ARTHUR: Authoring Human-Robot Collaboration Processes with Augmented Reality using Hybrid User Interfaces
arXiv:2501.02304 · doi:10.1007/s10055-025-01149-6
Abstract
While augmented reality shows promise for supporting human-robot collaboration, creating such interactive systems still poses great challenges. Addressing this, we introduce ARTHUR, an open-source authoring tool for augmented reality-supported human-robot collaboration. ARTHUR supports 20 types of multi-modal feedback to convey robot, task, and system state, 10 actions that enable the user to control the robot and system, and 18 conditions for feedback customization and triggering of actions. By combining these elements, users can create interaction spaces, controls, and information visualizations in augmented reality for collaboration with robot arms. With ARTHUR, we propose to combine desktop interfaces and touchscreen devices for effective authoring, with head-mounted displays for testing and in-situ refinements. To demonstrate the general applicability of ARTHUR for human-robot collaboration scenarios, we replicate representative examples from prior work. Further, in an evaluation with five participants, we reflect on the usefulness of our hybrid user interface approach and the provided functionality, highlighting directions for future work.
References in corpus (7)
- Augmented Reality and Robotics: A Survey and Taxonomy for AR-enhanced Human-Robot Interaction and Robotic Interfaces
- Personal Augmented Reality for Information Visualization on Large Interactive Displays
- Extended Reality (XR) Remote Research: a Survey of Drawbacks and Opportunities
- Design Patterns for Situated Visualization in Augmented Reality
- How to Communicate Robot Motion Intent: A Scoping Review
- Anywhere & Everywhere: A Mobile, Immersive, and Ubiquitous Vision for Data Analytics
- Text Entry Performance and Situation Awareness of a Joint Optical See-Through Head-Mounted Display and Smartphone System