用于SNORT的自适应负载平衡架构

M.S. Alam, Q. Javed, M. Akbar, M. Rehman, M. B. Anwer
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引用次数: 6

摘要

如今,由于网络攻击数量的惊人增加,入侵检测的重要性被放大了。互联网的无所不在和易于实施的攻击将导致更多的恶意流量。随着高速互联网连接的出现,今天的组织发现很难检测到入侵。因此多传感器入侵检测系统是必然的。如何将流量最优分配给传感器是一项具有挑战性的任务。我们提出了一种机制,将流量分割到不同的入侵检测传感器(例如,基于SNORT的传感器),以使任务易于管理。这种对每个传感器的流量分割是由管理控制台在分割器上实施的策略来管理的。该系统具有较强的自适应能力,可以通过调整分割策略来减小传感器间的负载差异。这种策略重载机制还考虑了所有可能的策略对之间的相似性,并尽量减少系统运行期间的数据包重复率。我们的机制是基于这样一种观察,即最小化被复制的流量百分比可以提高系统性能。我们还讨论了重新加载分割策略对数据包重复率和传感器负载的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive load balancing architecture for SNORT
Nowadays the importance of intrusion detection is amplified due to the incredible increase in the number of attacks on the networks. The ubiquity of the Internet and the easy perpetration of attacks will lead to more hostile traffic. With the advent of high-speed Internet connections, organizations today find it difficult to detect intrusions. So multi sensor intrusion detection systems are inevitable. The optimum distribution of traffic to the sensors is a challenging task. We present a mechanism to split traffic to different intrusion detection sensors (e.g., SNORT based sensors) to make the task manageable. This splitting of traffic to each sensor is managed by policies enforced on the splitter by the management console. The system is adaptive in the sense that it can adjust the splitting policies for keeping load disparity among sensors reduced. This mechanism of policy-reloading also take into account the similarity between all possible pairs of policies and tries to minimize the packet duplication rate during the operation of the system. Our mechanism is based on the observation that minimizing the percentage of traffic being duplicated can enhance system performance. We also discuss the effects of the reloading of splitting policies on packet duplication rate and on the load on the sensors.
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