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Dynamic Scene Deblurring

Authors
Kim, Tae HyunAhn, ByeongjooLee, Kyoung Mu
Issue Date
Dec-2013
Publisher
IEEE
Citation
ICCV - International Conference on Computer Vision, pp.3160 - 3167
Indexed
SCOPUS
Journal Title
ICCV - International Conference on Computer Vision
Start Page
3160
End Page
3167
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/161132
DOI
10.1109/ICCV.2013.392
Abstract
Most conventional single image deblurring methods assume that the underlying scene is static and the blur is caused by only camera shake. In this paper, in contrast to this restrictive assumption, we address the deblurring problem of general dynamic scenes which contain multiple moving objects as well as camera shake. In case of dynamic scenes, moving objects and background have different blur motions, so the segmentation of the motion blur is required for deblurring each distinct blur motion accurately. Thus, we propose a novel energy model designed with the weighted sum of multiple blur data models, which estimates different motion blurs and their associated pixel-wise weights, and resulting sharp image. In this framework, the local weights are determined adaptively and get high values when the corresponding data models have high data fidelity. And, the weight information is used for the segmentation of the motion blur. Non-local regularization of weights are also incorporated to produce more reliable segmentation results. A convex optimization-based method is used for the solution of the proposed energy model. Experimental results demonstrate that our method outperforms conventional approaches in deblurring both dynamic scenes and static scenes.
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