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Location-Aware Combinatorial Key Management Scheme for Clustered Sensor Networks

机译:集群传感器网络的位置感知组合密钥管理方案

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Recent advances in wireless sensor networks (WSNs) are fueling the interest in their application in a wide variety of sensitive settings such as battlefield surveillance, border control, and infrastructure protection. Data confidentiality and authenticity are critical in these settings. However, the wireless connectivity, the absence of physical protection, the close interaction between WSNs and their physical environment, and the unattended deployment of WSNs make them highly vulnerable to node capture as well as a wide range of network-level attacks. Moreover, the constrained energy, memory, and computational capabilities of the employed sensor nodes limit the adoption of security solutions designed for wire-line and wireless networks. In this paper, we focus on the management of encryption keys in large-scale clustered WSNs. We propose a novel distributed key management scheme based on Exclusion Basis Systems (EBS); a combinatorial formulation of the group key management problem. Our scheme is termed SHELL because it is Scalable, Hierarchical, Efficient, Location-aware, and Light-weight. Unlike most existing key management schemes for WSNs, SHELL supports rekeying and, thus, enhances network security and survivability against node capture. SHELL distributes key management functionality among multiple nodes and minimizes the memory and energy consumption through trading off the number of keys and rekeying messages. In addition, SHELL employs a novel key assignment scheme that reduces the potential of collusion among compromised sensor nodes by factoring the geographic location of nodes in key assignment. Simulation results demonstrate that SHELL significantly boosts the network resilience to attacks while conservatively consuming nodes' resources.
机译:无线传感器网络(WSN)的最新进展正在促使人们对其在各种敏感环境中的应用感兴趣,例如战场监视,边界控制和基础设施保护。在这些设置中,数据机密性和真实性至关重要。但是,无线连接,缺乏物理保护,WSN与它们的物理环境之间的紧密交互以及WSN的无人值守部署使它们极易受到节点捕获以及广泛的网络级攻击的攻击。而且,所采用的传感器节点的有限的能量,存储器和计算能力限制了为有线和无线网络设计的安全解决方案的采用。在本文中,我们专注于大规模集群式WSN中的加密密钥管理。我们提出了一种基于排他基础系统(EBS)的新型分布式密钥管理方案。组密钥管理问题的组合表述。我们的方案之所以被称为SHELL,是因为它具有可伸缩性,分层性,高效性,位置感知性和轻量性。与大多数现有的WSN密钥管理方案不同,SHELL支持密钥更新,从而增强了网络安全性和针对节点捕获的生存能力。 SHELL通过权衡密钥数量和重新输入密钥消息,在多个节点之间分配密钥管理功能,并最大程度地减少了内存和能耗。此外,SHELL采用了一种新颖的密钥分配方案,该方案通过在密钥分配中考虑节点的地理位置,从而减少了受损传感器节点之间发生合谋的可能性。仿真结果表明,SHELL显着提高了网络抵御攻击的能力,同时保守地消耗了节点的资源。

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