English

The Noise Collector for sparse recovery in high dimensions

Signal Processing 2022-06-08 v1 Machine Learning Machine Learning

Abstract

The ability to detect sparse signals from noisy high-dimensional data is a top priority in modern science and engineering. A sparse solution of the linear system Aρ=b0A \rho = b_0 can be found efficiently with an l1l_1-norm minimization approach if the data is noiseless. Detection of the signal's support from data corrupted by noise is still a challenging problem, especially if the level of noise must be estimated. We propose a new efficient approach that does not require any parameter estimation. We introduce the Noise Collector (NC) matrix CC and solve an augmented system Aρ+Cη=b0+eA \rho + C \eta = b_0 + e, where e e is the noise. We show that the l1l_1-norm minimal solution of the augmented system has zero false discovery rate for any level of noise and with probability that tends to one as the dimension of b0 b_0 increases to infinity. We also obtain exact support recovery if the noise is not too large, and develop a Fast Noise Collector Algorithm which makes the computational cost of solving the augmented system comparable to that of the original one. Finally, we demonstrate the effectiveness of the method in applications to passive array imaging.

Keywords

Cite

@article{arxiv.1908.04412,
  title  = {The Noise Collector for sparse recovery in high dimensions},
  author = {Miguel Moscoso and Alexei Novikov and George Papanicolaou and Chrysoula Tsogka},
  journal= {arXiv preprint arXiv:1908.04412},
  year   = {2022}
}
R2 v1 2026-06-23T10:45:45.694Z