自动化
计算机科学
动作(物理)
选择(遗传算法)
可靠性(半导体)
风险分析(工程)
软件工程
系统工程
过程自动化系统
人工智能
工程类
机械工程
医学
功率(物理)
物理
量子力学
作者
Raja Parasuraman,T.B. Sheridan,Christopher D. Wickens
摘要
We outline a model for types and levels of automation that provides a framework and an objective basis for deciding which system functions should be automated and to what extent. Appropriate selection is important because automation does not merely supplant but changes human activity and can impose new coordination demands on the human operator. We propose that automation can be applied to four broad classes of functions: 1) information acquisition; 2) information analysis; 3) decision and action selection; and 4) action implementation. Within each of these types, automation can be applied across a continuum of levels from low to high, i.e., from fully manual to fully automatic. A particular system can involve automation of all four types at different levels. The human performance consequences of particular types and levels of automation constitute primary evaluative criteria for automation design using our model. Secondary evaluative criteria include automation reliability and the costs of decision/action consequences, among others. Examples of recommended types and levels of automation are provided to illustrate the application of the model to automation design.
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