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Multi-scale surface representation of point-sampled geometry

机译:点采样几何的多尺度表面表示

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摘要

With increasing complexity of 3D geometric models and growing demand for advanced modeling functionality, significant effort is being devoted to the design of efficient, reliable, and scalable algorithms for digital geometry processing. We introduce a multi-scale surface representation that enables sophisticated editing functionality at different approximation levels, using the concept of scale-space. The key issue is the interconnection between successive levels in the hierarchy. We use a fairing operator-a geometric low-pass filter to generate successively smoother approximation levels of a given input surface, and use a decomposition operator to encode each level relative to the next smoother level using normal displacements to ensure intuitive detail preservation. As a result, users can edit the surface at different approximation levels to perform coarse-scale edits on the whole model as well as very localized modifications on the surface detail.
机译:随着3D几何模型的复杂性不断提高,以及对高级建模功能的需求不断增长,人们正致力于为数字几何处理设计高效,可靠和可扩展的算法。我们引入了一个多尺度的表面表示,它使用尺度空间的概念在不同的逼近级别上实现了复杂的编辑功能。关键问题是层次结构中连续级别之间的互连。我们使用整流罩运算符-几何低通滤波器来生成给定输入表面的逐次更平滑的逼近度,并使用分解算子使用法向位移来相对于下一个更平滑的阶来编码每个级别,以确保直观的细节保留。因此,用户可以以不同的近似级别编辑曲面,以对整个模型进行粗比例编辑,以及对曲面细节进行非常局部的修改。

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