Title :
Atmospheric Turbulence Mitigation Using Complex Wavelet-Based Fusion
Author :
Anantrasirichai, N. ; Achim, Alin ; Kingsbury, N.G. ; Bull, David R.
Author_Institution :
Visual Inf. Lab., Univ. of Bristol, Bristol, UK
Abstract :
Restoring a scene distorted by atmospheric turbulence is a challenging problem in video surveillance. The effect, caused by random, spatially varying, perturbations, makes a model-based solution difficult and in most cases, impractical. In this paper, we propose a novel method for mitigating the effects of atmospheric distortion on observed images, particularly airborne turbulence which can severely degrade a region of interest (ROI). In order to extract accurate detail about objects behind the distorting layer, a simple and efficient frame selection method is proposed to select informative ROIs only from good-quality frames. The ROIs in each frame are then registered to further reduce offsets and distortions. We solve the space-varying distortion problem using region-level fusion based on the dual tree complex wavelet transform. Finally, contrast enhancement is applied. We further propose a learning-based metric specifically for image quality assessment in the presence of atmospheric distortion. This is capable of estimating quality in both full- and no-reference scenarios. The proposed method is shown to significantly outperform existing methods, providing enhanced situational awareness in a range of surveillance scenarios.
Keywords :
atmospheric turbulence; image fusion; trees (mathematics); video signal processing; video surveillance; wavelet transforms; airborne turbulence; atmospheric distortion; atmospheric turbulence mitigation; complex wavelet based fusion; dual tree complex wavelet transform; image quality assessment; learning based metric; region level fusion; scene distortion; space-varying distortion problem; video surveillance; Atmospheric modeling; Image fusion; Image quality; Image registration; Image restoration; Image segmentation; Measurement; Dual tree complex wavelet transform (DT-CWT); image restoration; quality metrics; region-level fusion;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2013.2249078