Title :
Distributed Spatially-Modulated Space-Time-Block-Codes
Author :
Narayanan, Shrikanth ; Stavridis, Athanasios ; Di Renzo, Marco ; Graziosi, Fabio ; Haas, Harald
Author_Institution :
WEST Aquila s.r.l., L´Aquila, Italy
Abstract :
In this paper, a novel energy-efficient protocol, intended for wireless networks with large number of relay nodes, is proposed. The main distinguishable feature of the proposed protocol is that it offers throughput enhancement, by having the same diversity-gain and having to activate the same number of relay nodes at any given time-instance, as the the conventional distributed space-time-block-codes (D-STBC). The proposed protocol applies the recently introduced idea of Spatially-Modulated Space-Time-Block-Codes (SM-STBC) devised for multiple-input-multiple-output (MIMO) systems to cooperative relay networks. The specific contributions of this paper are: i) an error-aware Maximum-Likelihood (ML) demodulator, which is robust to demodulation errors at the relays is developed; ii) a low-complexity error-aware demodulator is also developed; and iii) it is shown, with the help of Monte Carlo simulations, that the proposed protocol outperforms state-of-the-art relaying protocols.
Keywords :
Monte Carlo methods; cooperative communication; demodulation; diversity reception; maximum likelihood estimation; protocols; radio networks; space-time block codes; Monte Carlo simulations; cooperative relay networks; distributed spatially-modulated space-time-block-codes; diversity-gain; energy-efficient protocol; error-aware maximum-likelihood demodulator; protocol outperforms; relay nodes; state-of-the-art relaying protocols; time-instance; wireless networks; Demodulation; MIMO; Protocols; Relays; Wireless networks;
Conference_Titel :
Computer Aided Modeling and Design of Communication Links and Networks (CAMAD), 2013 IEEE 18th International Workshop on
Conference_Location :
Berlin
DOI :
10.1109/CAMAD.2013.6708109