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A unified approach towards computing Voronoi diagram, medial axis, Delaunay graph and a-hull of planar closed curves using touching discs

机译:使用触摸盘计算Voronoi图,内侧轴,DELAUNAIG图和平面闭曲线的A-HULL的统一方法

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This paper proposes a unified approach towards computing geometry structures viz. Voronoi diagram, medial axis, Delaunay graph and alpha-hull of planar closed curves. It initially presents an algorithm for computing the Voronoi diagram of a set of planar freeform closed curves without approximating the curves using points, lines or biarcs. The algorithm starts by computing the minimum antipodal discs (MADs) for all pairs of curves and these MADs are systematically processed to identify all branch points. The key feature of the algorithm is that it computes a branch point without computing any of the bisectors a priori. Local computations of Voronoi segments are then done using the identified pairs of the segments of curves. The theoretical foundation of the algorithm has been first laid for a set of convex curves and then extended to non-convex curves. It has also been shown that the developed algorithm for the Voronoi diagram can also be used to compute related structures such as medial axis, Delaunay graph and alpha-hull. They have also been addressed without computing Voronoi edges/segments. Results of the implementation have been provided along with a detailed discussion of the algorithm. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出了一种统一的计算几何结构viz的方法。 voronoi图,内侧轴,delaunay图和平面封闭曲线的alpha-hull。它最初提出了一种用于计算一组平面自由形式闭合曲线的Voronoi图的算法,而无需近似使用点,线路或比亚铁。该算法通过计算所有曲线对的最小反向光盘(MAD),并系统地处理这些MAD以识别所有分支点。算法的关键特征是它计算分支点而不计算任何Bisectors a先验。然后使用曲线的段分段对voronoi段的局部计算。算法的理论基础首先铺设了一组凸曲线,然后扩展到非凸曲线。还显示,Voronoi图的发达算法也可用于计算相关结构,例如内侧轴,Delaunay图和alpha-hull。在没有计算Voronoi边缘/段的情况下也已经解决了它们。已经提供了实施的结果以及对算法的详细讨论。 (c)2020 elestvier有限公司保留所有权利。

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