Title :
Energy-efficient power optimization for two-tier femtocell networks using fictitious game
Author :
Tao Su ; Wei Li ; Wei Zheng ; Xiangming Wen ; Zhen Liu
Author_Institution :
Beijing Key Lab. of Network Syst. Archit. & Convergence, Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
Power control techniques are becoming increasingly important for a two-tier femtocell network, where a central macrocell underlaid with femtocells, since femtocells may cause serious interference and consume large amounts of energy for large scale application. In this paper, we investigate a distributed energy-efficient power optimization scheme for the uplink transmission of a spectrum-sharing femtocell network based on fictitious game, in which each user announces a price that reflects compensation caused by other users for their interference. Then we present an asynchronous distributed power optimization algorithm, where power and price update are finished at terminal and base station (BS), respectively. Furthermore, we proposed a macrocell link protection scheme that macrocell user (MUE) protects itself by increasing its price. That is, the femtocell user (FUE) that causes more interference to macrocell base station (MBS) will pay more for its interference. According to numerical results, the proposed scheme can improve energy efficiency and mitigate interference significantly.
Keywords :
cellular arrays; computer games; femtocellular radio; optimisation; power control; power distribution economics; radio spectrum management; radiofrequency interference; telecommunication power management; BS; FUE; MBS; MUE protection; asynchronous distributed power optimization algorithm; base station; central macrocell; distributed energy-efficient power optimization scheme; energy efficiency; energy-efficient power optimization; femtocell user; fictitious game-based spectrum-sharing femtocell network; interference mitigation; large scale application; macrocell link protection scheme; macrocell user protection; power control techniques; serious interference; spectrum-sharing femtocell network; terminal; two-tier femtocell networks; uplink transmission; Femtocell networks; distributed power control; energy efficiency; game theory; interference compensation;
Conference_Titel :
Global Communications Conference (GLOBECOM), 2012 IEEE
Conference_Location :
Anaheim, CA
Print_ISBN :
978-1-4673-0920-2
Electronic_ISBN :
1930-529X
DOI :
10.1109/GLOCOM.2012.6503653