DocumentCode
3510905
Title
A Cross-Layer Design for Distributed Channel Assignment over Multi-Radio Multi-Channel Wireless Mesh Networks
Author
Shui, Guo-jun ; Shen, Shu-qun
Author_Institution
Sch. of Electron. Eng., Beijing Univ. of Posts & Telecommun., Beijing
fYear
2008
fDate
1-3 Nov. 2008
Firstpage
209
Lastpage
212
Abstract
Multiple channels can increase network capacity by transmitting traffic on different channels in an interference area. Channel assignment is a critical issue for the multi-channel scheme. In this paper, we propose a efficient distributed channel assignment algorithm using cross-layer approach for multi-radio multi-channel wireless mesh networks. This scheme seeks to assign distinct channel to each node along the same route, subject to a channel availability constraint. Nodes in two-hop neighborhood which belong to two different routes are assigned distinct channel too. Thus, interference along neighboring nodes which belong to same route and different route can be reduced. The proposed scheme combines channel assignment with reactive routing protocol. This scheme exhibits significantly lower communication, computation complexity than existing channel assignment schemes. Simulation results show that this proposed scheme can improve performance of the multi-radio multi-channel wireless mesh networks greatly.
Keywords
channel allocation; routing protocols; telecommunication traffic; wireless channels; channel availability constraint; distributed channel assignment; multiradio multichannel wireless mesh networks; reactive routing protocol; traffic; two-hop neighborhood; Complexity theory; Cross layer design; Intelligent networks; Intelligent systems; Interference; Network topology; Routing protocols; Telecommunication traffic; Throughput; Wireless mesh networks; aodv protocol; channel assignment; cross-layer; wireless mesh networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Networks and Intelligent Systems, 2008. ICINIS '08. First International Conference on
Conference_Location
Wuhan
Print_ISBN
978-0-7695-3391-9
Electronic_ISBN
978-0-7695-3391-9
Type
conf
DOI
10.1109/ICINIS.2008.63
Filename
4683203
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