DocumentCode
719892
Title
Load balancing in heterogeneous networks based on distributed learning in potential games
Author
Ali, Mohd Shabbir ; Coucheney, Pierre ; Coupechoux, Marceau
Author_Institution
Telecom ParisTech, Paris, France
fYear
2015
fDate
25-29 May 2015
Firstpage
371
Lastpage
378
Abstract
We present a novel approach for distributive load balancing in heterogeneous networks that use cell range expansion (CRE) for user association. First, we formulate the problem as a minimisation of an α-fairness objective function. Depending on α, different objectives in terms of network performance or fairness can be achieved. Next, we model the interactions among the base stations for load balancing as a potential game, in which the potential function is the α-fairness function. The optimal Nash equilibrium of the game is found by using distributed learning algorithms. We use log-linear and binary log-linear learning algorithms for complete and partial information settings, respectively. By running extensive simulations, we show that the proposed algorithms converge within a few tens of iterations. The convergence speed in the case of partial information setting is comparable to that of the complete information setting. We also show that the best response algorithm does not necessarily converge to the optimal Nash equilibrium.
Keywords
cellular radio; game theory; minimisation; CRE; binary log linear learning algorithms; cell range expansion; cellular networks; distributed learning; distributed learning algorithms; distributive load balancing; heterogeneous networks; load balancing; minimisation; network performance; objective function; optimal Nash equilibrium; potential game; potential games; user association; Games; Interference; Linear programming; Load management; Load modeling; Optimization; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Modeling and Optimization in Mobile, Ad Hoc, and Wireless Networks (WiOpt), 2015 13th International Symposium on
Conference_Location
Mumbai
Type
conf
DOI
10.1109/WIOPT.2015.7151095
Filename
7151095
Link To Document