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首页> 外文期刊>American Journal of Industrial and Business Management >A Proposal for a Predictive Performance Assessment Model in Complex Sociotechnical Systems Combining Fuzzy Logic and the Functional Resonance Analysis Method (FRAM)
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A Proposal for a Predictive Performance Assessment Model in Complex Sociotechnical Systems Combining Fuzzy Logic and the Functional Resonance Analysis Method (FRAM)

机译:结合模糊逻辑和功能共振分析方法(FRAM)的复杂社会技术系统中的预测性能评估模型的建议

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摘要

Modern sociotechnical systems exhibit dynamic and complex behavior, which can be difficult to anticipate, model and evaluate. The perpetually evolving nature and the emergent properties of such systems require a continuous re-evaluation of adopted safety and risk analysis methods to comply with arising challenges and ensure successful performance. One of the interesting methods proposed in recent years is the Functional Resonance Analysis Method (FRAM). FRAM adopts a systemic perspective to model sociotechnical systems characterizing non-linear relationships and quality of outcome arising from performance variability and functional resonance. This paper aims to further improve the framework and expand the spectrum of features provided by FRAM through the integration of fuzzy logic. Fuzzy logic offers adequate mathematical tools capable of quantifying qualitative concepts and uncertain information applying comprehensible inference systems based on human judgement. An example of a possible application scenario is included through a simulation of aircraft on-ground deicing operations. The preliminary results of this project present an approach to generate numerical indicators for the quality of outputs, which can allow for a more comprehensible representation of potential performance variability. The presented model, however, requires further validation and optimization work to provide more representative and reliable results.
机译:现代社会技术系统表现出动态和复杂的行为,这可能难以预期,建模和评估。这种系统的不断发展的性质和新兴的特性要求对采用的安全和风险分析方法进行不断的重新评估,以应对不断出现的挑战并确保成功的性能。近年来提出的一种有趣的方法是功能共振分析方法(FRAM)。 FRAM从系统角度对社会技术系统进行建模,以表征非线性关系和因性能变化和功能共振而产生的结果质量。本文旨在通过模糊逻辑的集成进一步完善框架并扩展FRAM提供的功能范围。模糊逻辑提供了足够的数学工具,能够使用基于人类判断的综合推理系统来量化定性概念和不确定信息。通过模拟飞机的地面除冰操作,可以得出一个可能的应用场景示例。该项目的初步结果提出了一种生成产出质量数字指标的方法,该方法可以更全面地理解潜在的绩效差异。但是,提出的模型需要进一步的验证和优化工作,以提供更具代表性和可靠性的结果。

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