采用联合德劳内三角剖分法进行等高线泛化

Xu Zhang, Xinyan Zhu, Yingwei Yang
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引用次数: 3

摘要

山谷、山脊等地貌要素是表征自然地貌空间延伸和分布的结构信息。联合Delaunay三角网方法是对传统三角网方法的改进,具有检测人体可识别弯曲的能力。这种联合Delaunay三角网虽然更适合于地形结构的提取,但在等高线泛化方面还没有得到应用。本文旨在探讨其在等高线泛化中的应用。首先提取等高线的曲线,然后在曲线处将局部地形结构线连接在一起。然后,构建这些结构线的树形结构,表示它们之间的关系。在一般情况下,选择平方根模型来指定谷选择的数量。在建立的三角网的基础上,以评价河谷重要性的几个重要方面作为定量指标,确定哪些河谷需要保留,哪些河谷需要去除。该评价方法计算出的一般河谷重要性指数影响着河谷的泛化程度。因此,概化后的地图基本不存在交点,保持了原有的地形特征,从而体现了该联合Delaunay三角剖分模型在等高线概化方面的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Employing united Delaunay triangulation in contour lines generalization
Geomorphologic elements such as valley, ridge are structural information to represent natural geomorphology in spatial extension and distribution. The united Delaunay triangulation network methodology makes an improvement over traditional triangulation method, with its capability of detecting human recognizable bends. Although this united Delaunay triangulation network is more suitable for terrain structure extraction, it hasn't yet been applied in contour line generalization. This article aims at exploring its application in contour lines generalization. First, the curves of contours lines are extracted, and then at the curves local terrain structure lines are linked together. Later, a tree structure of these structure lines is built, representing their relations. In generalization, the square root model is chosen for specifying the number of valley selection. And based on the built triangulation network several important aspects to evaluate the importance of valley are taken as quantitative indexes for determining which valley needs kept and which removed. The general valley importance index calculated by this evaluation method affects the degree of generalization. In result, the generalized map generally shows no intersection and keeps the original terrain characteristic, and, thus exemplifying this united Delaunay triangulation model's great potential in contour line generalization.
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