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首页> 外文期刊>ACM Transactions on Graphics >Dual Domain Extrapolation
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Dual Domain Extrapolation

机译:双域外推

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摘要

Shape optimization and surface fairing for polygon meshes have been active research areas for the last few years. Existing approaches either require the border of the surface to be fixed, or are only applicable to closed surfaces. In this paper, we propose a new approach, that computes natural boundaries. This makes it possible not only to smooth an existing geometry, but also to extrapolate its shape beyond the existing border. Our approach is based on a global parameterization of the surface and on a minimization of the squared curvatures, discretized on the edges of the surface. The so-constructed surface is an approximation of a minimal energy surface (MES). Using a global parameterization makes it possible to completely decouple the outer fairness (surface smoothness) from the inner fairness (mesh quality). In addition, the parameter space provides the user with a new means of controlling the shape of the surface. When used as a geometry filter, our approach computes a smoothed mesh that is discrete conformal to the original one. This allows smoothing textured meshes without introducing distortions.
机译:过去几年来,多边形网格的形状优化和曲面修整一直是活跃的研究领域。现有方法要么需要固定曲面的边界,要么仅适用于封闭曲面。在本文中,我们提出了一种计算自然边界的新方法。这样不仅可以平滑现有几何图形,而且可以将其形状外推到现有边界之外。我们的方法基于曲面的全局参数化和曲面曲率离散的平方曲率的最小化。如此构造的表面是最小能量表面(MES)的近似值。使用全局参数化可以完全将外部平整度(表面光滑度)与内部平整度(网格质量)分离。另外,参数空间为用户提供了控制表面形状的新手段。当用作几何过滤器时,我们的方法会计算平滑的网格,该网格与原始网格离散保形。这样可以平滑纹理化的网格而不会引起变形。

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