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首页> 外文期刊>International journal of computational geometry & applications >Computing the Hausdorff distance between curved objects
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Computing the Hausdorff distance between curved objects

机译:计算弯曲物体之间的Hausdorff距离

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摘要

The Hausdorff distance between two sets of curves is a measure for the similarity of these objects and therefore an interesting feature in shape recognition. If the curves are algebraic computing the Hausdorff distance involves computing the intersection points of the Voronoi edges of the one set with the curves in the other. Since computing the Voronoi diagram of curves is quite difficult we characterize those points algebraically and compute them using the computer algebra system SYNAPS. This paper describes in detail which points have to be considered, by what algebraic equations they are characterized, and how they actually are computed.
机译:两组曲线之间的Hausdorff距离是这些对象相似性的量度,因此是形状识别中的一个有趣特征。如果曲线是代数计算,则Hausdorff距离涉及计算一组曲线的Voronoi边与另一条曲线的Voronoi边的交点。由于计算曲线的Voronoi图非常困难,因此我们需要对这些点进行代数表征,然后使用计算机代数系统SYNAPS对其进行计算。本文详细描述了必须考虑的点,它们通过哪些代数方程式以及如何实际计算它们。

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