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The paper presents a method of modelling photovoltaic (PV) cells in the MATLAB & SIMULINK environment. A two-diode photovoltaic cell structure was developed, featuring series resistance. Measurements of a PV panel were carried out to determine the value of series resistance, open circuit voltage, and short-circuit current. The model suggested was used to operate the ST-STP020S-12/Cb panel with an actual input function (measurements of solar radiation power density of the south-east area of Poland in 2011). Simulation experiments were conducted of the system modelled to determine current changes, power changes, electric energy production, voltage-current characteristics, and to come up with results and draw final conclusions.
Słowa kluczowe
Rocznik
Tom
Strony
497--510
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
- Poznań University of Technology 60-965 Poznań, ul. Piotrowo 3a
autor
- Poznań University of Technology 60-965 Poznań, ul. Piotrowo 3a
autor
- Poznań University of Technology 60-965 Poznań, ul. Piotrowo 3a
autor
- Poznań University of Technology 60-965 Poznań, ul. Piotrowo 3a
Bibliografia
- [1] Bal S., Anurag A., Babu B.C., Comparative Analysis of Mathematical Modeling of Photo-Voltaic (PV) Array, IEEE, India Conference (INDICON), 2012, pp. 269-274.
- [2] Bhuvaneswari G., Annamalai R., Development Of A Solar Cell Model In Matlab For PV Based Generation System, IEEE, India Conference (INDICON), 2011, pp. I-5.
- [3] Chojnacki J., Odnawialne i Niekonwencjonalne Źródła Energii. Poradnik, Wydawnictwo Tarbonus, Kraków-Tarnobrzeg, 2008.
- [4] Chowdhury S., Taylor G.A., Chowdhury S.P., Saha A.K, Song Y.H, Modelling, simulation and performance analysis of a PV array in an embedded environment, 42nd International Universities Power Engineering Conference (UPEC 2007), Brighton 2007, UK, pp. 781-785.
- [5] Dokumentacja techniczna MATLAB.
- [6] Gow J. A., Manning C. D., Development of a photovoltaic array model for use in power electronics simulation studies, IEE Proceedings on Electric Power Applications, March 1999, Vol. 146, No. 2, pp. 193-200.
- [7] Huan-Liang T., Ci-Siang T., Yi-Jie S., Development of Generalised photovoltaic model using MATLAB/SIMULINK, Proceedings of the World Congress on Engineering and Computer Science WCECS, San Francisco 2008, USA, pp. 846-851.
- [8] Jastrzębska G., Odnawialne źródła energii i pojazdy proekologiczne, Wydawnictwo Naukowo-Techniczne WNT, Warszawa, 2009.
- [9] Jastrzębska G., Ogniwa słoneczne. Budowa, technologia i zastosowanie, Wydawnictwo Komunikacji i Łączności WKŁ, Warszawa, 2013.
- [10] Jensen M., Louie R., Etezadi-Amoli M., Sami Fadail M., Model and Simulation of 75kW PV Solar Array, IEEE Transmission and Distribution Conference and Exposition, New Orleans - LA 2010, USA, pp. 1-5.
- [11] Jiang Y., Jaber A., Qahouq A., Batarseh I., Improved Solar PV Cell Matlab Simulation Model and Comparison, IEEE Applied Power Electronics Conference (APEC 2007), Anaheim - CA 2007, USA, pp. 2770-2773.
- [12] Karta katalogowa panelu ST-STP020S-12/Cb firmy Suntech.
- [13] Ran Z., Hui-jun X., Zhi-Ying Z., Shun-Hua X., A simplified Double Exponential model of photovoltaic module in Matlab, International Conference on Energy and Environment Technology (ICEET '09), Guilin-Guangxi 2009, China, pp. 157-160.
- [14] REN 21, STEERING COMMITTEE, Renewables 2013. Global status report, France, 2013.
- [15] Strzelecki R., Benysek G., Power Electronics in Smart Electrical Energy Networks, Springer, London, 2008.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d2417fc2-e1f1-4edf-aa2d-4393c1aa7459