网格参数化与本征三角剖分的结合

IF 2.7 4区 计算机科学 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING Computer Graphics Forum Pub Date : 2024-07-31 DOI:10.1111/cgf.15134
Koray Akalin, Ugo Finnendahl, Olga Sorkine-Hornung, Marc Alexa
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引用次数: 0

摘要

三角形网格的参数化是指在平面上实现所有三角形的正符号面积。三角形网格参数化通常是通过最小化变形能来计算的,测量三角形映射到参数域时的变形。假定三角剖分是固定的,三角形是仿射映射的。我们考虑了一种更普遍的设置,并在片断线性输入几何图形的固有三角剖分中进行了额外优化。这意味着对相同的几何体计算扭曲能量,但可能的参数化空间扩大了。为了最小化扭曲能量,我们建议交替改变顶点的参数位置和内在翻转。我们的研究表明,这一过程可以改善不同失真能量下的映射效果,而所需的额外成本并不高。我们还发现固有三角剖分是优化位置的更好起点,在完全优化方法和利用固有三角剖分的额外自由度之间提供了一种折中方案。
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Mesh Parameterization Meets Intrinsic Triangulations

A parameterization of a triangle mesh is a realization in the plane so that all triangles have positive signed area. Triangle mesh parameterizations are commonly computed by minimizing a distortion energy, measuring the distortions of the triangles as they are mapped into the parameter domain. It is assumed that the triangulation is fixed and the triangles are mapped affinely. We consider a more general setup and additionally optimize among the intrinsic triangulations of the piecewise linear input geometry. This means the distortion energy is computed for the same geometry, yet the space of possible parameterizations is enlarged. For minimizing the distortion energy, we suggest alternating between varying the parameter locations of the vertices and intrinsic flipping. We show that this process improves the mapping for different distortion energies at moderate additional cost. We also find intrinsic triangulations that are better starting points for the optimization of positions, offering a compromise between the full optimization approach and exploiting the additional freedom of intrinsic triangulations.

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来源期刊
Computer Graphics Forum
Computer Graphics Forum 工程技术-计算机:软件工程
CiteScore
5.80
自引率
12.00%
发文量
175
审稿时长
3-6 weeks
期刊介绍: Computer Graphics Forum is the official journal of Eurographics, published in cooperation with Wiley-Blackwell, and is a unique, international source of information for computer graphics professionals interested in graphics developments worldwide. It is now one of the leading journals for researchers, developers and users of computer graphics in both commercial and academic environments. The journal reports on the latest developments in the field throughout the world and covers all aspects of the theory, practice and application of computer graphics.
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