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Combating against Internet worms in large-scale networks: an autonomic signature-based solution

机译:对抗大规模网络中的Internet蠕虫:基于自主签名的解决方案

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摘要

In this paper, we propose a signature-based hierarchical email worm detection (SHEWD) system to detect e-mail worms in large-scale networks. The proposed system detects novel worms and instantly generates their signatures. This feature helps to check the spread of any kind of worm-known or unknown.rnWe envision a two-layer hierarchical architecture comprising local security managers (LSMs), metropolitan security managers (MSM), and a global security manager (GSM). Local managers collect suspicious flows and hand them to metropolitan managers. Metropolitan managers then use cluster analysis to sort worms from the suspicious flows. The sorted worms are used to generate the worm signature which is relayed to the global manager and then to all the collaborating networks. A separate scheme is proposed to automatically select suitable values of the system parameters. This parameter selection procedure takes into account the current network state and the threat level of the ongoing attack. The performance of the whole system is investigated using real network traffic with traces of worms. Experimental results demonstrate that the proposed scheme is capable to accurately detect email worms during the early phase of their propagations.
机译:在本文中,我们提出了一种基于签名的分层电子邮件蠕虫检测(SHEWD)系统,用于检测大规模网络中的电子邮件蠕虫。拟议的系统检测新型蠕虫并立即生成其特征码。此功能有助于检查任何已知的或未知的蠕虫病毒的传播。我们设想一个两层的层次结构,包括本地安全管理器(LSM),都市安全管理器(MSM)和全局安全管理器(GSM)。当地经理收集可疑流量,并将其交给大城市经理。大城市管理者然后使用聚类分析从可疑流中对蠕虫进行分类。排序后的蠕虫用于生成蠕虫签名,该蠕虫签名将中继到全局管理器,然后再中继到所有协作网络。提出了一种单独的方案来自动选择系统参数的合适值。此参数选择过程考虑了当前的网络状态和正在进行的攻击的威胁级别。使用真实的网络流量和蠕虫痕迹来研究整个系统的性能。实验结果表明,该方案能够在蠕虫传播的早期阶段准确检测出蠕虫。

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