DocumentCode :
879287
Title :
Model-based pilot and data power adaptation in psam with periodic delayed feedback
Author :
Lamahewa, Tharaka A. ; Sadeghi, Parastoo ; Kennedy, Rodney A. ; Rapajic, Predrag B.
Author_Institution :
Australian Nat. Univ., Canberra, ACT, Australia
Volume :
8
Issue :
5
fYear :
2009
fDate :
5/1/2009 12:00:00 AM
Firstpage :
2247
Lastpage :
2252
Abstract :
We consider the optimum design of pilot-symbol-assisted modulation (PSAM) schemes with feedback. The received signal is periodically fed back to the transmitter through a noiseless delayed link and the time-varying channel is modeled as a Gauss-Markov process. We optimize a lower bound on the channel capacity which incorporates the PSAM parameters and Kalman-based channel estimation and prediction. The parameters available for the capacity optimization are the data power adaptation strategy, pilot spacing and pilot power ratio, subject to an average power constraint. Compared to the optimized open-loop PSAM (i.e., the case where no feedback is provided from the receiver), our results show that even in the presence of feedback delay, the optimized power adaptation provides higher information rates at low signal-to-noise ratios (SNR) in medium-rate fading channels. However, in fast fading channels, even the presence of modest feedback delay dissipates the advantages of power adaptation.
Keywords :
Gaussian processes; Markov processes; channel capacity; channel estimation; delays; fading channels; feedback; modulation; time-varying channels; Gauss-Markov process; Kalman-based channel estimation; PSAM; channel capacity; medium-rate fading channels; model-based pilot-data power adaptation; noiseless delayed link; periodic delayed feedback; pilot-symbol-assisted modulation schemes; signal-to-noise ratios; time-varying channel; Channel capacity; Channel estimation; Constraint optimization; Delay; Fading; Feedback; Gaussian channels; Signal processing; Time-varying channels; Transmitters; Pilot-symbol-assisted modulation; channel capacity; power adaptation; time-varying fading channel;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2009.080526
Filename :
4927434
Link To Document :
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