Title :
Energy Efficient Power Control in Impulse Radio UWB Wireless Networks
Author :
Bacci, Giacomo ; Luise, Marco ; Poor, H. Vincent ; Tulino, Antonia M.
Author_Institution :
Univ. di Pisa, Pisa
Abstract :
In this paper, a game-theoretic model for studying power control for wireless data networks in frequency-selective multipath environments is analyzed. The uplink of an impulse-radio ultrawideband system is considered. The effects of self-interference and multiple-access interference on the performance of generic Rake receivers are investigated for synchronous systems. Focusing on energy efficiency, a noncooperative game is proposed in which users in the network are allowed to choose their transmit powers to maximize their own utilities, and the Nash equilibrium for the proposed game is derived. It is shown that, due to the frequency selective multipath, the noncooperative solution is achieved at different signal-to-interference-plus-noise ratios, depending on the channel realization and the type of Rake receiver employed. A large-system analysis is performed to derive explicit expressions for the achieved utilities. The Pareto-optimal (cooperative) solution is also discussed and compared with the noncooperative approach.
Keywords :
Pareto optimisation; cochannel interference; game theory; multipath channels; radio networks; radio receivers; signal denoising; ultra wideband communication; wireless channels; Pareto-optimal solution; Rake receivers; channel realization; energy efficient power control; frequency-selective multipath environments; game-theoretic model; impulse radio UWB wireless networks; impulse-radio ultrawideband system; multiple-access interference; noncooperative game; self-interference; signal-to-interference-plus-noise ratios; Energy efficiency; Fading; Frequency; Multipath channels; Multiple access interference; Nash equilibrium; Power control; Power system modeling; Ultra wideband technology; Wireless networks; Energy efficiency; Nash equilibrium; Rake receivers; frequency-selective multipath; game theory; impulse-radio (IR); large-system analysis; power control; ultra-wide band (UWB);
Journal_Title :
Selected Topics in Signal Processing, IEEE Journal of
DOI :
10.1109/JSTSP.2007.906588