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Biorthogonal Wavelet Construction For Hybrid Quad/triangle Meshes

机译:混合四边形/三角形网格的双正交小波构造

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Ever since its introduction by Stam and Loop, the quad/triangle subdivision scheme, which is a generalization of the well-known Catmull-Clark subdivision and Loop subdivision, has attracted a great deal of interest due to its flexibility of allowing both quads and triangles in the same model. In this paper, we present a novel biorthogonal wavelet-constructed through the lifting scheme-that accommodates the quad/triangle subdivision. The introduced wavelet smoothly unifies the Catmull-Clark subdivision wavelet (for quadrilateral meshes) and the Loop subdivision wavelet (for triangular meshes) in a single framework. It can be used to flexibly and efficiently process any complicated semi-regular hybrid meshes containing both quadrilateral and triangular regions. Because the analysis and synthesis algorithms of the wavelet are composed of only local lifting operations allowing fully in-place calculations, they can be performed in linear time. The experiments demonstrate sufficient stability and fine fitting quality of the presented wavelet, which are similar to those of the Catmull-Clark subdivision wavelet and the Loop subdivision wavelet. The wavelet analysis can be used in various applications, such as shape approximation, progressive transmission, data compression and multiresolution edit of complex models.
机译:自从Stam和Loop引入以来,四角/三角形细分方案是著名的Catmull-Clark细分和Loop细分的概括,由于其允许四边形和三角形的灵活性而引起了极大的兴趣在同一模型中。在本文中,我们提出了一种通过提升方案构造的新颖的双正交小波,它可以容纳四边形/三角形细分。引入的小波在单个框架中将Catmull-Clark细分小波(用于四边形网格)和Loop细分小波(用于三角形网格)平滑地统一在一起。它可用于灵活而有效地处理包含四边形和三角形区域的任何复杂的半规则混合网格。由于小波的分析和综合算法仅由局部提升操作组成,因此可以进行完全就地计算,因此可以在线性时间内执行。实验表明,所提小波具有足够的稳定性和良好的拟合质量,与Catmull-Clark细分小波和Loop细分小波的相似。小波分析可用于各种应用中,例如形状近似,渐进传输,数据压缩和复杂模型的多分辨率编辑。

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