A Novel Sufficient Condition for Generalized Orthogonal Matching Pursuit
Abstract
Generalized orthogonal matching pursuit (gOMP), also called orthogonal multi-matching pursuit, is an extension of OMP in the sense that indices are identified per iteration. In this paper, we show that if the restricted isometry constant (RIC) of a sensing matrix satisfies , then under a condition on the signal-to-noise ratio, gOMP identifies at least one index in the support of any -sparse signal from \y=\A\x+\v at each iteration, where \v is a noise vector. Surprisingly, this condition does not require which is needed in Wang, \textit{et al} 2012 and Liu, \textit{et al} 2012. Thus, can have more choices. When , it reduces to be a sufficient condition for OMP, which is less restrictive than that proposed in Wang 2015. Moreover, in the noise-free case, it is a sufficient condition for accurately recovering in iterations which is less restrictive than the best known one. In particular, it reduces to the sharp condition proposed in Mo 2015 when .
Keywords
Cite
@article{arxiv.1603.01507,
title = {A Novel Sufficient Condition for Generalized Orthogonal Matching Pursuit},
author = {Jinming Wen and Zhengchun Zhou and Dongfang Li and Xiaohu Tang},
journal= {arXiv preprint arXiv:1603.01507},
year = {2016}
}
Comments
to appear in IEEE Communications Letters