Institute for Simulation and Training, University of Central Florida, Orlando, FL 32826-0544, USA.
IEEE Trans Image Process. 2001;10(1):173-9. doi: 10.1109/83.892455.
A generic n-dimensional filter with the primary purpose of eliminating impulsive-like noise is presented. This recursive nonlinear filter is composed of two conditional rules, which are applied independently, in any order, one after the other. It identifies noisy items by inspection of their surrounding neighborhood, and afterwards it replaces their values with the most "conservative" ones out of their neighbors' values. In this way, no new values are introduced and the histogram distribution range is conserved. This n-dimensional filter can be decomposed recursively to a lower dimensional space, each time generating two sets of n(n-1)-dimensional filters. This study, which focuses on the case of two-dimensional signals (gray scale images), explores one possible implementation of this new filter and orients the evaluation of its performance toward the median filter, as this filter is the basis of many more sophisticated filters for impulsive noise reduction. Tests were carried out using both real and artificial images. We found this new filter to be much faster than the median filter while performing comparably in terms of both image information conservation and noise reduction, which suggests that it could replace the median filter for the preliminary processing included in state-of-the-art noise removal filters. This new filter should either eliminate or attenuate most noisy pixels in synthetic and natural images not excessively contaminated. It has a slight smoothing effect on nonnoisy image regions. In addition, it is scalable, easily implemented, and adaptable to specific applications.
提出了一种通用的 n 维滤波器,主要用于消除脉冲噪声。这种递归非线性滤波器由两个条件规则组成,可以独立应用,顺序任意。它通过检查其周围邻域来识别噪声项,然后用邻居值中最“保守”的值替换它们的值。这样,就不会引入新的值,并且直方图分布范围得以保持。这种 n 维滤波器可以递归分解到较低的维度空间中,每次生成两组 n(n-1)维滤波器。本研究专注于二维信号(灰度图像)的情况,探索了这种新滤波器的一种可能实现方式,并将其性能评估定向于中值滤波器,因为该滤波器是许多用于减少脉冲噪声的更复杂滤波器的基础。使用真实和人工图像进行了测试。我们发现,这种新滤波器比中值滤波器快得多,而在图像信息保持和噪声减少方面的性能相当,这表明它可以替代中值滤波器,用于最先进的噪声去除滤波器中的初步处理。这种新滤波器应该能够消除或减轻大多数未过度污染的合成和自然图像中的噪声像素。它对非噪声图像区域有轻微的平滑效果。此外,它具有可扩展性、易于实现和适用于特定应用的特点。