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Cyber-Physical Vulnerability Assessment in Manufacturing Systems

机译:制造系统中的网络物理漏洞评估

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摘要

The rampant increase in frequency and complexity of cyber-attacks against manufacturing firms, has motivated the development of identification and mitigation techniques for cyber-physical vulnerabilities in manufacturing. While the field of cybersecurity assessment approaches is expansive, there is no literature aimed at assessing cyber-physical vulnerabilities for manufacturing systems. In response, this paper provides a framework for systematically identifying cyber-physical vulnerabilities in manufacturing systems. The proposed approach employs intersection mapping to identify cyber-physical vulnerabilities in manufacturing. A cyber-physical vulnerability impact analysis using decision trees then provides the manufacturer with a stoplight scale between low, medium, and high levels of cyber-physical vulnerability for each analyzed production process. The stoplight scale allows manufacturers to interpret assessment results in an intuitive way. Finally, the paper provides a case study of the proposed approach at an applied manufacturing research facility and provides general recommendations to securing similar facilities from cyber-physical attacks.
机译:对制造公司的网络攻击频率和复杂性的猖獗增长是推动了制造业网络体力脆弱性的识别和缓解技术的发展。虽然网络安全的领域是广泛的,但没有旨在评估制造系统的网络物理脆弱性的文献。作为回应,本文提供了一个系统地识别制造系统中的网络物理漏洞的框架。该拟议的方法采用交叉映射来识别制造业的网络物理漏洞。使用决策树的网络物理漏洞影响分析,然后将制造商提供了每个分析的生产过程的低,培养基和高水平的网络物理漏洞之间的氧化灯量表。跳过量表允许制造商以直观的方式解释评估结果。最后,本文提供了对应用制造研究设施的拟议方法的案例研究,并提供了保护来自网络物理攻击类似设施的一般建议。

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