A Correlation-based Dissimilarity Measure for Noisy Patches - Archive ouverte HAL Access content directly
Conference Papers Year : 2017

A Correlation-based Dissimilarity Measure for Noisy Patches

(1) , (2, 1) , (1) , (1)


In this work, we address the problem of defining a robust patch dissimilarity measure for an image corrupted by an additive white Gaussian noise. The whiteness of the noise, despite being a common assumption that is realistic for RAW images, is hardly used to its full potential by classical denoising methods. In particular, the $\ell^2$-norm is very widely used to evaluate distances and similarities between images or patches. However, we claim that a better dissimilarity measure can be defined to convey more structural information. We propose to compute the dissimilarity between patches by using the autocorrelation of their difference. In order to illustrate the usefulness of this measure, we perform three experiments. First, this new criterion is used in a similar patch detection task. Then, we use it on the Non Local Means (NLM) denoising method and show that it improves performances by a large margin. Finally, it is applied to the task of no-reference evaluation of de-noising results, where it shows interesting visual properties. In all those applications, the autocorrelation improves over the $\ell^2$-norm.
Fichier principal
Vignette du fichier
ArticlePatchs (3).pdf (4.65 Mo) Télécharger le fichier
Origin : Files produced by the author(s)

Dates and versions

hal-01492429 , version 1 (19-03-2017)



Paul Riot, Andrés Almansa, Yann Gousseau, Florence Tupin. A Correlation-based Dissimilarity Measure for Noisy Patches. SSVM 2017: International Conference on Scale Space and Variational Methods in Computer Vision, Jun 2017, Kolding, Denmark. pp.184-195, ⟨10.1007/978-3-319-58771-4_15⟩. ⟨hal-01492429⟩
360 View
263 Download



Gmail Facebook Twitter LinkedIn More