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Performance analysis of probabilistic packet marking in IPv6

机译:IPv6中概率分组标记的性能分析

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摘要

Probabilistic packet marking (PPM) has received considerable attention as an IP traceback approach against distributed Denial-of-Service attack, which is one of the most challenging security threat in the Internet. PPM is a technique that seeks to identify the source of such attacks by marking individual packets with portion of the attack path, and then relies on the volume of attack traffic generated to ensure that the whole path can be reconstructed. However, modifying the identification field in the IPv4 packet header to mark packet incurs backward incompatibility for IP fragmented packets. In this paper, we address this issue and analyze the viability of PPM under the next-generation Internet Protocol, IPv6. In doing so, we consider the flaws inherent to IPv4 implementations that limit their backward compatibility, and demonstrate how these shortcomings can be avoided in IPv6. We show that the Flow Label field in the IPv6 datagram header can be safely and effectively overloaded to implement PPM schemes, and present simulation results verifying the applicability and efficiency of this approach.
机译:概率数据包标记(PPM)作为针对分布式拒绝服务攻击的IP回溯方法已引起了广泛关注,分布式拒绝服务攻击是Internet中最具挑战性的安全威胁之一。 PPM是一种通过在攻击路径的一部分上标记单个数据包来识别此类攻击源的技术,然后依靠生成的攻击流量来确保可重构整个路径。但是,修改IPv4数据包头中的标识字段以标记数据包会导致IP分段数据包向后不兼容。在本文中,我们解决了这个问题,并分析了下一代Internet协议IPv6下PPM的可行性。这样做时,我们考虑了IPv4实现固有的缺陷,这些缺陷限制了它们的向后兼容性,并演示了如何在IPv6中避免这些缺点。我们展示了可以安全有效地重载IPv6数据报头中的“流标签”字段以实现PPM方案,并给出了仿真结果,验证了此方法的适用性和效率。

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