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Artificial Intelligence and Game Theory Models for Defending Critical Networks with Cyber Deception

机译:用网络欺骗捍卫关键网络的人工智能与博弈论模型

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Traditional cyber security techniques have led to an asymmetric disadvantage for defenders. The defender must detect all possible threats at all times from all attackers and defend all systems against all possible exploitation. In contrast, an attacker needs only to find a single path to the defender’s critical information. In this article, we discuss how this asymmetry can be rebalanced using cyber deception to change the attacker’s perception of the network environment, and lead attackers to false beliefs about which systems contain critical information or are critical to a defender’s computing infrastructure. We introduce game theory concepts and models to represent and reason over the use of cyber deception by the defender and the effect it has on attacker perception. Finally, we discuss techniques for combining artificial intelligence algorithms with game theory models to estimate hidden states of the attacker using feedback through payoffs to learn how best to defend the system using cyber deception. It is our opinion that adaptive cyber deception is a necessary component of future information systems and networks. The techniques we present can simultaneously decrease the risks and impacts suffered by defenders and dramatically increase the costs and risks of detection for attackers. Such techniques are likely to play a pivotal role in defending national and international security concerns.
机译:传统的网络安全技术导致防守者的不对称劣势。后卫必须从所有攻击者始终始终检测所有可能的威胁,并防止所有系统免受所有可能的剥削。相比之下,攻击者只需要找到对后卫的关键信息的单一路径。在本文中,我们讨论如何使用网络欺骗来重新平衡这种不对称,以改变攻击者对网络环境的看法,以及导致攻击者对哪些系统包含关键信息或对后卫的计算基础设施至关重要的错误信念。我们介绍博弈论概念和模型来代表和推理,通过防守者使用网络欺骗以及它对攻击者感知的影响。最后,我们讨论了与博弈论模型结合人工智能算法的技术,通过回报来估算攻击者的隐藏状态,以学习如何使用网络欺骗来保护系统。我们认为,自适应网络欺骗是未来信息系统和网络的必要组成部分。我们所呈现的技术可以同时降低防守者遭受的风险和影响,从而大大提高攻击者检测的成本和风险。这些技术可能在捍卫国家和国际安全问题方面发挥关键作用。

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