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Color demosaicking by local directional interpolation and nonlocal adaptive thresholding

机译:通过局部方向插值和非局部自适应阈值进行颜色去马赛克

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摘要

Single sensor digital color cameras capture only one of the three primary colors at each pixel and a process called color demosaicking (COM) is used to reconstruct the full color images. Most CDM algorithms assume the existence of high local spectral redundancy in estimating the missing color samples. However, for images with sharp color transitions and high color saturation, such an assumption may be invalid and visually unpleasant CDM errors will occur. In this paper, we exploit the image nonlocal redundancy to improve the local color reproduction result. First, multiple local directional estimates of a missing color sample are computed and fused according to local gradients. Then, nonlocal pixels similar to the estimated pixel are searched to enhance the local estimate. An adaptive thresholding method rather than the commonly used nonlocal means filtering is proposed to improve the local estimate. This allows the final reconstruction to be performed at the structural level as opposed to the pixel level. Experimental results demonstrate that the proposed local directional interpolation and nonlocal adaptive thresholding method outperforms many state-of-the-art CDM methods in reconstructing the edges and reducing color interpolation artifacts, leading to higher visual quality of reproduced color images.
机译:单传感器数字彩色相机仅在每个像素处捕获三种原色中的一种,并且使用一种称为彩色去马赛克(COM)的过程来重建全彩色图像。大多数CDM算法在估计缺失的颜色样本时都假定存在高局部光谱冗余。但是,对于具有陡峭的色彩过渡和高色彩饱和度的图像,这样的假设可能无效,并且会出现视觉上令人不愉快的CDM错误。在本文中,我们利用图像非局部冗余来改善局部色彩还原效果。首先,根据局部梯度计算并融合缺失颜色样本的多个局部方向估计。然后,搜索与估计像素相似的非局部像素以增强局部估计。提出了一种自适应阈值方法而不是常用的非局部均值滤波来改善局部估计。这使得最终的重建可以在与像素水平相反的结构水平上进行。实验结果表明,所提出的局部方向插值和非局部自适应阈值处理方法在重建边缘和减少颜色插值伪像方面优于许多最新的CDM方法,从而提高了再现彩色图像的视觉质量。

著录项

  • 来源
    《Journal of electronic imaging》 |2011年第2期|p.023016.1-023016.16|共16页
  • 作者单位

    The Hong Kong Polytechnic University Department of Computing Hung Horn, Kowloon, Hong Kong, China;

    McMaster University Department of Electrical and Computer Engineering Hamilton, Ontario, L8G 4K1, Canada;

    Universite Paris Descartes 45, rue des Saints Peres, 7eme etage 75270 Paris Cedex 06, France;

    West Virginia University Lane Department of Computer Science and Electrical Engineering PO Box 6109 Morgantown, West Virginia 26506;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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