迭代最小二乘共形映射的交叉曲面局部编辑

Donya Ghafourzadeh, Srinivasan Ramachandran, Martin de Lasa, T. Popa, Eric Paquette
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引用次数: 1

摘要

在本文中,我们提出了一种新的方法,通过局部细化来改善给定的表面映射。该方法接收两个表面之间已建立的映射,并经过四个阶段:(i)检查映射并在不匹配区域中创建稀疏的地标集;(ii)基于平坦化被分割部分的低失真区域增长过程进行分割;(iii)优化被分割部件的变形,使其在平面参数化域内与地标对齐;(四)对来自片段的映射进行聚合,更新表面映射。此外,我们提出了一种新的方法来变形网格,以满足约束(在我们的情况下,阶段(iii)的地标对齐)。我们增量地调整约束的余切权值,并以一种方式应用变形,以保证变形的网格不会有翻转面,并且具有低保形失真。我们的新变形方法,迭代最小二乘共形映射(ILSCM),优于其他低变形变形方法。该方法具有通用性,并通过改进不同表面映射方法的映射对其进行了测试。我们还通过编辑各种3D对象的映射来测试其有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Local Editing of Cross-Surface Mappings with Iterative Least Squares Conformal Maps
In this paper, we propose a novel approach to improve a given surface mapping through local refinement. The approach receives an established mapping between two surfaces and follows four phases: (i) inspection of the mapping and creation of a sparse set of landmarks in mismatching regions; (ii) segmentation with a low-distortion region-growing process based on flattening the segmented parts; (iii) optimization of the deformation of segmented parts to align the landmarks in the planar parameterization domain; and (iv) aggregation of the mappings from segments to update the surface mapping. In addition, we propose a new approach to deform the mesh in order to meet constraints (in our case, the landmark alignment of phase (iii)). We incrementally adjust the cotangent weights for the constraints and apply the deformation in a fashion that guarantees that the deformed mesh will be free of flipped faces and will have low conformal distortion. Our new deformation approach, Iterative Least Squares Conformal Mapping (ILSCM), outperforms other low-distortion deformation methods. The approach is general, and we tested it by improving the mappings from different existing surface mapping methods. We also tested its effectiveness by editing the mappings for a variety of 3D objects.
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CiteScore
2.20
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