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Atomic Head Movement Analysis for Wearable Four-Dimensional Task Load Recognition

机译:可穿戴四维任务负荷识别的原子头部运动分析

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Physical activity recognition using wearable sensors has achieved good performance in discriminating heterogeneous activities for health monitoring, but there has been less investigation of sedentary activities, e.g., desk work, which is often physically homogenous, to improve health in office environments. In this study, we explored head movement as a new sensing modality for physical and mental activity analysis. A new algorithm which segments gyroscope signals into atomic head movement events is proposed. Instead of recognizing activities in terms of predefined categories, we recognized four dimensions of task load: cognitive, perceptual, communicative, and physical, analogous to current manual workload assessment methods like NASA-TLX. We collected head movement data from 24 participants who wore a tri-axial inertial sensor at head while performing multiple tasks with varying load levels at office. An average of 70 accuracy was achieved for recognizing cognitive load levels, and more than 80 for the other three load types. The proposed event features outperformed a set of 181 features from previous physical activity recognition studies. We also demonstrated that these atomic event features are diagnostic of different load types in cross-load type classification, showing the promise of physical and mental load monitoring for health.
机译:使用可穿戴式传感器进行的体育活动识别在区分异构活动以进行健康监控方面已经取得了良好的性能,但是对久坐活动的调查较少,例如通常物理上同质的文书工作,以改善办公室环境中的健康。在这项研究中,我们将头部运动作为一种新的感知方式进行了身体和心理活动分析。提出了一种将陀螺仪信号分割为原子头运动事件的新算法。我们没有按照预先定义的类别来识别活动,而是识别了任务负荷的四个维度:认知,知觉,沟通和体力,类似于当前的手动工作负载评估方法,例如NASA-TLX。我们收集了来自24名参与者的头部运动数据,这些参与者的头部戴着三轴惯性传感器,同时在办公室中执行多种任务并具有不同的负载水平。识别认知负荷水平的平均准确率达到70,其他三种负荷类型的平均准确率达到80。拟议的事件特征优于以前的体育活动识别研究中的181个特征。我们还证明了这些原子事件特征可以在交叉负载类型分类中诊断不同的负载类型,从而显示出监测健康状况的生理和心理负载的希望。

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