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Augmented reality for industrial robot programmers: Workload analysis for task-based, augmented reality-supported robot control

机译:工业机器人程序员的增强现实:基于任务的,增强现实支持的机器人控制的工作负载分析

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Augmented reality (AR) can serve as a tool to provide helpful information in a direct way to industrial robot programmers throughout the teaching process. It seems obvious that AR support eases the programming process and increases the programmer's productivity and programming accuracy. However, additional information can also potentially increase the programmer's perceived workload. To explore the impact of augmented reality on robot teaching, as a first step we have chosen a Sphero robot control scenario and conducted a within-subject user study with 19 professional industrial robot programmers, including novices and experts. We focused on the perceived workload of industrial robot programmers and their task completion time when using a tablet-based AR approach with visualization of task-based information for controlling a robot. Each participant had to execute three typical robot programming tasks: tool center point teaching, trajectory teaching, and overlap teaching. We measured the programmers' workload in the dimensions of mental demand, physical demand, temporal demand, frustration, effort, and performance. The study results show that the presentation of task-based information in the tablet-based AR interface decreases the mental demand of the industrial robot programmers during the robot control process. At the same time, however, the programmers' task completion time increases.
机译:增强现实(AR)可以用作在整个教学过程中直接向工业机器人程序员提供有用信息的工具。显然,AR支持简化了编程过程,并提高了程序员的生产率和编程准确性。但是,其他信息也可能会增加程序员的预期工作量。为了探索增强现实技术对机器人教学的影响,第一步,我们选择了Sphero机器人控制方案,并与19个专业的工业机器人程序员(包括新手和专家)进行了主题内用户研究。我们将重点放在使用基于平板电脑的AR方法以及可视化基于任务的信息来控制机器人时,工业机器人程序员的感知工作量及其任务完成时间。每个参与者必须执行三个典型的机器人编程任务:工具中心点教学,轨迹教学和重叠教学。我们从精神需求,身体需求,时间需求,挫败感,努力和表现等维度来衡量程序员的工作量。研究结果表明,在基于平板电脑的AR界面中基于任务的信息的呈现减少了工业机器人程序员在机器人控制过程中的心理需求。但是,与此同时,程序员的任务完成时间会增加。

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