Scalable multiresolution color image segmentation with smoothness constraint

F. Tab, G. Naghdy, A. Mertins
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引用次数: 70

Abstract

This paper presents a multiresolution image segmentation method based on the discrete wavelet transform and Markov random field (MRF) modeling. A major contribution of this work is to add spatial scalability to the segmentation algorithm producing the same segmentation pattern at different resolutions. This property makes it applicable for scalable object-based wavelet coding. The correlation between different resolutions of pyramid is considered by a multire solution analysis which is incorporated into the objective function of the MRF segmentation algorithm. Examining the corresponding pixels at different resolutions simultaneously enables the algorithm to directly segment the images in the YUV or similar color spaces where luminance is in full resolution and chrominance components are at half resolution. Allowing for smoothness terms in the objective function at different resolutions improves border smoothness and creates visually more pleasing objects/regions, particularly at lower resolutions where downsampling distortions are more visible. In addition to spatial scalability, the proposed algorithm outperforms the standard single and multire solution segmentation algorithms, in both objective and subjective tests
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基于平滑约束的可扩展多分辨率彩色图像分割
提出了一种基于离散小波变换和马尔可夫随机场(MRF)建模的多分辨率图像分割方法。这项工作的一个主要贡献是为分割算法增加了空间可扩展性,从而在不同分辨率下产生相同的分割模式。此属性使其适用于可伸缩的基于对象的小波编码。通过多解分析,考虑了不同金字塔分辨率之间的相关性,并将其纳入MRF分割算法的目标函数中。同时检查不同分辨率下的相应像素,使算法能够直接分割YUV或类似颜色空间中的图像,其中亮度为全分辨率,而色度分量为半分辨率。在不同分辨率下,允许目标函数中的平滑项提高了边界的平滑性,并创建了视觉上更令人愉悦的对象/区域,特别是在低分辨率下,下采样失真更明显。除了空间可扩展性外,该算法在客观和主观测试中都优于标准的单解和多解分割算法
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