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An Efficient Approach Toward the Asymptotic Analysis of Node-Based Recovery Algorithms in Compressed Sensing

Information Theory 2010-01-14 v1 math.IT

Abstract

In this paper, we propose a general framework for the asymptotic analysis of node-based verification-based algorithms. In our analysis we tend the signal length nn to infinity. We also let the number of non-zero elements of the signal kk scale linearly with nn. Using the proposed framework, we study the asymptotic behavior of the recovery algorithms over random sparse matrices (graphs) in the context of compressive sensing. Our analysis shows that there exists a success threshold on the density ratio k/nk/n, before which the recovery algorithms are successful, and beyond which they fail. This threshold is a function of both the graph and the recovery algorithm. We also demonstrate that there is a good agreement between the asymptotic behavior of recovery algorithms and finite length simulations for moderately large values of nn.

Keywords

Cite

@article{arxiv.1001.2284,
  title  = {An Efficient Approach Toward the Asymptotic Analysis of Node-Based Recovery Algorithms in Compressed Sensing},
  author = {Yaser Eftekhari and Amir H. Banihashemi and Ioannis Lambadaris},
  journal= {arXiv preprint arXiv:1001.2284},
  year   = {2010}
}

Comments

12 pages

R2 v1 2026-06-21T14:34:29.567Z