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Task Model-Based Systematic Analysis of Both System Failures and Human Errors

机译:基于任务模型的系统故障和人为错误的系统分析

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摘要

The overall dependability of an interactive system is one of its weakest components, which is usually its user interface. The presented approach integrates techniques from the dependable computing field and elements of the user-centered design. Risk analysis and fault-tolerance techniques are used in combination with task analysis and modeling to describe and analyze the impact of system faults on human activities and the impact of human deviation or errors on system performance and overall mission performance. A technique for systematic analysis of human errors, effects, and criticality (HEECA) is proposed. It is inspired and adapted from the Failure Mode, Effects, and Criticality Analysis technique. The key points of the approach are: 1) the HEECA technique combining a systematic analysis of the effects of system faults and of human errors; and 2) a task modeling notation to describe and to assess the impact of system faults and human errors on operators’ activities and system performance. These key points are illustrated on an example extracted from a case study of the space domain. It demonstrates the feasibility of this approach as well as its benefits in terms of identifying opportunities for redesigning the system, redesigning the operations, and for modifying operators’ training.
机译:交互式系统的总体可靠性是其最弱的组件之一,通常是其用户界面。提出的方法集成了来自可靠计算领域和以用户为中心的设计元素的技术。风险分析和容错技术与任务分析和建模结合使用,以描述和分析系统故障对人类活动的影响以及人为偏差或错误对系统性能和总体任务性能的影响。提出了一种对人为错误,影响和严重性(HEECA)进行系统分析的技术。它是从“失败模式”,“影响”和“临界分析”技术中得到启发和改编的。该方法的重点是:1)HEECA技术结合了系统故障和人为错误的影响的系统分析; 2)任务建模符号,用于描述和评估系统故障和人为错误对操作员的活动和系统性能的影响。在从空间领域的案例研究中提取的示例中说明了这些关键点。它在确定重新设计系统,重新设计操作以及修改操作员培训的机会方面证明了这种方法的可行性及其好处。

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