Network Selection in Heterogeneous Wireless Networks: Evolution with Incomplete Information

Enabling users to connect to the best available network, dynamic network selection scheme is important for satisfying various quality of service (QoS) requirements, achieving seamless mobility and load balancing in heterogeneous wireless networks. In this paper, we formulate the network selection problem in heterogeneous wireless networks with incomplete information as a Bayesian game. In general, the preference (i.e., utility) of a mobile user is private information. Therefore, each user has to make the decision of network selection optimally given only the partial information of the preferences of other users. To study the dynamics of such network selection, the Bayesian best response dynamics and aggregate best response dynamics are applied. Bayesian Nash equilibrium is considered to be the solution of this game, and there is a one-to-one mapping between the Bayesian Nash equilibrium and the equilibrium distribution of the aggregate dynamics. The numerical results show the convergence of the aggregate best response dynamics for this Bayesian network selection game. This result ensures that even with incomplete information, the equilibrium of network selection decisions of mobile users can be reached.

[1]  Akihiko Matsui,et al.  Best response dynamics and socially stable strategies , 1992 .

[2]  Dusit Niyato,et al.  Modeling User Churning Behavior in Wireless Networks Using Evolutionary Game Theory , 2008, 2008 IEEE Wireless Communications and Networking Conference.

[3]  Sunghyun Choi,et al.  EBA: an enhancement of the IEEE 802.11 DCF via distributed reservation , 2005, IEEE Transactions on Mobile Computing.

[4]  Victor C. M. Leung,et al.  Automated network selection in a heterogeneous wireless network environment , 2007, IEEE Network.

[5]  Tansu Alpcan,et al.  An Optimal Flow Assignment Framework for Heterogeneous Network Access , 2007, 2007 IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks.

[6]  ABBAS JAMALIPOUR,et al.  Network selection in an integrated wireless LAN and UMTS environment using mathematical modeling and computing techniques , 2005, IEEE Wireless Communications.

[7]  Joachim Sachs,et al.  Multi-access Management in Heterogeneous Networks , 2009, Wirel. Pers. Commun..

[8]  Dusit Niyato,et al.  Dynamics of Network Selection in Heterogeneous Wireless Networks: An Evolutionary Game Approach , 2009, IEEE Transactions on Vehicular Technology.

[9]  Wei Shen,et al.  Cost-Function-Based Network Selection Strategy in Integrated Wireless and Mobile Networks , 2008, IEEE Trans. Veh. Technol..

[10]  Geoffrey Ye Li,et al.  Max-utility wireless resource management for best-effort traffic , 2005, IEEE Transactions on Wireless Communications.

[11]  William H. Sandholm,et al.  Evolution in Bayesian games I: Theory , 2005, Games Econ. Behav..