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ASSESSING SECURITY RISK FOR WIRELESS SENSOR NETWORKS UNDER CYBER ATTACK

机译:在网络攻击下评估无线传感器网络的安全风险

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A common deployment strategy for wireless sensor networks is to position sensors according to a probabilistic distribution. Some sensor distributions offer advantages in redundancy, which helps ensure network survivability even with the loss of multiple sensor nodes to cyber attack. Properly selecting an initial sensor deployment distribution mitigates the threat of a denial of service (DoS) attack. While it is clear that some distributions are superior to others, it is not clear how to select the best sensor distribution as a defensive measure. Current strategies rely on mathematical analysis and are restricted to a subset of possible distributions. This paper examines the problem from an experimental perspective. We propose a novel method for evaluating how a given sensor deployment pattern may withstand a DoS attack based on agent-based simulation. We have implemented a first prototype of our model and illustrate its feasibility as part of a future decision support system.
机译:用于无线传感器网络的常见部署策略是根据概率分布定位传感器。一些传感器分布在冗余中提供了优势,这有助于确保网络生存能力,即使是多个传感器节点到网络攻击。正确选择初始传感器部署分配减轻了拒绝服务(DOS)攻击的威胁。虽然很明显,一些分布优于其他分布,但目前尚不清楚如何选择最佳的传感器分配作为防御度量。目前的策略依赖于数学分析,并且仅限于可能的分布的子集。本文从实验角度检查了问题。我们提出了一种用于评估给定传感器部署模式如何承受基于代理的模拟的DOS攻击的新方法。我们已经实施了我们模型的第一个原型,并说明了其作为未来决策支持系统的一部分的可行性。

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