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Developing a solar channel calibration algorithm for the Korean geostationary satellite COMS

机译:为韩国对地静止卫星COMS开发太阳通道校准算法

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The Korean Geostationary satellite (COMS) to fly in year 2009 will carry a meteorological sensor from which visible channel measurements will be available. We developed a method utilizing satellite-derived BRDFs for the solar channel calibration over the bright desert area. The 6S model has been incorporated to account for directional effects of the surface using MODIS-derived BRDF parameters within the spectral interval in interest. Simulated radiances over the desert targets were compared with MODIS and SeaWiFS measured spectral radiances in order to examine the feasibility of the developed calibration algorithm. It was shown that simulated 16-day averaged radiances are in good agreement with the satellite-measured radiances within about ±5% uncertainty range for the year 2005, suggesting that the developed algorithm can be used for calibrating the COMS visible channel within about 5% uncertainty level.
机译:将于2009年飞行的韩国对地静止卫星(COMS)将装有气象传感器,通过该传感器可进行可见信道测量。我们开发了一种利用源自卫星的BRDF校准明亮沙漠地区太阳通道的方法。已合并6S模型,以在感兴趣的光谱区间内使用MODIS派生的BRDF参数来说明表面的方向效应。为了比较开发的校准算法的可行性,将沙漠目标上的模拟辐射与MODIS和SeaWiFS测得的光谱辐射进行了比较。结果表明,模拟的16天平均辐射度与卫星测量的辐射度在2005年的不确定度范围内约为±5%,这表明所开发的算法可用于在5%左右的范围内校准COMS可见通道。不确定性水平。

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