Direct Unsupervised Denoising

Benjamin Salmon, Alexander Krull

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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Abstract

Traditional supervised denoisers are trained using pairs of noisy input and clean target images. They learn to predict a central tendency of the posterior distribution over possible clean images. When, e.g., trained with the popular quadratic loss function, the network's output will correspond to the minimum mean square error (MMSE) estimate. Unsupervised denoisers based on Variational AutoEncoders (VAEs) have succeeded in achieving state-of-the-art results while requiring only unpaired noisy data as training input. In contrast to the traditional supervised approach, unsupervised denoisers do not directly produce a single prediction, such as the MMSE estimate, but allow us to draw samples from the posterior distribution of clean solutions corresponding to the noisy input. To approximate the MMSE estimate during inference, unsupervised methods have to create and draw a large number of samples - a computationally expensive process - rendering the approach inapplicable in many situations. Here, we present an alternative approach that trains a deterministic network alongside the VAE to directly predict a central tendency. Our method achieves results that surpass the results achieved by the unsupervised method at a fraction of the computational cost.
Original languageEnglish
Title of host publication2023 IEEE/CVF International Conference on Computer Vision Workshops (ICCVW)
PublisherIEEE
Pages3840-3847
Number of pages8
ISBN (Electronic)9798350307443
ISBN (Print)9798350307450
Publication statusPublished - Oct 2023
Event2023 International Conference on Computer Vision - Paris Convention Centre, Paris, France
Duration: 2 Oct 20236 Oct 2023
https://iccv2023.thecvf.com/

Publication series

NameProceedings of the IEEE/CVF International Conference on Computer Vision (ICCV) Workshops

Conference

Conference2023 International Conference on Computer Vision
Abbreviated titleICCV 2023
Country/TerritoryFrance
CityParis
Period2/10/236/10/23
Internet address

Keywords

  • denoising
  • unsupervised learning
  • vision
  • microscopy

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