首页> 外文期刊>Reliability Engineering & System Safety >Hybrid causal methodology and software platform for probabilistic risk assessment and safety monitoring of socio-technical systems
【24h】

Hybrid causal methodology and software platform for probabilistic risk assessment and safety monitoring of socio-technical systems

机译:社会技术系统概率风险评估和安全监控的混合因果方法和软件平台

获取原文
获取原文并翻译 | 示例
           

摘要

This paper introduces an integrated framework and software platform for probabilistic risk assessment (PRA) and safety monitoring of complex socio-technical systems. An overview of the three-layer hybrid causal logic (HCL) modeling approach and corresponding algorithms, implemented in the Trilith software platform, are provided. The HCL approach enhances typical PRA methods by quantitatively including the influence of soft causal factors introduced by human and organizational aspects of a system. The framework allows different modeling techniques to be used for different aspects of the socio-technical system. The HCL approach combines the power of traditional event sequence diagram (ESD)event tree (ET) and fault tree (FT) techniques for modeling deterministic causal paths, with the flexibility of Bayesian belief networks for modeling non-deterministic cause-effect relationships among system elements (suitable for modeling human and organizational influences). Trilith enables analysts to construct HCL models and perform quantitative risk assessment and management of complex systems. The risk management capabilities included are HCL-based risk importance measures, hazard identification and ranking, precursor analysis, safety indicator monitoring, and root cause analysis. This paper describes the capabilities of the Trilith platform and power of the HCL algorithm by use of example risk models for a type of aviation accident (aircraft taking off from the wrong runway).
机译:本文介绍了用于概率风险评估(PRA)和安全监控复杂的社会技术系统的集成框架和软件平台。提供了在Trilith软件平台中实现的三层混合因果逻辑(HCL)建模方法和相应算法的概述。 HCL方法通过定量包括由系统的人为和组织方面引入的软因果因素的影响,增强了典型的PRA方法。该框架允许将不同的建模技术用于社会技术系统的不同方面。 HCL方法结合了传统事件序列图(ESD)事件树(ET)和故障树(FT)技术的功能,用于对确定性因果路径进行建模,并具有贝叶斯信念网络的灵活性,可用于对系统之间的不确定性因果关系进行建模元素(适合建模人员和组织的影响)。 Trilith使分析师能够构建HCL模型,并对复杂系统进行定量风险评估和管理。包括的风险管理功能包括基于HCL的风险重要性衡量,危害识别和分级,前体分析,安全指标监控以及根本原因分析。本文通过使用一种航空事故(飞机从错误的跑道起飞)的示例风险模型来描述Trilith平台的功能和HCL算法的功能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号