Title :
New Insights into Optimal Discrete Rate Adaptation for Average Power Constrained Single and Multi-Node Systems
Author :
Khairnar, Parag S. ; Mehta, Neelesh B.
Author_Institution :
Brocade Commun. Syst., Bangalore, India
fDate :
2/1/2012 12:00:00 AM
Abstract :
The throughput-optimal discrete-rate adaptation policy, when nodes are subject to constraints on the average power and bit error rate, is governed by a power control parameter, for which a closed-form characterization has remained an open problem. The parameter is essential in determining the rate adaptation thresholds and the transmit rate and power at any time, and ensuring adherence to the power constraint. We derive novel insightful bounds and approximations that characterize the power control parameter and the throughput in closed-form. The results are comprehensive as they apply to the general class of Nakagami-m (m ≥1) fading channels, which includes Rayleigh fading, uncoded and coded modulation, and single and multi-node systems with selection. The results are appealing as they are provably tight in the asymptotic large average power regime, and are designed and verified to be accurate even for smaller average powers.
Keywords :
Nakagami channels; Rayleigh channels; error statistics; modulation; power control; telecommunication control; Nakagami-m fading channels; Rayleigh fading; asymptotic large average power regime; average power constrained single; bit error rate; closed-form characterization; coded modulation; multi-node systems; power control parameter; throughput-optimal discrete-rate adaptation policy; Approximation methods; Bit error rate; Modulation; Power control; Rayleigh channels; Throughput; Fading channels; approximations; asymptotic analysis; bounds; power adaptation; rate adaptation; selection;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2011.121911.110556