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Evaluating models in systems ergonomics with a taxonomy of model attributes

机译:使用模型属性分类法来评估系统工效学中的模型

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摘要

A model, as the term is used here, is a way of representing knowledge for the purpose of thinking, communicating to others, or implementing decisions as in system analysis, design or operations. It can be said that to the extent that we can model some aspect of nature we understand it. Models can range from fleeting mental images to highly refined mathematical equations of computer algorithms that precisely predict physical events. In constructing and evaluating models of ergonomic systems it is important that we consider the attributes of our models in relation to our objectives and what we can reasonably aspire to. To that end this paper proposes a taxonomy of models in terms of six independent attributes: applicability to observables, dimensionality, metricity, robustness, social penetration and conciseness. Each of these attributes is defined along with the meaning of different levels of each. The attribute taxonomy may be used to evaluate the quality of a model. Examples of system ergonomics models having different combinations of attributes at different levels are provided. Philosophical caveats regarding models in system ergonomics are discussed, as well as the relation to scientific method.
机译:此处使用的术语模型是一种表示知识的方法,用于思考,与他人交流或实施决策,如系统分析,设计或操作中那样。可以说,只要我们能够对自然的某些方面建模,我们就可以理解它。模型的范围从短暂的心理图像到精确预测物理事件的计算机算法的高度精确的数学方程式。在构建和评估人体工程学系统模型时,重要的是,我们应考虑模型的属性与目标以及我们可以合理追求的目标。为此,本文针对六个独立属性提出了一种模型分类法:可观察性的适用性,维度,度量,健壮性,社会渗透性和简洁性。定义了每个属性以及每个属性的不同级别的含义。属性分类法可用于评估模型的质量。提供了在不同级别具有不同属性组合的系统人体工学模型的示例。讨论了有关系统人体工程学模型的哲学警告,以及与科学方法的关系。

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