DocumentCode :
962424
Title :
An Approximately MAI-Free Multiaccess OFDM System in Fast Time-Varying Channels
Author :
Tadjpour, Layla ; Tsai, Shang-Ho ; Kuo, C. C Jay
Author_Institution :
Southern California Univ., Los Angeles
Volume :
55
Issue :
7
fYear :
2007
fDate :
7/1/2007 12:00:00 AM
Firstpage :
3787
Lastpage :
3799
Abstract :
A new multiuser orthogonal frequency division multiplexing (OFDM) transceiver with preceding, called the precoded multiuser OFDM (PMU-OFDM) system, was recently introduced by Tsai et al. (2005). The PMU-OFDM system can reduce multiaccess interference (MAI) due to the carrier frequency offset (CFO) to a negligible amount by preceding the data of each user with a codeword selected from either even or odd Hadamard-Walsh codes. The performance of the PMU-OFDM system in a mobile environment, where the channel response varies within one OFDM symbol due to the Doppler effect, is evaluated in this paper. It is shown by analysis and simulation that the use of even or odd Hadamard-Walsh codewords can greatly reduce the MAI effect due to the Doppler effect as well. Generally, all Hadamard-Walsh codewords except for the all-one codeword result in considerable suppression of intercarrier interference (ICI) induced by the Doppler effect. Furthermore, we discuss codeword priority schemes to minimize ICI as much as possible. Finally, simulations results are given to demonstrate the advantage of PMU-OFDM over OFDMA with a codeword priority scheme in the Doppler environment. We show that the PMU-OFDM system with odd Hadamard-Walsh codewords outperforms a half-loaded OFDMA system in a mobile environment.
Keywords :
Doppler effect; Hadamard codes; OFDM modulation; interference suppression; multi-access systems; time-varying channels; transceivers; Doppler effect; Hadamard-Walsh codes; MAI-free multiaccess OFDM system; OFDM transceiver; PMU-OFDM system; carrier frequency offset; channel response; codeword priority schemes; fast time-varying channels; intercarrier interference suppression; multiaccess interference; precoded multiuser OFDM; Analytical models; Doppler effect; Error correction; Error correction codes; Frequency division multiaccess; Interference suppression; Multiple access interference; OFDM; Time-varying channels; Transceivers; Carrier frequency offset (CFO); Doppler effect; fast fading; multiaccess interference (MAI); multiuser orthogonal frequency division multiplexing (OFDM); precoded multiuser OFDM (PMU-OFDM); precoding; time varying;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2007.894260
Filename :
4244736
Link To Document :
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