Extracting Topographic Terrain Features from Elevation Maps

Kweon I.S., Kanade T.
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引用次数: 176

Abstract

Some applications such as the autonomous navigation in natural terrain and the automation of map making process require high-level scene descriptions as well as geometrical representation of the natural terrain environments. In this paper, we present methods for building high level terrain descriptions, referred to as topographic maps, by extracting terrain features like "peaks," "pits," "ridges," and "ravines" from the contour map. The resulting topographic map contains the location and type of terrain features as well as the ground topography. We present new algorithms for extracting topographic maps consisting of topographic features (peaks, pits, ravines, and ridges) and contour maps. We develop new definitions for those topographic features based on the contour map. We build a contour map from an elevation map and generate the connectivity tree of all regions separated by the contours. We use this connectivity tree, called a topographic change tree, to extract the topographic features. Experimental results on a digital elevation model (DEM) supports our definitions for topographic features and the approach.

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从高程图中提取地形地形特征
自然地形自主导航、地图制作过程自动化等应用,既需要对自然地形环境进行高水平的场景描述,又需要对自然地形环境进行几何表示。在本文中,我们提出了通过从等高线地图中提取“峰”、“坑”、“脊”和“沟”等地形特征来构建高级地形描述(称为地形图)的方法。生成的地形图包含地形特征的位置和类型以及地面地形。我们提出了提取地形图的新算法,包括地形特征(峰、坑、沟和脊)和等高线地图。我们在等高线地图的基础上对这些地形特征进行了新的定义。我们从高程图中构建等高线图,并生成等高线分隔的所有区域的连通性树。我们使用这种称为地形变化树的连通性树来提取地形特征。在数字高程模型(DEM)上的实验结果支持我们对地形特征的定义和方法。
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