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A Fast Iterative Shrinkage-Thresholding Algorithm for Linear Inverse Problems

Published: 01 March 2009 Publication History
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  • Abstract

    We consider the class of iterative shrinkage-thresholding algorithms (ISTA) for solving linear inverse problems arising in signal/image processing. This class of methods, which can be viewed as an extension of the classical gradient algorithm, is attractive due to its simplicity and thus is adequate for solving large-scale problems even with dense matrix data. However, such methods are also known to converge quite slowly. In this paper we present a new fast iterative shrinkage-thresholding algorithm (FISTA) which preserves the computational simplicity of ISTA but with a global rate of convergence which is proven to be significantly better, both theoretically and practically. Initial promising numerical results for wavelet-based image deblurring demonstrate the capabilities of FISTA which is shown to be faster than ISTA by several orders of magnitude.

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    Published In

    cover image SIAM Journal on Imaging Sciences
    SIAM Journal on Imaging Sciences  Volume 2, Issue 1
    January 2009
    283 pages

    Publisher

    Society for Industrial and Applied Mathematics

    United States

    Publication History

    Published: 01 March 2009

    Author Tags

    1. deconvolution
    2. global rate of convergence
    3. image deblurring
    4. iterative shrinkage-thresholding algorithm
    5. least squares and $l_1$ regularization problems
    6. linear inverse problem
    7. optimal gradient method
    8. two-step iterative algorithms

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