A Novel Stretch Energy Minimization Algorithm for Equiareal Parameterizations
August 05, 2017 Β· Declared Dead Β· π Journal of Scientific Computing
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Authors
Mei-Heng Yueh, Wen-Wei Lin, Chin-Tien Wu, Shing-Tung Yau
arXiv ID
1708.07391
Category
cs.GR: Graphics
Cross-listed
cs.CG
Citations
40
Venue
Journal of Scientific Computing
Last Checked
6 months ago
Abstract
Surface parameterizations have been widely applied to computer graphics and digital geometry processing. In this paper, we propose a novel stretch energy minimization (SEM) algorithm for the computation of equiareal parameterizations of simply connected open surfaces with a very small area distortion and a highly improved computational efficiency. In addition, the existence of nontrivial limit points of the SEM algorithm is guaranteed under some mild assumptions of the mesh quality. Numerical experiments indicate that the efficiency, accuracy, and robustness of the proposed SEM algorithm outperform other state-of-the-art algorithms. Applications of the SEM on surface remeshing and surface registration for simply connected open surfaces are demonstrated thereafter. Thanks to the SEM algorithm, the computations for these applications can be carried out efficiently and robustly.
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