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A Two-Tier Heterogeneous Mobile Ad Hoc Network Architecture and Its Load-Balance Routing Problem

机译:两层异构移动自组织网络架构及其负载均衡路由问题

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The mobile ad hoc network (MANET) has attracted a lot of interest recently. However, most of the existing works have assumed a stand-alone MANET. In this paper, we propose a two-tier, heterogeneous MANET architecture which can support Internet access. The low tier of the network consists of a set of mobile hosts each equipped with a IEEE 802.11 wireless LAN card. In order to connect to the Internet and handle the network partitioning problem, we propose that the high tier is comprised of a subset of the mobile hosts, called gateways, which can access to cellular/infrastructure networks. The high tier is heterogeneous in the sense that the network interfaces in the gateway hosts could be IEEE 802.11 cards, PHS handsets, or GPRS handsets characterized by different bandwidths and latencies. Observing that the gateways could become the bottlenecks of the two-tier network, we propose a set of solutions, namely boundary-moving, host-partitioning, and probabilistic solutions, to solve the load-balance routing issue. Implementation issues/concerns of these schemes are discussed. Simulation results are presented to compare these load-balance routing schemes.
机译:移动自组织网络(MANET)最近吸引了很多兴趣。但是,大多数现有作品都采用了独立的MANET。在本文中,我们提出了一种可以支持Internet访问的两层异构MANET体系结构。网络的低层由一组移动主机组成,每个移动主机均配备有IEEE 802.11无线LAN卡。为了连接到Internet并处理网络分区问题,我们建议高层由移动主机的子集(称为网关)组成,可以访问蜂窝/基础结构网络。从网关主机中的网络接口可以是具有不同带宽和等待时间特征的IEEE 802.11卡,PHS手机或GPRS手机的角度来看,高层是异构的。观察到网关可能成为两层网络的瓶颈,我们提出了一套解决方案,即边界移动,主机分区和概率解决方案,以解决负载平衡路由问题。讨论了这些方案的实施问题/关注点。给出了仿真结果以比较这些负载平衡路由方案。

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