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Higher Degree Total Variation (HDTV) Regularization for Image Recovery

机译:用于图像恢复的更高程度的总变化(HDTV)正则化

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摘要

We introduce novel image regularization penalties to overcome the practical problems associated with the classical total variation (TV) scheme. Motivated by novel reinterpretations of the classical TV regularizer, we derive two families of functionals involving higher degree partial image derivatives; we term these families as isotropic and anisotropic higher degree TV (HDTV) penalties, respectively. The isotropic penalty is the mixed norm of the directional image derivatives, while the anisotropic penalty is the separable norm of directional derivatives. These functionals inherit the desirable properties of standard TV schemes such as invariance to rotations and translations, preservation of discontinuities, and convexity. The use of mixed norms in isotropic penalties encourages the joint sparsity of the directional derivatives at each pixel, thus encouraging isotropic smoothing. In contrast, the fully separable norm in the anisotropic penalty ensures the preservation of discontinuities, while continuing to smooth along the line like features; this scheme thus enhances the linenlike image characteristics analogous to standard TV. We also introduce efficient majorize-minimize algorithms to solve the resulting optimization problems. The numerical comparison of the proposed scheme with classical TV penalty, current second-degree methods, and wavelet algorithms clearly demonstrate the performance improvement. Specifically, the proposed algorithms minimize the staircase and ringing artifacts that are common with TV and wavelet schemes, while better preserving the singularities. We also observe that anisotropic HDTV penalty provides consistently improved reconstructions compared with the isotropic HDTV penalty.
机译:我们引入新颖的图像正则化惩罚,以克服与经典总变异(TV)方案相关的实际问题。由于对经典电视调节器进行了新颖的重新解释,我们得出了涉及较高阶偏图像导数的两个功能族。我们将这些系列分别称为各向同性和各向异性高等电视(HDTV)处罚。各向同性罚分是方向性图像导数的混合范数,而各向异性罚分是方向性导数的可分离范数。这些功能继承了标准TV方案的理想属性,例如旋转和平移不变,不连续性保留和凸性。在各向同性惩罚中使用混合范数会鼓励每个像素上方向导数的联合稀疏性,从而促进各向同性平滑。相反,各向异性惩罚中的完全可分离的范数确保了不连续性的保留,同时继续沿线状特征平滑。因此,该方案增强了类似于标准电视的类似亚麻的图像特性。我们还引入了有效的主化最小化算法来解决由此产生的优化问题。将该方案与经典电视惩罚,当前的二级方法和小波算法进行数值比较,清楚地表明了性能的提高。特别地,所提出的算法使电视和小波方案中常见的阶梯和振铃伪影最小化,同时更好地保留了奇点。我们还观察到,与各向同性HDTV损失相比,各向异性HDTV损失提供了持续改进的重建。

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