Adaptive transmission compensation via human visual system for efficient single image dehazing

被引:0
作者
Zhigang Ling
Shutao Li
Yaonan Wang
He Shen
Xiao Lu
机构
[1] Hunan University,College of Electrical and Information Engineering
[2] University of Central Florida,Department of Mechanical and Aerospace Engineering
来源
The Visual Computer | 2016年 / 32卷
关键词
Single image dehazing; Human visual system; Just-noticeable distortion; Dark channel prior;
D O I
暂无
中图分类号
学科分类号
摘要
Dark channel prior has been used widely in single image haze removal because of its simple implementation and satisfactory performance. However, it often results in halo artifacts, noise amplification, over-darking, and/or over-saturation for some images containing heavy fog or large sky patches where dark channel prior is not established. To resolve this issue, this paper proposes an efficient single dehazing algorithm via adaptive transmission compensation based on human visual system (HVS). The key contributions of this paper are made as follows: firstly, two boundary constraints on transmission are deduced to preserve the intensity of the defogged image and suppress halo artifacts or noise via the minimum intensity constraint and the just-noticeable distortion model, respectively. Secondly, an improved HVS segmentation algorithm is employed to detect the saturation areas in the input image. Finally, an adaptive transmission compensation strategy is presented to remove the haze and simultaneously suppress the halo artifacts or noise in the saturation areas. Experimental results indicate that this proposed method can efficiently improve the visibility of the foggy images in the challenging condition.
引用
收藏
页码:653 / 662
页数:9
相关论文
共 61 条
[1]  
Schechner YY(2003)Polarization-based vision through haze Appl. Opt. 42 511-525
[2]  
Narasimhan SG(2002)Vision and the atmosphere Int. J. Comput. Vis. 48 233-254
[3]  
Nayar SK(2003)Contrast restoration of weather degraded images IEEE Trans. Pattern Anal. 25 713-724
[4]  
Narasimhan SG(2008)Deep photo: model-based photograph enhancement and viewing ACM Trans. Graph. 27 116:1-116:10
[5]  
Nayar SK(2008)Single Image Dehazing ACM Trans. Graph. 27 721-729
[6]  
Narasimhan SG(2012)Fast image dehazing using guided joint bilateral filter Vis. Comput. 28 713-721
[7]  
Nayar SK(2012)Adaptive defogging with color correction in the HSV color space for consumer surveillance system IEEE Trans. Consum. Electron. 58 111-116
[8]  
Kopf J(2012)Universal strategy for surveillance video defogging Opt. Eng. 51 1017031-1017037
[9]  
Neubert B(2013)Fast single-image dehazing method for visible-light systems Opt. Eng. 52 0931031-9
[10]  
Chen B(2011)Video dehazing with spatial and temporal coherence Vis. Comput. 27 749-757