Pattern expression nonnegative matrix factorization: algorithm and applications to blind source separation
Junying Zhang1, Le Wei, Xuerong Feng
1School of Computer Science and Engineering, Xidian University, Xi'an 710071, China. jyzhang@mail.xidian.edu.cn
Abstract:
Independent component analysis (ICA) is a widely applicable and effective approach in blind source separation (BSS), with limitations that sources are statistically independent. However, more common situation is blind source separation for nonnegative linear model (NNLM) where the observations are nonnegative linear combinations of nonnegative sources, and the sources may be statistically dependent. We propose a pattern expression nonnegative matrix factorization (PE-NMF) approach from the view point of using basis vectors most effectively to express patterns. Two regularization or penalty terms are introduced to be added to the original loss function of a standard nonnegative matrix factorization (NMF) for effective expression of patterns with basis vectors in the PE-NMF. Learning algorithm is presented, and the convergence of the algorithm is proved theoretically. Three illustrative examples on blind source separation including heterogeneity correction for gene microarray data indicate that the sources can be successfully recovered with the proposed PE-NMF when the two parameters can be suitably chosen from prior knowledge of the problem.
Related Concept Videos
Extraction: Partition and Distribution Coefficients
For extracting a solute from an aqueous phase into an organic...
Vector Algebra: Method of Components
In many applications, the magnitudes and directions of...
Multi-input and Multi-variable systems
In the absence of...
Gaussian Elimination: Problem Solving
