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使用心理生理测量和人工神经网络对心理负荷进行实时评估。

Real-time assessment of mental workload using psychophysiological measures and artificial neural networks.

作者信息

Wilson Glenn F, Russell Christopher A

机构信息

US Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433-7022, USA.

出版信息

Hum Factors. 2003;45(4):635-43. doi: 10.1518/hfes.45.4.635.27088.

Abstract

The functional state of the human operator is critical to optimal system performance. Degraded states of operator functioning can lead to errors and overall suboptimal system performance. Accurate assessment of operator functional state is crucial to the successful implementation of an adaptive aiding system. One method of determining operators' functional state is by monitoring their physiology. In the present study, artificial neural networks using physiological signals were used to continuously monitor, in real time, the functional state of 7 participants while they performed the Multi-Attribute Task Battery with two levels of task difficulty. Six channels of brain electrical activity and eye, heart and respiration measures were evaluated on line. The accuracy of the classifier was determined to test its utility as an on-line measure of operator state. The mean classification accuracies were 85%, 82%, and 86% for the baseline, low task difficulty, and high task difficulty conditions, respectively. The high levels of accuracy suggest that these procedures can be used to provide accurate estimates of operator functional state that can be used to provide adaptive aiding. The relative contribution of each of the 43 psychophysiological features was also determined. Actual or potential applications of this research include test and evaluation and adaptive aiding implementation.

摘要

人类操作员的功能状态对于系统的最佳性能至关重要。操作员功能的退化状态可能导致错误以及整体系统性能欠佳。准确评估操作员的功能状态对于自适应辅助系统的成功实施至关重要。确定操作员功能状态的一种方法是监测其生理状况。在本研究中,使用基于生理信号的人工神经网络对7名参与者在执行具有两个难度级别的多属性任务组时的功能状态进行实时连续监测。在线评估了六个通道的脑电活动以及眼睛、心脏和呼吸指标。通过确定分类器的准确性来测试其作为操作员状态在线测量方法的效用。基线、低任务难度和高任务难度条件下的平均分类准确率分别为85%、82%和86%。较高的准确率表明这些程序可用于提供操作员功能状态的准确估计,进而用于提供自适应辅助。还确定了43种心理生理特征中每种特征的相对贡献。本研究的实际或潜在应用包括测试与评估以及自适应辅助的实施。

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