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Correcting NOAA-AVHRR Orbital Drift: a Simple and Automatic Methodology

机译:纠正NOAA-AVHRR轨道漂移:简单自动的方法

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NOAA (National Oceanic and Atmosphere Administration) AVHRR (Advanced Very High Resolution Radiometer) data scientific use is hindered by the orbital drift each platform has suffered, which prevents multitemporal analyses. The study presented here provides a new way to correct the data from this orbital drift, using additional information on the data acquisition, such as solar zenithal angle and acquisition day information. This information is used to estimate at each date and for each pixel a theoretical solar zenithal angle, which difference to the actual one is fitted against each channel data anomaly. This fit is then used to calculate a correcting factor which is applied to the whole time series for each channel data. This procedure has been applied to data provided by the GIMMS (Global Imaging Modeling and Mapping Studies) group, namely the African continent from the end of 2000 to the end of 2004, corresponding to NOAA-16 satellite.
机译:NOAA(国家海洋和大气管理)AVHRR(先进的高分辨率辐射计)数据科学用途受到轨道漂移的阻碍,每个平台都遭受了突破,这阻止了多型分析。这里提出的这项研究提供了一种新的方法来校正来自该轨道漂移的数据,使用数据采集的附加信息,例如太阳能Zenithal角度和获取日信息。该信息用于估计每个日期和每个像素的理论太阳能Zenithal角度,其与实际的差值拟合在每个信道数据异常中。然后使用这种拟合来计算应用于每个信道数据的整个时间序列的校正因子。该程序已应用于GIMMS(全球影像机建模和映射研究)组提供的数据,即非洲大陆从2000年底到2004年底,对应于NOAA-16卫星。

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