核电站运行中动态性能影响因素的建模路径 - 综述

Zhihui Xu, Gaoguang Yang, Yi Lu, Jiaxin Xue, Guanyin Wu, Bingxuan Ren, Shan Fu
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引用次数: 0

摘要

人类行为形成分析机制的演变极大地影响了人类可靠性分析(HRA)的发展,而人类可靠性分析旨在利用性能影响因素(PSFs)计算人类出错概率(HEP)。本文以核电站(NPP)为背景,回顾了不同时代的典型 HRA 方法、PSFs 的作用以及它们在人为风险建模中的相互关系。在对典型的人的风险评估方法的回顾中,PSF 在评估任务操作过程中人的表现方面起着根本性的作用。然而,在定义和评估 PSF 时的主观性往往会导致对人类行为特征和人类风险演变的片面表述,从而导致忽略 PSF 的相互关系和保守的 HEP 估算。近期的研究强调利用模拟平台来模拟任务过程,获取 PSF 的相关数据,从而探索相互影响,为更准确地计算 HEP 提供支持。与以往某些过度简化和不恰当假设导致结果不准确的方法相比,目前的 HRA 方法容易在客观数据采集和流程模型动态计算的基础上构建 HEP 模型。这种转变能够更好地说明 PSF 之间错综复杂的关系。针对当前 HRA 方法的发展趋势,本文提出了一种基于生理测量的 PSF 量化方法,该方法可提供可获取的客观数据。该方法改善了 HEP 计算中数据稀缺和时变性的缺点,从而更准确、更真实地反应了整个任务过程中人类风险的积累和波动。
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Path to modeling dynamic performance shaping factors in nuclear power plants operation – A review
The evolution of the mechanism of human behavior formation analysis has significantly influenced the development of human reliability analysis (HRA), which aims to calculate human error probability (HEP) with performance shaping factors (PSFs). This paper reviews the typical HRA methods in different generations, the role of PSFs, and their interrelation‐ships in human risk modeling, with the background of nuclear power plants (NPPs). In a retrospective of typical HRA methods, PSF plays a fundamental role in assessing human performance during task operation. However, the subjectivity in defining and evaluating PSFs often leads to a partial representation of human behavior characteristics and human risk evolution, resulting in the neglect of PSF inter‐relationships and conservative HEP estimation. Recent studies have emphasized employing simulation platforms to simulate the task process and obtain data relevant to PSFs that can enable the exploration of the mutual effects to support the calculation of HEP more accurately. Compared to certain previous methods involving over‐simplification and inappropriate assumptions resulting in inaccurate results, current HRA methods are prone to the construction of HEP models based on objective data acquisition and dynamic calculations with process models. This shift enables a better illustration of the intricate relationships among PSFs. Reflecting on the current trend of HRA methodology, this paper proposes a possible PSF quantification based on physiological measurement providing accessible and objective data. It improves the shortcomings in data scarcity and time‐invariance of HEP calculation, thus more accurately and realistically responds to the accumulation and fluctuation of human risks throughout a task.
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