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DEVELOPING HUMAN PERFORMANCE MEASURES

机译:发展人类绩效措施

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Through the reactor oversight process (ROP), the U.S. Nuclear Regulatory Commission (NRC) monitors the performance of utilities licensed to operate nuclear power plants. The process is designed to assure public health and safety by providing reasonable assurance that licensees are meeting the cornerstones of safety and designated crosscutting elements. The reactor inspection program, together with performance indicators (PIs), and enforcement activities form the basis for the NRC's risk-informed, performance based regulatory framework. While human performance is a key component in the safe operation of nuclear power plants and is a designated cross-cutting element of the ROP, there is currently no direct inspection or performance indicator for assessing human performance. Rather, when human performance is identified as a substantive cross cutting element in any 1 of 3 categories (resources, organizational or personnel), it is then evaluated for common themes to determine if follow-up actions are warranted. However, variability in human performance occurs from day to day, across activities that vary in complexity, and workgroups, contributing to the uncertainty in the outcomes of performance. While some variability in human performance may be random, much of the variability may be attributed to factors that are not currently assessed. There is a need to identify and assess aspects of human performance that relate to plant safety and to develop measures that can be used to successfully assure licensee performance and indicate when additional investigation may be required. This paper presents research that establishes a technical basis for developing human performance measures. In particular, we discuss: 1) how historical data already gives some indication of connection between human performance and overall plant performance, 2) how industry led efforts to measure and model human performance and organizational factors could serve as a data source and basis for a framework, 3) how our use of modeling and simulation techniques could be used to develop and validate measures of human performance, and 4) what the possible outcomes are from this research as the modeling and simulation efforts generate results.
机译:通过反应堆监督进程(ROP),美国核监管委员会(NRC)监督持牌运营核电站的公用事业公司的履行。该过程旨在通过提供合理的保证,该过程确保持牌人符合安全和指定横切元素的基石。反应堆检查计划与绩效指标(PIS)和执法活动组成为NRC的风险信息的基于绩效的监管框架的基础。虽然人类性能是核电厂安全运行中的关键部件,但是罗普的指定横向元件,目前没有直接检测或性能指标用于评估人类性能。相反,当人类性能被识别为3个类别中的任何一个(资源,组织或人员)中的实质交叉切割元件时,然后评估共同主题以确定是否有保证后续行动。然而,人类性能的可变性发生在日常情况下,这些活动发生在复杂性的活动和工作组的活动,以及绩效结果的不确定性。虽然人类性能的一些可变性可能是随机的,但是大部分可变性可能归因于目前未评估的因素。有必要识别和评估人类性能的方面,与工厂安全有关,并制定可用于成功保证持牌业绩的措施,并在可能需要额外调查时表明。本文提出了研究制定人类绩效措施的技术基础。特别是,我们讨论:1)历史数据如何展示人类绩效和整体工厂性能之间的一定迹象,2)行业LED如何衡量和模拟人类绩效和组织因素的努力可以作为数据来源和基础框架,3)我们如何使用建模和仿真技术的使用来开发和验证人类性能的措施,4)可能结果来自这项研究,因为模拟和模拟工作产生了结果。

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