DocumentCode
714
Title
Generalised Sphere Decoding for Spatial Modulation
Author
Younis, Abdelhamid ; Sinanovic, S. ; Di Renzo, Marco ; Mesleh, Raed ; Haas, Harald
Author_Institution
Inst. for Digital Commun., Univ. of Edinburgh, Edinburgh, UK
Volume
61
Issue
7
fYear
2013
fDate
Jul-13
Firstpage
2805
Lastpage
2815
Abstract
In this paper, Sphere Decoding (SD) algorithms for Spatial Modulation (SM) are developed to reduce the computational complexity of Maximum-Likelihood (ML) detectors. Two SDs specifically designed for SM are proposed and analysed in terms of Bit Error Ratio (BER) and computational complexity. Using Monte Carlo simulations and mathematical analysis, it is shown that by carefully choosing the initial radius the proposed sphere decoder algorithms offer the same BER as ML detection, with a significant reduction in the computational complexity. A tight closed form expression for the BER performance of SM-SD is derived in the paper, along with an algorithm for choosing the initial radius which provides near to optimum performance. Also, it is shown that none of the proposed SDs are always superior to the others, but the best SD to use depends on the target spectral efficiency. The computational complexity trade-off offered by the proposed solutions is studied via analysis and simulation, and is shown to validate our findings. Finally, the performance of SM-SDs are compared to Spatial Multiplexing (SMX) applying ML decoder and applying SD. It is shown that for the same spectral efficiency, SM-SD offers up to 84% reduction in complexity compared to SMX-SD, with up to 1 dB better BER performance than SMX-ML decoder.
Keywords
Monte Carlo methods; computational complexity; decoding; error statistics; mathematical analysis; maximum likelihood detection; space division multiplexing; BER; ML decoder; ML detectors; Monte Carlo simulations; SMX; bit error ratio; computational complexity; generalised sphere decoding; mathematical analysis; maximum-likelihood detectors; spatial modulation; spatial multiplexing; target spectral efficiency; Bit error rate; Computational complexity; Decoding; Detectors; Receivers; Transmitting antennas; Multiple-input-multiple-output (MIMO) systems; large scale MIMO; spatial modulation (SM); spatial multiplexing (SMX); sphere decoding (SD);
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2013.061013.120547
Filename
6544189
Link To Document