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Hourly global solar radiation estimation from MSG-SEVIRI images-case study: Algeria

机译:根据MSG-SEVIRI图像进行的每小时全球太阳辐射估计-案例研究:阿尔及利亚

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Purpose - This paper aims to propose an approach based on physical model integration for surface and cloud albedo computation using an approximate form of the atmospheric radiative transfer equation and sun-pixel-satellite. Design/methodology/approach - The data used in this study are global irradiance collected from for various sites in Algeria, and data were obtained from the processing of the high-resolution visible images taken by the Meteosat Second Generation satellite in 2010. Findings - The results suggest that the standard deviation obtained with this method is similar to that obtained with current estimation methods. The hourly and daily correlation coefficients range between 0.95 and 0.97 and between 0.97 and 0.99, respectively. The hourly and daily mean bias errors range between -0.2 and +1.2 per cent and between -0.2 and +1.4 per cent, respectively. The hourly and daily root mean square errors range between 10 and 17 per cent and between 4 and 8 per cent, respectively. Originality/value - This paper developed a new estimating method that derives the hourly global horizontal solar irradiation at a ground level from geostationary satellite data under local climate conditions.
机译:目的-本文旨在提出一种基于物理模型集成的方法,该方法使用大气辐射传递方程和太阳像素卫星的近似形式来进行表面和云的反照率计算。设计/方法/方法-这项研究中使用的数据是从阿尔及利亚各个地点收集的全球辐照度,并且数据是通过处理Meteosat第二代卫星在2010年拍摄的高分辨率可见图像获得的。结果表明,该方法获得的标准偏差与当前估算方法获得的标准偏差相似。每小时和每天的相关系数分别在0.95和0.97之间以及0.97和0.99之间。每小时和每日平均偏差误差分别在-0.2%和+ 1.2%之间以及-0.2%和+ 1.4%之间。每小时和每天的均方根误差分别在10%至17%和4%至8%之间。原创性/价值-本文开发了一种新的估算方法,该方法可以根据当地气候条件下的对地静止卫星数据,得出地面每小时的全球水平水平日照量。

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