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首页> 外文期刊>Pattern Analysis and Machine Intelligence, IEEE Transactions on >Shape Analysis of Planar Multiply-Connected Objects Using Conformal Welding
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Shape Analysis of Planar Multiply-Connected Objects Using Conformal Welding

机译:平面多重连接物体的保形焊接形状分析

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摘要

Shape analysis is a central problem in the field of computer vision. In 2D shape analysis, classification and recognition of objects from their observed silhouettes are extremely crucial but difficult. It usually involves an efficient representation of 2D shape space with a metric, so that its mathematical structure can be used for further analysis. Although the study of 2D simply-connected shapes has been subject to a corpus of literatures, the analysis of multiply-connected shapes is comparatively less studied. In this work, we propose a representation for general 2D multiply-connected domains with arbitrary topologies using conformal welding. A metric can be defined on the proposed representation space, which gives a metric to measure dissimilarities between objects. The main idea is to map the exterior and interior of the domain conformally to unit disks and circle domains (unit disk with several inner disks removed), using holomorphic 1-forms. A set of diffeomorphisms of the unit circle (mathbb {S}^{1}) can be obtained, which together with the conformal modules are used to define the shape signature. A shape distance between shape signatures can be defined to measure dissimilarities between shapes. We prove theoretically that the proposed shape signature uniquely determines the multiply-connected objects under suitable normalization. We also introduce a reconstruction algorithm to obtain shapes from their signatures. This completes our framework and allows us to move back and forth between shapes and signatures. With that, a morphing algorithm between shapes can be developed through the interpolation of the Beltrami coefficients associated with the signatures. Experiments have been carried out on shapes extracted from real images. Results demonstrate the efficacy of our proposed algorithm as a stable shape representation scheme.
机译:形状分析是计算机视觉领域的核心问题。在2D形状分析中,从观察到的轮廓中对对象进行分类和识别非常关键,但很困难。它通常涉及带有度量的2D形状空间的有效表示,因此其数学结构可用于进一步分析。尽管对2D简单连接形状的研究已经受到了文献的研究,但是对多重连接形状的分析的研究相对较少。在这项工作中,我们建议使用保形焊接来表示具有任意拓扑的一般2D多重连接域。可以在提议的表示空间上定义度量,该度量提供度量对象之间差异的度量。主要思想是使用全纯1形式将域的外部和内部映射到单位磁盘和圆形域(已删除多个内部磁盘的单位磁盘)。可以获得单位圆的一组变态(mathbb {S} ^ {1}),将其与保形模块一起用于定义形状签名。可以定义形状签名之间的形状距离以测量形状之间的差异。我们从理论上证明,提出的形状签名在适当的归一化条件下唯一确定了多重连接的对象。我们还介绍了一种重构算法,可从其签名中获取形状。这样就完善了我们的框架,并允许我们在形状和签名之间来回移动。这样,可以通过内插与签名相关的Beltrami系数来开发形状之间的变形算法。已经对从真实图像中提取的形状进行了实验。结果证明了我们提出的算法作为稳定的形状表示方案的功效。

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