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Robust Cross-Layer Security Framework For Internet of Things Enabled Wireless Sensor Networks

机译:启用物联网的无线传感器网络的稳健跨层安全框架

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摘要

The significant development of Internet of Things (IoT) paradigm for monitoring the real-time applications using the wireless communication technologies leads to various challenges. The secure data transmission and privacy is one of the key challenges of IoT enabled Wireless Sensor Networks (WSNs) communications. Due to heterogeneity of attackers like Man-in-Middle Attack (MIMA), the present single layered security solutions are not sufficient. In this paper, the robust cross-layer trust computation algorithm for MIMA attacker detection proposed for IoT enabled WSNs called IoT enabled Cross-Layer Man-in-Middle Attack Detection System (IC-MADS). In IC-MADS, first robust clustering method proposed to form the clusters and cluster head (CH) preference. After clustering, for every sensor node, its trust value computed using the parameters of three layers such as MAC, Physical, and Network layers to protect the network communications in presence of security threats. The simulation results prove that IC-MADS achieves better protection against MIMA attacks with minimum overhead and energy consumption.
机译:物联网(IoT)范式的重大发展,用于使用无线通信技术监视实时应用程序带来了各种挑战。安全的数据传输和隐私是启用IoT的无线传感器网络(WSN)通信的主要挑战之一。由于攻击者的异质性,例如中间人攻击(MIMA),因此当前的单层安全解决方案是不够的。本文针对用于IoT的WSN提出了用于MIMA攻击者检测的健壮的跨层信任计算算法,称为IoT启用跨层中间人攻击检测系统(IC-MADS)。在IC-MADS中,提出了第一种鲁棒的聚类方法以形成聚类和聚类首部(CH)偏好。群集后,对于每个传感器节点,其信任值使用MAC,物理和网络层等三层的参数计算得出,以在存在安全威胁时保护网络通信。仿真结果证明,IC-MADS以最小的开销和能耗实现了更好的MIMI攻击防护。

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