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id caadria2025_588
authors Lok, Leslie and Yoon, Hoon
year 2025
title Parametric Tile-Nesting System for a Curved Bamboo Strip: Deploying mixed reality from input to assembly for bamboo material
source Dagmar Reinhardt, Nicolas Rogeau, Christiane M. Herr, Anastasia Globa, Jielin Chen, Taro Narahara (eds.), ARCHITECTURAL INFORMATICS - Proceedings of the 30th CAADRIA Conference, Tokyo, 22-29 March 2025, Volume 2, pp. 551–560
summary Approached from a user-interaction perspective, this study explores mixed reality-driven interfaces that respond to fabricators' haptic gestures toward holographic and physical components during bamboo fabrication. The interface aims to provide a craftsperson with expanded perceptual and 3D spatial instruction by integrating augmented reality structures and component properties. This process enhances engagement with traditional methods to validate measurements and predict structural outcomes. By combining scanning, crafting, and assembling in an MR environment, the research develops a hybrid, human-centered approach that leverages the bamboo material's flexibility and rigidity for a custom assembly. A key aspect involves controlling the geometric and structural transformation of bamboo strips through a layered tile support system. Key methods include: (a) inputting bamboo parameters, such as node locations, via Fiducial Markers in AR scanning; (b) parametric modeling to adjust tile geometry and placement; and (c) holographic visualization for interactive learning and assembly. This approach provides real-time awareness of component properties, positions, and geometric outcomes, blending physical making with mixed reality interfaces to transform physical crafting into interactive learning experiences.
keywords Mixed Reality-driven Fabrication, Augmented Interface, Computational Design, Human-Computer Interaction, Biomaterial
series CAADRIA
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