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Geocoding uncertainty analysis for the automated processing of Sentinel-1 data using Sentinel-1 Toolbox software

机译:使用Sentinel-1工具箱软件进行地理编码Sentinel-1数据自动处理的不确定性分析

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One of the major advantages of the Sentinel-1 data is its capability to provide very high spatio-temporal coverage allowing the mapping of large areas as well as creation of dense time-series of the Sentinel-1 acquisitions. The SGRT software developed at TU Wien aims at automated processing of Sentinel-1 data for global and regional products. The first step of the processing consists of the Sentinel-1 data geocoding with the help of S1TBX software and their resampling to a common grid. These resampled images serve as an input for the product derivation. Thus, it is very important to select the most reliable processing settings and assess the geocoding uncertainty for both backscatter and projected local incidence angle images. Within this study, selection of Sentinel-1 acquisitions over 3 test areas in Europe were processed manually in the S1TBX software, testing multiple software versions, processing settings and digital elevation models (DEM) and the accuracy of the resulting geocoded images were assessed. Secondly, all available Sentinel-1 data over the areas were processed using selected settings and detailed quality check was performed. Overall, strong influence of the used DEM on the geocoding quality was confirmed with differences up to 80 meters in areas with higher terrain variations. In flat areas, the geocoding accuracy of backscatter images was overall good, with observed shifts between 0 and 30m. Larger systematic shifts were identified in case of projected local incidence angle images. These results encourage the automated processing of large volumes of Sentinel-1 data.
机译:Sentinel-1数据的主要优点之一是其能力提供非常高的时空覆盖,允许大面积的映射以及创建哨兵-1采集的密集时间系列。 TU WIEN开发的SGRT软件旨在自动处理Sentinel-1用于全球和区域产品的数据。处理的第一步是借助S1TBX软件的Sentinel-1数据地理编码,并将其重新采样到公共网格。这些重采样的图像用作产品衍生的输入。因此,选择最可靠的处理设置并评估背散射器和投影局部入射角图像的地理编码不确定性非常重要。在本研究中,在S1TBX软件中手动选择欧洲3个测试区域的Sentinel-1收购,测试多个软件版本,处理设置和数字高度模型(DEM),并评估所得到的地理码图像的准确性。其次,使用所选设置的所有可用的Sentinel-1数据使用所选设置处理,并执行详细的质量检查。总体而言,使用较高的地形变化的区域确认了使用过的DEM对地理码量质量的强烈影响。在平坦的区域中,后散射图像的地理编码精度整体良好,观察到0到30米之间的偏移。在投影局部发生角度图像的情况下识别出较大的系统变化。这些结果鼓励自动处理大量的Sentinel-1数据。

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