A System for Human-Robot Teaming through End-User Programming and Shared Autonomy
Authors
Many industrial tasks-such as sanding, installing fasteners, and wire harnessing-are difficult to automate due to task complexity and variability. We instead investigate deploying robots in an assistive role for these tasks, where the robot assumes the physical task burden and the skilled worker provides both the high-level task planning and low-level feedback necessary to effectively complete the task. In this article, we describe the development of a system for flexible human-robot teaming that combines state-of-the-art methods in end-user programming and shared autonomy and its implementation in sanding applications. We demonstrate the use of the system in two types of sanding tasks, situated in aircraft manufacturing, that highlight two potential workflows within the human-robot teaming setup. We conclude by discussing challenges and opportunities in human-robot teaming identified during the development, application, and demonstration of our system.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 80%
Charlie and the Semi-Automated Factory: Data-Driven Operator Behavior and Performance Modeling for Human-Machine Collaborative Systems
CHI '23· Ubiquitous Computing +2
- 75%
Collaborative or Simply Uncaged? Understanding Human-Cobot Interactions in Automation
CHI '20· Human-Robot Collaboration (HRC)
- 75%
See What I See: Enabling User-Centric Robotic Assistance Using First-Person Demonstrations
HRI '20· Human-Robot Collaboration (HRC)
- 75%
Making Informed Decisions: Supporting Cobot Integration Considering Business and Worker Preferences
HRI '24· Human-Robot Collaboration (HRC)
- 60%
Vipo: Spatial-Visual Programming with Functions for Robot-IoT Workflows
CHI '20· Ubiquitous Computing +1
- 60%
Manufacturing Change: The Impact of Virtual Environments on Real Organizations
CHI '20· Mixed Reality Workspaces +1
- 60%
Presentation of Robot-Intended Handover Position using Vibrotactile Interface during robot-to-human handover task
HRI '24· Vibrotactile Feedback & Skin Stimulation +1
Based on Jaccard similarity of research subtopics & professions (≥60%)