Papers › Generalized Orthogonal Matching Pursuit

Generalized Orthogonal Matching Pursuit

29 Nov 2011arXiv:1111.6664links table onlyarchive 2025-07-28

Jian Wang, Seokbeop Kwon, Byonghyo Shim

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As a greedy algorithm to recover sparse signals from compressed measurements, orthogonal matching pursuit (OMP) algorithm has received much attention in recent years. In this paper, we introduce an extension of the OMP for pursuing efficiency in reconstructing sparse signals. Our approach, henceforth referred to as generalized OMP (gOMP), is literally a generalization of the OMP in the sense that multiple N indices are identified per iteration. Owing to the selection of multiple ''correct'' indices, the gOMP algorithm is finished with much smaller number of iterations when compared to the OMP. We show that the gOMP can perfectly reconstruct any K-sparse signals (K > 1), provided that the sensing matrix satisfies the RIP with δ_(NK) < (√(N))/(√(K) + 3 √(N)). We also demonstrate by empirical simulations that the gOMP has excellent recovery performance comparable to ℓ₁-minimization technique with fast processing speed and competitive computational complexity.

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