English

Weighted Anisotropic-Isotropic Total Variation for Poisson Denoising

Image and Video Processing 2023-07-04 v1 Computer Vision and Pattern Recognition Numerical Analysis Numerical Analysis

Abstract

Poisson noise commonly occurs in images captured by photon-limited imaging systems such as in astronomy and medicine. As the distribution of Poisson noise depends on the pixel intensity value, noise levels vary from pixels to pixels. Hence, denoising a Poisson-corrupted image while preserving important details can be challenging. In this paper, we propose a Poisson denoising model by incorporating the weighted anisotropic-isotropic total variation (AITV) as a regularization. We then develop an alternating direction method of multipliers with a combination of a proximal operator for an efficient implementation. Lastly, numerical experiments demonstrate that our algorithm outperforms other Poisson denoising methods in terms of image quality and computational efficiency.

Keywords

Cite

@article{arxiv.2307.00439,
  title  = {Weighted Anisotropic-Isotropic Total Variation for Poisson Denoising},
  author = {Kevin Bui and Yifei Lou and Fredrick Park and Jack Xin},
  journal= {arXiv preprint arXiv:2307.00439},
  year   = {2023}
}

Comments

accepted to ICIP 2023

R2 v1 2026-06-28T11:19:52.511Z