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Accurate modeling and simulation of solar photovoltaic panels with simulink-MATLAB

机译:Simulink-Matlab的太阳能光伏电池板的精确建模与仿真

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摘要

A unique procedure to model and simulate a 36-cell-50 W solar panel using analytical methods has been developed. The generalized expression of solar cell equivalent circuit was validated and implemented, making no influential assumptions, under Simulink/MATLAB R2020a environment. The approach is based on extracting all the needed parameters by exploiting the available parameters from the data sheets of commercial PV panels and by estimating the slopes at both short-circuit and open-circuit conditions of the current-voltage characteristic, usually provided by most solar panels manufacturers under standard test conditions (STC). The effects of solar irradiance and temperature were both considered in the modeling. A system of coupled nonlinear simultaneous equations for diode saturation current, diode ideality factor, and series and shunt resistances has been solved. To accurately model the PV module used in our simulation and analysis, the needed temperature- dependent parameters have been extracted for the first time. At STC irradiance of 1000 W/m(2), the modeled I-V curve was found identical to the experimental one which is provided by the solar panel manufacturer. The maximum power output of the PV module increases from 8.75 W to 50 W when irradiance varies from 200 W/m(2) to 1000 W/m(2) at STC temperature. At temperatures higher than STC and for the same solar irradiance, the power output of the PV module came down about 14.5% only when the operating temperature reached a value of 65 degrees C. However, as temperature is below STC, the power output went up of about 7.4% beyond the maximum power of the rated PV panel. The calculated power temperature coefficient was about -0.39%/ C-o which is quite close to the one provided by the solar panel manufacturer.
机译:已经开发了一种使用分析方法模拟和模拟36单元-50 W太阳能电池板的独特步骤。验证和实施了太阳能电池等效电路的广义表达,在Simulink / Matlab R2020A环境下没有有影响力的假设。该方法是基于从商业PV面板数据纸张中利用可用参数并通过估计电流 - 电压特性的短路和开路条件的斜坡来提取所有所需参数,通常由大多数太阳能提供板块制造商在标准测试条件下(STC)。在建模中考虑了太阳辐照度和温度的影响。已经解决了二极管饱和电流,二极管理想因子和串联和分流电阻的耦合非线性同时方程的系统。为了准确模拟我们模拟和分析中使用的光伏模块,首次提取所需的温度依赖性参数。在STC辐照度为1000W / m(2)中,发现模型I-V曲线与太阳能电池板制造商提供的实验性I-V曲线相同。当辐照度在STC温度下从200W / m(2)到1000W / m(2)在200W / m(2)到1000W / m(2)时,PV模块的最大功率输出从8.75 W增加到50 W。在高于STC的温度下,对于相同的太阳辐照度,PV模块的功率输出仅在工作温度达到65℃的值时才会下降约14.5%。但是,随着温度低于STC,电源输出上升超出额定光伏面板的最大功率约为7.4%。计算的功率温度系数约为-0.39%/ C-O,其非常接近太阳能电池板制造商提供的。

著录项

  • 来源
    《Journal of Computational Electronics》 |2021年第2期|974-983|共10页
  • 作者单位

    Univ Tabuk Fac Sci Dept Phys Tabuk 71491 Saudi Arabia|Univ Tabuk Fac Sci Nanotechnol Res Unit Renewable Energy Lab Tabuk 71491 Saudi Arabia;

    Univ Tabuk Fac Sci Dept Phys Tabuk 71491 Saudi Arabia|Univ Tabuk Fac Sci Nanotechnol Res Unit Renewable Energy Lab Tabuk 71491 Saudi Arabia|PES Univ Dept Phys Bangalore South Campus Bangalore 560100 Karnataka India;

    Univ Tabuk Fac Sci Dept Phys Tabuk 71491 Saudi Arabia|Univ Tabuk Fac Sci Nanotechnol Res Unit Renewable Energy Lab Tabuk 71491 Saudi Arabia;

    Univ Tabuk Fac Sci Dept Phys Tabuk 71491 Saudi Arabia|Univ Tabuk Fac Sci Nanotechnol Res Unit Renewable Energy Lab Tabuk 71491 Saudi Arabia;

    Univ Houston Dept Phys Houston TX 77204 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Modeling; Simulation; Non-linear equations; Solar energy; PV module; Simulink; MATLAB;

    机译:建模;模拟;非线性方程;太阳能;光伏模块;Simulink;Matlab;
  • 入库时间 2022-08-19 01:58:41

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