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A Shape Feature Based Simplification Method for Deforming Meshes

机译:基于形状特征的变形网格简化方法

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Although deforming surfaces are frequently used in numerous domains, only few works have been proposed until now for simplifying such data. In this paper, we propose a new method for generating progressive deforming meshes based on shape feature analysis and deformation area preservation. By computing the curvature and torsion of each vertex in the original model, we add the shape feature factor to its quadric error metric when calculating each QEM edge collapse cost. In order to preserve the areas with large deformation, we add deformation degree weight to the aggregated quadric errors when computing the unified edge contraction sequence. Finally, the edge contraction order is slightly adjusted to further reduce the geometric distortion for each frame. Our approach is fast, easy to implement, and as a result good quality dynamic approximations with well-preserved fine details can be generated at any given frame.
机译:虽然在许多域中经常使用变形表面,但是现在仅提出了少量作品,以简化这些数据。在本文中,我们提出了一种基于形状特征分析和变形区域保存产生逐行变形网格的新方法。通过计算原始模型中每个顶点的曲率和扭转,我们在计算每个QEM边缘塌陷成本时,将形状特征因子添加到其Quadic误差度量。为了保持具有大变形的区域,在计算统一边缘收缩序列时,我们将变形程度重量添加到聚合的Quadic误差。最后,稍微调整边缘收缩阶以进一步降低每个帧的几何失真。我们的方法是快速,易于实现的,因此可以在任何给定帧处产生具有良好保存的精细细节的良好质量动态近似。

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