DocumentCode
1516569
Title
Design and Estimation of Coded Exposure Point Spread Functions
Author
McCloskey, Scott ; Ding, Yuanyuan ; Yu, Jingyi
Author_Institution
Honeywell Labs, Golden Valley
Volume
34
Issue
10
fYear
2012
Firstpage
2071
Lastpage
2077
Abstract
We address the problem of motion deblurring using coded exposure. This approach allows for accurate estimation of a sharp latent image via well-posed deconvolution and avoids lost image content that cannot be recovered from images acquired with a traditional shutter. Previous work in this area has used either manual user input or alpha matting approaches to estimate the coded exposure Point Spread Function (PSF) from the captured image. In order to automate deblurring and to avoid the limitations of matting approaches, we propose a Fourier-domain statistical approach to coded exposure PSF estimation that allows us to estimate the latent image in cases of constant velocity, constant acceleration, and harmonic motion. We further demonstrate that previously used criteria to choose a coded exposure PSF do not produce one with optimal reconstruction error, and that an additional 30 percent reduction in Root Mean Squared Error (RMSE) of the latent image estimate can be achieved by incorporating natural image statistics.
Keywords
Acceleration; Correlation; Estimation; Image edge detection; Image reconstruction; Noise measurement; Coded exposure; blur estimation; computational photography.; motion deblurring;
fLanguage
English
Journal_Title
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher
ieee
ISSN
0162-8828
Type
jour
DOI
10.1109/TPAMI.2012.108
Filename
6200286
Link To Document