arXiv:2503.02042cs.HCcs.RO2025-03ICRA

用带夹具的控制器在混合现实中操控机器人,效率更高。

Optimizing Robot Programming: Mixed Reality Gripper Control

  • 用带3D打印夹具的控制器直接抓取物体进行编程
  • 相比传统方式,任务完成时间缩短28%,用户负担降低37%
  • 适合需要快速上手的工业场景或非专业操作者

传统机器人编程方法复杂耗时。近年来,混合现实技术被用于优化编程流程,但多数依赖手势交互。本文对比三种基于控制器的混合现实编程方法:1)经典摇杆控制,通过摇杆移动机械臂末端;2)直接控制,控制器姿态直接映射到末端;3)夹持控制,控制器加3D打印夹具,可抓放物体。针对30名用户的组内实验显示,夹持控制在任务完成时间、用户体验、心理负荷和任务表现上均优于其他方法,且最受用户青睐。结果表明该方法具有高效、直观的潜力,适用于未来机器人编程。视频见 https://youtu.be/83kWr8zUFIQ。

原文摘要 · Abstract (English)

Conventional robot programming methods are complex and time-consuming for users. In recent years, alternative approaches such as mixed reality have been explored to address these challenges and optimize robot programming. While the findings of the mixed reality robot programming methods are convincing, most existing methods rely on gesture interaction for robot programming. Since controller-based interactions have proven to be more reliable, this paper examines three controller-based programming methods within a mixed reality scenario: 1) Classical Jogging, where the user positions the robot's end effector using the controller's thumbsticks, 2) Direct Control, where the controller's position and orientation directly corresponds to the end effector's, and 3) Gripper Control, where the controller is enhanced with a 3D-printed gripper attachment to grasp and release objects. A within-subjects study (n = 30) was conducted to compare these methods. The findings indicate that the Gripper Control condition outperforms the others in terms of task completion time, user experience, mental demand, and task performance, while also being the preferred method. Therefore, it demonstrates promising potential as an effective and efficient approach for future robot programming. Video available at https://youtu.be/83kWr8zUFIQ.

机器人编程混合现实人机交互

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