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27-06-2024 | Original Paper

Advancements in solar photovoltaic modelling: selective opposition-based variable weighted grey wolf optimizer with improved Newton–Raphson analysis

Authors: Ramachandran Thamaraiselvi, Menaga Dhanasekaran, Nagappan Sundaram Suresh

Published in: Electrical Engineering | Issue 1/2025

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Abstract

The article discusses advancements in solar photovoltaic modelling, focusing on the three-diode model (TDM) for photovoltaic cells. It introduces a selective opposition-based variable weighted grey wolf optimizer (IGWO) combined with an enhanced Newton–Raphson (ENR) method for accurate parameter estimation. The IGWO improves the grey wolf optimizer by incorporating selective opposition-based learning and variable weights, enhancing exploration and exploitation capabilities. The ENR method is used to refine the solutions provided by the IGWO, ensuring high precision in parameter estimation. The proposed method is validated through two case studies, demonstrating its superior performance in terms of convergence speed, accuracy, and reliability compared to other algorithms. The article highlights the importance of accurate parameter estimation in photovoltaic models for optimizing system performance and efficiency, contributing to the advancement of renewable energy systems.

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Metadata
Title
Advancements in solar photovoltaic modelling: selective opposition-based variable weighted grey wolf optimizer with improved Newton–Raphson analysis
Authors
Ramachandran Thamaraiselvi
Menaga Dhanasekaran
Nagappan Sundaram Suresh
Publication date
27-06-2024
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 1/2025
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-024-02547-w