基于洪水的分布式拒绝服务攻击性能验证研究

IF 2 Q3 TELECOMMUNICATIONS Journal of Computer Networks and Communications Pub Date : 2020-01-31 DOI:10.47277/ijcncs/8(1)1
S. Singh, Ea Bhandari, Kk Saluja, A. L. Sangal
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引用次数: 0

摘要

在过去的几十年里,网络技术经历了爆炸式的增长。安全界普遍接受的观点是,没有一个系统或网络是完全受保护的,这使得网络安全成为一个重要问题。本文所做的工作集中在分布式拒绝服务攻击(DDoS)上,即阻止合法用户访问网络服务。分布式拒绝服务(DDoS)攻击越来越多地被发现干扰组织的正常工作,造成数十亿卢比的损失。各组织正在尽最大努力减少这些系统造成的损失。本文的重点是提供我们在NS2.35模拟环境中进行基于洪水的DDoS攻击的实验结果。本文指出,在不同的攻击强度下,UDP类型的攻击比TCP类型的攻击更容易淹没带宽。在本文中,我们对基于洪泛的DDoS攻击下的DropTail和RED队列进行了验证,这对洪泛攻击下的合法用户更有利。
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Study to Validate the Performance of Flooding Based Distributed Denial of Service Attacks
Network technology has experienced explosive growth in the past decades. The generally accepted viewpoint in the security world is that no system or network is totally protected which makes network security an important concern. The work done in this paper focuses on Distributed Denial of Service Attacks (DDoS) where legitimate users are prevented from accessing network services. Distributed Denial of Service (DDoS) Attacks has been increasingly found to be disturbing the normal working of organizations causing billions of rupees of losses. Organizations are trying their best to reduce their losses from these systems. The focus of this paper is to providing our results of experiments in this regard for flooding based DDoS attacking in the simulation environment with NS2.35. This paper point out that the bandwidth may be more easily flooded by UDP-type attacking than by TCP-type one at different attack strength. In this paper we done the validation of DropTail and RED queue under the flooding based DDoS attack, which is better for the legitimate user under the flooding attack.
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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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