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Systems and methods for optimizing geometric stretch of a parametrization scheme

机译:用于优化参数化方案的几何拉伸的系统和方法

摘要

Systems and methods are provided for optimizing the geometric stretch of a parametrization scheme. Given an arbitrary mesh, the systems and methods construct a progressive mesh (PM) such that all meshes in the PM sequence share a common texture parametrization. The systems and methods minimize geometric stretch, i.e., small texture distances mapped onto large surface distances, to balance sampling rates over all locations and directions on the surface. The systems and methods also minimize texture deviation, i.e., “slippage” error based on parametric correspondence, to obtain accurate textured mesh approximations. The technique(s) begin by partitioning the mesh into charts using planarity and compactness heuristics. Then, the technique(s) proceed by creating a stretch-minimizing parametrization within each chart, and by resizing the charts based on the resulting stretch. Then, the technique(s) simplify the mesh while respecting the chart boundaries. Next, the parametrization is re-optimized to reduce both stretch and deviation over the whole PM sequence. The charts may then be packed into a texture atlas for improved texture mapping in connection with a parametrization scheme.
机译:提供了用于优化参数化方案的几何拉伸的系统和方法。在给定任意网格的情况下,该系统和方法构造一个渐进网格(PM),以使PM序列中的所有网格共享相同的纹理参数。该系统和方法使几何拉伸最小化,即,将较小的纹理距离映射到较大的表面距离,以平衡表面上所有位置和方向的采样率。该系统和方法还最小化纹理偏差,即基于参数对应的“滑移”误差,以获得精确的纹理网格近似。该技术首先使用平面度和紧密度启发式方法将网格划分为图表。然后,通过在每个图表内创建最小化拉伸的参数化,并根据生成的拉伸来调整图表的大小来进行技术。然后,该技术简化了网格,同时考虑了图表边界。接下来,重新优化参数设置,以减少整个PM序列的拉伸和偏差。然后可以将图表打包到纹理图集中,以结合参数化方案改进纹理映射。

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