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Mobility Management In Hybrid Ad-hoc Networks And The Internet Environment

机译:混合自组织网络和Internet环境中的移动性管理

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The integration of mobile ad-hoc networks (MANETs) with the Internet provides flexible and multi-hop communication capability in hybrid wired and wireless networks. Existing architectures for integrating these networks use Mobile IP and ad-hoc routing protocols with fixed gateways. In this paper, we propose a mobility management scheme based on a mobile gateways (MGs) architecture. We designed a buffering mechanism for micro- and macro-mobility management in hybrid networks. The performance of mobility management with optimized handover (MM-OH), optimized handover with prediction (MM-OHP) and forced handover (MM-FH) are evaluated using simulation. Our simulation results show that a buffering mechanism coupled with the hybrid gateway discovery results in a higher packet delivery ratio for MM-OH and MM-OHP compared with the MM-FH scheme. The MM-OHP scheme has a lower number of handovers compared with the MM-OH scheme. Moreover, the simulation experiments reveal that the speed of the MG has a relatively higher impact on performance than the speed of mobile nodes.
机译:移动自组织网络(MANET)与Internet的集成为混合有线和无线网络提供了灵活的多跳通信功能。用于集成这些网络的现有体系结构使用具有固定网关的移动IP和临时路由协议。在本文中,我们提出了一种基于移动网关(MGs)体系结构的移动性管理方案。我们为混合网络中的微观和宏观流动性管理设计了一种缓冲机制。使用仿真评估了具有优化切换(MM-OH),具有预测的优化切换(MM-OHP)和强制切换(MM-FH)的移动性管理的性能。我们的仿真结果表明,与MM-FH方案相比,结合了混合网关发现的缓冲机制导致MM-OH和MM-OHP的数据包传递比率更高。与MM-OH方案相比,MM-OHP方案的切换次数更少。此外,仿真实验表明,MG的速度对性能的影响比移动节点的速度要高。

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