Flexible channels enable Access Points (AP) and clients to determine channel widths and their center frequencies. The key challenge in flexible channels is how to determine proper channel width and center frequency for each link demands such that the overall system throughput could be improved. In this work, we introduce a distributed flexible channel assignment algorithm, DFCA. Different from prior researches, DFCA does link-based channel assignment instead of AP-based or packet-based. This is because that the packet-based method could incur heavy overhead, while the AP-based method is not able to determine the interfering relation between links precisely. In addition, the transmission weight of a link is proposed; with the help of the transmission weight, channel width, center frequency and interference relation to neighboring nodes, DFCA is able to accurately predict that link throughput prior to the channel assignment. Results show that DFCA could outperform traditional fixed channel assignment approaches and the AP-based flexible channel assignment algorithm. Even compared with FLUID[1], which is a packet-based channel assignment approach with assist of a central controller, DFCA is able to achieve comparable (at least 93%) throughput by using only local information rather than global knowledge.
[1]
William A. Arbaugh,et al.
Weighted coloring based channel assignment for WLANs
,
2005,
MOCO.
[2]
Hari Balakrishnan,et al.
Harnessing Exposed Terminals in Wireless Networks
,
2008,
NSDI.
[3]
Sumit Roy,et al.
Modelling Throughput and Starvation in 802.11 Wireless Networks with Multiple Flows
,
2007,
IEEE GLOBECOM 2007 - IEEE Global Telecommunications Conference.
[4]
Paramvir Bahl,et al.
A case for adapting channel width in wireless networks
,
2008,
SIGCOMM '08.
[5]
Konstantina Papagiannaki,et al.
CENTAUR: realizing the full potential of centralized wlans through a hybrid data path
,
2009,
MobiCom '09.
[6]
Ranveer Chandra,et al.
FLUID: Improving Throughputs in Enterprise Wireless LANs through Flexible Channelization
,
2012,
IEEE Trans. Mob. Comput..
[7]
Yunnan Wu,et al.
Load-aware spectrum distribution in Wireless LANs
,
2008,
2008 IEEE International Conference on Network Protocols.