HaptiDrag: A Device with the Ability to Generate Varying Levels of Drag (Friction) Effects on Real Surfaces
Abhijeet Mishra, Piyush Kumar, Jainendra Shukla, Aman Parnami
Abstract
We presently rely on mechanical approaches to leverage drag (friction) effects for digital interaction as haptic feedback over real surfaces. Unfortunately, due to their mechanical nature, such methods are inconvenient, difficult to scale, and include object deployment issues. Accordingly, we present HaptiDrag, a thin (1 mm) and lightweight (2 gram) device that can reliably produce various intensities of on-surface drag effects through electroadhesion phenomenon. We first performed design evaluation to determine minimal size (5 cm x 5 cm) of HaptiDrag to enable drag effect. Further, with reference to eight distinct surfaces, we present technical performance of 2 sizes of HaptiDrag in real environment conditions. Later, we conducted two user studies; the first to discover absolute detection threshold friction spots of varying intensities common to all surfaces under test and the second to validate the absolute detection threshold points for noticeability with all sizes of HaptiDrag. Finally, we demonstrate device's utility in different scenarios.
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 3c5e90e0-ffeb-4fe5-b7fe-f0c0eb625a4dCited by top-tier papers1
Ask how each one uses itRelated papers
- Design and Evaluation of Interaction Techniques Dedicated to Integrate Encountered-Type Haptic Displays in Virtual EnvironmentsVictor Mercado, Maud Marchal, Anatole LécuyerIEEE VR 2020 · 4 citations
- Tactile Perceptual Thresholds of Electrovibration in VRLu Zhao, Yue Liu, Weitao SongIEEE VR 2021 · 16 citations
- Household Surface Interactions: Understanding User Input Preferences and Perceived Home ExperiencesGarreth W. Tigwell, Michael CrabbCHI 2020 · 12 citations
- FeetThrough: Electrotactile Foot Interface that Preserves Real-World SensationsKeigo Ushiyama, Pedro LopesUIST 2023 · 28 citations
- ElectroClick: Enhancing Button Experiences on Surfaces with Electrotactile SensationsHongnan Lin, Songxian Liu, Shengsheng Jiang, Yueyan Pang et al.UbiComp 2025 · 2 citations
