DocumentCode
2289467
Title
Fast visibility restoration from a single color or gray level image
Author
Tarel, Jean-Philippe ; Hautière, Nicolas
Author_Institution
LCPC-INRETS (LEPSIS), 58 Boulevard Lefÿbvre, F-75015 Paris, France
fYear
2009
fDate
Sept. 29 2009-Oct. 2 2009
Firstpage
2201
Lastpage
2208
Abstract
One source of difficulties when processing outdoor images is the presence of haze, fog or smoke which fades the colors and reduces the contrast of the observed objects. We introduce a novel algorithm and variants for visibility restoration from a single image. The main advantage of the proposed algorithm compared with other is its speed: its complexity is a linear function of the number of image pixels only. This speed allows visibility restoration to be applied for the first time within real-time processing applications such as sign, lane-marking and obstacle detection from an in-vehicle camera. Another advantage is the possibility to handle both color images or gray level images since the ambiguity between the presence of fog and the objects with low color saturation is solved by assuming only small objects can have colors with low saturation. The algorithm is controlled only by a few parameters and consists in: atmospheric veil inference, image restoration and smoothing, tone mapping. A comparative study and quantitative evaluation is proposed with a few other state of the art algorithms which demonstrates that similar or better quality results are obtained. Finally, an application is presented to lane-marking extraction in gray level images, illustrating the interest of the approach.
Keywords
Atmospheric modeling; Cameras; Color; Image restoration; Inference algorithms; Intelligent vehicles; Layout; Pixel; Smoothing methods; Surveillance;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision, 2009 IEEE 12th International Conference on
Conference_Location
Kyoto
ISSN
1550-5499
Print_ISBN
978-1-4244-4420-5
Electronic_ISBN
1550-5499
Type
conf
DOI
10.1109/ICCV.2009.5459251
Filename
5459251
Link To Document