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An architecture for providing range extension by deploying mobile gateways in AD hoc networks

机译:通过在ad hoc网络中部署移动网关来提供范围扩展的架构

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The dynamic nature of a mobile ad hoc network (MANET) may result in a cluster of nodes being isolated from the rest of the network, especially when deployed in a terrain with blockages. To provide connectivity between the partitions of an ad hoc network that might occur due to mobility, a 'range extension' network can be employed. Such a network might consist of airborne communication platforms, or geostationary/low-earth-orbit satellites maintaining communication links with specific 'gateway' nodes that are dispersed among the mobile ground nodes. Thus, to communicate with a node that is geographically distant or belongs to a different network partition, an ad hoc node can relay its data packets through an appropriate mobile gateway and via the range extension network. In such an architecture, MANET is divided into different domains with a mobile gateway deployed for each domain. The objective, then, is to determine the position and trajectory of the gateways to optimize network performance metrics such as throughput and latency. In this paper, computation of the optimal position for a gateway is shown to be equivalent to a linear optimization problem by means of some simplifying but realistic assumptions. An algorithm is proposed for the control of the gateway trajectory. The practical constraints imposed by the velocity and maneuverability of the gateways are taken into account. Simulation results show a 10-15% improvement in the throughput and latency, per gateway domain, if a gateway has a dynamic trajectory whose locus follows the computed optimal position, as compared to a gateway that is statically placed at a fixed position, or to a gateway that has a random trajectory.
机译:移动ad hoc网络(MANET)的动态性质可能导致从网络的其余部分隔离的节点集群,尤其是在通过堵塞的地形中部署。为了提供可能由于移动性可能发生的ad Hoc网络的分区之间的连接,可以采用“范围扩展”网络。这种网络可能包括机载通信平台,或者地球静止/低地球轨道卫星维护与分散在移动地节点中的特定'网关节点的通信链路。因此,为了与地理上遥远或属于不同的网络分区的节点通信,Ad Hoc节点可以通过适当的移动网关和经由范围扩展网络中继其数据分组。在这样的架构中,MANET被分成不同的域,其用于每个域部署的移动网关。然后,目的是确定网关的位置和轨迹,以优化网络性能度量,例如吞吐量和延迟。在本文中,通过一些简化但实际的假设示出了对网关的最佳位置的计算等同于线性优化问题。提出了一种算法,用于控制网关轨迹。考虑到网关的速度和机动性所施加的实际约束。仿真结果,如果网关具有动态轨迹,则吞吐量和延迟的吞吐量和延迟的提高10-15%,与静态位置处的网关相比,轨迹沿着计算出的最佳位置,或者具有随机轨迹的网关。

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