DocumentCode
59709
Title
Novel Branching-Router-Based Multicast Routing Protocol with Mobility Support
Author
Zhiwei Yan ; Jong-Hyouk Lee ; Sean Shen ; Chunming Qiao
Author_Institution
Comput. Network Inf. Center, China Internet Network Inf. Center, Beijing, China
Volume
24
Issue
10
fYear
2013
fDate
Oct. 2013
Firstpage
2060
Lastpage
2068
Abstract
To cope with challenging problems faced by traditional multicast routing protocols, many branching-router (BR)-based multicast routing schemes with desirable features have been proposed. However, the current BR-based methods still lack efficient multicast management and suffer from a long join latency, leading to a disappointing mobility performance. In this paper, we propose a novel BR-based multicast architecture with a corresponding multicast routing protocol supporting multicast receiver mobility. In the proposed multicast architecture, a new management entity called multicast controller (MC) is used to handle most of the multicast management-related tasks, while other routers in the network construct a multicast tree according to the proposed Branching-Router-based Multicast routing protocol with Mobility support (BRMM). Besides, the fast handover of multicast service can be supported by BRMM through the pre-establishment of temporary multicast paths. Through extensive simulation and analysis, we show that BRMM outperforms existing protocols and has many other attractive features.
Keywords
mobility management (mobile radio); multicast protocols; routing protocols; telecommunication network routing; trees (mathematics); BR-based methods; BR-based multicast architecture; branching-router-BRMM; branching-router-based multicast routing scheme; join latency; mobility performance; mobility support; multicast controller; multicast management; multicast management-related tasks; multicast receiver mobility; multicast routing protocols; multicast tree; temporary multicast path preestablishment; Authentication; Manganese; Receivers; Routing; Routing protocols; Unicast; Multicast; branching router; mobility;
fLanguage
English
Journal_Title
Parallel and Distributed Systems, IEEE Transactions on
Publisher
ieee
ISSN
1045-9219
Type
jour
DOI
10.1109/TPDS.2012.305
Filename
6336748
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