An intelligent and lightweight intrusion detection mechanism for RPL routing attacks by applying automata model

D. Gothawal, S. Nagaraj
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引用次数: 1

Abstract

ABSTRACT Routing Protocol for Low power and Lossy network (RPL) offers a set of mechanisms to attain efficient communication over resource-limited heterogeneous IoT environments. RPL attacks downgrade the network performance by disrupting the optimal protocol structure. So it is crucial to develop lightweight security solutions to detect such attacks and maximize the RPL performance. This paper designs an intelligent and lightweight IDS model named RPL Attacks based on Intrusion Detection for Efficient Routing (RAIDER) to reinforce security of RPL routing mechanism. RAIDER addresses the lack of security over RPL by analyzing the impacts of four RPL attacks using simulation, incorporates an automata theory with the IDS nodes to scrutinize the node behavior and to diminish the impact of such attacks. The IDS nodes monitor the network and periodically transplant the observed information as different states based on the finite automata theory. RAIDAR takes attack decisions based on the state transitions pre-estimated threshold of context-aware attack decision-making model and detects RPL attacks. RAIDER improves the RPL routing performance with minimum energy consumption. The Contiki Cooja-based simulation results demonstrate the efficiency of the RAIDER in terms of the packet delivery ratio, energy consumption, delay, overhead, attack detection accuracy, and network lifetime.
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应用自动机模型,提出了一种针对RPL路由攻击的智能轻量级入侵检测机制
低功耗和损耗网络路由协议(RPL)提供了一套机制,以在资源有限的异构物联网环境中实现高效通信。RPL攻击通过破坏最优协议结构来降低网络性能。因此,开发轻量级安全解决方案来检测此类攻击并最大限度地提高RPL性能至关重要。为了增强RPL路由机制的安全性,本文设计了一种基于高效路由入侵检测(RAIDER)的智能轻量级入侵检测模型——RPL攻击。RAIDER通过模拟分析四种RPL攻击的影响,解决了RPL缺乏安全性的问题,将自动机理论与IDS节点结合起来,仔细检查节点行为并减少此类攻击的影响。IDS节点基于有限自动机理论对网络进行监测,并周期性地将观察到的信息移植为不同的状态。RAIDAR基于情境感知攻击决策模型的状态转移预估阈值进行攻击决策,检测RPL攻击。RAIDER以最小的能耗提高了RPL路由性能。基于Contiki cooja的仿真结果证明了RAIDER在数据包传输率、能量消耗、延迟、开销、攻击检测精度和网络生命周期等方面的效率。
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