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首页> 外文期刊>Pattern Recognition: The Journal of the Pattern Recognition Society >Normal vector and winding number in 2D digital images with their application for hole detection
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Normal vector and winding number in 2D digital images with their application for hole detection

机译:二维数字图像中的法向矢量和绕组数及其在孔洞检测中的应用

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摘要

Differentiating hole from component is an important issue in digital topology. In a recent paper, Lee, Poston, and Rosenfeld proposed a method to distinguish external and internal boundaries in 2D and 3D images relying on the property of normal vector and winding number. The method uses a smoothing function to replace digital lattice for calculating normal vector on image boundary. In this paper, we show that normal vector and winding number can be defined directly in 2D digital images and used for hole detection without resorting to any smoothing operation. We analyze first the discontinuity of Freeman codes of contour and prove its properties. We define then outward normal vector in 2D images and demonstrate also its discontinuity properties. The difficulty of counting the transition of normal vector in a given direction is analyzed and a solution is proposed. Based on the theoretic properties of edge code and normal vector, we propound the first algorithm to count the transitions of normal vector in a given direction, and consequently holes and external contours can be distinguished easily. We further define winding number directly in digital images, show its properties, and propose a second algorithm implementing the idea of winding number which is conceptually simpler and easier than the first one. A proof of correctness of our both algorithms is given and computation results are presented. (C) 2003 Published by Elsevier Science Ltd on behalf of Pattern Recognition Society. [References: 17]
机译:区分孔与组件是数字拓扑中的重要问题。 Lee,Poston和Rosenfeld在最近的论文中提出了一种依靠法向矢量和绕数的特性来区分2D和3D图像的内部和外部边界的方法。该方法使用平滑函数来代替数字晶格,以计算图像边界上的法向矢量。在本文中,我们表明可以在2D数字图像中直接定义法向矢量和绕线数,而无需借助任何平滑操作即可将其用于孔检测。我们首先分析轮廓的Freeman码的不连续性并证明其性质。然后,我们在2D图像中定义向外的法向矢量,并演示其不连续性。分析了在给定方向上计算法向矢量过渡的难度,并提出了解决方案。基于边缘码和法向矢量的理论性质,我们提出了第一种算法来计算法向矢量在给定方向上的跃迁,从而可以容易地区分孔和外部轮廓。我们进一步直接在数字图像中定义绕线数,显示其属性,并提出第二种算法来实现绕线数的概念,该算法在概念上比第一种更简单。给出了两种算法的正确性证明,并给出了计算结果。 (C)2003由Elsevier Science Ltd代表模式识别协会出版。 [参考:17]

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