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Preconditioned conjugate gradient method for boundary artifact-free image deblurring
Author(s) -
Nam Yong Lee,
Bradley J. Lucier
Publication year - 2016
Publication title -
inverse problems and imaging
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.755
H-Index - 40
eISSN - 1930-8345
pISSN - 1930-8337
DOI - 10.3934/ipi.2016.10.195
Subject(s) - deblurring , boundary (topology) , computer vision , computer science , image (mathematics) , artifact (error) , pixel , artificial intelligence , conjugate gradient method , image restoration , field (mathematics) , mathematics , image processing , algorithm , mathematical analysis , pure mathematics
Several methods have been proposed to reduce boundary artifacts in image deblurring. Some of those methods impose certain assumptions on image pixels outside the field-of-view; the most important of these assume reflective or anti-reflective boundary conditions. Boundary condition methods, including reflective and anti-reflective ones, however, often fail to reduce boundary artifacts, and, in some cases, generate their own artifacts, especially when the image to be deblurred does not accurately satisfy the imposed condition. To overcome these difficulties, we suggest using free boundary conditions , which do not impose any restrictions on image pixels outside the field-of-view, and preconditioned conjugate gradient methods , where preconditioners are designed to compensate for the non-uniformity in contributions from image pixels to the observation. Our simulation studies show that the proposed method outperforms reflective and anti-reflective boundary condition methods in removing boundary artifacts. The simulation studies also show that the proposed method can be applicable to arbitrarily shaped images and has the benefit of recovering damaged parts in blurred images.

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