Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions

In order to guarantee grid stability and efficiently manage energy resources, there has been a substantial energy transition brought about by growing worries about resource depletion, climate change, and environmental pollution. Energy is the basic requirement for the sustainable development of huma...

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Main Authors: Yadav A., Pal N., Khan F.A., Parihar R.S., Khan A., Solanki S., Pansari D., Sharma P., Yadav K.
Other Authors: 57192157831
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Published: Springer Science and Business Media Deutschland GmbH 2025
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author Yadav A.
Pal N.
Khan F.A.
Parihar R.S.
Khan A.
Solanki S.
Pansari D.
Sharma P.
Yadav K.
author2 57192157831
author_facet 57192157831
Yadav A.
Pal N.
Khan F.A.
Parihar R.S.
Khan A.
Solanki S.
Pansari D.
Sharma P.
Yadav K.
author_sort Yadav A.
building UNITEN Library
collection Institutional Repository
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
continent Asia
country Malaysia
description In order to guarantee grid stability and efficiently manage energy resources, there has been a substantial energy transition brought about by growing worries about resource depletion, climate change, and environmental pollution. Energy is the basic requirement for the sustainable development of human society. Conventional energy resources are limited and causing environmental disturbances consistently. Renewable energy offers better alternatives to tackle current energy crisis. A significant proportion of power generated in India is now coming from solar PV systems. However, due to its intermittence nature, efficient MPPT algorithm becomes necessity to extract maximum output power from the system to enhance its efficiency. Therefore, we have proposed a novel neural network based MPPT algorithm and presents a comparative analysis with conventional MPPT techniques ?Perturb and Observe?, and ?Incremental Conductance? based techniques. The experimental outcomes are validated which shows neural network based MPPT algorithm provides better performance characteristics like reduced steady state error compared to conventional techniques. The parameters considered for comparison are rise time, settling time and power output under different environmental conditions such as irradiance and temperature. Finally, the proposed MPPT controller?s performance is evaluated in MATLAB environment and simulation results show the proposed scheme?s superiority as compared to conventional control techniques under different operating conditions. ? The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2024.
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spelling my.uniten.dspace-370272025-03-03T15:46:44Z Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions Yadav A. Pal N. Khan F.A. Parihar R.S. Khan A. Solanki S. Pansari D. Sharma P. Yadav K. 57192157831 36069767000 57202079275 59294558900 59294559000 59295194600 57221997874 57225938830 59295091500 Solar power generation Comparative assessment Condition Energy Energy transitions Environmental pollutions Grid stability Network-based Resource depletion Solar photovoltaic system Substantial energy Clean energy In order to guarantee grid stability and efficiently manage energy resources, there has been a substantial energy transition brought about by growing worries about resource depletion, climate change, and environmental pollution. Energy is the basic requirement for the sustainable development of human society. Conventional energy resources are limited and causing environmental disturbances consistently. Renewable energy offers better alternatives to tackle current energy crisis. A significant proportion of power generated in India is now coming from solar PV systems. However, due to its intermittence nature, efficient MPPT algorithm becomes necessity to extract maximum output power from the system to enhance its efficiency. Therefore, we have proposed a novel neural network based MPPT algorithm and presents a comparative analysis with conventional MPPT techniques ?Perturb and Observe?, and ?Incremental Conductance? based techniques. The experimental outcomes are validated which shows neural network based MPPT algorithm provides better performance characteristics like reduced steady state error compared to conventional techniques. The parameters considered for comparison are rise time, settling time and power output under different environmental conditions such as irradiance and temperature. Finally, the proposed MPPT controller?s performance is evaluated in MATLAB environment and simulation results show the proposed scheme?s superiority as compared to conventional control techniques under different operating conditions. ? The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2024. Article in press 2025-03-03T07:46:44Z 2025-03-03T07:46:44Z 2024 Article 10.1007/s00542-024-05746-4 2-s2.0-85201797524 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201797524&doi=10.1007%2fs00542-024-05746-4&partnerID=40&md5=b6c0d0f4ccba58e54ba642812dfee28f https://irepository.uniten.edu.my/handle/123456789/37027 Springer Science and Business Media Deutschland GmbH Scopus
spellingShingle Solar power generation
Comparative assessment
Condition
Energy
Energy transitions
Environmental pollutions
Grid stability
Network-based
Resource depletion
Solar photovoltaic system
Substantial energy
Clean energy
Yadav A.
Pal N.
Khan F.A.
Parihar R.S.
Khan A.
Solanki S.
Pansari D.
Sharma P.
Yadav K.
Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions
title Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions
title_full Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions
title_fullStr Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions
title_full_unstemmed Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions
title_short Comparative assessment of various MPPT algorithms for solar photovoltaic systems under dynamic shading conditions
title_sort comparative assessment of various mppt algorithms for solar photovoltaic systems under dynamic shading conditions
topic Solar power generation
Comparative assessment
Condition
Energy
Energy transitions
Environmental pollutions
Grid stability
Network-based
Resource depletion
Solar photovoltaic system
Substantial energy
Clean energy
url_provider http://dspace.uniten.edu.my/