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Cyber security risk assessment for SCADA and DCS networks

机译:SCADA和DCS网络的网络安全风险评估

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摘要

The growing dependence of critical infrastructures and industrial automation on interconnected physical and cyber-based control systems hasresulted in a growing and previously unforeseen cyber security threat to supervisory control and data acquisition (SCADA) and distributed control systems (DCSs). It is critical that engineers and managers understand these issues and know how to locate the information they need. This paper provides a broad overview of cyber security and risk assessment for SCADA and DCS, introduces the main industry organizations and government groups working in this area, and gives a comprehensive review of the literature to date. Major concepts related to the risk assessment methods are introduced with references cited for more detail. Included are risk assessment methods such as HHM, IIM, and RFRM which have been applied successfully to SCADA systems with many interdependencies and have highlighted the need for quantifiable metrics. Presented in broad terms is probability risk analysis (PRA) which includes methods such as FTA, ETA, and FEMA. The paper concludes with a general discussion of two recent methods (one based on compromise graphs and one on augmented vulnerability trees) that quantitatively determine the probability of an attack, the impact of the attack, and the reduction in risk associated with a particular countermeasure.
机译:关键基础设施和工业自动化对互连的基于物理和基于网络的控制系统的依赖性日益增加,导致对监督控制和数据采集(SCADA)以及分布式控制系统(DCS)的网络安全威胁日益增加,这是以前无法预见的。工程师和经理必须了解这些问题并知道如何找到所需的信息,这一点至关重要。本文概述了SCADA和DCS的网络安全和风险评估,介绍了在该领域工作的主要行业组织和政府组织,并对迄今为止的文献进行了全面回顾。介绍了与风险评估方法有关的主要概念,并引用了更多详细信息作为参考。其中包括诸如HHM,IIM和RFRM之类的风险评估方法,这些方法已成功应用于具有许多相互依赖性的SCADA系统,并强调了对可量化指标的需求。概括地介绍了概率风险分析(PRA),其中包括诸如FTA,ETA和FEMA之类的方法。本文以两种最近的方法(一种基于折衷图,另一种基于增强的脆弱性树)的一般讨论作为结束,这些方法定量确定了攻击的可能性,攻击的影响以及与特定对策相关的风险的降低。

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