InflatableBots: Inflatable Shape-Changing Mobile Robots for Large-Scale Encountered-Type Haptics in VR
Ryota Gomi, Ryo Suzuki, Kazuki Takashima, Kazuyuki Fujita, Yoshifumi Kitamura
摘要
We introduce InflatableBots, shape-changing inflatable robots for large-scale encountered-type haptics in VR. Unlike traditional inflatable shape displays, which are immobile and limited in interaction areas, our approach combines mobile robots with fan-based inflatable structures. This enables safe, scalable, and deployable haptic interactions on a large scale. We developed three coordinated inflatable mobile robots, each of which consists of an omni-directional mobile base and a reel-based inflatable structure. The robot can simultaneously change its height and position rapidly (horizontal: 58.5 cm/sec, vertical: 10.4 cm/sec, from 40 cm to 200 cm), which allows for quick and dynamic haptic rendering of multiple touch points to simulate various body-scale objects and surfaces in real-time across large spaces (3.5 m x 2.5 m). We evaluated our system with a user study (N = 12), which confirms the unique advantages in safety, deployability, and large-scale interactability to significantly improve realism in VR experiences.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
引用它的顶会 Paper2
- Reality Promises: Virtual-Physical Decoupling Illusions in Mixed Reality via Invisible Mobile RobotsMohamed Kari, Parastoo AbtahiUIST 2025 · 被引用 2 次
- HumanoidTurk: Expanding VR Haptics with Humanoids for Driving SimulationsDaeho Lee, Ryo Suzuki, Jin-Hyuk HongCHI 2026 · 被引用 1 次
相关 Paper
- HapticBots: Distributed Encountered-type Haptics for VR with Multiple Shape-changing Mobile RobotsRyo Suzuki, Eyal Ofek, Mike Sinclair, Daniel Leithinger 等UIST 2021 · 被引用 66 次
- Buoyancé: Reeling Helium-Inflated Balloons with Mobile Robots on the Ground for Mid-Air Tangible Display, Interaction, and AssemblyAlan Pham, Yuxiao Li, Miyu Fukuoka, Ken NakagakiUIST 2025 · 被引用 1 次
- ZoomWalls: Dynamic Walls that Simulate Haptic Infrastructure for Room-scale VR WorldYan Yixian, Kazuki Takashima, Anthony Tang, Takayuki Tanno 等UIST 2020 · 被引用 48 次
- Shiftly: A Novel Origami Shape-Shifting Haptic Device for Virtual RealityTobias Batik, Hugo Brument, Khrystyna Vasylevska, Hannes KaufmannIEEE VR 2025 · 被引用 6 次
- CoboDeck: A Large-Scale Haptic VR System Using a Collaborative Mobile RobotSoroosh Mortezapoor, Khrystyna Vasylevska, Emanuel Vonach, Hannes KaufmannIEEE VR 2023 · 被引用 24 次
