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Surface reconstruction and landslide displacement measurements with Pleiades satellite images

机译:利用P宿星卫星图像进行地表重建和滑坡位移测量

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摘要

Recent advances in image-matching techniques and VHR satellite imaging at submeter resolution theoretically offer the possibility to measure Earth surface displacements with decimetric precision. However, this possibility has yet not been explored and requirements of ground control and external topographic datasets are considered as important bottlenecks that hinder a more common application of optical image correlation for displacement measurements. This article describes an approach combining space-borne stereo-photogrammetry, orthorectification and sub-pixel image correlation to measure the horizontal surface displacement of landslides from Pleiades satellite images. The influence of the number of ground-control points on the accuracy of the image orientation, the extracted surface models and the estimated displacement rates is quantified through comparisons with airborne laser scan and in situ global navigation satellite measurements at permanent stations. The comparison shows a maximum error of 0.13 m which is one order of magnitude more accurate than what has been previously reported with spaceborne optical images from other sensors. The obtained results indicate that the approach can be applied without significant loss in accuracy when no ground control points are available. It could, therefore, greatly facilitate displacement measurements for a broad range of applications.
机译:理论上,图像匹配技术和VHR卫星成像技术在亚米级分辨率下的最新发展为理论上提供了以分米精度测量地球表面位移的可能性。但是,尚未探讨这种可能性,地面控制和外部地形数据集的要求被认为是重要的瓶颈,阻碍了光学图像相关性在位移测量中的更普遍的应用。本文介绍了一种结合星载立体摄影测量法,正射校正和亚像素图像相关性来测量to宿星卫星图像中滑坡的水平表面位移的方法。地面控制点数量对图像定向精度,提取的表面模型和估计的位移率的影响通过与机载激光扫描和永久性驻地现场全球导航卫星测量结果的比较进行量化。比较结果显示最大误差为0.13 m,比以前从其他传感器获得的星载光学图像所报告的误差要精确一个数量级。获得的结果表明,在没有地面控制点可用的情况下,可以应用该方法而不会在准确性上造成重大损失。因此,它可以极大地方便用于广泛应用的位移测量。

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    Laboratoire Image, Ville, Environnement, CNRS UMR 7230, University of Strasbourg, 3 rue de l'Argonne, F-67083 Strasbourg, France,Institut de Physique du Globe de Strasbourg, CNRS UMR 7516, University of Strasbourg, Ecole et Observatoire des Sciences de la Terre, 5 rue Descartes, F-67084 Strasbourg, France,Laboratoires Domaines Oceaniques, CNRS UMR 6538, IUEM-University of Western Brittany, rue Dumont d'Urville, 29280 Plouzane, France;

    Institut de Physique du Globe de Strasbourg, CNRS UMR 7516, University of Strasbourg, Ecole et Observatoire des Sciences de la Terre, 5 rue Descartes, F-67084 Strasbourg, France;

    Laboratoire de Geologie de Lyon, Terre, Planetes, Environnement, CNRS UMR 5276, University of Lyon, Ecole Normale Superieure, Batiment Geode 2, Campus de la Doua, 2, rue Raphaeel Dubois, 69622 Villeurbanne Cedex, France;

    Institut de Physique du Globe de Strasbourg, CNRS UMR 7516, University of Strasbourg, Ecole et Observatoire des Sciences de la Terre, 5 rue Descartes, F-67084 Strasbourg, France;

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  • 正文语种 eng
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  • 关键词

    Image correlation; VHR satellite images; Landslides; Stereo-photogrammetry; No ground control; Surface deformation;

    机译:图像相关;VHR卫星图像;滑坡;立体摄影测量法;没有地面控制;表面变形;

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