DocumentCode :
3081446
Title :
Fast single image dehazing through Edge-Guided Interpolated Filter
Author :
Ximei Zhu ; Ying Li ; Yu Qiao
Author_Institution :
Shenzhen Key Lab. of Comput. Vision & Pattern Recognition, Shenzhen Inst. of Adv. Technol., Shenzhen, China
fYear :
2015
fDate :
18-22 May 2015
Firstpage :
443
Lastpage :
446
Abstract :
Images and videos taken in foggy weather often suffer from low visibility. Recent studies demonstrate the effectiveness of dark channel prior [3] and guided filter [4] based approaches for image dehazing. However, these methods require high computational cost which makes them infeasible for realtime and embedding systems. In this paper, we propose Edge-Guided Interpolated Filter (EGIF) for fast image and video dehazing. The main contributions are twofold. Firstly, we develop Guided Interpolated Filter (GIF) to significantly speed up the estimation of transmission map, which is the most computational cost step in previous methods. Secondly, we utilize edge map as guidance image in GIF to enhance the fine details in dehazed images. Experimental results show that GIF can largely improve the computational efficiency and achieve comparable dehazing performance as previous guided filter based methods. EGIF can further enhance the sharpness of transmission map. Our method can achieve real-time processing for image of size 1024 × 768 with single CPU core (2GHz).
Keywords :
image filtering; image restoration; interpolation; real-time systems; computational cost; computational efficiency; dark channel; edge-guided interpolated filter; frequency 2 GHz; guidance image; real-time processing; single CPU core; single image dehazing; transmission map; video dehazing; Atmosphere; Computer vision; Image edge detection; Image restoration; Interpolation; Real-time systems; Videos;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Machine Vision Applications (MVA), 2015 14th IAPR International Conference on
Conference_Location :
Tokyo
Type :
conf
DOI :
10.1109/MVA.2015.7153106
Filename :
7153106
Link To Document :
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