Modified K-best breadth-first assisted antenna selection for dual-hop MIMO AF multiple-relay systems in correlated channels

Authors: Chia-Chang Hu, Wei-Cheng Luo

Abstract:
An efficient antenna-pair selection scheme is proposed for a non-regenerative dual-hop amplify-andforward (AF) multiple-input multiple-output (MIMO) multiple-relay system in which multiple antennas are placed at each node over correlated fading channels in the paper. The design of multiple-relay antenna-pair selection can be transformed into a modified K-best tree search structure based on the signal-to-noise ratio (SNR) maximization criterion. This two-level antenna selection strategy selects a subset of antenna pairs from available relays based on the concept of the K-best breadth-first search mechanism in conjunction with the harmonic mean and norm metrics subject to (s.t.) either optimalor equal-power allocation constraints across the activated antenna pairs. Consequently, the use of the proposed antenna selection achieves a substantial saving in system hardware complexity of the multiple radio frequency (RF) chains associated with multiple antennas without compromising the symbol-errorrate (SER) performance when compared to existing antenna selection schemes for half-duplex AF MIMO relay networks.

Keywords:
AF
Antenna selection
Correlated channels K-best
MIMO relay

Published in: AEÜ-International Journal of Electronics and Communications (Volume 67, Issue 2, February 2013)

Publisher: Elsevier

ISSN Information: 1434-8411

Modified K-best breadth-first assisted antenna selection for dual-hop MIMO AF multiple-relay systems in correlated channels

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