Solar irradiance estimation based on photovoltaic module short circuit current measurement

R. Tan, Priscilla L. J. Tai, V. H. Mok
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引用次数: 27

Abstract

This paper presents the estimation method of solar irradiance in W/m2 based on the short circuit current output produce by the photovoltaic module. The proposed solar irradiance estimation method is derived using photovoltaic mathematical model. Therefore, photovoltaic module modeling is required to develop the proposed estimation method. The modeling includes the identification of photovoltaic module diode ideality factor using recursive iteration and series resistance identification using photovoltaic model equation. The reminding modeling parameters can be obtained from the given photovoltaic module manufacturer datasheet. With all the required parameters in place the solar irradiance can be estimated using equation derived from the photovoltaic model. The proposed solar irradiance estimation method is evaluated using a 80W 36 cells polycrystalline photovoltaic module in the field and the results are validated with a World Meteorological Organization certified second class pyranometer. This paper demonstrates that the solar irradiance can be estimated by the short circuit current output measured from the photovoltaic module with acceptable accuracy. This contributes to the elimination of the installation of expensive pyranometer.
基于光伏组件短路电流测量的太阳辐照度估算
本文提出了一种基于光伏组件短路电流输出估算太阳辐照度(W/m2)的方法。利用光伏数学模型推导了太阳辐照度估算方法。因此,需要光伏组件建模来开发所提出的估计方法。建模包括光伏组件二极管理想因数的递归迭代辨识和光伏模型方程串联电阻辨识。提醒建模参数可从给定的光伏组件制造商数据表中获得。在所有必需的参数就绪后,可以使用从光伏模型导出的方程来估计太阳辐照度。利用80W 36节多晶光伏组件对所提出的太阳辐照度估算方法进行了实地评估,并用世界气象组织认证的二级辐射计对结果进行了验证。本文论证了通过测量光伏组件的短路电流输出可以估算出太阳辐照度,并且精度可以接受。这有助于消除昂贵的高温计的安装。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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