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AHS: Advanced Handoff Scheme for nested mobile networks

Authors
Rho, Kyung-TaegJung, Soo-MokKang, Jung HunChoi, WonilPark, Myong-Soon
Issue Date
1월-2008
Publisher
INST INFORMATION SCIENCE
Keywords
handoff; micro-mobility; nested mobile network; route optimization; hierarchical mobile IPv6; hierarchical prefix delegation protocol; AHS
Citation
JOURNAL OF INFORMATION SCIENCE AND ENGINEERING, v.24, no.1, pp.221 - 236
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF INFORMATION SCIENCE AND ENGINEERING
Volume
24
Number
1
Start Page
221
End Page
236
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/124507
ISSN
1016-2364
Abstract
Network Mobility Basic Support protocol (NEMO Basic) that is designed to offer network mobility is not efficient to offer low latency handoff in the case of nested mobile networks since fairly sub-optimal routing is utilized. A mobile network is composed of Mobile Network Nodes (MNNs) and a Mobile Router (MR). Route optimization for MNNs in IPv6 mobile networks is performed with Hierarchical Prefix Delegation protocol (HPD) and Reverse Routing Header (RRH). However, when a mobile network that contains a lot of MNNs moves locally in a nested mobile network, problems such as handoff latency, signaling overhead and packet losses will occur. This paper proposes an Advanced Handoff Scheme (AHS) which overcomes the limitations in conventional solutions. Combining the HPD and the Hierarchical Mobile IPv6 (HMIPv6) functionality can enable the improvement to the micro-mobility problem, and the location address of MNNs is created in Hierarchical Mobile Network Prefix (HMNP) assignment. Furthermore, a Mobility Management Router (MMR) is allowed to update the binding information of all MNNs in a mobile network without getting Binding Update messages (BUs) from the MNNs as the MMR receives a BU from the MR in the mobile network. The simulation is done by NS-2. The results show that a significant improvement is achieved compared to conventional solutions in terms of handoff latency, signaling overhead, and transmission delay.
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