DocumentCode :
937932
Title :
Optimized FMIPv6 Using IEEE 802.21 MIH Services in Vehicular Networks
Author :
Mussabbir, Qazi Bouland ; Yao, Wenbing ; Niu, Zeyun ; Fu, Xiaoming
Author_Institution :
Brunel Univ., Uxbridge
Volume :
56
Issue :
6
fYear :
2007
Firstpage :
3397
Lastpage :
3407
Abstract :
In this paper, we optimize the handover procedure in the fast handover for mobile IPv6 (FMIPv6) protocol by using the IEEE 802.21 media independent handover (MIH) services. FMIPv6 is used to enhance the performance of handovers in mobile IPv6 and its basic extension for network mobility (NEMO), i.e., the fundamental mobility management protocols used in vehicular networks. With the aid of the lower three layers\´ information of the mobile node/router (MN/MR) and the neighboring access networks, we tackle the radio access discovery and candidate access router (AR) discovery issues of FMIPv6. We introduce an "information element container" to store static and dynamic layer 2 (L2) and layer 3 (L3) information of neighboring access networks and propose to use a special cache maintained by the MN/MR to reduce the anticipation time in FMIPv6, thus increasing the probability of the predictive mode of FMIPv6 operation. Furthermore, we propose a cross-layer mechanism for making intelligent handover decisions in FMIPv6. The lower layer information of the available links obtained by MIH services and the higher layer information such as quality-of-service (QoS) parameter requirements of the applications are used by a policy engine to make intelligent handover decision. We will show through analysis and simulations of the signaling procedure that the overall expected handover (both L2 and L3) latency in FMIPv6 can be significantly reduced in the proposed mechanism.
Keywords :
IP networks; access protocols; mobile communication; mobility management (mobile radio); probability; quality of service; radio access networks; telecommunication network routing; IEEE 802.21 media independent handover services; candidate access router; fast handover for mobile IPv6 protocol; information element container; mobile node/router; mobility management protocol; neighboring access network; network mobility; optimized FMIPv6; probability; quality of service; radio access discovery; vehicular network; Cross-layer Design; Cross-layer design; FMIPv6; Fast Handover for Mobile IPv6 (FMIPv6); IEEE 802.21; IEEE802.21; Mobility Management; NEMO; mobility management; network mobility (NEMO);
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2007.906987
Filename :
4357373
Link To Document :
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