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Achieving resilience in critical infrastructures: A case study for a nuclear power plant cooling loop

机译:在关键基础设施中实现弹性:以核电站冷却回路为例

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Engineered systems are increasingly equipped with sensing and actuating equipment making the operation ans supervisory task increasingly difficult to handle by means of human interaction alone. In particular, the detection, identification and accommodation of abnormal, potentially harmful, events has been a long-standing challenge. Many scientists in different scientific areas have attacked this problem which has resulted in a plethora of techniques for both Fault Detection and Identification (FDI) and advanced control, each with their strengths and weaknesses. Because of the diverse nature of adopted theory and paradigms and because of a historical separation of FDI specialists and control theoreticians, it remains a challenge to establish automated systems able to handle exceptional events with minimal human intervention. As such, a project has been set up to enable full integration of diverse FDI methods as well as optimal coupling of FDI modules and control modules in the closed-loop supervisory control system. In this contribution, we introduce the basic paradigms of our approach, a strategic plan to achieve this goal as well as some preliminary results.
机译:工程系统越来越多地配备传感和致动设备,使得仅凭人机交互操作和监督任务就变得越来越困难。特别地,检测,识别和适应异常的,潜在有害的事件一直是一个长期的挑战。来自不同科学领域的许多科学家都对这个问题进行了攻击,从而导致了故障检测和识别(FDI)和高级控制的大量技术,每种技术各有优缺点。由于采用的理论和范式的多样性,以及外国直接投资专家和控制理论家的历史分离,建立能够以最少的人工干预来处理特殊事件的自动化系统仍然是一个挑战。因此,已经建立了一个项目,以实现各种FDI方法的完全集成以及闭环监控系统中FDI模块和控制模块的最佳耦合。在这篇文章中,我们介绍了我们方法的基本范例,实现此目标的战略计划以及一些初步结果。

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