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Efficient routing in delay tolerant networks with correlated node mobility

机译:具有相关节点移动性的延迟容忍网络中的高效路由

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In a delay tolerant network (DTN), nodes are connected intermittently and the future node connections are mostly unknown. Since in these networks, a fully connected path from source to destination is unlikely to exist, message delivery relies on opportunistic routing. However, effective forwarding based on a limited knowledge of contact behavior of nodes is challenging. Most of the previous studies looked at only the pairwise node relations to decide routing. In contrast, in this paper, we analyze the correlation between the meetings of each node with other nodes and focus on the utilization of this correlation for efficient routing of messages. We introduce a new metric called conditional intermeeting time, which computes the average intermeeting time between two nodes relative to a meeting with a third node using only the local knowledge of the past contacts. Then, we show how we can utilize the proposed metric on the existing DTN routing protocols to improve their performance. For shortest-path based routing protocols in DTNs, we propose to route messages over conditional shortest paths in which the link cost between nodes are defined by conditional intermeeting times. Moreover, for metric-based forwarding protocols, we propose to use conditional intermeeting time as an additional delivery metric while making forwarding decisions of messages. Our trace-driven simulations on three different datasets show that the modified algorithms perform better than the original ones.
机译:在延迟容忍网络(DTN)中,节点是间歇性连接的,以后的节点连接几乎是未知的。由于在这些网络中,不太可能存在从源到目的地的完全连接的路径,因此消息传递依赖于机会路由。然而,基于节点的接触行为的有限知识的有效转发是具有挑战性的。先前的大多数研究仅考察成对节点关系来确定路由。相反,在本文中,我们分析了每个节点与其他节点之间的会议之间的相关性,并着重于利用这种相关性来有效地路由消息。我们引入了一种新的度量,称为条件会议时间,该条件仅使用过去联系人的本地知识来计算相对于与第三个节点的会议而言,两个节点之间的平均会议时间。然后,我们展示了如何在现有DTN路由协议上利用建议的度量标准来提高其性能。对于DTN中基于最短路径的路由协议,我们建议在条件最短路径上路由消息,在该条件下,节点之间的链路开销由条件间会议时间定义。此外,对于基于度量的转发协议,我们建议在制定消息的转发决策时,将有条件的会议时间用作附加的传递度量。我们对三个不同数据集的跟踪驱动模拟显示,修改后的算法比原始算法具有更好的性能。

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