基于模糊知识的移动自组织网络虫洞攻击端到端行为分析方法

Pub Date : 2022-01-22 DOI:10.47747/ijisi.v2i4.581
Imeh J. Umoren, Ekemini Okpongkpong, Ifreke Udoeka
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引用次数: 1

摘要

移动自组织网络(manet)是由一系列移动节点组成的网络,在没有固定设置的情况下相互通信。当然,manet是利用通信外围节点的网络,例如;个人数字助理(pda)、移动电话、笔记本电脑,它们可以实现跨区域的无线传输,并将数据包转发到其他节点,从而导致拓扑结构的频繁变化。manet面临多种通信攻击,如主动攻击和被动攻击。主动攻击是指中断网络的正常运行,而被动攻击是指在不影响网络正常运行的情况下获取信息。虫洞是主动攻击的典型案例。实际上,攻击者在网络的一端接收数据包,通过隧道将其传输到网络的另一端,然后从该点将其重放到网络中,从而导致无线设置之间的通信崩溃。本研究利用网络模拟器(NS-2.35)和模糊推理系统(FIS)对MANET中典型的虫洞攻击进行了仿真和建模。实现了MANET传输网络层虫洞攻击的端到端行为分析。为了检测网络中虫洞攻击的程度,通过确定可能影响服务质量(QOS)交付的虫洞攻击的严重程度,考虑了报文投递率、报文转发概率和丢包概率等参数。本文的研究方向是网络安全优化。
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A Fuzzy Knowledge-Based Approach for End-2-End Behavioural Analysis of Wormhole Attacks on Mobile Ad-Hoc Networks
Mobile Ad hoc Networks (MANETs) involves series of travelling nodes communicating with each other without a fixed Set-up. Certainly, MANETs are networks that utilize communication peripatetic nodes such as; Personal Digital Assistants (PDAs), mobile phones, laptops which enable wireless transmission across an area and forwarding data packets to the other nodes resulting in frequent change in topology. MANETs are exposed to several communication assaults such as active attack and passive attack. The active attack disrupts network operations while the passive attack obtains information without upsetting normal networks operation. Wormhole is a typical case of active attack. Indeed, an attacker receives packets at one end of the network, tunnels them to another end of the network, and then replays them into the networks from that point resulting in a collapse in communication across wireless setups. This research work simulates and models a typical wormhole attack in MANET using Network Simulator (NS-2.35) and Fuzzy Inference System (FIS). The End-2-End behavioural analysis of wormhole attacks on the transmitting networks layer of MANET was realized. To detect the level of wormhole attack in the network several parameters such as Packet Delivery Ratio, Packet Forwarding Probability and Packet Dropping Probability were considered by determining the degree of severity of wormhole attack which may upset the Quality of Service (QOS) delivery. The aim of this research paper is in the direction of Network security optimization.
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