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Distributed multiuser power control for digital subscriber lines

IEEE Journal on Selected Areas in Communications · 2002 · Vol. 20(5) · pp. 1105–1115
Wei YuG. GinisJ.M. Cioffi

Abstract

This paper considers the multiuser power control problem in a frequency-selective interference channel. The interference channel is modeled as a noncooperative game, and the existence and uniqueness of a Nash equilibrium are established for a two-player version of the game. An iterative water-filling algorithm is proposed to efficiently reach the Nash equilibrium. The iterative water-filling algorithm can be implemented distributively without the need for centralized control. It implicitly takes into account the loop transfer functions and cross couplings, and it reaches a competitively optimal power allocation by offering an opportunity for loops to negotiate the best use of power and frequency with each other. When applied to the upstream power backoff problem in very-high bit-rate digital subscriber lines and the downstream spectral compatibility problem in asymmetric digital subscriber lines, the new power control algorithm is found to give a significant performance improvement when compared with existing methods.

Power Line Communications and NoiseWireless Communication Networks ResearchAdvanced Wireless Communication TechniquesComputer sciencePower controlNash equilibriumDigital subscriber lineIterative methodUniquenessMathematical optimizationTransmitter power outputChannel (broadcasting)Power (physics)
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References
A new achievable rate region for the interference channel
IEEE Transactions on Information Theory · 1981 · 1,666 citations
A simple distributed autonomous power control algorithm and its convergence
IEEE Transactions on Vehicular Technology · 1993 · 1,741 citations
A framework for uplink power control in cellular radio systems
IEEE Journal on Selected Areas in Communications · 1995 · 2,474 citations
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