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Human System Simulation in Support of Human Performance Technical Basis at NPPs

机译:人力系统仿真支持人力绩效技术基础在NPPS

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This paper focuses on strategies and progress toward establishing the Idaho National Laboratory's (INL's) Human Systems Simulator Laboratory at the Center for Advanced Energy Studies (CAES), a consortium of Idaho State Universities. The INL is one of the National Laboratories of the US Department of Energy. One of the first planned applications for the Human Systems Simulator Laboratory is implementation of a dynamic nuclear power plant simulation (NPP) where studies of operator workload, situation awareness, performance and preference will be carried out in simulated control rooms including nuclear power plant control rooms. Simulation offers a means by which to review operational concepts, improve design practices and provide a technical basis for licensing decisions. In preparation for the next generation power plant and current government and industry efforts in support of light water reactor sustainability, human operators will be attached to a suite of physiological measurement instruments and, in combination with traditional Human Factors Measurement techniques, carry out control room tasks in simulated advanced digital and hybrid analog/digital control rooms. The current focus of the Human Systems Simulator Laboratory is building core competence in quantitative and qualitative measurements of situation awareness and workload. Of particular interest is whether introduction of digital systems including automated procedures has the potential to reduce workload and enhance safety while improving situation awareness or whether workload is merely shifted and situation awareness is modified in yet to be determined ways. Data analysis is carried out by engineers and scientists and includes measures of the physical and neurological correlates of human performance. The current approach supports a user-centered design philosophy (see ISO 13407 "Human Centered Design Process for Interactive Systems, 1999) wherein the context for task performance along with the requirements of the end-user are taken into account during the design process and the validity of design is determined through testing of real end users.
机译:本文重点介绍在爱达荷州大学联盟的高级能源研究中心建立爱达荷国家实验室(INL)人体系统模拟器实验室的策略和进展。 INL是美国能源部的国家实验室之一。人类系统模拟器实验室的首批申请之一是实施动态核电厂仿真(NPP),其中在包括核电厂控制室的模拟控制室中的算术工作量,情况意识,性能和偏好的研究中的研究。仿真提供了一种审查操作概念,改善设计实践的手段,并为许可决策提供技术基础。在准备下一代电厂和现行政府和行业支持光水反应堆可持续性的努力时,人工运营商将附加到一套生理测量仪器,并结合传统的人类因素测量技术,进行控制室任务在模拟高级数字和混合动力模拟/数字控制室。目前人类系统模拟器实验室的焦点是在情况上建立核心竞争力,在情况上的情况识别和工作量的定量测量。特别感兴趣的是,包括自动化程序在内的数字系统的引入是否有可能降低工作量并提高安全性,同时提高情况意识,或者是否仅改变工作量,尚未确定的情况。数据分析由工程师和科学家进行,并包括人类性能的物理和神经功能相关的措施。目前的方法支持以用户为中心的设计理念(参见ISO 13407“用于交互式系统,1999年的ISO 13407”),其中在设计过程中考虑了任务性能的上下文以及最终用户的要求。通过测试实际用户的测试确定设计的有效性。

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