Chromotion: Controlling Motion-Induced Color on Object Motion Paths via High-Speed Temporal Additive Projection
Shio Miyafuji, Arisa Kohtani, Hideki Koike
Abstract
We present Chromotion, a high-speed projection method that renders intended colors along the motion trajectories of moving objects. When an object moves across a high speed temporally multiplexed frame sequence, its occlusion of the projected patterns can, through persistence of vision, produce motion dependent colors along its path. Chromotion exploits this phenomenon by decomposing each static image into a short sequence in which target color frames are interleaved with a single complementary color frame. This temporal design allows moving objects to sample the sequence so that the perceived color along their motion paths converges to the target color, while stationary regions still integrate to the original static color. We built a prototype and conducted a camera based technical evaluation together with a user evaluation. The results show that Chromotion reliably produces the target color on motion trajectories without degrading static color fidelity. Because the approach requires no body or gaze tracking and no decoding of embedded information, it scales to public settings and supports multiuser and multimodal interactions. We also discuss limitations, and outline application scenarios such as public, ambient displays that blend into the environment.
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.
Related papers
- MOSion: Gaze Guidance with Motion-triggered Visual Cues by Mosaic PatternsArisa Kohtani, Shio Miyafuji, Keishiro Uragaki, Hidetaka Katsuyama et al.CHI 2024 · 8 citations
- Active 3D Motion Visualization Based on Spatiotemporal Light-Ray IntegrationFumihiko Sakaue, Jun SatoCVPR 2020
- Gaze on the Go: Effect of Spatial Reference Frame on Visual Target Acquisition During Physical Locomotion in Extended RealityPavel Manakhov, Ludwig Sidenmark, Ken Pfeuffer, Hans GellersenCHI 2024 · 17 citations
- PortaChrome: A Portable Contact Light Source for Integrated Re-Programmable Multi-Color TexturesYunyi Zhu, Cedric Honnet, Yixiao Kang, Junyi Zhu et al.UIST 2024 · 6 citations
- Thermotion: Design and Fabrication of Thermofluidic Composites for Animation Effects on Object SurfacesTianyu Yu, Weiye Xu, Haiqing Xu, Guanhong Liu et al.CHI 2023 · 33 citations
