局部和非局部制导耦合表面变形

Yufeng Tang, Dongqing Zou, Jianwei Li, Xiaowu Chen
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引用次数: 4

摘要

提出了一种基于局部和非局部制导的三维形状曲面变形方法。在保持全局形状和局部属性的同时变形网格是很重要的。以往的方法一般是根据局部几何亲和力对曲面进行变形,从而导致局部和全局形状畸变等伪影。相反,我们的方法使用局部线性嵌入(LLE)来构建几何特征空间中每个顶点及其非局部邻居的非局部关系,并使用众所周知的局部邻域相干性来表示局部关系。然后,我们将这两个局部和非局部制导耦合在一起,在保持这两种关系的同时将局部变形传播到整个表面。非局部制导本质上保持了整体形状,局部制导保持了局部特性,两者在传播变形时是互补的。我们的方法可以扩展到网格合并。在不同模型上的实验结果证明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Local and nonlocal guidance coupled surface deformation
This paper presents a novel 3D shape surface deformation method with local and nonlocal guidance. It is important to deform a mesh while preserving the global shape and local properties. Previous methods generally deform a surface according to the local geometric affinity, which leads to artifacts such as local and global shape distortion. Instead, our approach uses the locally linear embedding (LLE) to construct the nonlocal relationship for each vertex and its nonlocal neighbors in a geometric feature space, and uses a well known local neighborhood coherence to represent the local relationship. We then couple these two local and nonlocal guidance together to propagate the local deformation over the whole surface while maintaining these two relationships. The nonlocal guidance essentially preserves the global shape and the local guidance maintains the local properties, and these two guidance complements each other when propagating the deformation. Our method can be extended for mesh merging. Experimental results on various models demonstrate the effectiveness of our method.
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