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The dynamic lines of collaboration model: Collaborative disruption response in cyber-physical systems

机译:动态协作模式:网络物理系统中的协作破坏响应

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Cyber-physical systems (CPSs) are emerging engineered systems with combined efforts in cybernetics and computerized physical components. The pervasive links between CPS elements improve their connectivity, but inevitably enable failures to propagate to large-scale disasters. External responders (repair-agents) often need to collaborate concurrently with peers to perform emergency services and repair operations. Systematic understanding of the collaborative response to ongoing cascading failures is required for responders to effectively prepare response teams and arrange disruption response. Previous modeling approaches are lacking the ability to capture the dynamic interactions between a CPS and its response teams. In this work, the Dynamic Lines of Collaboration model for Collaborative Disruption Response (DLOC/CDR) is established. It can capture general requirements of collaborative responders to respond to and to resolve ongoing disruptions with cascading effects. Two depot allocation policies are tested and compared to examine the new model over different CPS structures. Four performance measures (response time, maximum cascade, travel distance by responders, and preventability) are designed to compare different parametric settings. It is observed from the experiments that the small-world phenomenon increases the difficulty of resolving cascading failures in CPSs by response resources. Experiments on both conceptual networks and the Hetch Hetchy water system case study validate that the collaboration ability and the centrality-based depot allocation policy improve the disruption response performance with statistical significance. While these experimental observations support intuitive rational, the model for DLOC/CDR also provides specific guidelines for emergency responders, and serves as a base model for future research in the effective disruption management and response area.
机译:网络物理系统(CPS)是新兴的工程系统,在控制论和计算机化物理组件方面共同努力。 CPS元素之间的普遍链接改善了它们的连通性,但不可避免地使故障传播到大规模灾难。外部响应者(维修代理)通常需要与对等方并发协作以执行紧急服务和维修操作。为了使响应者有效地准备响应团队并安排中断响应,需要对正在进行的级联故障的协作响应有系统的了解。先前的建模方法缺乏捕获CPS及其响应团队之间动态互动的能力。在这项工作中,建立了用于协作干扰响应(DLOC / CDR)的动态协作线模型。它可以捕获协作响应者的一般要求,以响应并解决具有级联效应的持续中断。测试并比较了两个仓库分配策略,以检查不同CPS结构上的新模型。设计了四种性能度量(响应时间,最大级联,响应者的行进距离和可预防性)以比较不同的参数设置。从实验中观察到,小世界现象增加了通过响应资源解决CPS中级联故障的难度。在概念网络和Hetch Hetchy水系统案例研究中进行的实验验证了协作能力和基于中心性的仓库分配策略可提高具有统计意义的中断响应性能。尽管这些实验观察结果支持直观的理性,但DLOC / CDR模型还为应急人员提供了特定的指导原则,并作为未来在有效中断管理和响应领域进行研究的基础模型。

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