Topology dynamics and routing for predictable mobile networks

Daniel Fischer, D. Basin, T. Engel
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引用次数: 43

Abstract

Predictable mobile networks are dynamic in terms of the mobility and connectivity of the network nodes. However, in contrast to mobile ad-hoc networks, their dynamics are mostly predictable, as the name suggests. Currently, no adequate topology model exists for such networks. Moreover, routing protocols based on either static or mobile ad-hoc topology models do not exploit this predictability and thus are too inefficient for use in some application areas. We present a model that formalizes predictable dynamic topologies as sequences of static snapshots. We use this model to design and prove the correctness of a protocol based on link-state routing, whose performance is superior to its static and ad-hoc counterparts. Our routing protocol accounts for occurrences of additional, unpredictable changes, as well as their interaction with predictable changes. As an application area, we focus on routing in spacecraft networks and explain the suitability of our protocol for this application domain.
可预测移动网络的拓扑动力学和路由
可预测移动网络在网络节点的移动性和连通性方面是动态的。然而,与移动自组织网络相比,它们的动态大部分是可预测的,顾名思义。目前,这种网络还没有合适的拓扑模型。此外,基于静态或移动自组织拓扑模型的路由协议没有利用这种可预测性,因此在某些应用领域中使用效率太低。我们提出了一个将可预测的动态拓扑形式化为静态快照序列的模型。我们使用该模型设计并证明了基于链路状态路由的协议的正确性,该协议的性能优于静态和ad-hoc协议。我们的路由协议考虑了额外的、不可预测的变化的发生,以及它们与可预测的变化的交互。作为一个应用领域,我们重点研究了航天器网络中的路由,并解释了我们的协议在该应用领域的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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