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首页> 外文期刊>Pattern Recognition: The Journal of the Pattern Recognition Society >TOWARDS EFFECTIVE PLANAR SHAPE REPRESENTATION WITH MULTISCALE DIGITAL CURVATURE ANALYSIS BASED ON SIGNAL PROCESSING TECHNIQUES
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TOWARDS EFFECTIVE PLANAR SHAPE REPRESENTATION WITH MULTISCALE DIGITAL CURVATURE ANALYSIS BASED ON SIGNAL PROCESSING TECHNIQUES

机译:基于信号处理技术的多尺度数字曲率分析有效的平面形状表示

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摘要

This paper presents and discusses a new approach to multiscale curvature analysis of digital contours that is based on digital signal processing techniques. The shape contour is expressed in terms of two one-dimensional signals (linearized x- and y-coordinates) and the derivative theorem is applied as a means of obtaining an interesting expression relating contour curvature and the spectra of its parametrized x- and y-signals. Multiscale curvature analysis is achieved through Gaussian lowpass filtering and the ''shrinkage'' of the original signals implied by such a process is effectively circumvented by an energy-based compensation scheme, which has allowed accurate quantitative identification of the curvature value. The concept of curvegram is introduced and exemplified and the overall performance of the proposed technique for curvature estimation is formally assessed with respect to a contour defined in terms of B-splines. Application examples to synthetic and real images have been included. Copyright (C) 1996 Pattern Recognition Society. Published by Elsevier Science Ltd. [References: 24]
机译:本文提出并讨论了一种基于数字信号处理技术的数字轮廓多尺度曲率分析的新方法。用两个一维信号(线性化的x和y坐标)表示形状轮廓,并且应用导数定理作为一种获得有趣的表达式的方式,该表达式涉及轮廓曲率及其参数化x和y的光谱信号。通过高斯低通滤波实现多尺度曲率分析,并且基于能量的补偿方案有效地规避了该过程所隐含的原始信号的“收缩”,从而可以精确定量地识别曲率值。引入并举例说明了曲线图的概念,并针对根据B样条曲线定义的轮廓正式评估了所提出的曲率估计技术的整体性能。包括合成图像和真实图像的应用示例。版权所有(C)1996模式识别学会。由Elsevier Science Ltd.发布[参考:24]

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