Underwater imagery often exhibits distorted coloration as a result of light-water interactions, which complicates the study of benthic environments in marine biology and geography. In this research, we propose an algorithm to restore the true color (albedo) in underwater imagery by jointly learning the effects of the medium and neural scene representations. Our approach models water effects as a combination of light attenuation with distance and backscattered light. The proposed neural scene representation is based on a neural reflectance field model, which learns albedos, normals, and volume densities of the underwater environment. We introduce a logistic regression model to separate water from the scene and apply distinct light physics du...
Underwater imagery suffers from severe effects due to selective attenuation and scattering effects w...
Underwater image deteriorates due to the scattering effect of light in the water. The challenging fa...
We describe a model for underwater illumination that is based on how light is absorbed and scattered...
Underwater images are often with biased colours and reduced contrast because of the absorption and s...
Colors of objects observed in underwater environments are different from those in air. This is becau...
Underwater Single Image Color Restoration SQUID- Stereo Quantitative Underwater Image Dataset Dana...
PhDThis thesis explores underwater imaging solutions in order to alleviate the poor contrast and th...
In underwater view, the light which is dependent on wavelength incorporates and scatters the disgrac...
Color is probably the most informative cue for object recognition and classification in natural scen...
Absorption, scattering, and color distortion are three major degradation factors in underwater optic...
Abstract. The problem of colour correction of underwater images concerns not only surveyors, who pri...
Underwater image processing has to face the problem of loss of color and contrast that occurs when i...
In this paper, we consider the problem of color restoration using statistical priors. This is appli...
Underwater images typically exhibit color distortion and low contrast as a result of the exponential...
Underwater images typically exhibit color distortion and low contrast as a result of the exponential...
Underwater imagery suffers from severe effects due to selective attenuation and scattering effects w...
Underwater image deteriorates due to the scattering effect of light in the water. The challenging fa...
We describe a model for underwater illumination that is based on how light is absorbed and scattered...
Underwater images are often with biased colours and reduced contrast because of the absorption and s...
Colors of objects observed in underwater environments are different from those in air. This is becau...
Underwater Single Image Color Restoration SQUID- Stereo Quantitative Underwater Image Dataset Dana...
PhDThis thesis explores underwater imaging solutions in order to alleviate the poor contrast and th...
In underwater view, the light which is dependent on wavelength incorporates and scatters the disgrac...
Color is probably the most informative cue for object recognition and classification in natural scen...
Absorption, scattering, and color distortion are three major degradation factors in underwater optic...
Abstract. The problem of colour correction of underwater images concerns not only surveyors, who pri...
Underwater image processing has to face the problem of loss of color and contrast that occurs when i...
In this paper, we consider the problem of color restoration using statistical priors. This is appli...
Underwater images typically exhibit color distortion and low contrast as a result of the exponential...
Underwater images typically exhibit color distortion and low contrast as a result of the exponential...
Underwater imagery suffers from severe effects due to selective attenuation and scattering effects w...
Underwater image deteriorates due to the scattering effect of light in the water. The challenging fa...
We describe a model for underwater illumination that is based on how light is absorbed and scattered...