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Exact analytical expressions modelling effects of incident irradiance and temperature on physical parameters of photovoltaic solar module

机译:入射光和温度对光伏太阳能组件物理参数影响的精确解析表达式建模

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). In all these methods, we perform numerical fitting of experimental data of current, dynamic conductance and area under translated characteristics with appropriate mathematical expressions to reach the values of model physical parameters under standard test conditions (STC). We consider these numerical values as initial conditions and use them to derive mathematical expressions describing effects of incident solar irradiance and module temperature on physical parameters, via temperature coefficients available as well as irradiance coefficients extracted from module datasheet. The mathematical expressions derived are tested on Kyocera KC175GT photovoltaic solar module under different conditions of incident irradiance and temperature, good agreement between experimental and predictive characteristics is found.
机译:)。在所有这些方法中,我们使用适当的数学表达式对转换后的特性下的电流,动态电导和面积的实验数据进行数值拟合,以达到标准测试条件(STC)下模型物理参数的值。我们将这些数值视为初始条件,并使用它们通过可用的温度系数以及从模块数据表中提取的辐照系数来得出描述入射太阳辐照度和组件温度对物理参数的影响的数学表达式。在不同的入射辐照度和温度条件下,在京瓷KC175GT光伏太阳能组件上测试了推导的数学表达式,发现实验和预测特性之间具有良好的一致性。

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