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The best papers from BRIMS 2011: models of users and teams interacting

机译:BRIMS 2011最佳论文:用户和团队交互的模型

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This special issue is similar to our previous special issues (Kennedy et al. in Comput. Math. Organ. Theory 16(3):217-219,2010; 17(3):225-228, 2011) in that it includes articles based on the award winning conference papers of the, here, 2011 BRiMS Annual Conference. These articles were reviewed by the editors, extended to journal article length, and then peer-reviewed and revised before being accepted. The articles include a new way to evaluate designs of interfaces for safety critical systems (Bolton in Comput. Math. Organ. Theory, 2012), an article that extends our understanding of how to model situation awareness (SA) in a cognitive architecture (Rodgers et al. in Comput. Math. Organ. Theory, 2012), an article that presents elec-troencephalography (EEG) data used to derive dynamic neurophysiologic models of engagement in teamwork (Stevens et al. in Comput. Math. Organ. Theory, 2012), and an article that demonstrates using machine learning to generate models and an example application of that tool (Best in Comput. Math. Organ. Theory, 2012). After presenting a brief summary of each paper we will see some recurrent themes of task analysis, team and individual models, spatial reasoning, usability issues, and particularly that they are models that interact with each other or systems.
机译:该特刊与我们之前的特刊(Kennedy等人在Comput。Math。Organ。Theory 16(3):217-219,2010; 17(3):225-228,2011)中的相似之处包括文章基于2011 BRiMS年会获奖论文的基础。这些文章由编辑审核,扩展到期刊文章的长度,然后在被接受之前进行同行评审和修订。文章包括评估安全关键系统的接口设计的新方法(Bolton in Comput。Math。Organ。Theory,2012),扩展了我们对如何在认知体系结构中建模态势感知(SA)的理解。等人在计算数学器官理论,2012年)中发表了一篇文章,介绍了脑电图(EEG)数据,这些数据用于得出参与团队合作的动态神经生理模型(史蒂文斯等人在计算数学器官理论中, 2012年),以及一篇文章演示如何使用机器学习来生成模型以及该工具的示例应用(Best in Comput。Math。Organ。Theory,2012年)。在介绍每篇论文的简短摘要之后,我们将看到任务分析,团队和个人模型,空间推理,可用性问题等一些经常出现的主题,尤其是它们是相互影响或与系统交互的模型。

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