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Image Restoration Regularized by a Fourth Order PDE

机译:通过四阶PDE规范化的图像恢复

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摘要

A fourth order PDE is proposed as the regularization operator for image restoration in order to alleviate the "blocky" effects that frequently mar restored images regularized with anisotropic diffusion (a second order PDE). This is motivated by its desirable property of evolving toward an image consisting of piecewise planar areas which is a less blocky and better approximation to natural images. In order to mitigate speckle artifacts that it frequently brings about, image gradient magnitude is added as an additional variable of the nonlinearity function that controls its behavior. A numerical implementation method is presented and simulation results indicate that the proposed method tend to produce restored images which are smoother in smooth areas and sharper in feature-rich areas. However, speckle artifacts need to be carefully addressed.
机译:提出了四阶PDE作为图像还原的正则化算子,以减轻“块状”效应,该效应通常会破坏通过各向异性扩散而归一化的图像(二阶PDE)。这是由于其朝着由分段平面区域组成的图像发展的理想特性所推动的,该图像具有较小的块状性,并且更接近自然图像。为了减轻它经常引起的斑点伪像,将图像梯度幅度添加为控制其行为的非线性函数的附加变量。提出了一种数值实现方法,仿真结果表明,该方法易于产生复原图像,在平滑区域更平滑,在特征丰富区域更清晰。但是,斑点伪影需要仔细解决。

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