移动自组织网络中的包传输时间算法

Adel Alshamrani
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引用次数: 18

摘要

虫洞攻击很难被检测到,而且很容易实现。攻击者可以从网络中的一个位置接收数据包,并将其隧道传输到不同位置的另一个端点,然后将其重新注入网络。攻击者可以采用以下三种方式对报文进行隧道化:封装报文、使用外链路或使用大功率。如果网络中有两个或两个以上的恶意节点参与虫洞攻击,则攻击会变得更加强大。虫洞攻击有两种类型:隐藏模式和暴露(参与)模式。本文提出了一种在无特殊硬件的无线多跳网络中检测隐藏或暴露模式虫洞攻击的算法。该算法是对另一种基于传输时间机制(TTM)的算法的改进。此外,我们的算法引入了一种新的机制,称为分组旅行时间(PTT)。这种机制允许每个设备监控其邻居的行为。因此,该机制既可以检测隐藏的虫洞攻击,也可以检测暴露的虫洞攻击,可以对AODV、DSR协议中的虫洞进行定位。
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PTT: Packet Travel Time Algorithm in Mobile Ad Hoc Networks
The wormhole attack is hard to detect and can be easily implemented. An attacker may receive packets from one location in the network and tunnel them to the other end point in a different location and re-inject them into the network. Attackers can tunnel the packets by one of the following methods: encapsulating the packets, using out-of-bound links or using high power. If there are two or more malicious nodes in the network involved in a wormhole attack, the attack becomes more powerful. There are two types of wormhole attacks: hidden mode, and exposed (participation) mode. In this paper, we present an algorithm for detecting wormhole attacks, whether in hidden or exposed mode in wireless multi-hop net-works without special hardware. Our algorithm is an improvement on another algorithm which is based on transmission time-based mechanism (TTM). Moreover, our algorithm introduces a new mechanism called Packet Travel Time (PTT). This mechanism allows each device to monitor its neighbours’ behaviour. Therefore, this mechanism can detect both hidden and exposed wormhole attacks, and can locate the wormhole in AODV, and DSR protocol.
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