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Game Theoretical Adaptation Model for Intrusion Detection System(Extended Abstract)

机译:入侵检测系统的博弈论适应模型(扩展摘要)

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We present a self-adaptation mechanism for Network Intrusion Detection System which uses a game-theoretical mechanism to increase system robustness against targeted attacks on IDS adaptation. We model the adaptation process as a strategy selection in sequence of single stage, two player games. The key innovation of our approach is a secure runtime game definition and numerical solution and real-time use of game solutions for dynamic system reconfiguration. Our approach is suited for realistic environments where we typically lack any ground truth information regarding traffic legitimacy/maliciousness and where the significant portion of system inputs may be shaped by the attacker in order to render the system ineffective. Therefore, we rely on the concept of challenge insertion: we inject a small sample of simulated attacks into the unknown traffic and use the system response to these attacks to define the game structure and utility functions. This approach is also advantageous from the security perspective, as the manipulation of the adaptive process by the attacker is far more difficult. Our experimental results suggest that the use of game-theoretical mechanism comes with little or no penalty when compared to traditional self-adaptation methods.
机译:我们提出了一种适用于网络入侵检测系统的自适应机制,该机制使用一种博弈论机制来提高针对IDS适应性目标攻击的系统鲁棒性。我们将适应过程建模为单阶段,两个玩家游戏的序列中的策略选择。我们方法的关键创新是安全的运行时游戏定义和数值解决方案,以及实时使用游戏解决方案进行动态系统重新配置。我们的方法适用于现实环境,在这些环境中,我们通常缺少有关流量合法性/恶意性的任何地面事实信息,并且攻击者可能会调整系统输入的大部分内容,从而使系统失效。因此,我们依赖于挑战插入的概念:我们将一小部分模拟攻击样本注入未知流量中,并使用系统对这些攻击的响应来定义游戏结构和实用程序功能。从安全的角度来看,这种方法也是有利的,因为攻击者对自适应过程的操纵要困难得多。我们的实验结果表明,与传统的自适应方法相比,使用博弈论机制几乎不会带来任何损失。

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