Title :
A Game-Theoretic Approach to Energy-Efficient Modulation in CDMA Networks with Delay QoS Constraints
Author :
Meshkati, Farhad ; Goldsmith, Andrea J. ; Poor, H. Vincent ; Schwartz, Stuart C.
Author_Institution :
Princeton Univ., Princeton
fDate :
8/1/2007 12:00:00 AM
Abstract :
A game-theoretic framework is used to study the effect of constellation size on the energy efficiency of wireless networks for M-QAM modulation. A non-cooperative game is proposed in which each user seeks to choose its transmit power (and possibly transmit symbol rate) as well as the constellation size in order to maximize its own utility while satisfying its delay quality-of-service (QoS) constraint. The utility function used here measures the number of reliable bits transmitted per joule of energy consumed, and is particularly suitable for energy-constrained networks. The best-response strategies and Nash equilibrium solution for the proposed game are derived. It is shown that in order to maximize its utility (in bits per joule), a user must choose the lowest constellation size that can accommodate the user´s delay constraint. This strategy is different from one that would maximize spectral efficiency. Using this framework, the tradeoffs among energy efficiency, delay, throughput and constellation size are also studied and quantified. In addition, the effect of trellis-coded modulation on energy efficiency is discussed.
Keywords :
code division multiple access; delays; game theory; quality of service; radio access networks; spectral analysis; CDMA networks; M-QAM modulation; constellation size; delay QoS constraints; energy-efficient modulation; game-theoretic approach; quality-of-service; spectral efficiency; wireless networks;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2007.070802