The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems
The paper presents the functioning of a solar photovoltaic module(PVM) that debits direct to on electric battery (EB). By a good adaptingof PVM to EB, so that the no load voltage of the two components (PVMand EB) are well suited, during a day the energy value can be reachednear to the maximum possib...
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Eftimie Murgu University of Resita
2013-01-01
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Series: | Analele Universităţii "Eftimie Murgu" Reşiţa: Fascicola I, Inginerie |
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Online Access: | http://anale-ing.uem.ro/2013/223.pdf |
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doaj-7f06d510b21041789b5f806047c0fc012020-11-25T03:30:29ZengEftimie Murgu University of ResitaAnalele Universităţii "Eftimie Murgu" Reşiţa: Fascicola I, Inginerie1453-73972013-01-01XX2209216The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery SystemsChioncel Cristian PaulBabescu MariusPetru ChioncelThe paper presents the functioning of a solar photovoltaic module(PVM) that debits direct to on electric battery (EB). By a good adaptingof PVM to EB, so that the no load voltage of the two components (PVMand EB) are well suited, during a day the energy value can be reachednear to the maximum possible value, when the PVM functions in themaximum power point (MPP). The proposed solution is much moreeconomic than the classical: PVM + DC – DC + EB because the directcurrent - direct current power converter, is not necessary (DC - DC).http://anale-ing.uem.ro/2013/223.pdfsolar photovoltaic modulemaximum power point |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chioncel Cristian Paul Babescu Marius Petru Chioncel |
spellingShingle |
Chioncel Cristian Paul Babescu Marius Petru Chioncel The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems Analele Universităţii "Eftimie Murgu" Reşiţa: Fascicola I, Inginerie solar photovoltaic module maximum power point |
author_facet |
Chioncel Cristian Paul Babescu Marius Petru Chioncel |
author_sort |
Chioncel Cristian Paul |
title |
The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems |
title_short |
The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems |
title_full |
The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems |
title_fullStr |
The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems |
title_full_unstemmed |
The Possibility of Functioning at Maximum Power for Solar Photovoltaic - Electric Battery Systems |
title_sort |
possibility of functioning at maximum power for solar photovoltaic - electric battery systems |
publisher |
Eftimie Murgu University of Resita |
series |
Analele Universităţii "Eftimie Murgu" Reşiţa: Fascicola I, Inginerie |
issn |
1453-7397 |
publishDate |
2013-01-01 |
description |
The paper presents the functioning of a solar photovoltaic module(PVM) that debits direct to on electric battery (EB). By a good adaptingof PVM to EB, so that the no load voltage of the two components (PVMand EB) are well suited, during a day the energy value can be reachednear to the maximum possible value, when the PVM functions in themaximum power point (MPP). The proposed solution is much moreeconomic than the classical: PVM + DC – DC + EB because the directcurrent - direct current power converter, is not necessary (DC - DC). |
topic |
solar photovoltaic module maximum power point |
url |
http://anale-ing.uem.ro/2013/223.pdf |
work_keys_str_mv |
AT chioncelcristianpaul thepossibilityoffunctioningatmaximumpowerforsolarphotovoltaicelectricbatterysystems AT babescumarius thepossibilityoffunctioningatmaximumpowerforsolarphotovoltaicelectricbatterysystems AT petruchioncel thepossibilityoffunctioningatmaximumpowerforsolarphotovoltaicelectricbatterysystems AT chioncelcristianpaul possibilityoffunctioningatmaximumpowerforsolarphotovoltaicelectricbatterysystems AT babescumarius possibilityoffunctioningatmaximumpowerforsolarphotovoltaicelectricbatterysystems AT petruchioncel possibilityoffunctioningatmaximumpowerforsolarphotovoltaicelectricbatterysystems |
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1724575260843442176 |