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Surface classification using conformal structures

机译:使用保形结构进行表面分类

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3D surface classification is a fundamental problem in computer vision and computational geometry. Surfaces can be classified by different transformation groups. Traditional classification methods mainly use topological transformation groups and Euclidean transformation groups. We introduce a novel method to classify surfaces by conformal transformation groups. Conformal equivalent class is refiner than topological equivalent class and coarser than isometric equivalent class, making it suitable for practical classification purposes. For general surfaces, the gradient fields of conformal maps form a vector space, which has a natural structure invariant under conformal transformations. We present an algorithm to compute this conformal structure, which can be represented as matrices, and use it to classify surfaces. The result is intrinsic to the geometry, invariant to triangulation and insensitive to resolution. To the best of our knowledge, this is the first paper to classify surfaces with arbitrary topologies by global conformal invariants. The method introduced here can also be used for surface matching problems.
机译:3D表面分类是计算机视觉和计算几何中的一个基本问题。曲面可以由不同的转换组分类。传统的分类方法主要使用拓扑转化组和欧几里德转型组。我们介绍一种通过共形转换组对表面进行分类的新方法。保形等同类是拓扑等同类和比等距等距类别粗糙的炼油厂,使其适用于实际分类目的。对于一般表面,保形图的梯度场形成矢量空间,其在保形变换下具有自然结构不变。我们提出了一种计算这种共形结构的算法,可以表示为矩阵,并将其用于对表面进行分类。结果是几何形状的内在,不变于三角测量并对分辨率不敏感。据我们所知,这是第一个通过全球共形不变性对任意拓扑曲线进行分类的论文。这里介绍的方法也可用于表面匹配问题。

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