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STAG-Based QoS Support Routing Strategy for Multiple Missions Over the Satellite Networks

机译:卫星网络上多个任务的基于STAG的QoS支持路由策略

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As the typical delay tolerant networks, the satellite networks possess the intermittent connections, the large-scale time delays and the time-varying topologies. Obviously, such features seriously affect the delivery of mission data with certain requirements on the traffic or latency. To decrease the delivery time, existing relay-based contact graph routing (CGR) method selects the earliest reachable path to forward mission data. However, this method cannot guarantee the transmission of a large amount data and wastes the rare contact opportunities. Therefore, in this paper, we focus on the transmission QoS problem of multiple missions over the satellite networks, and design a QoS support routing strategy to achieve multiple flow-maximizing paths with acceptable delivery delays. Especially, with the storage time aggregated graph (STAG), we construct an on-demand mission model to depict both the network dynamic characteristics and the different mission requirements, and then reduce the QoS support problem as a graph-based maximum flow problem. To solve this problem, one STAG-based multiple flow-maximizing routing scheme is proposed to ensure the mission QoS and match the rare network resources, which has low computation complexity. Finally, compared with CGR, simulation results demonstrate the proposed scheme can achieve a higher mission completion rate and resource utilization rate.
机译:作为典型的延迟容忍网络,卫星网络具有间歇性连接,大规模时延和时变拓扑。显然,这些功能严重影响任务数据的传递,对流量或延迟有一定要求。为了减少交付时间,现有的基于中继的联系图路由(CGR)方法选择了最早的可到达路径来转发任务数据。但是,这种方法不能保证大量数据的传输,并且浪费了难得的联系机会。因此,在本文中,我们着眼于卫星网络上多个任务的传输QoS问题,并设计了QoS支持路由策略,以实现具有可接受的传递延迟的多路流量最大化路径。特别是,利用存储时间聚合图(STAG),我们构建了一个按需任务模型来描述网络动态特性和不同的任务需求,然后将QoS支持问题减少为基于图的最大流量问题。为了解决这个问题,提出了一种基于STAG的多流最大化路由方案,以保证任务的QoS并匹配稀有网络资源,计算复杂度低。最后,与CGR相比,仿真结果表明该方案可以实现更高的任务完成率和资源利用率。

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