Stretch-based tetrahedral mesh manipulation

Wenhao Song, Ligang Liu
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引用次数: 7

Abstract

We present a novel least scaling distortion metric to measure the deformation distortion for tetrahedral meshes. The stretch-like metric is a combination of Jacobian matrix norm and tetrahedron volume and has the properties of good shape preservation and rotation invariance. Based on our metric, we propose a uniform non-linear optimization solution to a variety of tetrahedral mesh manipulation applications including shape deformation, interpolation, deformation transfer, and deformation learning. Our approach can produce volume preserving and flip free tetrahedral mesh results, which performs much better than the previous tetrahedral manipulation approaches. We also demonstrate an efficient and practical application using free-form deformation technique. The object is embedded in a rough control tetrahedral mesh and deformed by editing the tetrahedral mesh with various constraints. Each vertex of the object can be obtained by its barycentric coordinates according to its embedding tetrahedron of the control tetrahedral mesh.
基于拉伸的四面体网格操作
提出了一种新的最小尺度变形度量来测量四面体网格的变形变形。类拉伸度规是雅可比矩阵范数与四面体体积的结合,具有良好的形状保持和旋转不变性。基于我们的度量,我们提出了一个统一的非线性优化解决方案,用于各种四面体网格操作应用,包括形状变形,插值,变形传递和变形学习。我们的方法可以产生体积保持和无翻转的四面体网格结果,比以前的四面体操作方法性能好得多。我们还演示了使用自由变形技术的有效和实际应用。将目标嵌入到粗糙控制四面体网格中,并在约束条件下对四面体网格进行编辑。根据控制四面体网格的嵌入四面体,可以得到目标的每个顶点的质心坐标。
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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