Joint optimization of distortion and cut location for mesh parameterization using an Ambrosio-Tortorelli functional

IF 1.3 4区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING Computer Aided Geometric Design Pub Date : 2023-09-01 DOI:10.1016/j.cagd.2023.102231
Colin Weill–Duflos , David Coeurjolly , Fernando de Goes , Jacques-Olivier Lachaud
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Abstract

UV mapping is a classical problem in computer graphics aiming at computing a planar parameterization of the input mesh with the lowest possible distortion while minimizing the seams length. Recent works propose optimization methods for solving these two joint problems at the same time with variational models, but they tend to be slower than other cutting methods. We present a new variational approach for this problem inspired by the Ambrosio-Tortorelli functional, which is easier to optimize than already existing methods. This functional has widely been used in image and geometry processing for anisotropic denoising and segmentation applications. The key feature of this functional is to model both regions where smoothing is applied, and the loci of discontinuities corresponding to the cuts. Our approach relies on this principle to model both the low distortion objective of the UV map, and the minimization of the seams length (sequences of mesh edges). Our method significantly reduces the distortion in a faster way than state-of-the art methods, with comparable seam quality. We also demonstrate the versatility of the approach when external constraints on the parameterization are provided (packing constraints, seam visibility).

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基于Ambrosio-Tortorelli函数的网格参数化畸变和切割位置联合优化
UV映射是计算机图形学中的一个经典问题,旨在以尽可能低的失真计算输入网格的平面参数化,同时最小化接缝长度。最近的工作提出了用变分模型同时解决这两个联合问题的优化方法,但它们往往比其他切割方法慢。受Ambrosio Tortorelli泛函的启发,我们提出了一种新的变分方法来解决这个问题,它比现有的方法更容易优化。该函数已广泛用于图像和几何处理中的各向异性去噪和分割应用。该函数的关键特征是对应用平滑的区域和与切口相对应的不连续轨迹进行建模。我们的方法依赖于这一原理来对UV贴图的低失真目标和接缝长度(网格边序列)的最小化进行建模。我们的方法以比现有技术更快的方式显著减少了失真,接缝质量相当。当提供参数化的外部约束(包装约束、接缝可见性)时,我们还展示了该方法的多功能性。
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来源期刊
Computer Aided Geometric Design
Computer Aided Geometric Design 工程技术-计算机:软件工程
CiteScore
3.50
自引率
13.30%
发文量
57
审稿时长
60 days
期刊介绍: The journal Computer Aided Geometric Design is for researchers, scholars, and software developers dealing with mathematical and computational methods for the description of geometric objects as they arise in areas ranging from CAD/CAM to robotics and scientific visualization. The journal publishes original research papers, survey papers and with quick editorial decisions short communications of at most 3 pages. The primary objects of interest are curves, surfaces, and volumes such as splines (NURBS), meshes, subdivision surfaces as well as algorithms to generate, analyze, and manipulate them. This journal will report on new developments in CAGD and its applications, including but not restricted to the following: -Mathematical and Geometric Foundations- Curve, Surface, and Volume generation- CAGD applications in Numerical Analysis, Computational Geometry, Computer Graphics, or Computer Vision- Industrial, medical, and scientific applications. The aim is to collect and disseminate information on computer aided design in one journal. To provide the user community with methods and algorithms for representing curves and surfaces. To illustrate computer aided geometric design by means of interesting applications. To combine curve and surface methods with computer graphics. To explain scientific phenomena by means of computer graphics. To concentrate on the interaction between theory and application. To expose unsolved problems of the practice. To develop new methods in computer aided geometry.
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