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New analytical approach for modelling effects of temperature and irradiance on physical parameters of photovoltaic solar module

机译:解析温度和辐照度对光伏太阳能组件物理参数影响的新分析方法

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摘要

In this paper, a new exact method has been presented to extract physical parameters of single diode equivalent circuit modelling a photovoltaic solar module operating at standard test conditions. The method uses four equations, three are linking output current to output voltage in short-circuit, maximum power and open-circuit points, the fourth equation is the first derivative of output power with regard to output voltage in maximal power point. According to this method, we used ideality factor eta as variation parameter and solved the system of four nonlinear equations to get values of photocurrent I-ph, saturation current I-s, series resistance R-s and shunt conductance G(p). We then varied ideality factor to minimize root mean square error and maximize the coefficient of determination. We assumed series resistance and shunt conductance constant, and derived analytical expressions describing effects of module temperature and incident solar irradiance on photocurrent, on ideality factor and also on saturation current using both temperature coefficients available as well as irradiance coefficients extracted from module datasheet. We considered standard test conditions numerical values of physical parameters as initial conditions and determined numerical models for I-ph(T,G), eta(T,G) and I-s(T,G). We also derived new mathematical expressions of maximum power point voltage and module efficiency. We tested these numerical models as well as mathematical expressions derived on Kyocera KC200GT and Shell SQ80 photovoltaic solar modules under different conditions of module temperature and incident solar irradiance and found good agreement between experimental and forecasted characteristics.
机译:在本文中,提出了一种新的精确方法来提取模拟在标准测试条件下运行的光伏太阳能电池组件的单二极管等效电路的物理参数。该方法使用四个方程,其中三个将短路时的输出电流与输出电压,最大功率和开路点联系在一起,第四个方程是相对于最大功率点中输出电压的输出功率的一阶导数。根据这种方法,我们使用理想因子eta作为变化参数,并求解了四个非线性方程组,以获取光电流I-ph,饱和电流I-s,串联电阻R-s和分流电导G(p)的值。然后,我们改变理想因子以最小化均方根误差并最大化确定系数。我们假设串联电阻和分流电导常数,并使用可用的温度系数以及从模块数据表中提取的辐照系数,得出描述模块温度和入射太阳辐照度对光电流,理想因子以及饱和电流的影响的解析表达式。我们将物理参数的标准测试条件数值视为初始条件,并确定了I-ph(T,G),eta(T,G)和I-s(T,G)的数值模型。我们还推导了最大功率点电压和模块效率的新数学表达式。我们测试了这些数值模型以及在京瓷KC200GT和壳牌SQ80光伏太阳能电池组件在不同的组件温度和入射太阳辐照度条件下得出的数学表达式,并在实验特性和预测特性之间找到了良好的一致性。

著录项

  • 来源
    《Energy Conversion & Management》 |2018年第12期|258-271|共14页
  • 作者单位

    Chouaib Doukkali Univ, Fac Sci, Dept Phys,Lab Instrumentat Measure & Control, Elect & Opt Semicond Nanostruct & Sustainab Energ, POB 20, El Jadida, Morocco;

    Chouaib Doukkali Univ, Fac Sci, Dept Phys,Lab Instrumentat Measure & Control, Elect & Opt Semicond Nanostruct & Sustainab Energ, POB 20, El Jadida, Morocco;

    Chouaib Doukkali Univ, Fac Sci, Dept Phys,Lab Instrumentat Measure & Control, Elect & Opt Semicond Nanostruct & Sustainab Energ, POB 20, El Jadida, Morocco;

    Chouaib Doukkali Univ, Fac Sci, Dept Phys,Lab Instrumentat Measure & Control, Elect & Opt Semicond Nanostruct & Sustainab Energ, POB 20, El Jadida, Morocco;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photovoltaic solar module; Single diode model; Model physical parameters; Temperature coefficients; Irradiance coefficients; Current-voltage characteristics;

    机译:光伏太阳能组件;单二极管模型;模型物理参数;温度系数;辐照系数;电流电压特性;

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