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首页> 外文期刊>Systems Engineering >The Integration of Diversely Redundant Designs, Dynamic System Models, and State Estimation Technology to the Cyber Security of Physical Systems
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The Integration of Diversely Redundant Designs, Dynamic System Models, and State Estimation Technology to the Cyber Security of Physical Systems

机译:将各种冗余设计,动态系统模型和状态估计技术集成到物理系统的网络安全中

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摘要

As exemplified in the 2010 Stuxnet attack on Iranian nuclear facilities, cyber attackers have capabilities to embed disruptive infections into equipment that is employed within physical systems. This paper presents a cyber security design approach that addresses cyber attacks that include modification of operator displays used for support in managing software controlled automated systems. This class of problems is especially important because our nation's critical infrastructures include such systems. In addition, many other systems, such as surveillance systems, navigation systems, and communications systems, are candidates for such solutions as they continue to become more and more automated. The suggested design approach builds upon fault-tolerant and automatic control system techniques that, with important and necessary modifications, are the basis for providing improved cyber security. In particular, the appropriate combination of diversely redundant security designs coupled with system dynamics models and state estimation techniques provide a potential means for detecting purposeful adjustments to operator displays. This paper provides a theoretical approach for designing such solutions and a corresponding set of examples with simulation-based results. In addition, the paper includes a discussion of important implementation requirements for greater assurance of such physical system security solutions.
机译:正如2010年对伊朗核设施的Stuxnet攻击所证明的那样,网络攻击者具有将破坏性感染嵌入物理系统内使用的设备中的能力。本文提出了一种解决网络攻击的网络安全设计方法,其中包括修改用于支持软件控制自动化系统的操作员显示。这类问题尤为重要,因为我们国家的关键基础设施包括此类系统。此外,许多其他系统,例如监视系统,导航系统和通信系统,由于它们将变得越来越自动化,因此是此类解决方案的候选者。建议的设计方法建立在容错和自动控制系统技术的基础之上,这些技术经过重大且必要的修改,是提供改进的网络安全性的基础。特别是,各种冗余安全设计的适当组合,再加上系统动力学模型和状态估计技术,提供了一种潜在的手段,可以检测到对操作员显示的有意调整。本文提供了设计此类解决方案的理论方法,并提供了基于模拟结果的相应示例集。此外,本文还讨论了重要实现要求,以更好地保证此类物理系统安全解决方案。

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