DocumentCode :
2940520
Title :
Adaptive Allocation of Pilot and Data Power for Time-Selective Fading Channels with Feedback
Author :
Agarwal, Manish ; Honig, Michael ; Ata, Baris
Author_Institution :
Dept. of EECS, Northwestern Univ., Evanston, IL
fYear :
2006
fDate :
9-14 July 2006
Firstpage :
168
Lastpage :
172
Abstract :
We consider data transmission through a time-selective (correlated) flat Rayleigh fading channel under an average power constraint. The channel is estimated at the receiver with a pilot signal, and the estimate is fed back to the transmitter. The estimate is used for coherent demodulation, and to adapt the data and pilot powers. We start with a block fading channel in which the channel gain changes according to a Gauss-Markov process. The channel estimate is updated during each coherence block with a Kalman filter, and optimizing the data and pilot powers is formulated as a dynamic program. We then study a continuous limit in which the coherence time tends to zero, and the correlation between successive channel gains tends to one, so that the channel process becomes a diffusion process. In this limit it is shown that the optimal pilot power control policy is "bang-bang", i.e., depending on the current system state (channel estimate and associated error variance) the pilot power is either the maximum allowable, or zero. The associated regions of the state space are illustrated numerically for specific system values. This example shows that the achievable rate with the optimized training policy provides substantial gains relative to constant training power at low SNRs
Keywords :
Gaussian processes; Kalman filters; Markov processes; Rayleigh channels; bang-bang control; channel estimation; data communication; demodulation; feedback; telecommunication control; Gauss-Markov process; Kalman filter; SNR; adaptive allocation; bang-bang control; block fading channel; channel estimation; channel gain; coherence block; coherent demodulation; data power; data transmission; diffusion process; error variance; optimal pilot power control policy; optimized training policy; time-selective flat Rayleigh fading channel; Data communication; Demodulation; Diffusion processes; Error correction; Fading; Feedback; Gaussian channels; Power control; State estimation; Transmitters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Theory, 2006 IEEE International Symposium on
Conference_Location :
Seattle, WA
Print_ISBN :
1-4244-0505-X
Electronic_ISBN :
1-4244-0504-1
Type :
conf
DOI :
10.1109/ISIT.2006.261758
Filename :
4035943
Link To Document :
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