一种用于保护SIEM系统的入侵容忍防火墙设计

Miguel García, N. Neves, A. Bessani
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引用次数: 11

摘要

如今,组织正在求助于安全信息和事件管理(SIEM)系统来监视和管理他们的网络基础设施。SIEMs采用基于放置在网络关键点上的许多传感器的数据收集功能,将事件转发到核心设施进行处理并支持不同形式的分析(例如,近乎实时的攻击报告、库存管理、风险评估)。在本文中,我们将通过介绍一种新的防火墙设计来关注核心设施组件的防御,该防火墙设计可以适应非常恶劣的故障场景。特别是,它不仅可以容忍外部攻击,还可以容忍其某些组件的入侵。防火墙采用两级过滤方案来提高性能,并允许在容错机制的选择上具有一定的灵活性。第一个过滤阶段有效地消除了最常见的攻击形式,而第二个阶段支持应用程序规则,以便对流量进行更复杂的分析。容错机制基于第一阶段的检测和恢复方法,而第二阶段使用状态机复制和投票。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An intrusion-tolerant firewall design for protecting SIEM systems
Nowadays, organizations are resorting to Security Information and Event Management (SIEM) systems to monitor and manage their network infrastructures. SIEMs employ a data collection capability based on many sensors placed in critical points of the network, which forwards events to a core facility for processing and support different forms of analysis (e.g., report attacks in near real time, inventory management, risk assessment). In this paper, we will focus on the defense of the core facility components by presenting a new firewall design that is resilient to very harsh failure scenarios. In particular, it tolerates not only external attacks but also the intrusion of some of its components. The firewall employs a two level filtering scheme to increase performance and to allow for some flexibility on the selection of fault-tolerance mechanisms. The first filtering stage efficiently eliminates the most common forms of attacks, while the second stage supports application rules for a more sophisticated analysis of the traffic. The fault tolerance mechanisms are based on a detection and recovery approach for the first stage, while the second stage uses state machine replication and voting.
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