首页> 外文期刊>International journal of remote sensing >Three-dimensional (3D) reconstructions of the coastal cliff face in Normandy (France) based on oblique Pleiades imagery: assessment of Ames Stereo Pipeline® (ASP®) and MicMac® processing chains
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Three-dimensional (3D) reconstructions of the coastal cliff face in Normandy (France) based on oblique Pleiades imagery: assessment of Ames Stereo Pipeline® (ASP®) and MicMac® processing chains

机译:基于倾斜PLEIADES IMIGERY的诺曼底(法国)沿海悬崖面的三维(3D)重建:AMESTEREOPIPLINE®(ASP®)和MicMac®加工链的评估

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摘要

Images from agile (viewing angle over 40 degrees) and very high spatial resolution satellites (inferior to 1 m) can be useful for monitoring cliff faces, which is the best proxy to better understand coastal cliff dynamics. However, these images with a specific configuration are rarely used, partly because it is cumbersome to process them. Based on Pleiades images of the coastal cliff face along the coast of Normandy, with a high angle of incidence (up to 40 degrees) and taken on multiple dates, the paper aims to identify i) the best open-source processing chain to reconstitute three-dimensional (3D) cliff faces by stereo restitution ii) the reasons behind its best performance and iii) the key parameters to change depending on the image datasets or processing chains so as to facilitate transposition. The Ames Stereo Pipeline (R) (ASP (R)) and MicMac (R) software programmes were tested using different parameters (matching algorithm, size of correlation window, etc.) for the 3D reconstructions. MicMac (R) provides the best performance using GeomImage (1-2 pixel matching) with a size of correlation window of 3 x 3 or 7 x 7 associated with a regularization parameter of 0.10. With these parameters, the point clouds of the cliff face have an average point density of 1.70 point m(-2), a mean distance from Unmanned Aerial Vehicle (UAV) ground truth data of 0.04 m and a standard deviation of 1.72 m. With these characteristics, the threshold of rockfall detection using a multi-source comparison is assessed at 100 m(3), which involves that the large majority of rockfalls (69%) around the study area could be detected by a diachronic approach. Considering the daily Pleiades revisiting time, this method offers a great opportunity to monitor erosion and to better understand coastal cliff dynamics.
机译:来自敏捷(观察角度超过40度的观察角度)和非常高的空间分辨率卫星(差不多到1米)可用于监测悬崖面,这是更好地了解沿海悬崖动态的最佳代理。但是,这些具有特定配置的图像很少使用,部分原因是处理它们是麻烦的。基于沿诺曼底海岸的沿海悬崖脸的Pleiades图像,具有大角度(最多40度)并在多个日期上采取,旨在识别I)最佳的开源处理链来重建三个 - 立体声恢复原因二维(3D)悬崖面对II)其最佳性能背后的原因和III)根据图像数据集或处理链来改变的关键参数,以便于换位。使用不同的参数(匹配算法,相关窗口等)测试AMES立体管道(R)(ASP(R))和MicMac(R)软件程序。 MICMAC(R)提供了使用Geomimage(1-2像素匹配)的最佳性能,其中大小为3 x 3或7 x 7的相关窗口,与0.10的正则化参数相关联。利用这些参数,悬崖面的点云的平均点密度为1.70点(-2),平均距离无人驾驶飞行器(UAV)地面真理数据为0.04 m,标准偏差为1.72米。通过这些特性,使用多源比较的岩石检测阈值被评估为100米(3),这涉及通过探索探测方法来检测研究区域周围的大多数岩石(69%)。考虑到每日宠物重新审视时间,这种方法提供了监测侵蚀和更好地理解沿海悬崖动力学的绝佳机会。

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