HapticBots: Distributed Encountered-type Haptics for VR with Multiple Shape-changing Mobile Robots
Ryo Suzuki, Eyal Ofek, Mike Sinclair, Daniel Leithinger, Mar González-Franco
Abstract
HapticBots introduces a novel encountered-type haptic approach for Virtual Reality (VR) based on multiple tabletop-size shape-changing robots. These robots move on a tabletop and change their height and orientation to haptically render various surfaces and objects on-demand. Compared to previous encountered-type haptic approaches like shape displays or robotic arms, our proposed approach has an advantage in deployability, scalability, and generalizability—these robots can be easily deployed due to their compact form factor. They can support multiple concurrent touch points in a large area thanks to the distributed nature of the robots. We propose and evaluate a novel set of interactions enabled by these robots which include: 1) rendering haptics for VR objects by providing just-in-time touch-points on the user’s hand, 2) simulating continuous surfaces with the concurrent height and position change, and 3) enabling the user to pick up and move VR objects through graspable proxy objects. Finally, we demonstrate HapticBots with various applications, including remote collaboration, education and training, design and 3D modeling, and gaming and entertainment.
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Install the CLIlune papers fulltext 29f14a76-d564-4e80-a91b-861ce629f138Cited by top-tier papers19
- Augmented Reality and Robotics: A Survey and Taxonomy for AR-enhanced Human-Robot Interaction and Robotic InterfacesRyo Suzuki, Adnan Karim, Tian Xia, Hooman Hedayati et al.CHI 2022 · 243 citations
- Sketched Reality: Sketching Bi-Directional Interactions Between Virtual and Physical Worlds with AR and Actuated Tangible UIHiroki Kaimoto, Kyzyl Monteiro, Mehrad Faridan, Jiatong Li et al.UIST 2022 · 46 citations
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- ChameleonControl: Teleoperating Real Human Surrogates through Mixed Reality Gestural Guidance for Remote Hands-on ClassroomsMehrad Faridan, Bheesha Kumari, Ryo SuzukiCHI 2023 · 29 citations
- InstruMentAR: Auto-Generation of Augmented Reality Tutorials for Operating Digital Instruments Through Recording Embodied DemonstrationZiyi Liu, Zhengzhe Zhu, Enze Jiang, Feichi Huang et al.CHI 2023 · 29 citations
Builds on6
- Wireality: Enabling Complex Tangible Geometries in Virtual Reality with Worn Multi-String HapticsCathy Fang, Yang Zhang, Matthew Dworman, Chris HarrisonCHI 2020 · 140 citations
- RoomShift: Room-scale Dynamic Haptics for VR with Furniture-moving Swarm RobotsRyo Suzuki, Hooman Hedayati, Clement Zheng, James L. Bohn et al.CHI 2020 · 122 citations
- Haptic PIVOT: On-Demand Handhelds in VRRobert Kovacs, Eyal Ofek, Mar González-Franco, Alexa Fay Siu et al.UIST 2020 · 91 citations
- REACH+: Extending the Reachability of Encountered-type Haptics Devices through Dynamic Redirection in VREric J. Gonzalez, Parastoo Abtahi, Sean FollmerUIST 2020 · 76 citations
- HERMITS: Dynamically Reconfiguring the Interactivity of Self-propelled TUIs with Mechanical Shell Add-onsKen Nakagaki, Joanne Leong, Jordan L. Tappa, João Wilbert et al.UIST 2020 · 65 citations
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