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Photogrammetric Processing of a TerraSAR-X Image: Evaluation of Products

机译:TerraSAR-X图像的摄影测量处理:产品评估

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TerraSAR-X was the first from a series of very high resolution SAR satellites, which have significantly enlarged the range of cartographic applications of SAR data. For such applications the use of photogrammetric processing, either independently or combined with optical images became meaningful, In this paper the procedures that may be applied on a single SAR image are developed and the quality and accuracy of their products are investigated regarding the impact of using various models or changing the parameters of external data (GCPs, DTM). A Spotlight mode TerraSAR-X image is used for a case study. The area is a mountainous terrain, of 5×10km size, located in the north-eastern region of Athens, Greece. Three alternative registration/georeferencing methods are investigated: the Physical Sensor Model (Range-Doppler method), the DLT and the 2nd order RPF. Orthoimage production using four different DTMs of various quality and density are investigated. Geometric accuracy and quality are investigated using Independent Check Points and through an analysis of the slopes and aspects of the terrain in combination with the geometry of the sensor. Automatic techniques for the extraction of the road network are used; however the results are not satisfactory. In addition, a manual extraction of the roads using visual interpretation is made and the results are evaluated in terms of completeness, correctness and quality. According to the results derived from the above procedures, the use of high resolution TerraSAR-X images is very promising for a variety of applications for which medium scale geometric accuracies are required.
机译:TerraSAR-X是一系列高分辨率SAR卫星中的第一颗,这些卫星大大扩大了SAR数据在制图领域的应用范围。对于此类应用,独立或与光学图像结合使用摄影测量处理变得有意义。在本文中,开发了可应用于单个SAR图像的程序,并研究了其产品的质量和准确性对使用影响的影响各种模型或更改外部数据(GCP,DTM)的参数。使用Spotlight模式TerraSAR-X图像进行案例研究。该地区位于希腊雅典的东北部,面积为5×10公里,是多山的地形。研究了三种可选的配准/地理配准方法:物理传感器模型(Range-Doppler方法),DLT和二阶RPF。研究了使用四个不同质量和密度的DTM进行正射影像制作的情况。使用独立检查点并结合传感器的几何形状对地形的坡度和方面进行分析,从而研究几何形状的准确性和质量。使用自动技术提取路网;但是结果并不令人满意。另外,使用视觉解释手动提取道路,并根据完整性,正确性和质量对结果进行评估。根据上述过程得出的结果,对于需要中等规模几何精度的各种应用,高分辨率TerraSAR-X图像的使用非常有前途。

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