具有低失真的全局光滑参数化

A. Khodakovsky, Nathan Litke, P. Schröder
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引用次数: 225

摘要

在许多数字几何处理任务中,良好的参数化是至关重要的。通常,这种处理算法的行为与参数化的平滑度和它包含的失真程度有关。由于参数化将平面的有界区域映射到曲面,因此非同胚曲面的参数化必须由多个部分组成。提出了一种适用于任意拓扑曲面网格的参数化算法,该算法可以计算出低失真的全局光滑参数化。我们根据形状质量和度量失真等标准来优化贴片布局,这些标准用于指导基础复杂结构的网格简化方法。全局平滑是通过在所有补丁上同时松弛来实现的,在松弛过程中包含了补丁之间合适的过渡函数。我们通过对畸变度量的数值评估和用这些参数化产生的半规则网格的优异速率畸变性能来证明我们的参数化的质量。计算参数化所需的数值算法具有鲁棒性,即使对于大型网格,也可以在几分钟内运行。
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Globally smooth parameterizations with low distortion
Good parameterizations are of central importance in many digital geometry processing tasks. Typically the behavior of such processing algorithms is related to the smoothness of the parameterization and how much distortion it contains. Since a parameterization maps a bounded region of the plane to the surface, a parameterization for a surface which is not homeomorphic to a disc must be made up of multiple pieces. We present a novel parameterization algorithm for arbitrary topology surface meshes which computes a globally smooth parameterization with low distortion. We optimize the patch layout subject to criteria such as shape quality and metric distortion, which are used to steer a mesh simplification approach for base complex construction. Global smoothness is achieved through simultaneous relaxation over all patches, with suitable transition functions between patches incorporated into the relaxation procedure. We demonstrate the quality of our parameterizations through numerical evaluation of distortion measures and the excellent rate distortion performance of semi-regular remeshes produced with these parameterizations. The numerical algorithms required to compute the parameterizations are robust and run on the order of minutes even for large meshes.
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Session details: Modeling and simplification Session details: Points Session details: Shadows Session details: Character animation Session details: Design and depiction
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