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Automatic detection and removal of high-density impulse noises

机译:自动检测并消除高密度脉冲噪声

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摘要

This study presents a novel method for automatic detection and removal of high-density impulse noises. The method consists of two parts: the impulse detection part and the impulse noise removal part. In impulse detection part, an automatic detector based on local mean and variance (LMVD) is presented, which can automatically pick out noisy image from massive images and output corrupted grey levels. The detector utilises LMVD of the neighbourhood of corrupted pixels to simulate the cognitive processes of human observing noisy image. In impulse noise removal part, the Newton-Thiele filter (NTF) instead of median filter is applied to remove impulse noise. The process to construct NTF can be divided into two steps: setting up the grid and constructing the Newton-Thiele's rational interpolation on the grid. First, eight adjacent pixels of the corrupted centre pixel are used to construct the two-dimensional grid. If a pixel in the grid is corrupted, a four-direction linear interpolation algorithm will be performed to provide a rough estimate to the corrupted pixel. Second, the corrupted centre pixel value will be updated by Newton-Thiele's rational interpolation on the grid. The NTF has better robustness than existing filters because it does not need to adjust window size or other parameters. Simulations reveal that the proposed detector and filter have perfect performance in terms of both quantitative evaluation and visual quality, especially it can remove the impulse noise effectively even at 90% noise level.
机译:这项研究提出了一种自动检测和消除高密度脉冲噪声的新方法。该方法包括两部分:脉冲检测部分和脉冲噪声去除部分。在脉冲检测部分,提出了一种基于局部均值和方差(LMVD)的自动检测器,它可以从大量图像中自动提取出噪声图像,并输出损坏的灰度级。该检测器利用损坏像素附近的LMVD来模拟人类观察嘈杂图像的认知过程。在脉冲噪声去除部分中,使用牛顿-蒂勒滤波器(NTF)代替中值滤波器来去除脉冲噪声。构造NTF的过程可以分为两个步骤:建立网格和在网格上构造Newton-Thiele的有理插值。首先,损坏的中心像素的八个相邻像素用于构造二维网格。如果网格中的像素损坏,将执行四方向线性插值算法以对损坏的像素提供粗略估计。其次,损坏的中心像素值将通过Newton-Thiele在网格上的有理插值进行更新。 NTF具有比现有过滤器更好的鲁棒性,因为它不需要调整窗口大小或其他参数。仿真表明,所提出的检测器和滤波器在定量评估和视觉质量方面均具有完美的性能,尤其是即使在90%的噪声水平下,也可以有效去除脉冲噪声。

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