水下
图像(数学)
鉴别器
发电机(电路理论)
计算机科学
图像质量
人工智能
可靠性(半导体)
计算机视觉
地质学
功率(物理)
电信
海洋学
量子力学
探测器
物理
作者
Miao Yang,Ke Hu,Yixiang Du,Zhiqiang Wei,Zhibin Sheng,Jintong Hu
标识
DOI:10.1016/j.image.2019.115723
摘要
Underwater images play an essential role in acquiring and understanding underwater information. High-quality underwater images can guarantee the reliability of underwater intelligent systems. Unfortunately, underwater images are characterized by low contrast, color casts, blurring, low light, and uneven illumination, which severely affects the perception and processing of underwater information. To improve the quality of acquired underwater images, numerous methods have been proposed, particularly with the emergence of deep learning technologies. However, the performance of underwater image enhancement methods is still unsatisfactory due to lacking sufficient training data and effective network structures. In this paper, we solve this problem based on a conditional generative adversarial network (cGAN), where the clear underwater image is achieved by a multi-scale generator. Besides, we employ a dual discriminator to grab local and global semantic information, which enforces the generated results by the multi-scale generator realistic and natural. Experiments on real-world and synthetic underwater images demonstrate that the proposed method performs favorable against the state-of-the-art underwater image enhancement methods.
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