A Taxonomy of Functional Augmented Reality for Human-Robot Interaction
Author:
Affiliation:
1. Univ. of New South Wales,Sydney,Australia
2. Chalmers Univ. of Technology,Interaction Design, CSE,Gothenburg,Sweden
3. Univ. of Melbourne,Melbourne,Australia
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9889327/9889305/09889622.pdf?arnumber=9889622
Reference86 articles.
1. Effects of Augmented Reality on the Performance of Teleoperated Industrial Assembly Tasks in a Robotic Embodiment
2. Augmented reality-assisted robot programming system for industrial applications
3. Seamless human robot collaborative assembly – An automotive case study
4. Interactive robot trajectory planning and simulation using Augmented Reality
5. AR-based interaction for human-robot collaborative manufacturing
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1. Towards Unlimited Task Coverage and Direct (far-off) Manipulation in eXtended Reality Remote Collaboration;Companion of the 2024 ACM/IEEE International Conference on Human-Robot Interaction;2024-03-11
2. User Interface Interventions for Improving Robot Learning from Demonstration;International Conference on Human-Agent Interaction;2023-12-04
3. Towards Universal Industrial Augmented Reality: Implementing a Modular IAR System to Support Assembly Processes;Multimodal Technologies and Interaction;2023-06-27
4. A Demonstration of the Taxonomy of Functional Augmented Reality for Human-Robot Interaction;2022 17th ACM/IEEE International Conference on Human-Robot Interaction (HRI);2022-03-07
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