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[IEEE 2018 7th International Conference on Renewable Energy Research and Applications (ICRERA) - Paris, France (2018.10.14-2018.10.17)] 2018 7th International Conference on Renewable Energy Research and Applications (ICRERA) - Improved Matlab Simulink Two-diode Model of PV Module and Method of Fast Large-Scale PV System Simulation

DOI:10.1109/ICRERA.2018.8566792 出版年份:2018 更新时间:2025-09-04 15:30:14
摘要: Nowadays, to response to the demand of a high rate renewable energy penetration in the electricity grids, the installation of many new large-scale photovoltaic systems up to more than 100 MW is unavoidable. However, in many countries, there is a serious lack of space for these large-scale projects. As the authorities wish to avoid taking away many farmlands for ground-mound photovoltaic systems, we must find acceptable ecological alternative solutions. One of the solution is the linear photovoltaic systems due to the availability and ready to use of the linear space: bike path, along the pavement of a road, along the edge of a highway… Another interesting method is the installation of floating PV power plants on inland water bodies. The possibilities and opportunities of these new kinds of large-scale PV plants are infinite. However, their installations meet a lot of challenges, such as the loss due to new structures and environments, the cost of equipment, the compatibility of the new PV plants with the initial function of the surface… To study these challenges, an effective simulation tool is essential. Considering the importance of the simulation tools, this paper proposes an improved PV system simulation model based on the two-diode model and a fast, comprehensive method to simulate the PV system in long term with a huge volume of the MATLAB/SIMULINK in environment.
作者: Tai L,Hervé C,Franck A,S Tuan T,Q
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To propose an improved PV system simulation model based on the two-diode model and a fast, comprehensive method to simulate the PV system in long term with a huge volume of input data in the MATLAB/SIMULINK environment.

The improved Matlab/Simulink model for the PV module and the method of using a database significantly reduce simulation time while maintaining accuracy. The model and method are suitable for simulating large-scale PV systems with high accuracy and low computation time.

The model uses the result from the previous sample period to calculate the present result due to the unit delay block, which may limit its use for calculating the current of a module at a specific point with given temperature, irradiation, and voltage. The computational time remains high for a very large amount of data.

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