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Subdivision surface fitting to a dense mesh using ridges and umbilics

机译:使用脊和脐带细分表面以适合密集的网格

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Fitting a sparse surface to approximate vast dense data is of interest for many applications: reverse engineering, recognition and compression, etc. The present work provides an approach to fit a Loop subdivision surface to a dense triangular mesh of arbitrary topology, whilst preserving and aligning the original features. The natural ridge-joined connectivity of umbilics and ridge-crossings is used as the connectivity of the control mesh for subdivision, so that the edges follow salient features on the surface. Furthermore, the chosen features and connectivity characterise the overall shape of the original mesh, since ridges capture extreme principal curvatures and ridges start and end at umbilics. A metric of Hausdorff distance including curvature vectors is proposed and implemented in a distance transform algorithm to construct the connectivity. Ridge-colour matching is introduced as a criterion for edge flipping to improve feature alignment. Several examples are provided to demonstrate the feature-preserving capability of the proposed approach.
机译:拟合稀疏曲面以近似大量密集数据是许多应用程序感兴趣的:逆向工程,识别和压缩等。本工作提供了一种将Loop细分曲面拟合到任意拓扑的密集三角形网格的方法,同时保留并对齐原始功能。脐带和山脊交叉的自然的山脊连接连通性被用作细分的控制网格的连通性,因此边缘遵循曲面上的显着特征。此外,选定的特征和连通性是原始网格的整体形状的特征,因为凸脊捕获了极端的主曲率,并且凸脊在脐带处开始和结束。提出了一种包含曲率矢量的Hausdorff距离度量,并在距离变换算法中实现了该连通性。引入脊颜色匹配作为边缘翻转的标准,以改善特征对齐。提供了几个示例来演示所提出方法的特征保留能力。

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