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Accuracy Assessment of Digital Elevation Model Generated by SAR Stereoscopic Technique Using COSMO-Skymed Data

机译:使用COSMO-SKEDMED数据的SAR立体技术产生的数字高度模型的准确性评估

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Radargrammetry technique using the stereoscopic synthetic aperture radar (SAR) images is used for the generation of a digital elevation model (DEM) of a region requires only the amplitude images. SAR stereoscopic technique is analogous to the stereo-photogrammetric technique where the optical stereoscopic images are used for DEM generation. While the advantages of the SAR images are their indifference to atmospheric transparency and solar illumination conditions, the side-looking geometry of the SAR increases the complexity in the SAR stereo analysis. The availability of high spatial and temporal resolution SAR data in recent years has facilitated generation of high-resolution DEM with greater vertical accuracy using radargrammetric technique. In the present study, attempt has been made to generate the DEM of Dehra Dun region, India, from the COSMO-Skymed X-band SAR data-pair acquired at 8 days interval through the radargrammetry technique. Here, radargrammetric orientation approach has been adopted to generate the DEM and various issues and processing steps with the radargrammetry technique have been discussed. The DEM was validated with ground measured elevation values using a differential global positioning system and the root-mean-square error of the DEM was found as 7.3 m. The DEM was compared with the reference DEM of the study area generated from the Cartosat-1 stereo data with a model accuracy of 4 m.
机译:使用立体合成孔径雷达(SAR)图像的RadarGramMetry技术用于生成区域的数字高度模型(DEM)仅需要幅度图像。 SAR立体技术类似于立体摄影测量技术,其中光学立体图像用于DEM生成。虽然SAR图像的优点是它们对大气透明度和太阳能照射条件的漠不关心,但SAR的侧面几何形状会增加SAR立体声分析中的复杂性。近年来高空间和时间分辨率SAR数据的可用性促进了使用Radargrammetric技术更大垂直精度的高分辨率DEM。在本研究中,已经尝试从8天间隔通过RadarGram Moture技术从8天间隔获取的COSMO-SCES X波段SAR数据对产生了尝试。这里,已经采用射线测图取向方法来生成DEM,并讨论了各种问题和各种问题和处理步骤。使用差分全球定位系统用地面测量的高度值验证了DEM,发现DEM的根均方误差为7.3米。将DEM与由绘图-1立体声数据产生的研究区域的参考DEM进行比较,其模型精度为4米。

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