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CARE: Enhancing Denial-of-Service Resilience in Mobile Ad Hoc Networks

机译:关心:加强移动临时网络中的拒绝服务恢复力

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This paper proposes an attack-resilient routing architecture, called Cross-layer Active RE-routing (CARE), for Mobile Ad hoc NETworks (MANETs). Different from existing solutions, CARE does not focus on a particular type of attack, but instead takes a fundamentally general approach - it achieves resilience against a wide range of routing disruption Denial-of-Service (DoS) attacks by treating them and "dysfunctional" network events in the same way. Here, dysfunctional network events denote link and routing failures caused by link contention or node mobility. CARE is a cross-layer scheme that detects attacks at the transport layer but responds to them at the network layer. Because dysfunctional network events and routing disruption attacks have a pronounced effect on the size of the TCP congestion window, monitoring the window size is an effective method of detecting such events. Using this method, CARE is able to detect attacks. Once an attack is detected, CARE initiates a re-routing process to find a new route. For this purpose, a re-routing algorithm is proposed that circumvents the nodes that are likely to be misbehaving. Analysis and simulation results show that the CARE architecture is effective in thwarting a number of insider and protocol-compliant attacks. Our results indicate that CARE is also effective in improving network throughput in non-hostile environments because its proactive re-routing mechanism aids in maintaining a reasonable level of throughput when dysfunctional network events occur.
机译:本文提出了一种攻击弹性路由架构,称为跨层主动重新路由(Care),用于移动临时网络(MANET)。与现有解决方案不同,护理并未关注特定类型的攻击,而是采取从根本上的方法 - 它通过治疗它们和“功能失调”和“功能失调”实现了对广泛的路由中断拒绝服务(DOS)攻击的抵御能力网络事件以同样的方式。在这里,功能障碍网络事件表示由链接争用或节点移动性引起的链路和路由故障。护理是一种横向方案,可检测到传输层的攻击,但在网络层响应它们。由于功能障碍网络事件和路由中断攻击对TCP拥塞窗口大小具有明显的影响,因此监视窗口大小是检测此类事件的有效方法。使用此方法,护理能够检测到攻击。检测到攻击后,护理启动重新路由过程以找到新路线。为此目的,提出了一种重新路由算法,以避免可能是行为不端的节点。分析和仿真结果表明,护理架构在挫败许多内幕和协议标准的攻击方面是有效的。我们的结果表明,护理也有效地改善了非敌对环境中的网络吞吐量,因为其主动重新路由机制有助于在功能障碍网络事件发生时保持合理的吞吐量。

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