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Retrofitting Cyber Physical Systems for Survivability through External Coordination

机译:通过外部协调改造网络物理系统的生存能力

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Most Supervisory Control and Data Acquisition (SCADA) systems have been in operation for decades and they in general have 24×7 availability requirement, hence upgrading or adding new fault tolerant logic into the systems to sustain faults caused by cyber attacks when these systems evolve into a cyber environment is often difficult to achieve. In the proposed approach, an external coordination layer is constructed that only interfaces with the SCADA systems through events and separate from the process under control. The coordination layer is a combination of transparent management of fault-tolerant schemes of critical services of a SCADA system and a model for coordinating different critical services when faults caused by cyber attack occur in that system. In addition, security-related knowledge, such as cyber attack patterns and potential fatal states, etc., are also modeled and built into the coordination layer. The advantages of our approach are twofold: (1) the survivability-related knowledge and protection scheme are built in the coordination layer which is external to the SCADA systems and therefore the disturbance to the underlying systems is greatly reduced; (2) "separation of concern" principle is truly reflected in our model in that fault-tolerance, security and survivability concerns are separated from supervisory and acquisition. In addition, the external coordination model will enable us to accommodate future requirements that may not even be anticipated today.
机译:大多数监督控制和数据采集(SCADA)系统已经运行了几十年,它们通常有24×7可用性要求,从而升级或增加了系统进入系统的新容错逻辑,以便在这些系统进化时维持由网络攻击引起的故障网络环境往往难以实现。在所提出的方法中,构建外部协调层,仅通过事件与SCADA系统相互接口并与控制下的过程分开。协调层是SCADA系统的关键服务容错方案的透明管理的组合,以及当在该系统中发生的网络攻击引起的故障时协调不同关键服务的模型。此外,还建模和内置了与网络攻击模式和潜在致命状态等安全相关知识,例如网络攻击模式和潜在的致命状态。我们方法的优势是双重的:(1)生存性相关的知识和保护方案是在SCADA系统外部的协调层中构建的,因此对底层系统的干扰大大降低; (2)“关注的分离”原则在我们的模型中真正反映在我们的模型中,在这种情况下,安全性和生存能力的担忧与监督和收购分开。此外,外部协调模型将使我们能够适应今天可能难以预期的未来要求。

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