Experiencing Dynamic Weight Changes in Virtual Reality Through Pseudo-Haptics and Vibrotactile Feedback
Carolin Stellmacher, Feri Irsanto Pujianto, Tanja Kojic, Jan-Niklas Voigt-Antons, Johannes Schöning
Abstract
Virtual reality (VR) objects react dynamically to users’ touch interactions in real-time. However, experiencing changes in weight through the haptic sense remains challenging with consumer VR controllers due to their limited vibrotactile feedback. While prior works successfully applied pseudo-haptics to perceive absolute weight by manipulating the control-display (C/D) ratio, we continuously adjusted the C/D ratio to mimic weight changes. Vibrotactile feedback additionally emphasises the modulation in the virtual object’s physicality. In a study (N=18), we compared our multimodal technique with pseudo-haptics alone and a baseline condition to assess participants’ experiences of weight changes. Our findings demonstrate that participants perceived varying degrees of weight change when the C/D ratio was adjusted, validating its effectiveness for simulating dynamic weight in VR. However, the additional vibrotactile feedback did not improve weight change perception. This work extends the understanding of designing haptic experiences for lightweight VR systems by leveraging perceptual mechanisms.
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 f9d67720-9ae5-4ba1-ba67-0903805674ccCited by top-tier papers4
- How CO2STLY Is CHI? The Carbon Footprint of Generative AI in HCI Research and What We Should Do About ItNanna Inie, Jeanette Falk, Raghavendra SelvanCHI 2025 · 33 citations
- CollabJam: Studying Collaborative Haptic Experience Design for On-Body Vibrotactile PatternsDennis Wittchen, Alexander Ramian, Nihar Sabnis, Richard Böhme et al.CHI 2025 · 7 citations
- User-reconfigured Haptics: Combining User-Reconfiguration and Visual Manipulations to Enhance Dynamic Passive Haptic Experiences for VRXinrong Wang, Yu Jiang, Martin Schmitz, Jürgen Steimle et al.CHI 2026 · 1 citation
- RealTwin: Concept Graph Representation and Grounding Framework for Reality-Preserving Digital Twin ReconstructionZisu Li, Ruohao Li, Jiawei Li, Chao Liu et al.CHI 2026 · 1 citation
Builds on3
- PumpVR: Rendering the Weight of Objects and Avatars through Liquid Mass Transfer in Virtual RealityAlexander Kalus, Martin Kocur, Johannes Klein, Manuel Mayer et al.CHI 2023 · 37 citations
- Continuous VR Weight Illusion by Combining Adaptive Trigger Resistance and Control-Display Ratio ManipulationCarolin Stellmacher, André Zenner, Oscar Javier Ariza Nunez, Ernst Kruijff et al.IEEE VR 2023 · 16 citations
- STROE: An Ungrounded String-Based Weight Simulation DeviceAlexander Achberger, Pirathipan Arulrajah, Michael Sedlmair, Kresimir VidackovicIEEE VR 2022 · 12 citations
Related papers
- Slip-Grip: An Electrotactile Method to Simulate WeightHongnan Lin, Lei Gao, Shengsheng Jiang, Hongyu Yue et al.CHI 2025 · 5 citations
- RayFlex: Inducing Weight Perception Through Raycast Pseudo-Haptics in Virtual RealityYushi Wei, Sen Zhang, Rongkai Shi, Simon Fong et al.IEEE VR 2026
- Using Pseudo-Stiffness to Enrich the Haptic Experience in Virtual RealityYannick Weiss, Steeven Villa, Albrecht Schmidt, Sven Mayer et al.CHI 2023 · 34 citations
- Pseudo-Haptic Display of Mass and Mass Distribution During Object Rotation in Virtual RealityRun Yu, Doug A. BowmanIEEE VR 2020 · 50 citations
- Big or Small, It's All in Your Head: Visuo-Haptic Illusion of Size-Change Using Finger-RepositioningMyung Jin Kim, Eyal Ofek, Michel Pahud, Mike J. Sinclair et al.CHI 2024 · 9 citations
