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首页> 外文期刊>Frontiers in Psychology >Cognitive Modeling of Automation Adaptation in a Time Critical Task
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Cognitive Modeling of Automation Adaptation in a Time Critical Task

机译:一次性任务中自动化适应的认知建模

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This paper presents a cognitive model that simulates an adaptation process to automation in a time-critical task. The paper uses a simple tracking task (which represents vehicle operation) to reveal how the reliance on automation changes as the success probabilities of the automatic and manual mode vary. The model was developed by using a cognitive architecture, ACT-R (Adaptive Control of Thought-Rational). We also introduce two methods of reinforcement learning: the summation of rewards over time and a gating mechanism. The model performs this task through productions that manage perception and motor control. The utility values of these productions are updated based on rewards in every perception-action cycle. A run of this model simulated the overall trends of the behavioral data such as the performance (tracking accuracy), the auto use ratio, and the number of switches between the two modes, suggesting some validity of the assumptions made in our model. This work shows how combining different paradigms of cognitive modeling can lead to practical representations and solutions to automation and trust in automation.
机译:本文介绍了一种认知模型,用于在一个时间关键任务中模拟自动化的适应过程。本文采用简单的跟踪任务(代表车辆操作),揭示如何随着自动和手动模式的成功概率而变化的自动化变化的变化。该模型是通过使用认知架构,ACT-R(自适应控制理性的控制)开发的模型。我们还介绍了两种强化学习方法:随着时间的推移和奖励的总和和门控机制。该模型通过管理感知和电机控制的产品执行此任务。这些产品的效用值是根据每个感知行动周期的奖励而更新的。这种模型的运行模拟了行为数据的整体趋势,例如性能(跟踪精度),自动使用比率和两种模式之间的交换机的数量,表明我们模型中的假设的一些有效性。这项工作表明了如何结合认知建模的不同范式可以导致自动化和信任自动化的实用陈述和解决方案。

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