无线传感器网络中检测选择性转发攻击的检查点节点数控制方法

Sang Jin Lee, Ingeol Chun, Wontae Kim, Seungmin Park
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引用次数: 3

摘要

传感器网络容易受到拒绝服务攻击类型的攻击,例如攻击者注入受损节点的选择性转发攻击,试图拒绝这些节点的关键信息或欺骗基站。这种攻击可以压制或修改关键信息,如敌军的移动。然而,这种类型的攻击面临着这样的风险,即相邻节点会得出妥协节点已经失败的结论,并决定寻找另一条路由。为了检测选择性转发攻击,Xiao、Yu和Gao提出了基于检查点的多跳确认方案(CHEMAS)。检查点节点用于检测选择性转发攻击产生的区域。然而,CHEMAS选择检查点节点的概率是静态的;它无法实现检测能力与能耗之间的灵活协调。提出了一种确定无线传感器网络中选择性转发攻击检测检查点节点数的方法。该方法利用基于模糊规则的系统,综合考虑每条路径的剩余能量、可疑节点的数量以及估计到每个节点的距离等因素来选择检查点节点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control method for the number of checkpoint nodes for detecting selective forwarding attacks in wireless sensor networks
Sensor networks are vulnerable to types of Denial-of-Service attacks such as the selective forwarding attack in which an adversary injects the compromised nodes, attempting to either deny these nodes of critical information or to deceive the base station. This attack can suppress or modify critical information such as the movement of enemy forces. However, such type of attacks faces the risk that neighboring nodes will conclude that the compromised node has failed and they will decide to find another route. To detect a selective forwarding attack, Xiao, Yu and Gao proposed the checkpoint-based multi-hop acknowledgement scheme (CHEMAS). The check-point nodes are used to detect the area where the selective forwarding attack is generated. However, CHEMAS has the static probability of selecting check-point nodes; it cannot achieve the flexibility to coordinate between the detection capability and energy consumption. This paper proposes a method that determines the number of checkpoint nodes for detecting selective forwarding attacks in wireless sensor networks. In the proposed method, a fuzzy rule-based system is exploited for selecting the checkpoint nodes by considering factors like the remaining energy of each path, the number of suspect nodes and the estimated distance from the BS to each node.
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