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Principal Curvature Guided Surface Geometry Aware Global Shape Representation

机译:主曲率引导的曲面几何感知全局形状表示

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A surface principal curvature preserving local geometry aware global shape representation for 3D shapes is proposed. The shape representation computes the shortest quasi-geodesic path between all possible pairs of points on the shape manifold that enforces minimal variation of geodesic curvature along the path. The normal component of the principal curvature along the quasi-geodesic paths is dominant and shown to preserve the local shape geometry. The eigenspectrum of the proposed representation is exploited to characterize self-symmetry. The commutative property between shape spectra is exploited to compute region-based correspondence between isometric 3D shapes without requiring an initial correspondence map to be specified a priori. The results of the region-based correspondence are extended to characterize the compatibility of the commutative eigen-spectrum in order to address the problem of shape deformation transfer. Eigenspectrum-based characterization metrics are proposed to quantify the performance of the proposed 3D shape descriptor for self-symmetry detection and correspondence determination. The proposed shape descriptor spectrum-based optimization criterion is observed to yield competitive performance compared to relevant state-of-the-art correspondence determination techniques.
机译:提出了一种表面主曲率保持3D形状的局部几何感知全局形状表示方法。形状表示计算形状流形上所有可能的点对之间的最短准大地测量路径,该路径强制使测地曲率沿该路径的变化最小。沿着准大地路径的主曲率的法向分量占主导地位,并显示为保留了局部形状的几何形状。利用提出的表示的本征谱来表征自对称。形状谱之间的可交换属性可用于计算等距3D形状之间基于区域的对应关系,而无需事先指定初始对应关系图。扩展了基于区域的对应结果,以表征可交换特征谱的兼容性,从而解决了形状变形传递的问题。提出了基于电子频谱的特征度量,以量化提出的3D形状描述符的性能,以进行自对称检测和对应确定。与相关的最新对应确定技术相比,观察到了基于形状描述符频谱的优化标准,可产生竞争性能。

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