论文标题

与信息系统中不同概念建模方法相关的认知工作量

Cognitive Workload Associated with Different Conceptual Modeling Approaches in Information Systems

论文作者

Knoben, Andreas, Alimardani, Maryam, Saghafi, Arash, Amiri, Amin K.

论文摘要

概念模型在视觉上表示实体及其之间的关系。在传达足够的信息时,有效的概念模型应该很简单。模型复杂性和清晰度之间的这种权衡对于防止信息系统开发的失败至关重要。过去的研究发现,更具表现力的模型会在测量用户对模型的深入了解的任务上提高性能,并将其归因于与这些模型相关的认知工作量的较低经验。这项研究通过测量用户在完成具有不同概念模型的任务时衡量用户脑活动来研究了这一假设。将30名参与者分为两组:一组使用低个体表达式模型(LOEM),另一组使用了高度表达的模型(HOEM)。使用脑电图参与指数对任务期间的认知工作量进行了量化,这是β和theta频带的总和的大脑活动能力的比率。在岩石组和HOEM组之间没有发现认知工作负载的显着差异,表明理解这两种模型所需的认知处理量相等。这项研究的主要贡献是将神经生理学措施引入,作为对概念建模和信息系统领域认知工作量的客观量化。

Conceptual models visually represent entities and relationships between them in an information system. Effective conceptual models should be simple while communicating sufficient information. This trade-off between model complexity and clarity is crucial to prevent failure of information system development. Past studies have found that more expressive models lead to higher performance on tasks measuring a user s deep understanding of the model and attributed this to lower experience of cognitive workload associated with these models. This study examined this hypothesis by measuring users EEG brain activity while they completed a task with different conceptual models. 30 participants were divided into two groups: One group used a low ontologically expressive model (LOEM), and the other group used a high ontologically expressive model (HOEM). Cognitive workload during the task was quantified using EEG Engagement Index, which is a ratio of brain activity power in beta as opposed to the sum of alpha and theta frequency bands. No significant difference in cognitive workload was found between the LOEM and HOEM groups indicating equal amounts of cognitive processing required for understanding of both models. The main contribution of this study is the introduction of neurophysiological measures as an objective quantification of cognitive workload in the field of conceptual modeling and information systems.

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