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Severity analysis and countermeasure for the wormhole attack in wireless ad hoc networks

机译:无线自组网中蠕虫攻击的严重性分析及对策

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In this paper, we analyze the effect of the wormhole attack on shortest-path routing protocols for wireless ad hoc networks. Using analytical and simulation results, we show that a strategic placement of the wormhole when the nodes are uniformly distributed can disrupt/control on average 32% of all communications across the network. We also analyze a scenario in which several attackers make wormholes between each other and a case where two malicious nodes attack a target node in the network. We show how to evaluate the maximum effect of the wormhole attack on a given network topology. Then, we compute the maximum effect of the wormhole attack on grid topology networks and show that the attackers can disrupt/control around 40% to 50% of all communications when the wormhole is strategically placed in the network. Finally, to defend against the wormhole attack, we propose a timing-based countermeasure that avoids the deficiencies of existing timing-based solutions. Using the proposed countermeasure, the nodes do not need synchronized clocks, nor are they required to predict the sending time or to be capable of fast switching between the receive and send modes. Moreover, the nodes do not need one-to-one communication with all their neighbors and do not require to compute a signature while having to timestamp the message with its transmission time.
机译:在本文中,我们分析了蠕虫攻击对无线自组织网络最短路径路由协议的影响。使用分析和仿真结果,我们表明,当节点均匀分布时,虫孔的战略布局平均可以破坏/控制整个网络中所有通信的32%。我们还分析了几种攻击者相互之间造成虫洞的情况,以及两个恶意节点攻击网络中的目标节点的情况。我们展示了如何评估蠕虫漏洞对给定网络拓扑的最大影响。然后,我们计算了虫孔攻击对网格拓扑网络的最大影响,并表明,当将虫孔策略性地放置在网络中时,攻击者可以中断/控制所有通信的40%到50%。最后,为了防御蠕虫攻击,我们提出了一种基于时序的对策,可以避免现有基于时序的解决方案的不足。使用提出的对策,节点不需要同步时钟,也不需要节点预测发送时间或能够在接收和发送模式之间快速切换。此外,节点不需要与所有邻居进行一对一通信,也不需要计算签名,而必须将消息的传输时间标记为时间戳。

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