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High-quality motion deblurring from a single image

ACM Transactions on Graphics · 2008 · Vol. 27(3) · pp. 1–10
Qi ShanJiaya JiaAseem Agarwala

Abstract

We present a new algorithm for removing motion blur from a single image. Our method computes a deblurred image using a unified probabilistic model of both blur kernel estimation and unblurred image restoration. We present an analysis of the causes of common artifacts found in current deblurring methods, and then introduce several novel terms within this probabilistic model that are inspired by our analysis. These terms include a model of the spatial randomness of noise in the blurred image, as well a new local smoothness prior that reduces ringing artifacts by constraining contrast in the unblurred image wherever the blurred image exhibits low contrast. Finally, we describe an effficient optimization scheme that alternates between blur kernel estimation and unblurred image restoration until convergence. As a result of these steps, we are able to produce high quality deblurred results in low computation time. We are even able to produce results of comparable quality to techniques that require additional input images beyond a single blurry photograph, and to methods that require additional hardware.

Advanced Image Processing TechniquesImage and Signal Denoising MethodsImage Processing Techniques and ApplicationsDeblurringArtificial intelligenceRinging artifactsImage restorationComputer visionMotion blurComputer scienceKernel (algebra)SmoothnessImage (mathematics)
Citations
1,398
FWCI
64.61
field-weighted impact
References
29
Percentile
100%
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Cited by
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References
An iterative technique for the rectification of observed distributions
The Astronomical Journal · 1974 · 3,737 citations
Removing camera shake from a single photograph
ACM Transactions on Graphics · 2006 · 1,834 citations
The Fourier Transform and Its Applications
American Journal of Physics · 1966 · 5,454 citations
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