Mobility Management For Mobile IP Networks




In wireless networks, efficient management of mobility is a crucial issue to support mobile users. The Mobile Internet Protocol (MIP) has been proposed to support global mobility in IP networks. Several mobility management strategies have been proposed which aim reducing the signaling traffic related to the Mobile Terminals (MTs) registration with the Home Agents (HAs) whenever their Care-of-Addresses (CoAs) change. They use different Foreign Agents (FAs) and Gateway FAs (GFAs) hierarchies to concentrate the registration processes. For high-mobility MTs, the Hierarchical MIP (HMIP) and Dynamic HMIP (DHMIP) strategies localize the registration in FAs and GFAs, yielding to high-mobility signaling. The Multicast HMIP strategy limits the registration processes in the GFAs. For high-mobility MTs, it provides lowest mobility signaling delay compared to the HMIP and DHMIP approaches. However, it is resource consuming strategy unless for frequent MT mobility. Hence, we propose an analytic model to evaluate the mean signaling delay and the mean bandwidth per call according to the type of MT mobility. In our analysis, the MHMIP

Outperforms the DHMIP and MIP strategies in almost all the studied cases. The main contribution of this paper is the analytic model that allows the mobility management approaches performance evaluation.

This project includes four modules namely

• Mobile teminal

• Foreign agents

• Gateway Foreign agents

• Mobile Server

Skills: Data Entry

See more: modules mobility management approaches mobile networks, mobility management approaches mobile networks description, mobility management mobile networks, mts mobile, data entry model paper, wireless networks, project management processes, performance management, mobility, evaluate data model, data analytic, Bandwidth management, global dynamic, change project paper, issue related management, entry processes, management issue, change management paper, change management project, management strategy, management modules, traffic bandwidth, aim data entry, mobile terminals, internet server management

Project ID: #2627582

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