Maximum power point tracking in photovoltaic systems

The subject of the analysis was the optimisation of interoperation between the photovoltaic battery (PV) and DC motor, which drives a fan, with respect to the maximum efficiency of conversion of the electric energy into mechanical energy. Based on the block diagram, a mathematical model of this circ...

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Published inITM web of conferences Vol. 28; p. 1021
Main Author Frydrychowicz-Jastrzębska, Grażyna
Format Journal Article Conference Proceeding
LanguageEnglish
Published Les Ulis EDP Sciences 2019
Subjects
Online AccessGet full text
ISSN2271-2097
2431-7578
2271-2097
DOI10.1051/itmconf/20192801021

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Abstract The subject of the analysis was the optimisation of interoperation between the photovoltaic battery (PV) and DC motor, which drives a fan, with respect to the maximum efficiency of conversion of the electric energy into mechanical energy. Based on the block diagram, a mathematical model of this circuit was developed to ensure the mutual matching between the Maximum Power Point (MPP) of the battery and the receiver operation point. A computer simulation of the battery characteristics was conducted taking into account the changing MPP location on the characteristic vs. changes in solar radiation and temperature. The issue was considered for the optimal motor excitation coefficient, both changing and averaged in time. The energy conversion efficiency was determined for selected PV modules, as well as time.
AbstractList The subject of the analysis was the optimisation of interoperation between the photovoltaic battery (PV) and DC motor, which drives a fan, with respect to the maximum efficiency of conversion of the electric energy into mechanical energy. Based on the block diagram, a mathematical model of this circuit was developed to ensure the mutual matching between the Maximum Power Point (MPP) of the battery and the receiver operation point. A computer simulation of the battery characteristics was conducted taking into account the changing MPP location on the characteristic vs. changes in solar radiation and temperature. The issue was considered for the optimal motor excitation coefficient, both changing and averaged in time. The energy conversion efficiency was determined for selected PV modules, as well as time.
Author Frydrychowicz-Jastrzębska, Grażyna
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Cites_doi 10.1016/j.rser.2016.09.076
10.1016/j.solener.2016.07.001
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SubjectTerms Block diagrams
Circuits
Computer simulation
D C motors
Electric motors
Energy conversion efficiency
Maximum power tracking
Optimization
Photovoltaic cells
Solar radiation
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