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Optimizing message delivery in mobile-opportunistic networks

机译:在移动机会网络中优化消息传递

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The big challenge of routing in opportunistic mobile networks, overlooked by most researchers, is to not only find any path to the destination, but a path that is stable and powerful enough to actually carry the message. Few attempts addressed this problem, all of them under controlled scenarios, avoiding the complexity of real-world connectivity. As a result of our comparison of selected networks under a wide variety of realistic scenarios, we have not only been able to identify and describe favorable traits of protocols, but also necessary relationship of successful MON protocols with QoS routing in wired networks. We present a novel protocol, Nile1, that performs both in dense as well as sparse networks. Nile is the first autonomous “controlled Hooding” protocol that keeps the link loads in check, to push replicas only on those paths that are both promising and may sustain more load. It is a multi path protocol that deploys replication based on heuristic for disjoint path calculation. Other protocols'' performance, when simulated in real-world traces, highly depends on parameter choice. Nile, however, consistently performs among the top protocols without any external tuning and exerts far less overhead than other replication protocols.
机译:大多数研究人员都忽略了机会移动网络中路由的最大挑战,即不仅要找到到达目的地的任何路径,而且还要找到足够稳定且功能强大的路径以实际传送消息。很少有尝试解决此问题的方法,所有这些方法都在受控的情况下进行,从而避免了现实世界中连接的复杂性。通过比较各种现实情况下选定网络的结果,我们不仅能够识别和描述协议的有利特性,而且还能成功地将MON协议与有线网络中QoS路由建立必要的关系。我们提出了一种新颖的协议Nile1,它既可以在密集网络中也可以在稀疏网络中执行。尼罗河是第一个自主的“受控Hooding”协议,用于控制链路负载,仅在有希望且可能承受更多负载的路径上推送副本。它是一种多路径协议,该协议基于启发式部署复制以进行不相交的路径计算。在实际跟踪中模拟其他协议时,其性能在很大程度上取决于参数的选择。但是,Nile始终在顶级协议中执行,而无需进行任何外部调整,并且所产生的开销比其他复制协议要少得多。

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