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An automated, open-source pipeline for mass production of digital elevation models (DEMs) from very-high-resolution commercial stereo satellite imagery

机译:自动,开源管道,可从超高分辨率商业立体声卫星图像中批量生产数字高程模型(DEM)

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摘要

We adapted the automated, open source NASA Ames Stereo Pipeline (ASP) to generate digital elevation models (DEMs) and orthoimages from very-high-resolution (VHR) commercial imagery of the Earth. These modifications include support for rigorous and rational polynomial coefficient (RPC) sensor models, sensor geometry correction, bundle adjustment, point cloud co-registration, and significant improvements to the ASP code base. We outline a processing workflow for similar to 0.5 m ground sample distance (GSD) DigitalGlobe WorldView-1and WorldView-2 along-track stereo image data, with an overview of ASP capabilities, an evaluation of ASP correlator options, benchmark test results, and two case studies of DEM accuracy. Output DEM products are posted at 2 m with direct geolocation accuracy of <5.0 m CE90/LE90. An automated iterative closest-point (ICP) co-registration tool reduces absolute vertical and horizontal error to <0.5 m where appropriate ground-control data are available, with observed standard deviation of similar to 0.1-0.5 m for overlapping, co-registered DEMs (n = 14,17). While ASP can be used to process individual stereo pairs on a local workstation, the methods presented here were developed for large-scale batch processing in a high-performance computing environment. We are leveraging these resources to produce dense time series and regional mosaics for the Earth's polar regions. (C) 2016 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:我们改编了自动,开源NASA Ames立体管线(ASP),以从地球的超高分辨率(VHR)商业图像生成数字高程模型(DEM)和正射影像。这些修改包括对严格和有理多项式(RPC)传感器模型的支持,传感器几何校正,束调整,点云共配准以及对ASP代码库的重大改进。我们概述了类似于0.5 m地面采样距离(GSD)DigitalGlobe WorldView-1和WorldView-2沿轨立体声图像数据的处理工作流程,其中概述了ASP功能,评估ASP相关器选项,基准测试结果以及两个DEM准确性的案例研究。输出的DEM产品张贴在2 m处,直接地理定位精度<5.0 m CE90 / LE90。如果有适当的地面控制数据,则自动迭代最近点(ICP)共配准工具可将垂直和水平方向的绝对误差减小至<0.5 m,对于重叠的,共同注册的DEM,观察到的标准偏差约为0.1-0.5 m (n = 14,17)。尽管ASP可以用于在本地工作站上处理单个立体声对,但此处介绍的方法是针对高性能计算环境中的大规模批处理而开发的。我们正在利用这些资源为地球的极地产生密集的时间序列和区域马赛克。 (C)2016国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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