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An Agent-Based Framework for Simulating and Analysing Attacks on Cyber Physical Systems

机译:基于代理的框架,用于模拟和分析网络物理系统上的攻击

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An agent-based framework is presented to model and analyze physical and cyber attacks on Cyber Physical Systems (CPS). In the first phase of a two phase procedure in the framework, a CPS is modelled using State Condition Graphs (SCGs) representing the structural relations among the cyber and physical components. In the second phase, SCGs are partitioned into separate groups, referred to as agents, based on their functional dependency. Each agent is associated with a sensor and an actuator set. The actuator set is further divided into two subsets: active actuator and passive subsets that, respectively, directly or indirectly participate in controlling the environment. Interactions among different agents can be created by assigning an aggregate function to each agent with sensor and actuator sets as the domain of the function and status of the environment as its codomain. A case study was conducted on a segment of a 6-stage Secure Water Treatment (SWaT) system to demonstrate the applicability of the framework. The study reveals promising features of the framework to analyze the steady state response of the system following both cyber and physical attacks.
机译:提出了一种基于代理的框架,以对网络物理系统(CPS)上的物理和网络攻击进行建模和分析。在框架的两阶段过程的第一阶段中,使用状态条件图(SCG)对CPS进行建模,该状态条件图表示网络和物理组件之间的结构关系。在第二阶段中,SCG根据其功能依赖性分为不同的组,称为代理。每个代理都与一个传感器和一个执行器组相关联。致动器组进一步分为两个子集:分别直接或间接参与控制环境的主动致动器和被动子集。可以通过向每个代理分配聚合功能来创建不同代理之间的交互,其中传感器和执行器集作为功能的域,环境状态作为其共域。在一个六阶段安全水处理(SWaT)系统的一部分上进行了案例研究,以证明该框架的适用性。这项研究揭示了该框架的有前途的功能,可以分析网络和物理攻击后系统的稳态响应。

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