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Edge preservation of impulse noise filtered images by improved anisotropic diffusion

机译:通过改善各向异性扩散来保留脉冲噪声过滤图像的边缘

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摘要

This paper provides a robust scheme for random valued impulsive noise reduction along with edge preservation by anisotropic diffusion with improved diffusivity. The defective impulse noisy pixels are detected by Laplacian based second order pixel difference operation where these defective pixels are replaced by appropriate values with regard of the gray level of their four directional neighbors. This de-noised image undergoes the diffusion operation where diffusion coefficient function is modified to make it adaptive by incorporating local gray level variance information. The proposed modified diffusion scheme effectively restore the edges and fine details destroyed during impulse noise reduction process. The effect of proposed diffusion scheme has been studied on various images and the results are compared with some existing diffusion methods which are independently used for impulse noise reduction and edge preservation. The results shows that the prior removal of impulsive noise before the application of diffusion process is advantageous over the direct application of diffusion for removing the impulsive noise. In addition, the results of the proposed diffusion scheme are compared with some of the median filter based methods which are effectively used for impulse noise reduction without caring of edge preservation. The proposed diffusion scheme sufficiently preserves the edges without boosting of impulsive noise components on images corrupted up to 50 % of the impulsive noise density.
机译:本文提供了一种鲁棒的方案,用于随机值脉冲噪声的减少以及各向异性扩散的边缘保留,并提高了扩散率。通过基于拉普拉斯算式的二阶像素差运算来检测缺陷脉冲噪声像素,其中,就其四个方向相邻像素的灰度级而言,将这些缺陷像素替换为适当的值。该去噪图像经过扩散操作,其中扩散系数函数被修改以通过合并局部灰度方差信息使其具有自适应性。所提出的改进扩散方案有效地恢复了在脉冲噪声降低过程中被破坏的边缘和细微细节。研究了所提出的扩散方案对各种图像的影响,并将结果与​​一些现有的扩散方法进行了比较,这些方法独立用于脉冲噪声的减少和边缘的保留。结果表明,在应用扩散过程之前先去除脉冲噪声优于直接应用扩散来去除脉冲噪声。另外,将所提出的扩散方案的结果与一些基于中值滤波器的方法进行了比较,这些方法可有效地用于降低脉冲噪声而无需关心边缘保留。所提出的扩散方案充分保留了边缘,而没有增强脉冲图像上高达50%损坏的图像上的脉冲噪声分量。

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