高利用率manet中的时间敏感多流路由

Klement Hagenhoff, Eike Viehmann, G. Rodosek
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引用次数: 0

摘要

manet由几个相互无线连接的移动节点组成。这些网络是自组织的,每个参与者负责路由和数据转发。路由协议只提供本地或过时的拓扑知识,因为参与者是不断移动的。此外,传输能力有限,这往往导致过度利用的网段。容量一致性路径分布具有挑战性,因为节点的路由是基于它们不完全的拓扑知识。最近的研究表明,最新和完整的网络拓扑表示可以快速地传递给控制器,控制器在任意节点上实例化。现在,路由和路径部署可以外包给控制器。有了这些知识,我们介绍了几种寻路方法来回答这个问题,如果以及在多大程度上可以找到几个流的非过度利用路由,而普通的MANET路由技术会失败。此外,由于节点的移动性,拓扑结构会发生变化,因此必须快速计算路径。我们的寻径技术也专注于长连接寿命的路由。考虑到典型的MANET行为,我们比较了关于容量使用、计算时间和连接寿命的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time-sensitive Multi-Flow Routing in Highly Utilized MANETs
MANETs comprise several mobile nodes, wirelessly connected with each other. These networks are self-organized, each participant is responsible for routing and data forwarding. Routing protocols only provide local or outdated topology knowledge because participants are moving continuously. Also, transmission capacities are limited which often results in over-utilized network segments. Capacity conform path distribution is challenging since nodes route based on their incomplete topology knowledge. Recent work showed that an up-to-date and complete network topology representation can quickly be delivered to a controller, which is instantiated on an arbitrary node. Now, routing and path deployment can be outsourced to the controller. With this knowledge, we introduce several path finding approaches to answer the question if and to which extent non over-utilizing routes for several flows can be found where common MANET routing techniques would fail. Also, paths have to be computed quickly since topologies change due to the mobility of nodes. Our path finding techniques also focus on routes aiming for long connection lifetime. We compare our approaches regarding capacity usage, computation times, and connection lifetimes, taking into consideration typical MANET behavior.
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