Title :
Training sequence design for robust joint detection and channel estimation over rank-deficient MIMO links
Author :
Morales, José Luis Lagunas ; Roy, Sébastien
Author_Institution :
Dept. de Genie Electr., Univ. Laval, Québec, QC, Canada
fDate :
Jan. 30 2012-Feb. 2 2012
Abstract :
In this paper, we present a study of optimal training sequences for robust joint channel estimation and signal detection. Particularly, we study the case of virtual MIMO links, where there are more co-channel signals M than receive antennas N, i.e., N <;M. A training sequence based on the one-dimensional chaotic Chebyshev map is presented herein. This sequence delivers robust performance in terms of Bit Error rate (BER), Normalized Mean-Squared-Error (NMSE) of the estimation and computation complexity. The proposed sequence exhibits an optimal performance by spanning only a minimal number of training symbols, i.e., L=M. The proposed chaotic-based training sequence performs adequatly on both i.i.d. and correlated Rayleigh Fading Channels without the need for a priori statistics of the channel.
Keywords :
MIMO communication; Rayleigh channels; antenna arrays; channel estimation; chaotic communication; computational complexity; error statistics; mean square error methods; radio links; receiving antennas; signal detection; BER; NMSE; bit error rate; channel estimation; channel statistics; chaotic-based training sequence; cochannel signal; computation complexity; correlated Rayleigh fading channel; normalized mean-squared-error; one-dimensional chaotic Chebyshev map; optimal training sequence design; rank-deficient virtual MIMO link; receive antenna; signal detection; Bit error rate; Channel estimation; Complexity theory; Correlation; Fading; MIMO; Training; Training sequence; channel estimation; correlated channels; sphere decoder; virtual MIMO;
Conference_Titel :
Computing, Networking and Communications (ICNC), 2012 International Conference on
Conference_Location :
Maui, HI
Print_ISBN :
978-1-4673-0008-7
Electronic_ISBN :
978-1-4673-0723-9
DOI :
10.1109/ICCNC.2012.6167415