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基于特征驱动的双向耦合扩散 方程的图像去噪和边缘锐化
引用本文:付树军,阮秋琦,王文洽.基于特征驱动的双向耦合扩散 方程的图像去噪和边缘锐化[J].光学精密工程,2006,14(2):315-319.
作者姓名:付树军  阮秋琦  王文洽
作者单位:1. 山东大学,数学与系统科学学院,山东,济南,250100;北京交通大学,信息科学研究所,北京,100044
2. 北京交通大学,信息科学研究所,北京,100044
3. 山东大学,数学与系统科学学院,山东,济南,250100
基金项目:中国科学院资助项目 , 铁道部铁路信息科学和工程重点实验室基金 , 北京交通大学校科研和教改项目
摘    要:提出了一个新的能够同时去除图像噪声和锐化边缘的扩散方程模型。根据图像特征, 例如边缘, 纹理和局部细节, 这个特征驱动的双向耦合扩散模型沿着等照度线(边缘)的梯度方向从前向扩散转变为后向(逆)扩散; 而相反地沿切线方向实施前向扩散。为了消除前向力和后向力之间的冲突,将扩散方程分裂为一种耦合的形式; 同时为了保持图像特征,利用图像的方向导数局部地调整非线性扩散系数。实验结果显示, 本文算法能够在去除图像噪声的同时, 有力地增强图像的特征。

关 键 词:图像增强  边缘锐化  双向扩散  反向扩散  各向异性扩散  冲击滤波器  分裂耦合  方向导数
文章编号:1004-924X(2006)02-0315-05
收稿时间:2005-11-12
修稿时间:2006-01-18

Feature-oriented coupled bidirectional flow equation for image denoising and edge sharpening
FU Shu-jun,RUAN Qiu-qi,WANG Wen-qia.Feature-oriented coupled bidirectional flow equation for image denoising and edge sharpening[J].Optics and Precision Engineering,2006,14(2):315-319.
Authors:FU Shu-jun  RUAN Qiu-qi  WANG Wen-qia
Affiliation:1. School of Mathematics and System Science, Shandong University, Jinan 250100, China; 2. Institute of Information Science, Beijing Jiaotong University, Beijing 100044, China
Abstract:A new type of diffusion process simultaneously denoising and sharpening images was considered.According to the image features such as edges,textures,and fine parts,the feature-oriented coupled bidirectional flow process could switch from a forward diffusion to a backward(inverse) one along the normal directions to the isophote lines (edges),while a forward diffusion was performed along the tangent directions.To eliminate the conflict between the backward and the forward force,the diffusion process was splitted into a coupled scheme.In order to enhance image features,the nonlinear diffusion coefficients were locally adjusted according to the directional derivatives of the image.Experimental results demonstrate that the algorithm can substantially enhance features on denoising smoother areas of the image.
Keywords:image enhancement  edge sharpening  bidirectional diffusion  inverse flow  anisotropic diffusion  shock filter  splitting and coupling  directional derivatives
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