For reducing threat propagation within an inter-connected network, it is essential to distribute the defense investment optimally. Most electric power utilities are resource constrained, yet how to account for costs while designing threat reduction techniques is not well understood. Hence, in this work, a vulnerability propagation and a defense model is proposed based on an epidemic model. The new defense mechanism is then validated through sensitivity of the propagation parameters on the optimal investment with two-node and N-node cases. Further, the model efficacy is evaluated with implementation in one of the communication networks of a cyber-physical power system. Topological impact on the optimal nodal investment is also emphasized. Optimal investment of the neighbors with less degree were found to be highly sensitive to fluctuation in vulnerability exploitability probability.
翻译:为了减少相互连通的网络内的威胁传播,必须以最佳方式分配国防投资。大多数电力公用事业都受到资源限制,但在设计减少威胁技术时如何核算成本却不为人所熟知。因此,在这项工作中,根据流行病模式提出了脆弱性传播和防御模式。然后,通过使用两个节点和N节点案例对最佳投资的传播参数的敏感度来验证新的国防机制。此外,通过在网络物理动力系统的一个通信网络中实施,对模型效力进行评估。还强调了对最佳节点投资的地形影响。认为,低度邻居的最佳投资对脆弱性利用概率的波动非常敏感。