Deep SESR

We introduce and tackle the simultaneous enhancement and super-resolution (SESR) problem for underwater robot vision and provide an efficient solution for near real-time applications. We present Deep SESR, a residual-in-residual network-based generative model that can learn to restore perceptual image qualities at 2x, 3x, or 4x higher spatial resolution. We design an end-to-end training pipeline to jointly learn the saliency prediction and SESR on a shared hierarchical feature space for fast inference. Moreover, we present UFO-120, the first dataset to facilitate large-scale SESR learning; it contains over 1500 training samples and a benchmark test set of 120 samples.

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By thorough experimental evaluation on UFO-120 and several other standard datasets, we demonstrate that Deep SESR outperforms the existing solutions for underwater image enhancement and super-resolution. We also validate its generalization performance on several test cases that include underwater images with diverse spectral and spatial degradation levels, and also terrestrial images with unseen natural objects. Detailed demonstrations and results can be found in the paper.    

Important pointers:

  • Paper: http://www.roboticsproceedings.org/rss16/p018.pdf
  • Pre-print: https://arxiv.org/abs/2002.01155
  • Code: https://github.com/xahidbuffon/Deep-SESR
  • Dataset: http://irvlab.cs.umn.edu/resources/ufo-120-dataset