An incremental approach to feature aligned quad dominant remeshing

Yu-Kun Lai, L. Kobbelt, Shimin Hu
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引用次数: 62

Abstract

In this paper we present a new algorithm which turns an unstructured triangle mesh into a quad-dominant mesh with edges aligned to the principal directions of the underlying geometry. Instead of computing a globally smooth parameterization or integrating curvature lines along a tangent vector field, we simply apply an iterative relaxation scheme which incrementally aligns the mesh edges to the principal directions. The quad-dominant mesh is eventually obtained by dropping the not-aligned diagonals from the triangle mesh. A post-processing stage is introduced to further improve the results. The major advantage of our algorithm is its conceptual simplicity since it is merely based on elementary mesh operations such as edge collapse, flip, and split. The resulting meshes exhibit a very good alignment to surface features and rather uniform distribution of mesh vertices. This makes them very well-suited, e.g., as Catmull-Clark Subdivision control meshes.
特征对齐四主导重划分的增量方法
本文提出了一种将非结构化三角形网格转化为边缘与底层几何主方向对齐的四主导网格的新算法。代替计算全局光滑参数化或沿切向量场积分曲率线,我们简单地应用迭代松弛方案,使网格边缘增量对齐到主方向。通过从三角形网格中去掉未对齐的对角线,最终得到四主导网格。为了进一步改善结果,引入了后处理阶段。我们的算法的主要优点是它的概念简单,因为它仅仅基于基本的网格操作,如边缘折叠,翻转和分裂。所得到的网格与表面特征的对齐非常好,网格顶点分布相当均匀。这使得它们非常适合,例如,作为Catmull-Clark细分控制网格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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