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水下图像的波长补偿与去雾增强。

Underwater image enhancement by wavelength compensation and dehazing.

机构信息

Department of Computer Science and Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan.

出版信息

IEEE Trans Image Process. 2012 Apr;21(4):1756-69. doi: 10.1109/TIP.2011.2179666. Epub 2011 Dec 13.

Abstract

Light scattering and color change are two major sources of distortion for underwater photography. Light scattering is caused by light incident on objects reflected and deflected multiple times by particles present in the water before reaching the camera. This in turn lowers the visibility and contrast of the image captured. Color change corresponds to the varying degrees of attenuation encountered by light traveling in the water with different wavelengths, rendering ambient underwater environments dominated by a bluish tone. No existing underwater processing techniques can handle light scattering and color change distortions suffered by underwater images, and the possible presence of artificial lighting simultaneously. This paper proposes a novel systematic approach to enhance underwater images by a dehazing algorithm, to compensate the attenuation discrepancy along the propagation path, and to take the influence of the possible presence of an artifical light source into consideration. Once the depth map, i.e., distances between the objects and the camera, is estimated, the foreground and background within a scene are segmented. The light intensities of foreground and background are compared to determine whether an artificial light source is employed during the image capturing process. After compensating the effect of artifical light, the haze phenomenon and discrepancy in wavelength attenuation along the underwater propagation path to camera are corrected. Next, the water depth in the image scene is estimated according to the residual energy ratios of different color channels existing in the background light. Based on the amount of attenuation corresponding to each light wavelength, color change compensation is conducted to restore color balance. The performance of the proposed algorithm for wavelength compensation and image dehazing (WCID) is evaluated both objectively and subjectively by utilizing ground-truth color patches and video downloaded from the Youtube website. Both results demonstrate that images with significantly enhanced visibility and superior color fidelity are obtained by the WCID proposed.

摘要

光散射和颜色变化是水下摄影失真的两个主要来源。光散射是由于光入射到物体上,被水中存在的粒子多次反射和折射,然后才到达相机。这反过来又降低了捕获图像的能见度和对比度。颜色变化对应于光在水中传播时遇到的不同波长的衰减程度,使水下环境呈现出偏蓝色调。目前没有现有的水下处理技术可以处理水下图像所遭受的光散射和颜色变化失真,以及可能存在的人工光源的影响。本文提出了一种通过去雾算法增强水下图像的新系统方法,以补偿传播路径上的衰减差异,并考虑到可能存在人工光源的影响。一旦估计出深度图(即物体与相机之间的距离),就可以对场景中的前景和背景进行分割。比较前景和背景的光强度,以确定在图像捕获过程中是否使用了人工光源。在补偿人工光源的影响后,校正了水下传播路径到相机的雾现象和波长衰减差异。接下来,根据背景光中不同颜色通道的剩余能量比来估计图像场景中的水深。根据每个光波长对应的衰减量,进行颜色变化补偿以恢复颜色平衡。通过使用地面真实色彩补丁和从 YouTube 网站下载的视频,从客观和主观两个方面评估了所提出的用于波长补偿和图像去雾(WCID)算法的性能。这两个结果都表明,所提出的 WCID 可以获得具有显著增强的可见度和更高颜色保真度的图像。

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