Title :
Precoder Design for OSTBC Based AF MIMO Relay System With Channel Uncertainty
Author :
Chalise, Batu K. ; Zhang, Yimin D. ; Amin, Moeness G.
Author_Institution :
Center for Adv. Commun., Villanova Univ., Villanova, PA, USA
Abstract :
The source and relay precoders are jointly optimized for an amplify-and-forward multiple-input multiple-output relay system. Both the source and relay nodes employ orthogonal space-time block codes (OSTBC), and have imperfect channel state information of the source-relay and relay-destination channels, respectively. Using the worst-case robust design approach, we show that the problem of maximizing the minimum signal-to-noise ratio at the destination can be exactly reformulated as a convex optimization problem. Further, we provide an approximate semi-analytical approach which significantly reduces the computational cost of solving the convex problem. Numerical results show that this approximation is accurate and the proposed design outperforms OSTBC with eigen beamforming, OSTBC with equal power allocation, and currently available worst-case robust beamforming design without OSTBC.
Keywords :
MIMO communication; amplify and forward communication; array signal processing; convex programming; eigenvalues and eigenfunctions; orthogonal codes; precoding; space-time block codes; wireless channels; OSTBC based AF MIMO relay system; amplify-and-forward relay system; approximate semianalytical approach; channel uncertainty; convex optimization problem; eigenbeamforming; equal power allocation; imperfect channel state information; minimum signal-to-noise ratio; multiple-input multiple-output relay system; orthogonal space-time block codes; precoder design; relay nodes; relay precoders; relay-destination channels; source nodes; source precoders; source-relay channels; worst-case robust beamforming design approach; Array signal processing; Channel estimation; MIMO; Optimization; Relays; Robustness; Signal to noise ratio; Imperfect CSI; MIMO relay; OSTBC precoding;
Journal_Title :
Signal Processing Letters, IEEE
DOI :
10.1109/LSP.2012.2204979