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Turbo coded multiple-antenna systems for near-capacity performance
Journal article   Peer reviewed

Turbo coded multiple-antenna systems for near-capacity performance

Yeong-Luh Ueng, Chia-Jung Yeh, Mao-Chao Lin and Chung-Li Wang
IEEE Journal on Selected Areas in Communications, Vol.27(6), pp.954-964
08/2009

Abstract

Bell Labs Space-Time architecture (BLAST) Iterative decoding Iterative detection Multipleinput multiple-output (MIMO) Space-time block code (STBC) Turbo codes Turbo principle
For a turbo coded BLAST (Bell LAbs Space-Time architecture) system with N <sub>t</sub> transmit antennas and Nr receive antennas, there is a significant gap between its detection threshold and the capacity in case N <sub>t</sub> > N <sub>r</sub> . In this paper, we show that by introducing a convolutional interleaver with block delay between the BLAST mapper and the turbo encoder, the threshold can be improved. Near-capacity thresholds can be achieved for some cases. To take advantage of the low detector complexity in Alamouti STBC (space-time block code), we also investigate a STBC system, which is the concatenation of the Alamouti STBC with a turbo trellis coded modulation. By using a proper labelling and adding a convolutional interleaver with block delay to such a STBC system, we achieve both lower error floors and lower thresholds. © 2009 IEEE.

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