DocumentCode
3330275
Title
Non-uniform Motion Deblurring for Bilayer Scenes
Author
Paramanand, C. ; Rajagopalan, Ambasamudram Narayanan
fYear
2013
fDate
23-28 June 2013
Firstpage
1115
Lastpage
1122
Abstract
We address the problem of estimating the latent image of a static bilayer scene (consisting of a foreground and a background at different depths) from motion blurred observations captured with a handheld camera. The camera motion is considered to be composed of in-plane rotations and translations. Since the blur at an image location depends both on camera motion and depth, deblurring becomes a difficult task. We initially propose a method to estimate the transformation spread function (TSF) corresponding to one of the depth layers. The estimated TSF (which reveals the camera motion during exposure) is used to segment the scene into the foreground and background layers and determine the relative depth value. The deblurred image of the scene is finally estimated within a regularization framework by accounting for blur variations due to camera motion as well as depth.
Keywords
image motion analysis; image restoration; image sensors; bilayer scenes; camera motion; image deblurring; image location; latent image estimation; motion blurred observations; nonuniform motion deblurring; static bilayer scene; transformation spread function; Cameras; Convolution; Estimation; Image restoration; Image segmentation; Kernel; Light sources;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition (CVPR), 2013 IEEE Conference on
Conference_Location
Portland, OR
ISSN
1063-6919
Type
conf
DOI
10.1109/CVPR.2013.148
Filename
6618992
Link To Document