Intermittent Control as a Model of Mouse Movements

J. A. Martin, H. Gollee, Jörg Müller, R. Murray-Smith
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引用次数: 11

Abstract

We present Intermittent Control (IC) models as a candidate framework for modelling human input movements in Human–Computer Interaction (HCI). IC differs from continuous control in that users are not assumed to use feedback to adjust their movements continuously, but only when the difference between the observed pointer position and predicted pointer positions becomes large. We use a parameter optimisation approach to identify the parameters of an intermittent controller from experimental data, where users performed one-dimensional mouse movements in a reciprocal pointing task. Compared to previous published work with continuous control models, based on the Kullback–Leibler divergence from the experimental observations, IC is better able to generatively reproduce the distinctive dynamical features and variability of the pointing task across participants and over repeated tasks. IC is compatible with current physiological and psychological theory and provides insight into the source of variability in HCI tasks.
鼠标运动的间歇性控制模型
我们提出间歇性控制(IC)模型作为模拟人机交互(HCI)中人类输入运动的候选框架。IC与连续控制的不同之处在于,它不假设用户使用反馈来连续地调整他们的运动,而是只有当观察到的指针位置与预测的指针位置相差很大时才会使用反馈来调整他们的运动。我们使用参数优化方法从实验数据中识别间歇性控制器的参数,其中用户在互惠指向任务中执行一维鼠标移动。与之前发表的连续控制模型相比,基于实验观察的Kullback-Leibler散度,IC能够更好地生成再现参与者之间和重复任务的不同动态特征和可变性。IC与当前的生理和心理学理论相兼容,并提供了对HCI任务变异性来源的见解。
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