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Piecewise Approximation of Contours Through Scale-Space Selection of Dominant Points

机译:通过显性点的比例空间选择等高线的分段逼近

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This paper describes a method of approximating a shape contour with a polygon. The polygon vertices are extracted from the curvature extremes, through a scale-space description of the contour, via linear diffusion. These vertices are located on the contour points where the sharper changes of the contour directions occur. Using a proper strategy, a set of extremes that result in a given approximation level is chosen. By adding new vertices, the approximation level can be improved, and a scalable representation of the contour is identified. This method results in an approximation that discriminates local from global geometric features and provides a good visual representation of the original contour. This polygonal approximation method is used for scalable encoding of the shape contours. In this regard, an encoding technique suitable for scalable polygonal approximation has been developed. We show that encoding the approximated polygons result in a good relation between the distortion and the bitrate. Finally, we show that in addition to coding this method can be efficiently used for shape comparison and shape retrieval.
机译:本文介绍了一种用多边形逼近形状轮廓的方法。通过等高线的比例空间描述,通过线性扩散,从曲率极值中提取多边形顶点。这些顶点位于轮廓点上,轮廓方向发生了急剧的变化。使用适当的策略,选择导致给定近似水平的一组极端。通过添加新的顶点,可以提高逼近度,并可以识别轮廓的可缩放表示形式。此方法产生的近似值将局部几何特征与全局几何特征区分开,并提供了原始轮廓的良好视觉表示。该多边形逼近方法用于形状轮廓的可缩放编码。在这方面,已经开发了适合于可缩放多边形近似的编码技术。我们表明,对近似多边形进行编码会导致失真和比特率之间的良好关系。最后,我们表明,除了编码之外,该方法还可以有效地用于形状比较和形状检索。

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