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LAC: Load-aware channel selection in 802.11 WLANs

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Auteur
Athanasiou, G.; Broustis, I.; Korakis, T.; Tassiulas, L.
Date
2008
DOI
10.1109/PIMRC.2008.4699916
Sujet
Channel selection
IEEE 802.11 wireless local area networks (WLANs)
Interference
802.11 WLANs
Channel allocation scheme
Channel conditions
Cost metrics
Determinant factors
End users
Network throughput
OPNET simulation
Computer simulation
Frequency allocation
Local area networks
Radio communication
Standards
Wireless local area networks (WLAN)
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Résumé
Dense deployments of hybrid WLANs result in high levels of interference and low end-user throughput. Many frequency allocation mechanisms for WLANs have been proposed by a large body of previous studies. However, none of these mechanisms considers the load that is carried by APs in terms of channel conditions, number of affiliated users as well as traffic-load, in conjunction. In this paper, we propose LAC, a load-aware channel allocation scheme for WLANs, which considers all the above performance determinant factors. LAC incorporates an airtime cost metric into its channel scanning process, in order to capture the effects of these factors and select the channel with the maximum long-term throughput. We evaluate LAC through extensive OPNET simulations, for many different traffic scenarios. Our simulations demonstrate that LAC outperforms other frequency allocation policies for WLANs in terms of total network throughput by up to 135%. © 2008 IEEE.
URI
http://hdl.handle.net/11615/25986
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