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Resilient Secure Localization and Detection of Colluding Attackers in WSNs

机译:WSN中的弹性安全定位和共谋攻击者的检测

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There exists extensive work in wireless sensor networks (WSNs) on security measures that guarantee the correctness of the estimation of the position of a node despite attacks from adversaries. But very little work has investigated how colluding attackers can modify the behavior of known attacks or even create new ones. In this paper, we first present an attack model that allows three types of colluding attackers to threaten the secure localization process and/or the attacker detection process. We then describe a decentralized algorithm that is used to determine the position of a location-unknown sensor U despite the presence of colluding attackers (that can alter any type of information being exchanged in a WSN in order to form an attack jointly). Most importantly, the proposed algorithm allows U to detect such colluding attackers in its sensing range. Our simulation results show that in both a uniformly deployed WSN environment and in a randomly deployed one, our Super Cross Check algorithm can achieve a high success rate for both secure localization and detection of colluding attackers.
机译:无线传感器网络(WSN)在安全措施方面进行了广泛的工作,这些安全措施即使受到来自对手的攻击,也可以确保估计节点位置的正确性。但是,很少有研究调查共谋攻击者如何修改已知攻击的行为甚至创建新的攻击。在本文中,我们首先提出一种攻击模型,该模型允许三种类型的共谋攻击者威胁安全本地化过程和/或攻击者检测过程。然后,我们描述了一种分散算法,该算法可用来确定位置未知的传感器U的位置,尽管存在共谋攻击者(可以改变WSN中交换的任何类型的信息以共同形成攻击)。最重要的是,提出的算法允许U在其感测范围内检测此类共谋攻击者。我们的仿真结果表明,在统一部署的WSN环境和随机部署的环境中,我们的超级交叉检查算法都可以在安全定位和共谋攻击者方面取得很高的成功率。

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