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A HIGH PRECISION DEM EXTRACTION METHOD BASED ON INSAR DATA

机译:基于InSAR数据的高精度DEM提取方法

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In the 13th Five-Year Plan for Geoinformatics Business, it is proposed that the new InSAR technology should be applied to surveying and mapping production, which will become the innovation driving force of geoinformatics industry. This paper will study closely around the new outline of surveying and mapping and then achieve the TerraSAR/TanDEM data of Bin County in Shaanxi Province in X band. The studying steps are as follows; Firstly, the baseline is estimated from the orbital data; Secondly, the interferometric pairs of SAR image are accurately registered; Thirdly, the interferogram is generated; Fourth, the interferometric correlation information is estimated and the flat-earth phase is removed. In order to solve the phase noise and the discontinuity phase existing in the interferometric image of phase, a GAMMA adaptive filtering method is adopted. Aiming at the "hole" problem of missing data in low coherent area, the interpolation method of low coherent area mask is used to assist the phase unwrapping. Then, the accuracy of the interferometric baseline is estimated from the ground control points. Finally, 1?:?50000?DEM is generated, and the existing DEM data is used to verify the accuracy through statistical analysis. The research results show that the improved InSAR data processing method in this paper can obtain the high-precision DEM of the study area, exactly the same with the topography of reference DEM. The RSUP2/SUP can reach to 0.9648, showing a strong positive correlation.
机译:在“十三五”地理信息业务规划中,提出将新的InSAR技术应用于测绘生产,将成为地理信息产业创新的动力。本文将围绕测绘的新领域进行深入研究,然后在X波段获得陕西省宾县的TerraSAR / TanDEM数据。研究步骤如下。首先,根据轨道数据估算基线;其次,对SAR图像的干涉对进行精确配准。第三,产生干涉图。第四,估计干涉相关信息并去除平坦地球相位。为了解决相位干涉图中存在的相位噪声和间断相位,采用了GAMMA自适应滤波方法。针对低相干区数据丢失的“空洞”问题,采用低相干区掩模的插值方法辅助相位展开。然后,从地面控制点估算干涉基线的精度。最后,生成1?:?50000?DEM,并使用现有的DEM数据通过统计分析来验证准确性。研究结果表明,本文提出的改进的InSAR数据处理方法能够获得研究区域的高精度DEM,与参考DEM的地形完全相同。 R 2 可以达到0.9648,表现出很强的正相关性。

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