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首页> 外文期刊>International Journal of Geographical Information Science >Embedding rivers in triangulated irregular networks with linear programming
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Embedding rivers in triangulated irregular networks with linear programming

机译:用线性规划将河流嵌入三角不规则网络中

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摘要

Data conflation is a major issue in GIS: different geospatial datasets covering overlapping regions, possibly obtained from different sources and using different acquisition techniques, need to be combined into one single consistent dataset before the data can be analyzed. The most common occurrence for hydro logical applications is conflation of a digital elevation model (DEM) and rivers. We assume that a triangulated irregular network (TIN) is given, and a subset of its edges are designated as river edges, each with a flow direction. The goal is to obtain a terrain where the rivers flow along valley edges, in the specified direction, while preserving the original terrain as much as possible. We study the problem of changing the elevations of the vertices to ensure that all the river edges become valley edges, while minimizing the total elevation change. We show that this problem can be solved using linear programming. However, several types of artifacts can occur in an optimal solution. We analyze which other criteria, relevant for hydrological applications, can be captured by linear constraints as well, in order to eliminate such artifacts. We implemented and tested the approach on real terrain and river data, and describe the results obtained with different variants of the algorithm.
机译:数据合并是GIS中的一个主要问题:覆盖重叠区域的不同地理空间数据集(可能是从不同来源获得并使用不同的采集技术),需要先组合成一个一致的数据集,然后才能进行数据分析。水文应用最常见的情况是数字高程模型(DEM)与河流的融合。我们假定给出了三角不规则网络(TIN),其边缘的子集被指定为河流边缘,每个都有流动方向。目标是获得一个地形,在该地形中河流沿山谷边缘沿指定方向流动,同时尽可能保留原始地形。我们研究了改变顶点高程的问题,以确保所有河流边缘都变为山谷边缘,同时使总高程变化最小。我们证明了使用线性规划可以解决这个问题。但是,在最佳解决方案中可能会出现几种类型的伪像。我们分析了线性约束也可以捕获哪些与水文应用相关的其他标准,以消除此类伪影。我们在真实的地形和河流数据上实施并测试了该方法,并描述了使用该算法的不同变体获得的结果。

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