
title_sort new hybrid multi-population gto-bwo approach for parameter estimation of photovoltaic cells and modules
publisher Multidisciplinary Digital Publishing Institute
publishDate 2023
url https://doi.org/10.3390/su151411089
op_coverage agris
genre Beluga
Beluga whale
Beluga*
genre_facet Beluga
Beluga whale
Beluga*
op_source Sustainability; Volume 15; Issue 14; Pages: 11089
op_relation Energy Sustainability
https://dx.doi.org/10.3390/su151411089
op_rights https://creativecommons.org/licenses/by/4.0/
op_doi https://doi.org/10.3390/su151411089
container_title Sustainability
container_volume 15
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container_start_page 11089
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