Curvature-Constrained Feature Graph Extraction

Li-ru Han
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Abstract

this paper proposes a shape descriptor with a feature graph to highlight both topological structure and geometric features of 3D mesh model. Firstly, the geodesic distance for the computation of an invariant mapping function on a 3D mesh model is adopted to obtain a Reeb graph (RG) skeleton. Secondly, discrete curvature values on the mesh vertices are analyzed to detect the topological changes and to specify the articulated details. Finally, new nodes denoting the articulation features are extracted and used for adaptively updating the original Reeb graph. The enhanced feature graph provides an affine-invariant and visually meaningful skeleton of arbitrary topological shape in a reasonable execution time. A series of experiments has been implemented and shown the robustness and efficiency of the proposed algorithm.
曲率约束特征图提取
为了突出三维网格模型的拓扑结构和几何特征,提出了一种带有特征图的形状描述符。首先,采用计算三维网格模型上不变映射函数的测地线距离,得到Reeb图(RG)骨架;其次,分析网格顶点上的离散曲率值,检测拓扑变化并指定铰接细节;最后,提取表示铰接特征的新节点并用于自适应更新原始Reeb图。增强的特征图在合理的执行时间内提供了任意拓扑形状的仿射不变且具有视觉意义的骨架。一系列的实验结果表明了该算法的鲁棒性和有效性。
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