首页> 外文会议>Annual Meeting of the Human Factors and Ergonomics Society(HFES 2007); 20071001-05; Baltimore,MA(US) >A queueing network model of task prioritization using a general hierarchy of prioritization rules
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A queueing network model of task prioritization using a general hierarchy of prioritization rules

机译:使用优先级排序规则的一般层次结构的任务优先级排队网络模型

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Earlier, Zhang and Feyen (2005) proposed a qualitative framework for predicting how people working in a multitasking scenario switch between concurrent tasks with dynamically changing priorities. This paper describes a validation study of a computational model derived from this framework. Utilizing a general hierarchy of prioritization rules suggested by a companion empirical study, a model of a multiple task scenario built using a queueing network approach was compared to the empirical results. On all metrics considered, no means were found significantly different and the model replicated all but one of 54 task sequences demonstrated by human subjects. Comparisons to similar models utilizing only single prioritization rules revealed that the general hierarchy yielded substantially better predictions.
机译:早些时候,Zhang和Feyen(2005)提出了一个定性框架,用于预测在多任务场景中工作的人们如何在具有动态变化优先级的并发任务之间切换。本文描述了从该框架派生的计算模型的验证研究。利用伴随经验研究提出的优先规则的一般层次结构,将使用排队网络方法构建的多任务方案模型与经验结果进行了比较。在所有考虑的指标上,均未发现明显不同的方法,并且该模型复制了人类受试者演示的54个任务序列中的一个,但其中的所有序列均不重复。与仅使用单个优先级排序规则的类似模型的比较表明,总体层次结构产生了更好的预测。

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