CySec Game: A Framework and Tool for Cyber Risk Assessment and Security Investment Optimization in Critical Infrastructures

Burhan Hyder, Harrison Majerus, Hayden Sellars, Jonathan Greazel, Joseph Strobel, Nicholas Battani, Stefan Peng, M. Govindarasu
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Abstract

Cyber physical system (CPS) Critical infrastructures (CIs) like the power and energy systems are increasingly becoming vulnerable to cyber attacks. Mitigating cyber risks in CIs is one of the key objectives of the design and maintenance of these systems. These CPS CIs commonly use legacy devices for remote monitoring and control where complete upgrades are uneconomical and infeasible. Therefore, risk assessment plays an important role in systematically enumerating and selectively securing vulnerable or high-risk assets through optimal investments in the cybersecurity of the CPS CIs. In this paper, we propose a CPS CI security framework and software tool, CySec Game, to be used by the CI industry and academic researchers to assess cyber risks and to optimally allocate cybersecurity investments to mitigate the risks. This framework uses attack tree, attack-defense tree, and game theory algorithms to identify high-risk targets and suggest optimal investments to mitigate the identified risks. We evaluate the efficacy of the framework using the tool by implementing a smart grid case study that shows accurate analysis and feasible implementation of the framework and the tool in this CPS CI environment.
CySec游戏:关键基础设施网络风险评估与安全投资优化的框架与工具
像电力和能源系统这样的关键基础设施(ci)越来越容易受到网络攻击。降低ci中的网络风险是这些系统设计和维护的关键目标之一。这些CPS ci通常使用传统设备进行远程监视和控制,而完全升级既不经济也不可行。因此,通过对CPS ci网络安全的最佳投资,风险评估在系统地枚举和有选择性地保护脆弱或高风险资产方面发挥着重要作用。在本文中,我们提出了一个CPS CI安全框架和软件工具CySec Game,供CI行业和学术研究人员用于评估网络风险并优化分配网络安全投资以降低风险。该框架使用攻击树、攻击防御树和博弈论算法来识别高风险目标,并建议最佳投资以减轻识别的风险。我们通过实施智能电网案例研究来评估使用该工具的框架的有效性,该案例研究显示了在该CPS CI环境中对框架和工具的准确分析和可行实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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