DEM generation and accuracy assessment from stereo ASTER imagery

A. Ok, M. Turker
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引用次数: 3

Abstract

In this study, Digital Elevation Models (DEMs) were generated from ASTER stereo images for a study area enclosing the city of Ankara and covering an area of 3600 km/sup 2/. Majority of the area was covered by large scale orthophotos, which were used as the main source to collect the Ground Control Points (GCPs). For those areas that were not covered by the orthophotos the GCPs were collected through a differential GPS. The bundle adjustment process and the generation of DEMs were carried out using PCI Geomatica image analysis software. In order to find the best GCP combination, DEMs were generated using different number of GCPs (8, 16, 24 and 32). DEM accuracies were assessed based on different parameters including the check points, slopes and land cover types. The accuracies of the resulting DEMs revealed that 16 GCPs were good compromise to produce the most accurate DEM. It was found that the post processing and blunder removal were crucial stages that affect the overall DEM accuracy up to 38%. There was a strong linear relationship between the accuracy of DEMs and the terrain slopes. For urban and forested areas, the accuracy in elevation was found to be 8.03 m and 12.69 m, respectively. The overall accuracy computed for 2,171,664 points produced 10.92 m elevation accuracy.
立体ASTER影像DEM生成及精度评估
在这项研究中,数字高程模型(dem)是由围绕安卡拉市的一个研究区域的ASTER立体图像生成的,覆盖面积为3600 km/sup /。大部分地区被大比例尺正射影像覆盖,这是收集地面控制点(gcp)的主要来源。对于未被正射影像仪覆盖的区域,通过差分GPS收集gcp。利用PCI Geomatica图像分析软件进行束平差过程和dem生成。为了找到最佳的GCP组合,使用不同数量的GCP(8、16、24和32)生成dem。基于不同参数,包括检查点、坡度和土地覆盖类型,对DEM精度进行了评估。所得DEM的精度表明,16个gcp是产生最准确DEM的良好折衷方案。研究发现,后期处理和错误去除是影响DEM整体精度的关键阶段,其精度可达38%。dem精度与地形坡度呈较强的线性关系。对于城市和森林地区,高程精度分别为8.03 m和12.69 m。对2171664个点计算的总体精度产生了10.92米的高程精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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