Distributed α-Optimal User Association and Cell Load Balancing in Wireless Networks

  • Kim, Hongseok; 
  • de Veciana, Gustavo; 
  • Yang, Xiangying; 
  • Venkatachalam, Muthaiah
Citations

WEB OF SCIENCE

197
Citations

SCOPUS

266

초록

In this paper, we develop a framework for user association in infrastructure-based wireless networks, specifically focused on flow-level cell load balancing under spatially inhomogeneous traffic distributions. Our work encompasses several different user association policies: rate-optimal, throughput-optimal, delay-optimal, and load-equalizing, which we collectively denote alpha-optimal user association. We prove that the optimal load vector rho* that minimizes a generalized system performance function is the fixed point of a certain mapping. Based on this mapping, we propose and analyze an iterative distributed user association policy that adapts to spatial traffic loads and converges to a globally optimal allocation. We then address admission control policies for the case where the system is overloaded. For an appropriate system-level cost function, the optimal admission control policy blocks all flows at cells edges. However, providing a minimum level of connectivity to all spatial locations might be desirable. To this end, a location-dependent random blocking and user association policy are proposed.

키워드

Delay-optimal; flow-level dynamics; load balancing; throughput-optimal; user association; wireless network; FLOW LEVEL; CONGESTION; SERVICE
제목
Distributed α-Optimal User Association and Cell Load Balancing in Wireless Networks
저자
Kim, Hongseok; de Veciana, Gustavo; Yang, Xiangying; Venkatachalam, Muthaiah
DOI
10.1109/TNET.2011.2157937
발행일
2012-02
유형
Article
저널명
IEEE/ACM Transactions on Networking
권
20
호
1
페이지
177 ~ 190