Publisher DOI: 10.1145/3756884.3765983
Title: Investigating resolution strategies for workspace-occlusion in augmented virtuality
Language: English
Authors: Feld, Nico 
Bimberg, Pauline 
Feldmann, Michael 
Wölwer, Matthias 
Langbehn, Eike  
Weyers, Benjamin 
Zielasko, Daniel 
Editor: Batmaz, Anil Ufuk 
Barrera Machuca, Mayra D. 
Ortega, Francisco R. 
Zielasko, Daniel 
Kim, Kangsoo 
Skarbez, Rick 
Plabst, Lucas 
Banić, Amy 
Stroppa, Mine Sarac 
Spencer, Stephen N. 
Keywords: Augmented Virtuality; Cross-Reality; Occlusion; Virtual Reality
Issue Date: 4-Dec-2025
Publisher: Association for Computing Machinery
Book title: Proceedings of the 2025 31st ACM Symposium on Virtual Reality Software and Technology
Part of Series: ACM Other conferences 
Conference: ACM Symposium on Virtual Reality Software and Technology 2025 
Abstract: 
Augmented Virtuality integrates physical content into virtual environments, but the occlusion of physical by virtual content is a challenge. This unwanted occlusion may disrupt user interactions with physical devices and compromise safety and usability. This paper investigates two resolution strategies to address this issue: Redirected Walking, which subtly adjusts the user's movement to maintain physical-virtual alignment, and Automatic Teleport Rotation, which realigns the virtual environment during travel. A user study set in a virtual forest demonstrates that both methods effectively reduce occlusion. While in our testbed, Automatic Teleport Rotation achieves higher occlusion resolution, it is suspected to increase cybersickness compared to the less intrusive Redirected Walking approach.
URI: https://hdl.handle.net/20.500.12738/19127
ISBN: 979-8-4007-2118-2
Review status: This version was peer reviewed (peer review)
Institute: Fakultät Informatik und Digitale Gesellschaft 
Type: Chapter/Article (Proceedings)
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