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A New TwIST: Two-Step Iterative Shrinkage/Thresholding Algorithms for Image Restoration

机译:一种新的TwIST:用于图像恢复的两步迭代收缩/阈值算法

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Iterative shrinkage/thresholding (1ST) algorithms have been recently proposed to handle a class of convex unconstrained optimization problems arising in image restoration and other linear inverse problems. This class of problems results from combining a linear observation model with a nonquadratic regularizer (e.g., total variation or wavelet-based regularization). It happens that the convergence rate of these 1ST algorithms depends heavily on the linear observation operator, becoming very slow when this operator is ill-conditioned or ill-posed. In this paper, we introduce two-step 1ST (TwIST) algorithms, exhibiting much faster convergence rate than 1ST for ill-conditioned problems. For a vast class of nonquadratic convex regularizers (lscrP norms, some Besov norms, and total variation), we show that TwIST converges to a minimizer of the objective function, for a given range of values of its parameters. For noninvertible observation operators, we introduce a monotonic version of TwIST (MTwIST); although the convergence proof does not apply to this scenario, we give experimental evidence that MTwIST exhibits similar speed gains over IST. The effectiveness of the new methods are experimentally confirmed on problems of image deconvolution and of restoration with missing samples.
机译:最近,提出了迭代收缩/阈值(1ST)算法来处理在图像恢复中出现的一类凸无约束优化问题和其他线性逆问题。这类问题是由于将线性观察模型与非二次正则化器(例如,总变化或基于小波的正则化)相结合而导致的。碰巧这些1ST算法的收敛速度在很大程度上取决于线性观测算子,当该算子病态或不适定时,它变得非常慢。在本文中,我们介绍了两步式1ST(TwIST)算法,对于病态问题,其收敛速度比1ST快得多。对于一大类非二次凸正则化器(lscrP范数,一些Besov范数和总方差),我们证明了TwIST在给定参数值范围内收敛到目标函数的极小值。对于不可逆观测算子,我们引入了单调形式的TwIST(MTwIST);尽管收敛证明不适用于这种情况,但我们提供了实验证据,表明MTwIST与IST相比具有类似的速度提升。新方法的有效性在图像反卷积和缺少样本的恢复问题上通过实验得到了证实。

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