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Partition-Based Joint Placement of Gateway and Controller in SDN-Enabled Integrated Satellite-Terrestrial Networks

机译:支持SDN的集成卫星地面网络中基于分区的网关和控制器的联合放置

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摘要

The Integrated Satellite-Terrestrial Networks (ISTNs) with Software-Defined Networking (SDN) incorporated have become the emerging architecture and have attracted considerable attention recently. Therein, the joint gateway and controller placement problem is of fundamental significance for designing ISTNs with flexible and efficient management capabilities. Hence, how to achieve network reliability maximization with low network latency in the joint placement problem is worthy of in-depth study. In this paper, a network partition algorithm, Simulated Annealing Partition-based K-means (SAPKM), is proposed and analyzed for further ameliorating the problem. Experiments are performed on real network topologies to validate the effectiveness of our approach for the joint placement problem. Compared with the state-of-the-art existing works, numerical results show that SAPKM outperforms when deploying four or more controllers in terms of network reliability performance, network latency, and inter-plane latency with less than 2 ms to converge.
机译:集成了软件定义网络(SDN)的集成卫星地面网络(ISTN)已经成为新兴的架构,并且最近引起了相当大的关注。其中,联合网关和控制器的放置问题对于设计具有灵活高效管理功能的ISTN具有根本意义。因此,在联合布局问题中如何以低网络等待时间实现网络可靠性最大化是值得深入研究的。本文提出并分析了一种基于模拟退火分区的K均值(SAPKM)的网络分区算法,以进一步解决该问题。在真实的网络拓扑上进行了实验,以验证我们的方法对于联合放置问题的有效性。与现有技术的最新成果相比,数值结果表明,在部署四个或更多控制器时,SAPKM在收敛时间不到2 ms的情况下在网络可靠性性能,网络延迟和平面间延迟方面均表现出色。

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