Beamspace preprocessing with an improved robustness against out-of-sector sources using second-order cone programming

A new approach to beamspace preprocessing with an improved robustness against out-of-sector interfering sources is developed. The beamspace matrix filter is designed based on proper tradeoffs between the in-sector (passband) source distortion and out-of-sector (stopband) source attenuation. Computat...

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Hauptverfasser: Hassanien, A., Elkader, S.A., Gershman, A.B., Wong, K.M.
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Elkader, S.A.
Gershman, A.B.
Wong, K.M.
description A new approach to beamspace preprocessing with an improved robustness against out-of-sector interfering sources is developed. The beamspace matrix filter is designed based on proper tradeoffs between the in-sector (passband) source distortion and out-of-sector (stopband) source attenuation. Computationally efficient convex formulations for these beamspace matrix filter design problems are derived using second-order cone programming (SOCP).
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subjects Array signal processing
Attenuation
Covariance matrix
Eigenvalues and eigenfunctions
Filters
Passband
Robustness
Sensor arrays
Vectors
title Beamspace preprocessing with an improved robustness against out-of-sector sources using second-order cone programming
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