corobos: A Design for Mobile Robots Enabling Cooperative Transitions between Table and Wall Surfaces
Changyo Han, Yosuke Nakagawa, Takeshi Naemura
Abstract
Swarm User Interfaces allow dynamic arrangement of user environments through the use of multiple mobile robots, but their operational range is typically confined to a single plane due to constraints imposed by their two-wheel propulsion systems. We present corobos, a proof-of-concept design that enables these robots to cooperatively transition between table (horizontal) and wall (vertical) surfaces seamlessly, without human intervention. Each robot is equipped with a uniquely designed slope structure that facilitates smooth rotation when another robot pushes it toward a target surface. Notably, this design relies solely on passive mechanical elements, eliminating the need for additional active electrical components. We investigated the design parameters of this structure and evaluated its transition success rate through experiments. Furthermore, we demonstrate various application examples to showcase the potential of corobos in enhancing user environments.
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 ecfb3f44-1a15-470f-8dd0-6224f7002d94Cited by top-tier papers1
Ask how each one uses itBuilds on9
- 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
- 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
- HapticBots: Distributed Encountered-type Haptics for VR with Multiple Shape-changing Mobile RobotsRyo Suzuki, Eyal Ofek, Mike Sinclair, Daniel Leithinger et al.UIST 2021 · 66 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
- (Dis)Appearables: A Concept and Method for Actuated Tangible UIs to Appear and Disappear based on StagesKen Nakagaki, Jordan L. Tappa, Yi Zheng, Jack Forman et al.CHI 2022 · 33 citations
Related papers
- WaddleWalls: Room-scale Interactive Partitioning System using a Swarm of Robotic PartitionsYuki Onishi, Kazuki Takashima, Shoi Higashiyama, Kazuyuki Fujita et al.UIST 2022 · 27 citations
- AeroRigUI: Actuated TUIs for Spatial Interaction using Rigging Swarm Robots on Ceilings in Everyday SpaceLilith Yu, Chenfeng Gao, David Wu, Ken NakagakiCHI 2023 · 21 citations
- CoboDeck: A Large-Scale Haptic VR System Using a Collaborative Mobile RobotSoroosh Mortezapoor, Khrystyna Vasylevska, Emanuel Vonach, Hannes KaufmannIEEE VR 2023 · 24 citations
- SwarmFidget: Exploring Programmable Actuated Fidgeting with Swarm RobotsLawrence H. Kim, Veronika Domova, Yuqi Yao, Parsa RajabiUIST 2023 · 3 citations
- User-defined Swarm Robot ControlLawrence H. Kim, Daniel S. Drew, Veronika Domova, Sean FollmerCHI 2020 · 56 citations
