Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions
The crystalline silicon photovoltaic modules are widely used as power supply sources in the tropical areas where the weather conditions change abruptly. Fortunately, many MPPT algorithms are implemented to improve their performance. In the other hand, it is well known that these power supply sources...
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doaj-1f0fb4d2f83a46deb61feb54fb80ec3c2020-11-25T01:35:48ZengSpringerOpenJournal of Electrical Systems and Information Technology2314-71722017-05-014121322410.1016/j.jesit.2016.08.008Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditionsAbraham Dandoussou0Martin Kamta1Laurent Bitjoka2Patrice Wira3Alexis Kuitché4Department of Electrical and Power Engineering, Higher Technical Teachers’ Training College (HTTTC), University of Buea, Kumba, CameroonLaboratory of energy, signal, image and automation (LESIA), National School of Agro-Industrial Sciences, University of Ngaoundere, P. O. Box 455 Ngaoundere, CameroonLaboratory of energy, signal, image and automation (LESIA), National School of Agro-Industrial Sciences, University of Ngaoundere, P. O. Box 455 Ngaoundere, CameroonLaboratory MIPS, University of Haute Alsace, 61 Road Albert Camus, 68093 Mulhouse Cedex, FranceLaboratory of energy, signal, image and automation (LESIA), National School of Agro-Industrial Sciences, University of Ngaoundere, P. O. Box 455 Ngaoundere, CameroonThe crystalline silicon photovoltaic modules are widely used as power supply sources in the tropical areas where the weather conditions change abruptly. Fortunately, many MPPT algorithms are implemented to improve their performance. In the other hand, it is well known that these power supply sources are nonlinear dipoles and so, their intrinsic parameters may vary with the irradiance and the temperature. In this paper, the MPPT algorithms widely used, i.e. Perturb and Observe (P&O), Incremental Conductance (INC), Hill-Climbing (HC), are implemented using Matlab®/Simulink® model of a crystalline silicon photovoltaic module whose intrinsic parameters were extracted by fitting the I(V) characteristic to experimental points. Comparing the simulation results, it is obvious that the variable step size INC algorithm has the best reliability than both HC and P&O algorithms for the near to real Simulink® model of photovoltaic modules. With a 60 Wp photovoltaic module, the daily maximum power reaches 50.76 W against 34.40 W when the photovoltaic parameters are fixed. Meanwhile, the daily average energy is 263 Wh/day against 195 Wh/day.http://www.sciencedirect.com/science/article/pii/S2314717216300708Crystalline silicon photovoltaic moduleFittingsMPPT algorithmsModellingSimulation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Abraham Dandoussou Martin Kamta Laurent Bitjoka Patrice Wira Alexis Kuitché |
spellingShingle |
Abraham Dandoussou Martin Kamta Laurent Bitjoka Patrice Wira Alexis Kuitché Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions Journal of Electrical Systems and Information Technology Crystalline silicon photovoltaic module Fittings MPPT algorithms Modelling Simulation |
author_facet |
Abraham Dandoussou Martin Kamta Laurent Bitjoka Patrice Wira Alexis Kuitché |
author_sort |
Abraham Dandoussou |
title |
Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions |
title_short |
Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions |
title_full |
Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions |
title_fullStr |
Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions |
title_full_unstemmed |
Comparative study of the reliability of MPPT algorithms for the crystalline silicon photovoltaic modules in variable weather conditions |
title_sort |
comparative study of the reliability of mppt algorithms for the crystalline silicon photovoltaic modules in variable weather conditions |
publisher |
SpringerOpen |
series |
Journal of Electrical Systems and Information Technology |
issn |
2314-7172 |
publishDate |
2017-05-01 |
description |
The crystalline silicon photovoltaic modules are widely used as power supply sources in the tropical areas where the weather conditions change abruptly. Fortunately, many MPPT algorithms are implemented to improve their performance. In the other hand, it is well known that these power supply sources are nonlinear dipoles and so, their intrinsic parameters may vary with the irradiance and the temperature. In this paper, the MPPT algorithms widely used, i.e. Perturb and Observe (P&O), Incremental Conductance (INC), Hill-Climbing (HC), are implemented using Matlab®/Simulink® model of a crystalline silicon photovoltaic module whose intrinsic parameters were extracted by fitting the I(V) characteristic to experimental points. Comparing the simulation results, it is obvious that the variable step size INC algorithm has the best reliability than both HC and P&O algorithms for the near to real Simulink® model of photovoltaic modules. With a 60 Wp photovoltaic module, the daily maximum power reaches 50.76 W against 34.40 W when the photovoltaic parameters are fixed. Meanwhile, the daily average energy is 263 Wh/day against 195 Wh/day. |
topic |
Crystalline silicon photovoltaic module Fittings MPPT algorithms Modelling Simulation |
url |
http://www.sciencedirect.com/science/article/pii/S2314717216300708 |
work_keys_str_mv |
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