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Impact of terrain slope and aspect on radargrammetric DEM accuracy

机译:地形坡度和坡度对雷达测量DEM精度的影响

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This paper shows results of digital elevation models (DEMs) generated from various RADARSAT stereopairs (fine, standard, extended) over three different topographic study sites (flat-to-rolling, rolling-to-mountainous, mountainous-to-steep) using 3-D parametric modeling developed at the Canada Centre for Remote Sensing (CCRS) and an automated image matching method. Reference topographic DEMs were first used to compute terrain slope and aspect and then to evaluate the accuracy of the stereo-derived DEMs as a function of the slopes and aspects. The DEM accuracy was almost linearly correlated with the terrain slope, with the larger errors in the steepest slopes. In addition, the stronger the stereo radar geometry, the more heterogeneous the DEM is. For the aspect, the best and worse results generally occurred in the foreslopes and backslopes, respectively, and there is no specific trend in the azimuth. Finally, the more pronounced the relief, the higher the correlation between the elevation accuracy and the aspect is and the larger the variations of the elevation accuracy are.
机译:本文显示了在3个不同的地形研究站点(从平面到滚动,从山脉到陡峭,从山地到陡峭)上从各种RADARSAT立体对(精细,标准,扩展)生成的数字高程模型(DEM)的结果加拿大遥感中心(CCRS)开发的-D参数建模和自动图像匹配方法。首先使用参考地形DEM来计算地形坡度和坡向,然后根据坡度和坡向来评估立体派生DEM的准确性。 DEM精度几乎与地形坡度呈线性关系,而最陡坡度的误差较大。此外,立体声雷达的几何形状越强,DEM的异构性就越高。在此方面,最好和最差的结果通常分别发生在前坡和后坡,并且方位角没有特定趋势。最后,浮雕越明显,高程精度与长宽比之间的相关性越高,且高程精度的变化越大。

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