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A lightweight hybrid security framework for wireless sensor networks

机译:用于无线传感器网络的轻型混合安全框架

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On the one hand, intrusion detection systems (IDSs) have shown their ability to detect internal and external attacks with a high accuracy. On the other hand, cryptography techniques have proved their ability to assure the privacy of communication, i.e. data confidentiality. In this paper, we propose to develop and implement a lightweight Security Framework for Wireless Sensor Networks (WSNs) that combines the advantages of both cryptography and IDS techniques to assure the privacy of communication and detect the most dangerous attacks such as spoofed, altered or replayed routing information, man-in-the-middle, and denial-of-service attacks. However, the execution of both techniques at each node generates high overhead and energy consumption, even if we consider a cluster-based WSN. To economize nodes' energy, the cryptography operation is launched during a certain period determined mathematically and only within the cluster where a malicious node is detected. The proposed framework is evaluated analytically and implemented under TOSSIM simulator. According to our simulation results, our framework outperforms other security frameworks proposed in the literature in terms of detection rate, false positive rate, energy consumption and average efficiency.
机译:一方面,入侵检测系统(IDS)已经显示出具有高精度检测内部和外部攻击的能力。另一方面,加密技术已经证明了他们确保通信隐私的能力,即数据机密性。在本文中,我们建议为无线传感器网络(WSN)开发和实施一款轻量级安全框架,它结合了加密和ID技术的优势,以确保通信的隐私,并检测诸如欺骗,改变或重放之类的最危险的攻击路由信息,中间人和拒绝服务攻击。然而,即使我们考虑基于群集的WSN,每个节点的两种技术的执行也会产生高开销和能量消耗。为了节约节点的能量,在数学上确定的一段时间内并仅在检测到恶意节点的集群内启动密码操作。在Tossim模拟器下进行了分析和实施了所提出的框架。根据我们的仿真结果,我们的框架在检测率,假阳性率,能耗和平均效率方面表现出文献中提出的其他安全框架。

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