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A taxonomy of interactions in socio-technical systems: A functional perspective

机译:社会技术系统中的互动分类:功能视角

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摘要

Although the modelling of interactions has long been at the core of socio-technical systems theory, and is a key for understanding resilience, there is a lack of a holistic taxonomy of interactions. This study introduces a taxonomy of interactions to be used in association with the Functional Resonance Analysis Method (FRAM). The taxonomy has nine criteria: nature of agents, output nature, levelling, waiting time, distance, degree of coupling, visibility, safety and/or security hazards, and parallel replications. For each criterion, two descriptors are proposed: what the interaction looks like; and - when applicable - the variability level of the interaction. The use of the taxonomy is presented for three systems with clearly distinct complexity characteristics: cash withdrawal from an ATM, teaching a university course, and manufacturing operations. These case studies indicate the usefulness of the taxonomy for the identification of leverage points in work system design. They also show the value of modelling the variability of the interactions in FRAM models, in addition to the traditional modelling of the variability of the outputs of functions. Implications of the taxonomy for resilience engineering are discussed.
机译:虽然互动的建模长期以来一直处于社会技术系统理论的核心,但却是理解弹性的关键,缺乏互动的整体分类。本研究介绍了与功能共振分析方法(FRAM)相关联的相互作用的分类。分类学具有九个标准:特性的特性,产出性质,平整,等待时间,距离,耦合程度,可见性,安全和/或安全危害以及并行复制。对于每个标准,提出了两个描述符:互动的样子是什么样的; - - 适用 - 当相互作用的可变性水平。三个系统的使用具有明显不同的复杂性特征:从ATM的现金提取,教授大学课程和制造业务。这些案例研究表明了分类法识别工作系统设计中杠杆点的有用性。除了传统的函数式建模之外,它们还显示了模拟FRAM模型中交互的可变性的值。讨论了分类法对弹性工程的影响。

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