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首页> 外文期刊>Advances in computational mathematics >Efficient alternating minimization methods for variational edge-weighted colorization models
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Efficient alternating minimization methods for variational edge-weighted colorization models

机译:变分态加权彩色模型的高效交替最小化方法

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Alternating minimization algorithms are developed to solve two variational models, for image colorization based on chromaticity and brightness color system. Image colorization is a task of inpainting color from a small region of given color information. While the brightness is defined on the entire image domain, the chromaticity components are only given on a small subset of image domain. The first model is the edge-weighted total variation (TV) and the second one is the edge-weighted harmonic model that proposed by Kang and March (IEEE Trans. Image Proc. 16(9):2251-2261, 2007). Both models minimize a functional with the unit sphere constraints. The proposed methods are based on operator splitting, augmented Lagrangian, and alternating direction method of multipliers, where the computations can take advantage of multi-dimensional shrinkage and fast Fourier transform under periodic boundary conditions. Convergence analysis of the sequence generated by the proposed methods to a Karush-Kahn-Tucker point and a minimizer of the edge-weighted TV model are established. In several examples, we show the effectiveness of the new methods to colorize gray-level images, where only small patches of colors are given. Moreover, numerical comparisons with quadratic penalty method, augmented Lagrangian method, time marching, and/or accelerated time marching algorithms demonstrate the efficiency of the proposed methods.
机译:开发交替的最小化算法以解决两个变分模型,用于基于色度和亮度颜色系统的图像着色。图像彩色是来自给定颜色信息的小区域的颜色的任务。虽然在整个图像域上定义亮度,但仅在图像域的小子集上给出了色度分量。第一模型是边缘加权总变化(TV),第二个是由康和3月提出的边缘加权谐波模型(IEEE Trans。图像Proc。16(9):2251-2261,2007)。两种模型最小化了单位球体约束的功能。所提出的方法基于操作员分裂,增强拉格朗日和乘法器的交替方向方法,其中计算可以在周期性边界条件下利用多维收缩和快速傅里叶变换。建立了所提出的方法生成的序列的序列的收敛性分析以及边缘加权电视模型的最小化器。在若干例子中,我们展示了彩色灰度级图像的新方法的有效性,其中仅给出了小斑块。此外,具有二次惩罚方法,增强拉格朗日方法,时间游行和/或加速时间行进算法的数值比较证明了所提出的方法的效率。

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