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Human-centered automation for resilient nuclear power plant outage control

机译:以人为中心的自动化,用于弹性核电站的停运控制

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Nuclear power plant (NPP) outages are challenging construction projects. Delays in NPP outage processes can cause significant economic losses. In typical NPP outages, extremely busy outage schedules, large crew sizes, dynamic workspaces and zero tolerance of accidents pose challenges to ensuring the resilience of outage control, which should rapidly and proactively respond to delays, errors, or unexpected tasks added during outages. Two mutually interacting practical problems impede NPPs from achieving such resilient outage control: 1) how to control errors and wastes effectively during the "handoffs" between tasks, and 2) how to respond to numerous contingencies in NPP outage workflows in a responsive and proactive manner. A resilient NPP outage control system should address these two practical problems through "Human-Centered Automation (HCA),"which is improving the control process automation while fully considering human factors. Previous studies examined two categories of technologies that potentially enable HCA in outage control: 1) computational modeling and simulation methods for predicting states of field operations and workflows; 2) data collection and processing methods for capturing the reality and thus providing feedback to computational models. Unfortunately, limited studies systematically synthesize technological challenges related to these practical problems and underlying HCA principles.
机译:核电厂(NPP)中断正在挑战建设项目。 NPP中断过程的延迟可能导致重大的经济损失。在典型的NPP中断中,极度繁忙的中断计划,庞大的人员规模,动态的工作空间以及对事故的零容忍度对确保中断控制的弹性提出了挑战,而中断控制应能够快速主动地响应中断,错误或中断期间添加的意外任务。相互影响的两个实际问题阻碍了NPP实现这种弹性的中断控制:1)如何在任务之间的“切换”期间有效地控制错误和浪费,以及2)如何以响应和主动的方式应对NPP中断工作流程中的众多突发事件。弹性的NPP停运控制系统应通过“以人为中心的自动化(HCA)”解决这两个实际问题,这将在充分考虑人为因素的同时提高控制过程的自动化程度。先前的研究检查了可能在中断控制中启用HCA的两类技术:1)用于预测现场操作和工作流状态的计算建模和仿真方法; 2)用于捕获现实并因此向计算模型提供反馈的数据收集和处理方法。不幸的是,有限的研究系统地综合了与这些实际问题和潜在的HCA原理相关的技术挑战。

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