Performance evaluation of routing protocol on AODV and DSR under wormhole attack

IF 2 Q3 TELECOMMUNICATIONS Journal of Computer Networks and Communications Pub Date : 2013-01-01 DOI:10.47277/ijcncs/1(1)1
M. G. Sanaei, I. Isnin, M. Bakhtiari
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引用次数: 12

Abstract

Today’s Mobile Ad hoc Networks (MANETs) became a popular issue for scientists, and diverse studies have been made to increase the performance of ad hoc networks. In MANET nodes compromise to forward packets for each other communicate beyond their transmission range. The mobile nodes communicate with each other without any infrastructure. As wireless ad-hoc networks lack an infrastructure, they are exposed to a lot of attacks [1]. One of these attacks called Wormhole Attack that two adversary node collaborate together to transmit the packets in out of band channel. In this paper, performance of Ad hoc on-Demand Distance Vector (AODV) Protocol and Dynamic Source Routing (DSR) protocol are evaluated in presence of wormhole attack and without wormhole attack with Constant Bit Rate (CBR) traffic under dissimilar scalable network mobility. Also we evaluate effect and compare it with standard protocol in term of Packet Delivery Ratio, throughput and End to End Delay via simulation, using Network Simulation2 (NS2) for our research.
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虫洞攻击下AODV和DSR路由协议性能评价
如今,移动自组网(manet)成为科学家们关注的热门问题,人们已经进行了各种各样的研究来提高自组网的性能。在MANET中,节点之间相互妥协以转发超出其传输范围的数据包。移动节点无需任何基础设施即可相互通信。由于无线自组织网络缺乏基础设施,因此容易受到大量攻击。其中一种攻击称为虫洞攻击,即两个敌对节点协同在带外信道中传输数据包。在不同的可扩展网络移动特性下,对存在虫洞攻击和不存在虫洞攻击时的AODV协议和动态源路由协议的性能进行了评估。并利用网络仿真软件NS2对其与标准协议在分组传送率、吞吐量和端到端延迟等方面进行了仿真比较。
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来源期刊
CiteScore
5.30
自引率
5.00%
发文量
18
审稿时长
15 weeks
期刊介绍: The Journal of Computer Networks and Communications publishes articles, both theoretical and practical, investigating computer networks and communications. Articles explore the architectures, protocols, and applications for networks across the full spectrum of sizes (LAN, PAN, MAN, WAN…) and uses (SAN, EPN, VPN…). Investigations related to topical areas of research are especially encouraged, including mobile and wireless networks, cloud and fog computing, the Internet of Things, and next generation technologies. Submission of original research, and focused review articles, is welcomed from both academic and commercial communities.
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