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New Results of Ground Target Based Calibration of MOS on IRS

机译:基于地面目标的MOS上校准的新结果

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The success of the Modular Optoelectronic Scanner MOS on the Indian Remote Sensing Satellite IRS-P3 during the 6 years mission time has been based on its sophisticated in-orbit calibration concept to a large extent. When the internal lamp and the sun calibration failed in September 2000 we tested the possibility of ground target based (or vicarious) calibration of the MOS instruments to continue the high data quality. This is essential for future watching of global changes of the ocean coastal zones (phytoplancton, sediments, pollution, etc.) using spectral measurements of the VIS/NIR MOS spectral channels. The investigations have shown the suitability of a part of the Great Eastern Erg in the Sahara desert for this purpose. The satellite crosses this very homogeneous area every 24 days. Because of the good cloudfree conditions we can use 6 - 8 overflys a year for calibration. The seasonal variability of the surface reflectance is very small so that we obtain relative calibration data of sufficient accuracy even without ground truth measurements for most of the channels. The trend of this "vicarious" calibration corresponds very well with the previous trend of the failed lamp and sun calibration. Differences between the three methods will be discussed. In the paper we will also present the results of a comparison between SeaWiFS and MOS data of comparable spectral channels from the Great Eastern Erg area. They confirm the suitability of this area for calibration purposes too.
机译:在6年任务时间期间,模块化光电扫描仪MOS在印度遥感卫星IRS-P3的成功基于其在很大程度上基于其复杂的轨道校准概念。当内部灯和太阳校准于2000年9月失败时,我们测试了基于地面目标的(或替代)MOS仪器的校准以继续高数据质量。这对于使用VI / NIR MOS光谱通道的光谱测量来对未来观察海洋沿线区域(植物沿海,沉积物,污染等)的全球变化至关重要。为此目的,调查表明了撒哈拉沙漠中的大东部Erg的一部分适用性。卫星每24天穿过这个非常均匀的区域。由于良好的CloudFree条件,我们可以使用每年6-8橄榄的校准。表面反射率的季节性变化非常小,使得即使大多数通道都没有接地真相测量,我们也获得了足够精度的相对校准数据。这种“替代”校准的趋势与失败灯和太阳校准的先前趋势非常好。将讨论三种方法之间的差异。在本文中,我们还将介绍来自大东部Erg地区的可比较光谱通道的Seaws和MOS数据的比较结果。它们也确认了该区域的适用性也以校准目的。

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