Griffiths Paul G, Gillespie R Brent
Department of Mechanical Engineering, University of Michigan, Ann Arbor 48109, USA.
Hum Factors. 2005 Fall;47(3):574-90. doi: 10.1518/001872005774859944.
This paper describes a paradigm for human/automation control sharing in which the automation acts through a motor coupled to a machine's manual control interface. The manual interface becomes a haptic display, continually informing the human about automation actions. While monitoring by feel, users may choose either to conform to the automation or override it and express their own control intentions. This paper's objective is to demonstrate that adding automation through haptic display can be used not only to improve performance on a primary task but also to reduce perceptual demands or free attention for a secondary task. Results are presented from three experiments in which 11 participants completed a lane-following task using a motorized steering wheel on a fixed-base driving simulator. The automation behaved like a copilot, assisting with lane following by applying torques to the steering wheel. Results indicate that haptic assist improves lane following by least 30%, p < .0001, while reducing visual demand by 29%, p < .0001, or improving reaction time in a secondary tone localization task by 18 ms, p = .0009. Potential applications of this research include the design of automation interfaces based on haptics that support human/automation control sharing better than traditional push-button automation interfaces.
本文描述了一种人机/自动化控制共享范式,其中自动化通过与机器手动控制接口相连的电机来发挥作用。手动接口成为一个触觉显示器,持续向人类传达自动化动作。在通过触觉进行监测时,用户可以选择顺应自动化,也可以对其进行 override 并表达自己的控制意图。本文的目的是证明通过触觉显示器添加自动化不仅可以用于提高主要任务的性能,还可以减少对次要任务的感知需求或释放注意力。文中呈现了三项实验的结果,11 名参与者在固定基座驾驶模拟器上使用电动方向盘完成了一项车道跟踪任务。自动化的作用类似于副驾驶,通过向方向盘施加扭矩来辅助车道跟踪。结果表明,触觉辅助使车道跟踪至少提高了 30%,p <.0001,同时将视觉需求降低了 29%,p <.0001,或者使次要音调定位任务中的反应时间缩短了 18 毫秒,p =.0009。本研究的潜在应用包括基于触觉的自动化接口设计,这种接口比传统的按钮式自动化接口能更好地支持人机/自动化控制共享。