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Remote sensing data respository for in-flight calibration of optical sensors over terrestrial targets

机译:遥感数据存储库,用于空中标定地面目标上的光学传感器

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Abstract: The present study is part of an investigation aimed at optimizing the use of desertic sites for absolute or relative calibration of satellite visible sensors. This effort includes characterization of the surface, gathering of climatology or atmospheric data sets, ground- and air- based measurements as well as result of calibration of various sensors over these sites. All these measurements and estimates are stored in a repository and made available to various methods for calibration. Post-launch degradation and relative sensitivity of various sensor have been estimated using north african desertic sites as radiometrically stable targets. The selected area have first been characterize in terms of bidirectional and spectral reflectances by making use of POLDER capabilities, then to cross-calibrate SeaWifs, VEGETATION on-board SPOT4 and AVHRR on-board NOAA-14 by reference to POLDER. Results are compared with absolute and relative calibration issued from other sources. Extensive period of time are spanned to assess the ability of this method to monitor long term trends in sensor evolutions. Results of this cross calibration will be presented. The method developed for this study will be presented as well, in order to make it applicable to other sensor. A sensitivity study has also been realized, considering synthetic data, allowing to evalute the main contributions to the error budget. The need for aerosol optical thickness is then evidenced, and will lead to the set up of a sun photometer on one of the selected sites in 1999. !7
机译:摘要:本研究是一项调查的一部分,旨在优化利用沙漠站点进行卫星可见光传感器的绝对或相对校准。这项工作包括对地表进行表征,收集气候或大气数据集,基于地面和基于空气的测量以及这些站点上各种传感器的校准结果。所有这些测量和估计都存储在存储库中,并可供各种校准方法使用。使用北非沙漠站点作为辐射稳定目标,已经估算了各种传感器的发射后退化和相对灵敏度。所选区域首先通过利用POLDER功能在双向和光谱反射率上进行了表征,然后参照POLDER交叉校准了SeaWifs,SPOT4上的VEGETATION和NOAA-14上的AVHRR。将结果与其他来源发布的绝对和相对校准进行比较。跨度较长的时间段来评估此方法监视传感器演变的长期趋势的能力。将显示此交叉校准的结果。也将介绍为这项研究开发的方法,以使其适用于其他传感器。考虑到综合数据,还可以进行敏感性研究,从而评估误差预算的主要贡献。然后证明需要气溶胶光学厚度,这将导致在1999年所选地点之一上安装太阳光度计。7

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