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A NEW COLOR CORRECTION METHOD FOR UNDERWATER IMAGING

机译:一种新型水下成像的颜色校正方法

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Recovering correct or at least realistic colors of underwater scenes is a very challenging issue for imaging techniques, since illumination conditions in a refractive and turbid medium as the sea are seriously altered. The need to correct colors of underwater images or videos is an important task required in all image-based applications like 3D imaging, navigation, documentation, etc. Many imaging enhancement methods have been proposed in literature for these purposes. The advantage of these methods is that they do not require the knowledge of the medium physical parameters while some image adjustments can be performed manually (as histogram stretching) or automatically by algorithms based on some criteria as suggested from computational color constancy methods. One of the most popular criterion is based on gray-world hypothesis, which assumes that the average of the captured image should be gray. An interesting application of this assumption is performed in the Ruderman opponent color space lαβ, used in a previous work for hue correction of images captured under colored light sources, which allows to separate the luminance component of the scene from its chromatic components. In this work, we present the first proposal for color correction of underwater images by using lαβ color space. In particular, the chromatic components are changed moving their distributions around the white point (white balancing) and histogram cutoff and stretching of the luminance component is performed to improve image contrast. The experimental results demonstrate the effectiveness of this method under gray-world assumption and supposing uniform illumination of the scene. Moreover, due to its low computational cost it is suitable for real-time implementation.
机译:恢复正确或至少逼真的水下场景颜色是成像技术的一个非常具有挑战性的问题,因为由于海洋的折射和混浊介质中的照明条件被严重改变。需要纠正水下图像或视频的颜色是在基于图像的应用中所需的重要任务,如3D成像,导航,文档等。在文献中已经提出了这些目的的许多成像增强方法。这些方法的优点是它们不需要介质物理参数的知识,而可以通过从计算颜色常规方法的建议的一些标准手动地(直方图拉伸)或通过算法自动地执行一些图像调整。最受欢迎的标准之一是基于灰色世界假设,这假设捕获图像的平均值应该是灰色的。这种假设的有趣应用在Ruderman对手颜色空间Lαβ中进行,用于在彩色光源下捕获的图像的先前工作中的用于色调校正,这允许将场景的亮度分量与其色组件分开。在这项工作中,我们通过使用Lαβ色彩空间展示了水下图像的颜色校正提案。特别地,在白色点(白色平衡)周围改变了彩色分量,并且执行亮度分量的直方图截止和拉伸以改善图像对比度。实验结果表明了这种方法在灰色世界假设下的有效性,并假设场景均匀照明。此外,由于其低计算成本,它适用于实时实现。

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