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July 15, 2015IEEE Transactions on Image Processing854 citations

Referenceless Prediction of Perceptual Fog Density and Perceptual Image Defogging

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LCLark Kwon ChoiJYJaehee YouABAlan C. Bovik

Key Points

  • The aim is to develop a referenceless model for predicting fog density from images using natural scene statistics.
  • Developed the Fog Aware Density Evaluator (FADE) to predict fog density from a single image.
  • Applications include evaluation of defogging algorithms and image defogging.
  • Generated local fog density indices for patches within images.
  • FADE's predictions correlate well with human judgments of fog density (exact metrics not specified).
  • DEnsity of Fog Assessment-based DEfogger (DEFADE) outperforms existing defogging methods, especially in dense fog.
  • FADE and DEFADE software releases are available for public access.

Abstract

We propose a referenceless perceptual fog density prediction model based on natural scene statistics (NSS) and fog aware statistical features. The proposed model, called Fog Aware Density Evaluator (FADE), predicts the visibility of a foggy scene from a single image without reference to a corresponding fog-free image, without dependence on salient objects in a scene, without side geographical camera information, without estimating a depth-dependent transmission map, and without training on human-rated judgments. FADE only makes use of measurable deviations from statistical regularities observed in natural foggy and fog-free images. Fog aware statistical features that define the perceptual fog density index derive from a space domain NSS model and the observed characteristics of foggy images. FADE not only predicts perceptual fog density for the entire image, but also provides a local fog density index for each patch. The predicted fog density using FADE correlates well with human judgments of fog density taken in a subjective study on a large foggy image database. As applications, FADE not only accurately assesses the performance of defogging algorithms designed to enhance the visibility of foggy images, but also is well suited for image defogging. A new FADE-based referenceless perceptual image defogging, dubbed DEnsity of Fog Assessment-based DEfogger (DEFADE) achieves better results for darker, denser foggy images as well as on standard foggy images than the state of the art defogging methods. A software release of FADE and DEFADE is available online for public use: http://live.ece.utexas.edu/research/fog/index.html.

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Cite This Study

Choi et al. (2015) studied this question.

synapsesocial.com/papers/6a2026a8349f479269fbf924https://doi.org/10.1109/tip.2015.2456502
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