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A new approach for parameter estimation of the single-diode model for photovoltaic cells/modules

DOI:10.3906/elk-1805-161 期刊:TURKISH JOURNAL OF ELECTRICAL ENGINEERING & COMPUTER SCIENCES 出版年份:2019 更新时间:2025-09-12 10:27:22
摘要: Solar energy has become a popular renewable energy source, leading to wide use of photovoltaic (PV) cells/modules in energy production. For this reason, realistic modeling of PVs and determining the equivalent circuit parameters is of great importance in terms of planning and operation. Hence, in this study, an analytical model for identifying the single-diode equivalent circuit parameters; series resistance ( Rs ), shunt resistance ( Rp ), diode ideality factor ( a ), diode reverse-saturation current ( Io ), and photon current ( Ipv ) for PV cells/modules is developed without neglecting any term. In order to test the accuracy of the model, a number of PV modules from different manufacturers are taken into account and the results are compared with those obtained by using such analytical models given in the literature. Current-voltage (I-V ) characteristics of the PV modules, which are studied here, are also simulated by comparing with the experimental I-V curves provided by the manufacturers. Results show that the values of the parameters obtained for the PV modules are consistent with those extracted by using other analytical models. In addition, I-V curves created by using the obtained parameters are in full agreement with the experimental data. The curves also show a high degree of compatibility with the ones created by using the optimal parameters of the two-diode models given in the literature. Moreover, the proposed model provides a great advantage in estimating equivalent circuit parameters in terms of ease of use, requirements for input data, dependency on initial conditions as well as considering the parameters which are neglected in such methods given in the literature.
作者: Bilge Kaan ATAY,Ula? EM?NO?LU
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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.

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.

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.

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