4.6 Article

The Color Improvement of Underwater Images Based on Light Source and Detector

期刊

SENSORS
卷 22, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/s22020692

关键词

underwater optics; color improvement; underwater imaging

资金

  1. Hainan Provincial Natural Science Foundation of China [618QN308, 2019RC258]
  2. Youth Innovation Promotion Association CAS [2020361]
  3. Science and Technology project of Sanya city [2018KS03, 2017YD13]
  4. Knowledge Innovation Engineering Frontier Project of the Chinese Academy of Sciences [Y770011001]
  5. e Key Laboratory of Space Laser Information Transmission and Detection Technology of the Chinese Academy of Sciences [KJL-2021-001]

向作者/读者索取更多资源

Color deviation in underwater images hampers the efficiency and accuracy of underwater applications. Our proposed method adjusts the spectral component of the light source and the spectral response of the detector to improve color reproduction. Experimental results show that warm light LEDs and 3xCMOS RGB cameras exhibit the smallest color deviation.
As one of the most direct approaches to perceive the world, optical images can provide plenty of useful information for underwater applications. However, underwater images often present color deviation due to the light attenuation in the water, which reduces the efficiency and accuracy in underwater applications. To improve the color reproduction of underwater images, we proposed a method with adjusting the spectral component of the light source and the spectral response of the detector. Then, we built the experimental setup to study the color deviation of underwater images with different lamps and different cameras. The experimental results showed that, a) in terms of light source, the color deviation of an underwater image with warm light LED (Light Emitting Diode) (with the value of root & UDelta;a*(2)+& UDelta;b*(2) being 26.58) was the smallest compared with other lamps, b) in terms of detectors, the color deviation of images with the 3xCMOS RGB camera (a novel underwater camera with three CMOS sensors developed for suppressing the color deviation in our team) (with the value of root & UDelta;a*(2)+& UDelta;b*(2) being 25.25) was the smallest compared with other cameras. The experimental result (i.e., the result of color improvement between different lamps or between different cameras) verified our assumption that the underwater image color could be improved by adjusting the spectral component of the light source and the spectral response of the detector. Differing from the color improvement method with image processing, this color-improvement method was based on hardware, which had advantages, including more image information being retained and less-time being consumed.

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