DocumentCode
3850496
Title
Low-Complexity MAP-Based Successive Data Detection for Coded OFDM Systems Over Highly Mobile Wireless Channels
Author
Erdal Panayirci;Hakan Dogan;H. Vincent Poor
Author_Institution
Department of Electronics Engineering, Kadir Has University, Istanbul, Turkey
Volume
60
Issue
6
fYear
2011
Firstpage
2849
Lastpage
2857
Abstract
This paper is concerned with the challenging and timely problem of data detection for coded orthogonal frequency-division multiplexing (OFDM) systems in the presence of frequency-selective and very rapidly time varying channels. New low-complexity maximum a posteriori probability (MAP) data detection algorithms are proposed based on sequential detection with optimal ordering (SDOO) and sequential detection with successive cancellation (SDSC). The received signal vector is optimally decomposed into reduced dimensional subobservations by exploiting the banded structure of the frequency-domain channel matrix whose bandwidth is a parameter to be adjusted according to the speed of the mobile terminal. The data symbols are then detected by the proposed algorithms in a computationally efficient way by means of the Markov chain Monte Carlo (MCMC) technique with Gibbs sampling. The impact of the imperfect channel state information (CSI) on the bit error rate (BER) performance of these algorithms is investigated analytically and by computer simulations. A detailed computational complexity investigation and simulation results indicate that, particularly, the algorithm based on SDSC has significant performance and complexity advantages and is very robust against channel estimation errors compared with existing suboptimal detection and equalization algorithms proposed earlier in the literature.
Keywords
"OFDM","Equalizers","Complexity theory","Frequency domain analysis","Mobile communication","Receivers","Signal processing algorithms"
Journal_Title
IEEE Transactions on Vehicular Technology
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/TVT.2011.2158564
Filename
5783526
Link To Document