DocumentCode
2940109
Title
A New CMAC-Based Local Recovery Approach to Achieve Reliable Multicast in Wireless Mesh Networks
Author
Pourfakhar, Ehsan ; Rahmani, AmirMasoud
Author_Institution
Islamic Azad Univ., Dezfoul, Iran
fYear
2009
fDate
4-6 Nov. 2009
Firstpage
194
Lastpage
201
Abstract
Wireless mesh networks (WMNs) have gained considerable attention in the recent years due to fast deployment, easy maintenance and low upfront investment compared with traditional wireless networks. Since WMNs are typically used as wireless backbones, they have the nature that the wireless communication is not stable. Hence, it is significant to protect them against link or node failures. Distribution of data using multicast in an unreliable network does not guarantee reliable delivery, which is the prime requirement for many important applications. This paper focuses on designing and implementing an effective reliable multicast protocol called HRTMM based on shortest path tree algorithms (SPTs). For first time in this paper, we use CMAC neural network to design and implement an error or disconnection occurrence prediction mechanism in our proposed protocol that it can recover the unreliable nodes/routes before fault or disconnection happens and consequently restore the network to a consistent state with more reliability. We also discuss a novel hybrid local recovery procedure based on mentioned disconnection prediction method. The HRTMM combines congestion and error control with localized recovery to prevent or recover the different types of losses that may occur in WMNs. Our simulation results show that the HRTMM protocol functions efficiently and reliably for WMNs.
Keywords
cerebellar model arithmetic computers; multicast protocols; radiocommunication; telecommunication computing; telecommunication congestion control; telecommunication network reliability; trees (mathematics); wireless mesh networks; CMAC neural network; congestion control; disconnection occurrence prediction mechanism; error control; error occurrence prediction mechanism; high-reliability tree-based multicast routing; hybrid local recovery procedure; local recovery approach; multicast protocol reliability; shortest path tree algorithms; wireless communication; wireless mesh networks; Algorithm design and analysis; Investments; Maintenance; Multicast algorithms; Multicast protocols; Protection; Spine; Telecommunication network reliability; Wireless communication; Wireless mesh networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Networking and Collaborative Systems, 2009. INCOS '09. International Conference on
Conference_Location
Barcelona
Print_ISBN
978-1-4244-5165-4
Electronic_ISBN
978-0-7695-3858-7
Type
conf
DOI
10.1109/INCOS.2009.87
Filename
5370946
Link To Document