海军防务网络安全研究工业控制系统物理试验台

Franck Sicard, Estelle Hotellier, Julien Francq
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引用次数: 2

摘要

工业控制系统如今用于许多安全关键应用,如海军防御系统。后者需要针对网络攻击的高级保护,网络攻击可能导致潜在的灾难性后果(例如,组件破坏、拒绝服务、人员死亡)。因此,这些基础设施在部署到特派团之前,需要进行密集的安全测试和验证。此外,需要进行网络安全研究来预测未来的攻击。新对策的研究必须在现实的平台上进行,以获得准确而富有成效的网络防御反馈。本文介绍了一种用于海军防务网络安全研究的工业控制系统试验台。该现实试验台实现了舰船的典型模型,为实际攻击和相关对抗提供了安全的基准。在描述了物理测试平台的特性之后,我们通过描述四种不同的攻击场景来说明它的相关性。该测试平台将在未来的工作中非常有用,以详细说明和验证针对网络和物理过程攻击的创新网络防御措施(如基于知识和基于行为的入侵检测),特别是通过生成代表性数据集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Industrial Control System Physical Testbed for Naval Defense Cybersecurity Research
Industrial Control Systems are used nowadays in many safety-critical applications, such as Naval Defense systems. These latter need high-level protection against cyberattacks, which can lead to potential disastrous consequences (e.g., components sabotage, Denial of Service, human deaths). Thus, these infrastructures, before being deployed in mission, need intensive security testing and validation. Moreover, cybersecurity research is required to anticipate future attacks. The research of new countermeasures has to be led on realistic platforms for getting precise and fruitful feedback for cyberdefense. This paper describes an Industrial Control System testbed for Naval Defense cybersecurity research. This realistic testbed implements a representative model of a warship, on which practical attacks and related countermeasures can be safely benchmarked. After describing the features of our physical testbed, we illustrate its relevance by describing four different attack scenarios. This testbed will be very useful in future works to elaborate and validate innovative cyberdefense measures (like knowledge-based and behavior-based intrusion detection) against network and physical process attacks, especially by generating representative datasets.
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