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Fast motion deblurring

ACM Transactions on Graphics · 2009 · Vol. 28(5) · pp. 1–8
Sunghyun ChoSeungyong Lee

Abstract

This paper presents a fast deblurring method that produces a deblurring result from a single image of moderate size in a few seconds. We accelerate both latent image estimation and kernel estimation in an iterative deblurring process by introducing a novel prediction step and working with image derivatives rather than pixel values. In the prediction step, we use simple image processing techniques to predict strong edges from an estimated latent image, which will be solely used for kernel estimation. With this approach, a computationally efficient Gaussian prior becomes sufficient for deconvolution to estimate the latent image, as small deconvolution artifacts can be suppressed in the prediction. For kernel estimation, we formulate the optimization function using image derivatives, and accelerate the numerical process by reducing the number of Fourier transforms needed for a conjugate gradient method. We also show that the formulation results in a smaller condition number of the numerical system than the use of pixel values, which gives faster convergence. Experimental results demonstrate that our method runs an order of magnitude faster than previous work, while the deblurring quality is comparable. GPU implementation facilitates further speed-up, making our method fast enough for practical use.

Advanced Image Processing TechniquesAdvanced Vision and ImagingImage Processing Techniques and ApplicationsDeblurringLatent imageDeconvolutionKernel (algebra)Computer scienceKernel density estimationArtificial intelligenceAlgorithmPixelConjugate gradient method
Citations
957
FWCI
24.24
field-weighted impact
References
28
Percentile
100%
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References
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The Astronomical Journal · 1974 · 3,737 citations
Removing camera shake from a single photograph
ACM Transactions on Graphics · 2006 · 1,834 citations
Total variation blind deconvolution
IEEE Transactions on Image Processing · 1998 · 1,193 citations
High-quality motion deblurring from a single image
ACM Transactions on Graphics · 2008 · 1,398 citations
Image and depth from a conventional camera with a coded aperture
ACM Transactions on Graphics · 2007 · 948 citations
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