English

Joint Bayesian endmember extraction and linear unmixing for hyperspectral imagery

Data Analysis, Statistics and Probability 2010-08-30 v1

Abstract

This paper studies a fully Bayesian algorithm for endmember extraction and abundance estimation for hyperspectral imagery. Each pixel of the hyperspectral image is decomposed as a linear combination of pure endmember spectra following the linear mixing model. The estimation of the unknown endmember spectra is conducted in a unified manner by generating the posterior distribution of abundances and endmember parameters under a hierarchical Bayesian model. This model assumes conjugate prior distributions for these parameters, accounts for non-negativity and full-additivity constraints, and exploits the fact that the endmember proportions lie on a lower dimensional simplex. A Gibbs sampler is proposed to overcome the complexity of evaluating the resulting posterior distribution. This sampler generates samples distributed according to the posterior distribution and estimates the unknown parameters using these generated samples. The accuracy of the joint Bayesian estimator is illustrated by simulations conducted on synthetic and real AVIRIS images.

Keywords

Cite

@article{arxiv.0903.3060,
  title  = {Joint Bayesian endmember extraction and linear unmixing for hyperspectral imagery},
  author = {Nicolas Dobigeon and Said Moussaoui and Martial Coulon and Jean-Yves Tourneret and Alfred O. Hero},
  journal= {arXiv preprint arXiv:0903.3060},
  year   = {2010}
}
R2 v1 2026-06-21T12:41:47.505Z