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Guaranteed sparse signal recovery with highly coherent sensing matrices

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arxiv 1311.0314 v2 pith:UIROFWNK submitted 2013-11-01 math.NA cs.ITcs.NAmath.IT

Guaranteed sparse signal recovery with highly coherent sensing matrices

classification math.NA cs.ITcs.NAmath.IT
keywords sensingcompressivematricescolumnshighlyreconstructionrecoverysignal
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Compressive sensing is a methodology for the reconstruction of sparse or compressible signals using far fewer samples than required by the Nyquist criterion. However, many of the results in compressive sensing concern random sampling matrices such as Gaussian and Bernoulli matrices. In common physically feasible signal acquisition and reconstruction scenarios such as super-resolution of images, the sensing matrix has a non-random structure with highly correlated columns. Here we present a compressive sensing type recovery algorithm, called Partial Inversion (PartInv), that overcomes the correlations among the columns. We provide theoretical justification as well as empirical comparisons.

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