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Subdivision surface fitting for efficient compression and coding of 3D models

机译:细分曲面拟合,可对3D模型进行有效压缩和编码

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摘要

In this paper we present a new framework, based on subdivision surface fitting, for high rate compression and coding of 3D models. Our algorithm fits the input 3D model, represented by a polygonal mesh, with a piecewise smooth subdivision surface represented by a coarse control polyhedron. Our fitting scheme, particularly suited for meshes issued from mechanical or CAD parts, aims at getting close to the optimality in terms of control points number, while remaining independent of the connectivity of the input mesh. The found subdivision control polyhedron is much more compact than the original mesh and visually represents the same shape after several subdivision steps, without artifacts or cracks, like traditional lossy compression schemes. This control polyhedron is then encoded specifically to give the final compressed stream. Experiments conducted on several 3D models have proven the coherency and the efficiency of our framework, compared with existing compression methods.
机译:在本文中,我们提出了一种基于细分曲面拟合的新框架,用于3D模型的高速率压缩和编码。我们的算法将由多边形网格表示的输入3D模型与由粗糙控制多面体表示的分段平滑细分表面拟合。我们的拟合方案特别适合于由机械零件或CAD零件发布的网格,其目的是在控制点数方面接近最佳状态,同时保持与输入网格的连通性无关。所发现的细分控制多面体比原始网格更加紧凑,并且在经过多个细分步骤后在视觉上表示相同的形状,没有伪像或裂纹,就像传统的有损压缩方案一样。然后,对该控制多面体进行特殊编码,以提供最终的压缩流。与现有的压缩方法相比,在多个3D模型上进行的实验证明了我们框架的一致性和效率。

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