Title :
Optimal Power Control Game Algorithm for Cognitive Radio Networks with Multiple Interference Temperature Limits
Author :
Li, Hongyan ; Gai, Yibing ; He, Zhiqiang ; Niu, Kai ; Wu, Weiling
Author_Institution :
Key Lab. of Inf. Process. & Intell. Technol., Beijing Univ. of Posts & Telecommun., Beijing
Abstract :
Based on interference temperature model, the problem of secondary spectrum sharing can be formulated as a power optimization problem at physical layer. In this paper, we consider decentralized cognitive radio networks, and we especially focus on the spectrum sharing scenario where multiple measurement points are located in the licensed system. Game theory is used to investigate the distributed power control for providing the maximum throughput in cognitive radio networks. There are two aspects that should be considered in the design of the payoff function for each player, one is counteracting negative externalities in cognitive radio networks, and the other is satisfying all the interference temperature limits from measurement points. A tax-based power control game algorithm is introduced to implement power allocation optimization in a distributed mode, and guarantees the convergence to globally optimal power allocations.
Keywords :
cognitive radio; convergence; decentralised control; distributed control; game theory; optimal control; power control; radiofrequency interference; telecommunication control; convergence; decentralized cognitive radio networks; distributed control; multiple interference temperature limit; optimal power control game algorithm; power allocation optimization; spectrum sharing; Chromium; Cognitive radio; Game theory; Interference; Physical layer; Power control; Power system modeling; Temperature measurement; Temperature sensors; Throughput;
Conference_Titel :
Vehicular Technology Conference, 2008. VTC Spring 2008. IEEE
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-1644-8
Electronic_ISBN :
1550-2252
DOI :
10.1109/VETECS.2008.362