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Modeling terrain profiles from digital terrain elevation data and national land cover data

机译:根据数字地形高程数据和国家土地覆盖数据对地形剖面进行建模

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An algorithm is presented for synthesizing mathematical models of terrain elevation and reflectivity from digital elevation terrain data (DTED) and national land cover data (NLCD). Assuming the DTED and NLCD have spatial intersection, it is straightforward to interpolate each set individually to a common set of coordinates in the intersection. However, DTED is continuous and NLCD is not typically which results in different and sometimes contrasting sampling requirements of the intersecting region. This study evaluates different similarity measures used to assess the quality of re-sampling DTED and NLCD data for the purpose of building elevation and reflectivity profiles for physical optics calculation of site-specific radar clutter. Examples of the algorithm are presented for clutter scene generation with the Raider Tracer prediction tool.
机译:提出了一种算法,可根据数字高程地形数据(DTED)和国家土地覆盖数据(NLCD)综合地形高程和反射率的数学模型。假设DTED和NLCD具有空间相交,可以很容易地将每个集合分别内插到相交中的公共坐标集。但是,DTED是连续的,而NLCD通常不是这样,这导致相交区域的采样要求有时不同,有时甚至是相反。这项研究评估了用于评估DTED和NLCD数据重采样质量的不同相似性度量,目的是建立高程和反射率剖面图,以用于特定地点雷达杂波的物理光学计算。给出了使用Raider Tracer预测工具生成杂波场景的算法示例。

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