An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules

This paper proposes an improved generalized method for evaluation of parameters, modeling, and simulation of photovoltaic modules. A new concept “Level of Improvement” has been proposed for evaluating unknown parameters of the nonlinear I-V equation of the single-diode model of PV module at any envi...

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Main Authors: Vandana Jha, Uday Shankar Triar
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:International Journal of Photoenergy
Online Access:http://dx.doi.org/10.1155/2017/2532109
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spelling doaj-f21f712e80014309a8535bb861875a012020-11-24T23:15:28ZengHindawi LimitedInternational Journal of Photoenergy1110-662X1687-529X2017-01-01201710.1155/2017/25321092532109An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic ModulesVandana Jha0Uday Shankar Triar1Electrical Engineering Department, National Institute of Technology Patna, Bihar, IndiaElectrical Engineering Department, National Institute of Technology Patna, Bihar, IndiaThis paper proposes an improved generalized method for evaluation of parameters, modeling, and simulation of photovoltaic modules. A new concept “Level of Improvement” has been proposed for evaluating unknown parameters of the nonlinear I-V equation of the single-diode model of PV module at any environmental condition, taking the manufacturer-specified data at Standard Test Conditions as inputs. The main contribution of the new concept is the improvement in the accuracy of values of evaluated parameters up to various levels and is based on mathematical equations of PV modules. The proposed evaluating method is implemented by MATLAB programming and, for demonstration, by using the values of parameters of the I-V equation obtained from programming results, a PV module model is build with MATLAB. The parameters evaluated by the proposed technique are validated with the datasheet values of six different commercially available PV modules (thin film, monocrystalline, and polycrystalline) at Standard Test Conditions and Nominal Operating Cell Temperature Conditions. The module output characteristics generated by the proposed method are validated with experimental data of FS-270 PV module. The effects of variation of ideality factor and resistances on output characteristics are also studied. The superiority of the proposed technique is proved.http://dx.doi.org/10.1155/2017/2532109
collection DOAJ
language English
format Article
sources DOAJ
author Vandana Jha
Uday Shankar Triar
spellingShingle Vandana Jha
Uday Shankar Triar
An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules
International Journal of Photoenergy
author_facet Vandana Jha
Uday Shankar Triar
author_sort Vandana Jha
title An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules
title_short An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules
title_full An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules
title_fullStr An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules
title_full_unstemmed An Improved Generalized Method for Evaluation of Parameters, Modeling, and Simulation of Photovoltaic Modules
title_sort improved generalized method for evaluation of parameters, modeling, and simulation of photovoltaic modules
publisher Hindawi Limited
series International Journal of Photoenergy
issn 1110-662X
1687-529X
publishDate 2017-01-01
description This paper proposes an improved generalized method for evaluation of parameters, modeling, and simulation of photovoltaic modules. A new concept “Level of Improvement” has been proposed for evaluating unknown parameters of the nonlinear I-V equation of the single-diode model of PV module at any environmental condition, taking the manufacturer-specified data at Standard Test Conditions as inputs. The main contribution of the new concept is the improvement in the accuracy of values of evaluated parameters up to various levels and is based on mathematical equations of PV modules. The proposed evaluating method is implemented by MATLAB programming and, for demonstration, by using the values of parameters of the I-V equation obtained from programming results, a PV module model is build with MATLAB. The parameters evaluated by the proposed technique are validated with the datasheet values of six different commercially available PV modules (thin film, monocrystalline, and polycrystalline) at Standard Test Conditions and Nominal Operating Cell Temperature Conditions. The module output characteristics generated by the proposed method are validated with experimental data of FS-270 PV module. The effects of variation of ideality factor and resistances on output characteristics are also studied. The superiority of the proposed technique is proved.
url http://dx.doi.org/10.1155/2017/2532109
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