Exploring Spatial UI Transition Mechanisms with Head-Worn Augmented Reality
Feiyu Lu, Yan Xu
Abstract
Imagine in the future people comfortably wear augmented reality (AR) displays all day, how do we design interfaces that adapt to the contextual changes as people move around? In current operating systems, the majority of AR content defaults to staying at a fixed location until being manually moved by the users. However, this approach puts the burden of user interface (UI) transition solely on users. In this paper, we first ran a bodystorming design workshop to capture the limitations of existing manual UI transition approaches in spatially diverse tasks. Then we addressed these limitations by designing and evaluating three UI transition mechanisms with different levels of automation and controllability (low-effort manual, semi-automated, fully-automated). Furthermore, we simulated imperfect contextual awareness by introducing prediction errors with different costs to correct them. Our results provide valuable lessons about the trade-offs between UI automation levels, controllability, user agency, and the impact of prediction errors.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 0b5aef45-77a8-4242-93c3-cbe7a4076345Cited by top-tier papers18
- XAIR: A Framework of Explainable AI in Augmented RealityXuhai Xu, Anna Yu, Tanya R. Jonker, Kashyap Todi et al.CHI 2023 · 73 citations
- Augmented Object Intelligence with XR-ObjectsMustafa Doga Dogan, Eric J. Gonzalez, Karan Ahuja, Ruofei Du et al.UIST 2024 · 64 citations
- InteractionAdapt: Interaction-driven Workspace Adaptation for Situated Virtual Reality EnvironmentsYi Fei Cheng, Christoph Gebhardt, Christian HolzUIST 2023 · 44 citations
- SituationAdapt: Contextual UI Optimization in Mixed Reality with Situation Awareness via LLM ReasoningZhipeng Li, Christoph Gebhardt, Yves Inglin, Nicolas Steck et al.UIST 2024 · 36 citations
- User-Driven Constraints for Layout Optimisation in Augmented RealityAziz Niyazov, Barrett Ens, Kadek Ananta Satriadi, Nicolas Mellado et al.CHI 2023 · 26 citations
Builds on9
- SemanticAdapt: Optimization-based Adaptation of Mixed Reality Layouts Leveraging Virtual-Physical Semantic ConnectionsYifei Cheng, Yukang Yan, Xin Yi, Yuanchun Shi et al.UIST 2021 · 143 citations
- False Positives vs. False Negatives: The Effects of Recovery Time and Cognitive Costs on Input Error PreferenceBen Lafreniere, Tanya R. Jonker, Stephanie Santosa, Mark Parent et al.UIST 2021 · 75 citations
- Evaluating the Potential of Glanceable AR Interfaces for Authentic Everyday UsesFeiyu Lu, Doug A. BowmanIEEE VR 2021 · 70 citations
- Teleporting through virtual environments: Effects of path scale and environment scale on spatial updatingJonathan W. Kelly, Alec G. Ostrander, Alex F. Lim, Lucia A. Cherep et al.IEEE VR 2020 · 61 citations
- Automated Class Discovery and One-Shot Interactions for Acoustic Activity RecognitionJason Wu, Chris Harrison, Jeffrey P. Bigham, Gierad LaputCHI 2020 · 52 citations
Related papers
- Exploring Visual Techniques for Boundary Awareness During Interaction in Augmented Reality Head-Mounted DisplaysWenge Xu, Hai-Ning Liang, Yuzheng Chen, Xiang Li et al.IEEE VR 2020 · 5 citations
- Connecting Home: Human-Centric Setup Automation in the Augmented Smart HomeMarius Schenkluhn, Michael Thomas Knierim, Francisco Kiss, Christof WeinhardtCHI 2024 · 10 citations
- UI Mobility Control in XR: Switching UI Positionings between Static, Dynamic, and Self EntitiesSiyou Pei, David Kim, Alex Olwal, Yang Zhang et al.CHI 2024 · 19 citations
- A Qualitative Investigation of User Transitions and Frictions in Cross-Reality ApplicationsJulius von Willich, Frank Nelles, Wen-Jie Tseng, Jan Gugenheimer et al.CHI 2025 · 5 citations
- HAI-AR: Exploring Hand-Anchored Interfaces in Augmented Reality while WalkingMarium-E. Jannat, Ngan Phan, Anmol Chadha, Keiko Katsuragawa et al.CHI 2025 · 10 citations
