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A Comparison of Control Strategies for Disruption Management in Engineering Design for Resilience

机译:韧性工程设计中断管理控制策略比较

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Managing potential disruptive events at the operating phase of an engineered system therefore improving the system's failure resilience is an importance yet challenging task in engineering design. The resilience of an engineered system can be improved by enhancing the failure restoration capability of the system with appropriate system control strategies. Therefore, control-guided failure restoration is an essential step in engineering design for resilience. Considering different characteristics of disruptive events and their impacts to the performance of a system, effective control strategies for the failure restoration must be selected correspondingly. However, the challenge is to develop generally applicable guiding principles for selecting effective control strategies, thus implementing the control-guided failure restorations. In this paper, a comparison of three commonly used control strategies for dynamic system control is conducted with the focus on the effectiveness of restoring system performance after the system has undergone different major disruptive events. A case study of an electricity transmission system is used to demonstrate the dynamic system modeling and the comparison of three control strategies for disruption management.
机译:因此,在工程系统的操作阶段管理潜在的破坏事件,因此改善了系统的故障弹性是工程设计中的重要性但具有挑战性的任务。通过通过适当的系统控制策略提高系统的故障恢复能力,可以提高工程系统的弹性。因此,控制引导故障恢复是用于弹性的工程设计的重要步骤。考虑到破坏性事件的不同特征及其对系统性能的影响,必须相应地选择失败恢复的有效控制策略。然而,挑战是制定一般适用的指导原则,用于选择有效的控制策略,从而实施控制引导的故障修复。在本文中,对动态系统控制的三种常用控制策略进行了比较,重点是在系统经历不同主要的破坏事件后恢复系统性能的有效性。用电力传输系统的案例研究用于展示动态系统建模和三种控制策略对中断管理的比较。

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