研究目的
To develop an analytical model for identifying the single-diode equivalent circuit parameters for PV cells/modules without neglecting any term and to test its accuracy against various PV modules from different manufacturers.
研究成果
The proposed analytical model accurately extracts the equivalent circuit parameters of PV cells/modules without neglecting any terms, providing a more realistic representation. The model is validated against various commercial PV modules, showing consistency with experimental data and other analytical methods. It offers advantages in terms of ease of use, input data requirements, and independence from initial conditions.
研究不足
The study focuses on the single-diode model and does not address the two-diode model. The accuracy of the model is dependent on the quality of the input data from manufacturers.
1:Experimental Design and Method Selection:
The study employs an analytical model for parameter extraction of the single-diode equivalent circuit of PV cells/modules. The Newton–Raphson method is used for solving the nonlinear equations derived from the model.
2:Sample Selection and Data Sources:
Technical data of PV modules from different manufacturers are used for validation. Experimental I-V curves provided by manufacturers are compared with simulated results.
3:List of Experimental Equipment and Materials:
PV modules from manufacturers such as BP Solar, Kyocera Solar, and SolarWorld are considered.
4:Experimental Procedures and Operational Workflow:
The model is validated on several commercial PV cells/modules at different temperature and solar radiation values, including standard test conditions. The accuracy of the model is verified by comparing the extracted parameters with those obtained from other analytical methods in the literature.
5:Data Analysis Methods:
The extracted parameters are used to simulate I-V characteristics, which are then compared with experimental data to validate the model's accuracy.
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