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General-Dimensional Constrained Delaunay and Constrained Regular Triangulations, I: Combinatorial Properties

机译:通用尺寸约束Delaunay和约束规则三角剖分,I:组合性质

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Two-dimensional constrained Delaunay triangulations are geometric structures that are popular for interpolation and mesh generation because they respect the shapes of planar domains, they have “nicely shaped” triangles that optimize several criteria, and they are easy to construct and update. The present work generalizes constrained Delaunay triangulations (CDTs) to higher dimensions and describes constrained variants of regular triangulations, here christened weighted CDTs and constrained regular triangulations. CDTs and weighted CDTs are powerful and practical models of geometric domains, especially in two and three dimensions. The main contributions are rigorous, theory-tested definitions of CDTs and piecewise linear complexes (geometric domains that incorporate nonconvex faces with “internal” boundaries), a characterization of the combinatorial properties of CDTs and weighted CDTs (including a generalization of the Delaunay Lemma), the proof of several optimality properties of CDTs when they are used for piecewise linear interpolation, and a simple and useful condition that guarantees that a domain has a CDT. These results provide foundations for reasoning about CDTs and proving the correctness of algorithms. Later articles in this series discuss algorithms for constructing and updating CDTs.
机译:二维约束Delaunay三角剖分是一种几何结构,因其遵循平面域的形状,具有“精巧的”三角形,可以优化多个条件,并且易于构造和更新,因此在插值和网格生成中很流行。本工作将约束的Delaunay三角剖分(CDT)推广到更高的维度,并描述了规则三角剖分的约束变体,这里称为加权CDT和约束规则三角剖分。 CDT和加权CDT是几何域的强大而实用的模型,尤其是在二维和三维中。主要贡献是对CDT和分段线性复合物(包含具有“内部”边界的非凸面的几何域)进行了严格的,经过理论检验的定义,对CDT和加权CDT的组合性质进行了表征(包括Delaunay Lemma的概括) ,CDT用于分段线性插值时的几种最优性质的证明,以及保证域具有CDT的简单有用的条件。这些结果为推理CDT和证明算法的正确性提供了基础。本系列后面的文章讨论了构造和更新CDT的算法。

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