DocumentCode
2736997
Title
MIH-based FMIPv6 optimization for fast-moving mobiles
Author
Boutabia, Mohammed ; Afifi, Hossam
Author_Institution
Dept. RS2M, Nat. Inst. of Telecommun., Evry
Volume
2
fYear
2008
fDate
6-8 Oct. 2008
Firstpage
616
Lastpage
620
Abstract
Mobile devices in the next generation are expected to integrate multiple wireless interfaces. Such rich media device requires an adequate mobility features to accomplish fast and seamless handover across heterogeneous networks. Even though Fast Mobile IPv6 overcomes the long handover latency of Mobile IPv6 and makes this delay acceptable for real-time applications, the long initiation handover delay represents a constraint for fast-moving mobiles which don´t have sufficient time to exchange all the FMIPv6 messages before the connection is broken, causing the activation of the reactive mode with big handover delay and packet loss. In this paper we propose an enhanced FMIPv6 protocol using Media Independent Handover services. MIH supplies FMIPv6 with lower layer indications that allow the mobile to make intelligent and optimized handovers. This scheme increases the probability that FMIPv6 operates in the predictive mode by reducing the initiation handover delay. Moreover, by using link event indications, the mobile will be served until its physical disconnection and as soon as it connects to the new network, the packets will be forwarded from the new access router without waiting for attachment announce from FMIPv6. As a consequence, the service reestablishment is faster, the disruption time and buffer size in access routers are reduced and probability of packet loss is minimized
Keywords
mobile computing; optimisation; routing protocols; MIH-based FMIPv6 optimization; access routers; fast mobile IPv6; fast-moving mobiles; media independent handover services; mobile devices; multiple wireless interfaces; packet loss; 3G mobile communication; Access protocols; Delay effects; Hardware; Maintenance; Mobile handsets; Nonhomogeneous media; Performance analysis; WiMAX; Wireless networks; FMIPv6; IEEE802.21; handover; mobility;
fLanguage
English
Publisher
ieee
Conference_Titel
Pervasive Computing and Applications, 2008. ICPCA 2008. Third International Conference on
Conference_Location
Alexandria
Print_ISBN
978-1-4244-2020-9
Electronic_ISBN
978-1-4244-2021-6
Type
conf
DOI
10.1109/ICPCA.2008.4783685
Filename
4783685
Link To Document