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Cyber-Physical Security Evaluation in Manufacturing Systems with a Bayesian Game Model

机译:贝叶斯游戏模型的制造系统中的网络 - 物理安全评估

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Cyber-physical security has been taken more seriously recently in manufacturing systems because of highly increasing integration of cyber and network systems with physical production known as cyber-physical manufacturing systems (CPMS). This paper presents a novel proactive approach to forecast the interrelation of attackers and cyber-physical manufacturing systems to suggest a proper defense strategy to the system managerial. In this research, the zero-sum game payoff function developed in our previous studies is transformed into an epistemic type Bayesian game that addresses uncertainties on types of players. The risk preference behavior also is considered as a characteristic of different types of players and to form the Bayesian utility function. Finally, a numerical example is analyzed with a structured method by developing the Bayesian game, computing Bayes-Nash equilibria, and finding quantal response equilibrium. This approach enables managers to decide a proper defense strategy in advance of experiencing cyber-physical dilemma when there are not enough previous data.
机译:最近在制造系统中更加严重地拍摄了网络实物的安全性,因为网络和网络系统与称为网络物理制造系统(CPMS)的物理生产的网络和网络系统的整合。本文提出了一种新颖的主动方法,以预测攻击者和网络体力制造系统的相互关系,为系统管理的攻击策略提出了适当的防御策略。在本研究中,我们以前的研究中开发的零和游戏收益函数转变为一个认识类型的贝叶斯游戏,解决了参与者类型的不确定性。风险偏好行为也被认为是不同类型的玩家的特征,并形成贝叶斯效用功能。最后,通过开发贝叶斯游戏,计算贝叶斯 - 纳什均衡和寻找量响应平衡,用结构化方法分析数值例子。这种方法使管理人员能够在没有足够的以前的数据时在经历网络身体困境之前决定适当的防御策略。

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