首页> 外文会议>第21届国际摄影测量与遥感大会(ISPRS 2008)论文集 >Multi-Image Matching for DTM Generation from SPOT-5 HRS/HRG and IRS-P5 Imagery- For the Project of West China Topographic Mapping at 1:50,000 Scale
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Multi-Image Matching for DTM Generation from SPOT-5 HRS/HRG and IRS-P5 Imagery- For the Project of West China Topographic Mapping at 1:50,000 Scale

机译:从SPOT-5 HRS / HRG和IRS-P5影像生成DTM的多图像匹配-适用于1:50,000比例的中国西部地形图项目

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High-resolution satellite images (HRSI) at sub-5m footprint such as IKONOS, IRS-P5 (CartoSat-1) and SPOT-5 HRG/HRS images are becoming increasingly available to the earth observation community and their respective clients. HRSI is one of the main data sources for the Project of Western China Topographic Mapping (WChTM) which has been approved by the State Council of China in year 2006. New advanced technologies in field of photogrammetry and remote sensing, such as the block-adjustment with sparse GCPs, automatic DSM/DTM generation and 3D mapping with HRSI are very necessary to the project. In this paper, we present a matching approach for automatic DSM/DTM generation from HRSI. It can provide dense, precise and reliable results. The method matches multiple images simultaneously and it uses a coarse-to-fine hierarchical solution with an effective combination of several image matching algorithms and automatic quality control. The DSMs/DTMs are generated by combination of matching results of feature points, grid points and edges. The new characteristics provided by the high-resolution imaging systems, i.e. the multiple-view terrain coverage and the high quality image data, are also efficiently utilized in this approach. The proposed approach has been applied to SPOT-5 HRS/HRG images over a testfield in Zone of headstream of Three rivers, eastern Tibet Plateau, China with variable terrain geomorphologic type. The accuracy study was based on the comparison between as many as 160 accurate GPS check points, more than 1400 manually measured check points and the automatically extracted DTMs. The RMS errors for the whole area are 2-7 m, while for flat/hilly areas the accuracy is about 2-3 m or even better. The proposed approach has also been applied to 23 IRS-P5 stereo pairs over Beijing city, the resulted 12.5 m DTM reproduced quite well not only the general features of the terrain relief but also small geomorphological and other features visible in the IRS-P5 images. From these experiments, it's shown that with the proposed automatic DTM generation approach, by using SPOT-5 HRS/HRG and IRS-P5 imagery, satisfactory 1:50000 DTMs can be completed with a better accuracy than those requirements from Chinese Surveying and Mapping regulations.
机译:地面观测不到5m的高分辨率卫星图像(HRSI),例如IKONOS,IRS-P5(CartoSat-1)和SPOT-5 HRG / HRS图像,正越来越多地用于地球观测界及其各自的客户。 HRSI是中国西部地区地形图项目(WChTM)的主要数据来源之一,该项目已于2006年获得中国国务院批准。摄影测量学和遥感领域的新的先进技术,例如块调整对于稀疏的GCP,该项目非常需要自动生成DSM / DTM以及使用HRSI进行3D映射。在本文中,我们提出了一种从HRSI自动生成DSM / DTM的匹配方法。它可以提供密集,精确和可靠的结果。该方法同时匹配多个图像,并使用从粗到细的分层解决方案,将几种图像匹配算法和自动质量控制有效结合。 DSM / DTM是通过特征点,网格点和边缘的匹配结果的组合而生成的。由高分辨率成像系统提供的新特性,即多视图地形覆盖和高质量图像数据,也可以在这种方法中得到有效利用。该方法已应用于西藏高原东部三河源区地形地貌类型不同的试验场上的SPOT-5 HRS / HRG图像。准确性研究基于多达160个准确的GPS检查点,1400多个手动测量的检查点与自动提取的DTM之间的比较。整个区域的RMS误差为2-7 m,而在平坦/丘陵地区,精度约为2-3 m甚至更好。拟议的方法也已应用于北京市区的23个IRS-P5立体声对,所产生的12.5 m DTM不仅很好地再现了地形起伏的一般特征,而且还再现了IRS-P5图像中可见的小地貌和其他特征。从这些实验中可以看出,使用建议的自动DTM生成方法,通过使用SPOT-5 HRS / HRG和IRS-P5图像,可以比中国测绘法规要求的精度更高的精度完成令人满意的1:50000 DTM。 。

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