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一种用于检查心理生理测量以进行自适应任务分配的闭环系统。

A closed-loop system for examining psychophysiological measures for adaptive task allocation.

作者信息

Prinzel L J, Freeman F G, Scerbo M W, Mikulka P J, Pope A T

机构信息

NASA Langley Research Center, Hampton, VA, USA.

出版信息

Int J Aviat Psychol. 2000 Oct;10(4):393-410. doi: 10.1207/S15327108IJAP1004_6.

Abstract

A closed-loop system was evaluated for its efficacy in using psychophysiological indexes to moderate workload. Participants were asked to perform either 1 or 3 tasks from the Multiattribute Task Battery and complete the NASA Task Load Index after each trial. An electroencephalogram (EEG) was sampled continuously while they performed the tasks, and an EEG index (beta/alpha plus theta) was derived. The system made allocation decisions as a function of the level of operator engagement based on the value of the EEG index. The results of the study demonstrated that it was possible to moderate an operator's level of engagement through a closed-loop system driven by the operator's own EEG. In addition, the system had a significant impact on behavioral, subjective, and psychophysiological correlates of workload as task load increased. The theoretical and practical implications of these results for adaptive automation are discussed.

摘要

对一个闭环系统进行了评估,以考察其利用心理生理指标调节工作负荷的功效。要求参与者执行多属性任务组中的1项或3项任务,并在每次试验后完成NASA任务负荷指数。在他们执行任务时持续采集脑电图(EEG),并得出一个EEG指数(β/α加θ)。该系统根据EEG指数的值,作为操作员参与度水平的函数做出分配决策。研究结果表明,通过由操作员自身EEG驱动的闭环系统来调节操作员的参与度水平是可行的。此外,随着任务负荷增加,该系统对工作负荷的行为、主观和心理生理相关因素产生了显著影响。讨论了这些结果对自适应自动化的理论和实际意义。

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