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Power efficiency management of photovoltaic energy source based on MPPT algorithm

Data publikacji: 28.03.2014

Czasopismo Techniczne, 2013, Mechanika Zeszyt 1-M (5) 2013 , s. 183 - 190

https://doi.org/10.4467/2353737XCT.14.023.1949

Autorzy

,
Zdzisław Juda
Institute of Automobiles and Internal Combustion Engines, Faculty of Mechanical Engineering, Cracow University of Technology
https://orcid.org/0000-0001-6795-4536 Orcid
Wszystkie publikacje autora →
,
Tomasz Nabagło
Institute of Automobiles and Internal Combustion Engines, Faculty of Mechanical Engineering, Cracow University of Technology
Wszystkie publikacje autora →
,
Paweł Ocłoń
Department of Thermal Power Engineering, Faculty of Mechanical Engineering, Cracow University of Technology
Wszystkie publikacje autora →
,
Bohdan Węglowski
Department of Thermal Power Engineering, Faculty of Mechanical Engineering, Cracow University of Technology
Wszystkie publikacje autora →
Mariusz Krawczyk
Institute of Applied Informatics, Faculty of Mechanical Engineering, Cracow University of Technology
Wszystkie publikacje autora →

Tytuły

Power efficiency management of photovoltaic energy source based on MPPT algorithm

Abstrakt

In the paper energy supply system based on photovoltaic (PV) arrays was described. Also models of a single PV cell and a voltage boost converter were described. The boost converter was used for holding an appropriate work state of the PV arrays associated with its maximum power point level in various work conditions associated with irradiance level and the arrays temperature. Finally, comparison of two strategies of voltage level control in PV arrays system was put forward. These strategies were used to attain the maximum power point, and to define the work conditions, in which described control algorithms are the most effective.

Bibliografia

Hussein K.H., Muta I., Maximum Photovoltaic Power Tracking: An Algorithm for Rapidly Changing Atmospheric Conditions, IEEE Proceedings on Generation, Translation and Disturbation, Vol. 142, No. 1, 1995, 59-64.

Alsadi S., Alsayid B., Maximum Power Point Tracking Simulation for Photovoltaic Systems Using Perturb and Observe Algorithm, Internal Journal of Engineering and Innovative Technology, Vol. 2, Issue 6, 2012, 80-85.

Salmi T., Bouzguenda M., Gastli A., Masmoudi A., MATLAB/Simulink Based Modelling of Solar Photovoltaic Cell, International Journal of Renewable Energy Research, Vol. 2, No. 2, 2012.

Wilamowski B.M., Irwin J.D., Power Electronics and Motor Drives, CRC Press, ISBN 1439802858/9781439802854, 2011.

Efficiency in Electricity Generation, Union of the Electricity Industry – EURELECTRIC, Boulevard de l’Impératrice, 66 – B-1000 Brussels, July 2003.

Hohm D.H., Ropp M.E., Comparative Study of Maximum Power Point Tracking Algorithms, Progress in Photovoltaics: Research and Applications, 11, 2003, 47-62.

Informacje

Informacje: Czasopismo Techniczne, 2013, Mechanika Zeszyt 1-M (5) 2013 , s. 183 - 190

Typ artykułu: Oryginalny artykuł naukowy

Tytuły:

Polski:

Power efficiency management of photovoltaic energy source based on MPPT algorithm

Angielski:

Power efficiency management of photovoltaic energy source based on MPPT algorithm

Autorzy

https://orcid.org/0000-0001-6795-4536

Zdzisław Juda
Institute of Automobiles and Internal Combustion Engines, Faculty of Mechanical Engineering, Cracow University of Technology
https://orcid.org/0000-0001-6795-4536 Orcid
Wszystkie publikacje autora →

Institute of Automobiles and Internal Combustion Engines, Faculty of Mechanical Engineering, Cracow University of Technology

Institute of Automobiles and Internal Combustion Engines, Faculty of Mechanical Engineering, Cracow University of Technology

Department of Thermal Power Engineering, Faculty of Mechanical Engineering, Cracow University of Technology

Department of Thermal Power Engineering, Faculty of Mechanical Engineering, Cracow University of Technology

Institute of Applied Informatics, Faculty of Mechanical Engineering, Cracow University of Technology

Publikacja: 28.03.2014

Status artykułu: Otwarte __T_UNLOCK

Licencja: Żadna

Udział procentowy autorów:

Zdzisław Juda (Autor) - 20%
Tomasz Nabagło (Autor) - 20%
Paweł Ocłoń (Autor) - 20%
Bohdan Węglowski (Autor) - 20%
Mariusz Krawczyk (Autor) - 20%

Korekty artykułu:

-

Języki publikacji:

Angielski