Title :
Distributed space-time block coding for cooperative networks with multiple-antenna nodes
Author :
Yiu, S. ; Schober, R. ; Lampe, L.
Author_Institution :
Dept. of Electr. & Comput. Eng., British Columbia Univ., Vancouver, BC, Canada
Abstract :
In this paper, we present an extension to our previous work on distributed space-time block coding where we considered cooperative networks with a large set of single-antenna decode-and-forward relays N. Here, we consider the general case where each relay node is equipped with NT antennas and the destination node has NR antennas. It is assumed that at any given time only a small, a priori unknown subset of nodes S C N is active. In the proposed scheme, the signal transmitted by an active node is the product of an information-carrying space-time block code (STBC) matrix, which is identical for all nodes, and a unique node signature matrix. It is shown that existing STBCs designed for Nc ≥ 2 co-located antennas are a favorable choice for the code matrix guaranteeing a diversity order of d = min {NcNR, NTNSNR} if ns nodes are active. Simulation results show that a considerable gain can be achieved by using multiple-antenna nodes even if the antennas are highly correlated.
Keywords :
antenna arrays; block codes; decoding; matrix algebra; radio networks; space-time codes; code matrix; cooperative networks; decode-and-forward relays; distributed space-time block coding; multiple-antenna nodes; single-antenna; Bandwidth; Block codes; Broadcasting; Communication networks; Cyclic redundancy check; Cyclic redundancy check codes; Decoding; Demodulation; Electronic mail; Relays;
Conference_Titel :
Computational Advances in Multi-Sensor Adaptive Processing, 2005 1st IEEE International Workshop on
Print_ISBN :
0-7803-9322-8
DOI :
10.1109/CAMAP.2005.1574181