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A fast modal space transform for robust nonrigid shape retrieval

机译:快速模式空间变换,用于鲁棒的非刚性形状检索

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Nonrigid or deformable 3D objects are common in many application domains. Retrieval of such objects in large databases based on shape similarity is still a challenging problem. In this paper, we take advantages of functional operators as characterizations of shape deformation, and further propose a framework to design novel shape signatures for encoding nonrigid geometries. Our approach constructs a context-aware integral kernel operator on a manifold, then applies modal analysis to map this operator into a low-frequency functional representation, called fast functional transform, and finally computes its spectrum as the shape signature. In a nutshell, our method is fast, isometry-invariant, discriminative, smooth and numerically stable with respect to multiple types of perturbations. Experimental results demonstrate that our new shape signature for nonrigid objects can outperform all methods participating in the nonrigid track of the SHREC'11 contest. It is also the second best performing method in the real human model track of SHREC'14.
机译:非刚性或可变形的3D对象在许多应用领域中都很常见。基于形状相似性在大型数据库中检索此类对象仍然是一个难题。在本文中,我们利用功能算子的优势来表征形状变形,并进一步提出了一个框架,以设计新颖的形状特征来编码非刚性几何形状。我们的方法在流形上构造一个上下文感知的积分内核算子,然后应用模态分析将该算子映射为低频函数表示(称为快速函数变换),最后计算其频谱作为形状签名。简而言之,对于多种类型的摄动,我们的方法是快速,等距不变,可判别,平滑且在数值上稳定的。实验结果表明,我们针对非刚性物体的新形状签名可以胜过参与SHREC'11竞赛非刚性轨道的所有方法。它也是SHREC'14的真实人类模型轨迹中表现第二好的方法。

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