Approximate tree matching and shape similarity

Tyng-Luh Liu, D. Geiger
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引用次数: 164

Abstract

We present a framework for 2D shape contour (silhouette) comparison that can account for stretchings, occlusions and region information. Topological changes due to the original 3D scenarios and articulations are also addressed. To compare the degree of similarity between any two shapes, our approach is to represent each shape contour with a free tree structure derived from a shape axis (SA) model, which we have recently proposed. We then use a tree matching scheme to find the best approximate match and the matching cost. To deal with articulations, stretchings and occlusions, three local tree matching operations, merge, cut, and merge-and-cut, are introduced to yield optimally approximate matches, which can accommodate not only one-to-one but many-to-many mappings. The optimization process gives guaranteed globally optimal match efficiently. Experimental results on a variety of shape contours are provided.
近似树匹配和形状相似
我们提出了一个可以考虑拉伸、遮挡和区域信息的二维形状轮廓(轮廓)比较框架。由于原始3D场景和关节的拓扑变化也被解决。为了比较任意两个形状之间的相似程度,我们的方法是用我们最近提出的形状轴(SA)模型派生的自由树结构来表示每个形状轮廓。然后,我们使用树匹配方案来找到最佳近似匹配和匹配成本。为了处理衔接、拉伸和闭塞,引入了三个局部树匹配操作,合并、切割和合并-切割,以产生最优的近似匹配,不仅可以适应一对一的映射,还可以适应多对多的映射。优化过程有效地保证了全局最优匹配。给出了各种形状轮廓的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
16.50
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0.00%
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