Simulation and analysis of an isolated full-bridge DC/DC boost converter operating with a modified perturb and observe maximum power point tracking algorithm

The purpose of the present study is to simulate and analyze an isolated full-bridge DC/DC boost converter, for photovoltaic panels, running a modified perturb and observe maximum power point tracking method. The zero voltage switching technique was used in order to minimize the losses of the convert...

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Veröffentlicht in:Transactions on environment and electrical engineering 2017-07, Vol.2 (2), p.45-50
Hauptverfasser: Matias, Calebe A., Medeiros, Girodani Pacífico, Moraes, Pedro H. F., Fernandes, Bruno De A., Alves, Aylton J., Calixto, Wesley P., Furriel, Geovanne P.
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Sprache:eng
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Zusammenfassung:The purpose of the present study is to simulate and analyze an isolated full-bridge DC/DC boost converter, for photovoltaic panels, running a modified perturb and observe maximum power point tracking method. The zero voltage switching technique was used in order to minimize the losses of the converter for a wide range of solar operation. The efficiency of the power transfer is higher than 90% for large solar operating points. The panel enhancement due to the maximum power point tracking algorithm is 5.06%.
ISSN:2450-5730
2450-5730
DOI:10.22149/teee.v2i2.93