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The relationship between automation complexity and operator error

机译:自动化复杂性与操作员错误之间的关系

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One of the objectives of process automation is to improve the safety of plant operations. Manual operation, it is often argued, provides too many opportunities for operator error. By this argument, process automation should decrease the risk of accidents caused by operator error. However, some accident theorists have argued that while automation may eliminate some types of operator error, it may create new varieties of error. In this paper we present six case studies of explosions involving operator error in an automated process facility. Taken together, these accidents resulted in six fatalities, 30 injuries and hundreds of millions of dollars in property damage. The case studies are divided into two categories: low and high automation complexity (three case studies each). The nature of the operator error was dependent on the level of automation complexity. For each case study, we also consider the contribution of the existing engineering controls such as safety instrumented systems (SIS) or safety critical devices (SCD) and explore why they were insufficient to prevent, or mitigate, the severity of the explosion.
机译:过程自动化的目标之一是提高工厂运营的安全性。通常认为,手动操作为操作员提供了太多的错误机会。通过这种说法,过程自动化应降低操作员错误导致事故的风险。但是,一些事故理论家认为,尽管自动化可以消除某些类型的操作员错误,但它可能会产生新的错误种类。在本文中,我们提出了六个爆炸案例研究,这些爆炸涉及自动化过程设施中的操作员错误。这些事故加在一起导致了六人死亡,30人受伤和数亿美元的财产损失。案例研究分为两类:低自动化复杂度和高自动化复杂度(每项三个案例研究)。操作员错误的性质取决于自动化复杂程度。对于每个案例研究,我们还考虑了现有工程控制(例如安全仪表系统(SIS)或安全关键设备(SCD))的作用,并探讨了为什么它们不足以防止或减轻爆炸的严重性。

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