触摸屏
工作量
任务(项目管理)
计算机科学
人机交互
模拟
驾驶舱
飞行模拟器
触摸板
航空学
计算机硬件
工程类
操作系统
系统工程
作者
Charles-Antoine Lanoix,Srishti Rawal,Philippe Doyon-Poulin
标识
DOI:10.1080/10447318.2023.2266247
摘要
Due to their customizability, touchscreens continue to advance as a device of choice when designing aircraft cockpits.Previous studies investigated the effect of turbulence on human performance when using touchscreens, but few have evaluated its performance for realistic aviation-specific tasks.In this study, we compared four touchscreen widgets and three mechanical devices during realistic data input on a primary flight display (PFD).Twenty participants took part in the experiment at a constant level of vibration, while simultaneously completing a secondary tracking task.Results indicated that virtual keypads lead to faster completion time for medium to large changes while keeping error rates low.Rotary knobs were fastest for small changes.Virtual keypads also had lower workload and discomfort compared to rotary knobs and drag-based widgets.We found the completion time to be the most important factor in tracking task performance, which translated in higher precision for keypads.These findings suggest that virtual keypads represent an efficient and secure option for numerical data input at low-to-medium vibration.
科研通智能强力驱动
Strongly Powered by AbleSci AI