IP traceback marking scheme based packets filtering mechanism

Sharon Yan Ping, Lee Moonchuen
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引用次数: 4

Abstract

Denial of service attacks have become one of the most serious threats to the Internet community. One effective means to defend against such attacks is to locate the attack source(s) and to filter out the attack traffic. To locate the attack source(s), this paper proposes an adaptive packet marking scheme for IP traceback, which supports two types of marking. A participating border router would perform deterministic router id marking when a packet enters the network for the first time, and probabilistic domain id marking when it receives a packet from another domain. After collecting sufficient packets, the victim would reconstruct the attack graph incorporating attack paths and the source router(s) identified, with each node on the paths viewed as a domain. Based on the attack graph traced back we propose to let the filtering agent(s) inspect the markings inscribed in the received packets and filter the packets with a marking matching with the attack signatures. Simulation results show that the proposed marking scheme outperforms other IP traceback methods as it requires fewer packets for attack paths reconstruction, and can handle large number of attack sources effectively with relatively low false positives produced. Meanwhile, with the attack packets filtering mechanism, around 80% attack traffic would be removed and the normal traffic can be efficiently preserved in order to restore the victim's service.
基于IP回溯标记方案的包过滤机制
拒绝服务攻击已经成为互联网社区面临的最严重威胁之一。定位攻击源并过滤攻击流量是防范此类攻击的有效手段之一。为了定位攻击源,本文提出了一种IP溯源的自适应数据包标记方案,该方案支持两种类型的标记。参与边界路由器将在数据包第一次进入网络时执行确定性路由器id标记,并在收到来自另一个域的数据包时执行概率域id标记。在收集到足够的数据包后,受害者将重建包含攻击路径和识别的源路由器的攻击图,并将路径上的每个节点视为一个域。基于追踪到的攻击图,我们提出让过滤代理检查接收到的数据包中包含的标记,并使用与攻击签名匹配的标记对数据包进行过滤。仿真结果表明,该标记方案重构攻击路径所需数据包较少,能够有效处理大量攻击源,且产生的误报率较低,优于其他IP溯源方法。同时,通过攻击包过滤机制,可以去除80%左右的攻击流量,并有效地保留正常流量,从而恢复被攻击对象的业务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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