STROE: An Ungrounded String-Based Weight Simulation Device
Alexander Achberger, Pirathipan Arulrajah, Michael Sedlmair, Kresimir Vidackovic
Abstract
We present STROE, a new ungrounded string-based weight simulation device. STROE is worn as an add-on to a shoe that in turn is connected to the user’s hand via a controllable string. A motor is pulling the string with a force according to the weight to be simulated. The design of STROE allows the users to move more freely than other state-of-the-art devices for weight simulation. It is also quieter than other devices, and is comparatively cheap. We conducted a user study that empirically shows that STROE is able to simulate the weight of various objects and, in doing so, increases users’ perceived realism and immersion of VR scenes.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get f21c82ad-0d90-46ac-93a0-62d8d05745dfCited by top-tier papers2
- Experiencing Dynamic Weight Changes in Virtual Reality Through Pseudo-Haptics and Vibrotactile FeedbackCarolin Stellmacher, Feri Irsanto Pujianto, Tanja Kojic, Jan-Niklas Voigt-Antons et al.CHI 2024 · 19 citations
- Reel Feel: Rich Haptic XR Experiences Using an Active, Worn, Multi-String DeviceNathan Devrio, Chris HarrisonCHI 2025 · 10 citations
Related papers
- bARefoot: Generating Virtual Materials using Motion Coupled Vibration in ShoesPaul Strohmeier, Seref Güngör, Luis Herres, Dennis Gudea et al.UIST 2020 · 69 citations
- Slip-Grip: An Electrotactile Method to Simulate WeightHongnan Lin, Lei Gao, Shengsheng Jiang, Hongyu Yue et al.CHI 2025 · 5 citations
- MobileGravity: Mobile Simulation of a High Range of Weight in Virtual RealityAlexander Kalus, Johannes Klein, Tien-Julian Ho, Lee-Ann Seegets et al.CHI 2024 · 18 citations
- 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
- FrictShoes: Providing Multilevel Nonuniform Friction Feedback on Shoes in VRChih-An Tsao, Tzu-Chun Wu, Hsin-Ruey Tsai, Tzu-Yun Wei et al.IEEE VR 2022 · 15 citations
