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UIEOGP:一种基于光学几何特性的水下图像增强方法。

UIEOGP: an underwater image enhancement method based on optical geometric properties.

作者信息

Mei Xinkui, Ye Xiufen, Wang Junting, Wang Xuli, Huang Hanjie, Liu Yusong, Jia Yunpeng, Zhao Shengya

出版信息

Opt Express. 2023 Oct 23;31(22):36638-36655. doi: 10.1364/OE.499684.

Abstract

Due to the inconsistent absorption and scattering effects of different wavelengths of light, underwater images often suffer from color casts, blurred details, and low visibility. To address this image degradation problem, we propose a robust and efficient underwater image enhancement method named UIEOGP. It can be divided into the following three steps. First, according to the light attenuation effect presented by Lambert Beer's law, combined with the variance change after attenuation, we estimate the depth of field in the underwater image. Then, we propose a local-based color correction algorithm to address the color cast issue in underwater images, employing the statistical distribution law. Finally, drawing inspiration from the law of light propagation, we propose detail enhancement algorithms, each based on the geometric properties of circles and ellipses, respectively. The enhanced images produced by our method feature vibrant colors, improved contrast, and sharper detail. Extensive experiments show that our method outperforms current state-of-the-art methods. In further experiments, we found that our method is beneficial for downstream tasks of underwater image processing, such as the detection of keypoints and edges in underwater images.

摘要

由于不同波长的光吸收和散射效应不一致,水下图像常常存在偏色、细节模糊和能见度低等问题。为了解决这种图像退化问题,我们提出了一种稳健且高效的水下图像增强方法,名为UIEOGP。它可分为以下三个步骤。首先,根据朗伯-比尔定律呈现的光衰减效应,结合衰减后的方差变化,我们估计水下图像中的景深。然后,我们提出一种基于局部的色彩校正算法,利用统计分布规律来解决水下图像的偏色问题。最后,从光传播定律中获得灵感,我们分别基于圆和椭圆的几何特性提出了细节增强算法。我们的方法生成的增强图像具有鲜艳的色彩、改善的对比度和更清晰的细节。大量实验表明,我们的方法优于当前的先进方法。在进一步的实验中,我们发现我们的方法对水下图像处理的下游任务有益,例如水下图像中的关键点和边缘检测。

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