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An Advanced Model for the Estimation of the Surface Solar Irradiance Under All Atmospheric Conditions Using MSG/SEVIRI Data

机译:使用MSG / SEVIRI数据估算所有大气条件下的表面太阳辐照度的高级模型

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A new advanced model for estimation of surface solar irradiance from satellite (AMESIS), designed to estimate with better accuracy the incident solar radiation at the surface from the spinning enhanced visible and infrared imager (SEVIRI) satellite measurements, has been developed. The new generations of sensors such as SEVIRI payload on board the geostationary meteosat second generation gives an opportunity to improve the solar irradiance estimation at surface with accuracy as well as the high spatial and time resolution for a large geographical area according to the needs of solar energy applications. The model developed takes into account the effect of aerosol, the overcast and partially cloudy coverage, and provides irradiance solar maps every 15 min both for monitoring purposes and for monthly, annual averages of surface solar irradiance. Cloud and aerosol microphysical parameters are retrieved by using VIS and IR SEVIRI channels, while surface solar irradiance is retrieved through the high-resolution broadband visible channel. Comparisons with the Global Atmosphere Watch station ground-based measurements of incoming solar radiation agree with the values retrieved with AMESIS model. The results show a very good correlation of about 0.99, a root mean square and a bias ranging, respectively, between 1 and 2.7 J/cm2 and $-$0.6 and 0.4 J/cm2 depending on the station.
机译:已经开发了一种新的高级模型来估算卫星的表面太阳辐射(AMESIS),该模型旨在通过旋转增强型可见光和红外成像仪(SEVIRI)卫星测量以更高的精度估算表面的入射太阳辐射。第二代地球静止气象卫星上的SEVIRI有效载荷等新一代传感器提供了一个机会,可以根据太阳能的需求,在较大的地理区域内,以精确度以及高空间和时间分辨率来提高地表太阳辐照度估算应用程序。开发的模型考虑了气溶胶,阴天和部分多云的影响,并每隔15分钟提供一次辐照度太阳图,以用于监视目的以及每月,每年平均地表太阳辐照度。通过使用VIS和IR SEVIRI通道检索云和气溶胶微物理参数,而通过高分辨率的宽带可见通道检索表面太阳辐照度。与全球大气监视站对入射太阳辐射的地面测量结果的比较与AMESIS模型获得的值一致。结果显示非常良好的相关性,大约为0.99,均方根和偏差范围分别在1和2.7 J / cm2之间以及$-$ 0.6和0.4 J / cm2之间,具体取决于工作站。

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