机构Perfboard:用于连杆机构设计与制造的增强现实环境

Yunwoo Jeong, Han-Jong Kim, T. Nam
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引用次数: 21

摘要

具有动力学机制的原型设备,如自动机和机器人,在物理计算项目中已经变得很常见。然而,由于机制的动态性和不可预测性,在早期概念探索阶段的机制设计是具有挑战性的。我们提出了机制Perfboard,一个增强现实环境,支持联动机构的设计和制造。它通过从现实世界的运动中产生最初期望的联系机制来支持思想的具体化。在环境中模拟运动的投影能够在真实规模中进行迭代测试和修改。增强信息和伴随的有形部件帮助用户制造机构。通过对10名参与者的用户研究,我们发现Mechanism Perfboard可以帮助参与者实现他们想要的动作。增强的环境使直观的修改和制造与机械运动的理解。在工具开发和用户研究的基础上,讨论了增强现实和计算支持对机构原型设计的影响。
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Mechanism Perfboard: An Augmented Reality Environment for Linkage Mechanism Design and Fabrication
Prototyping devices with kinetic mechanisms, such as automata and robots, has become common in physical computing projects. However, mechanism design in the early-concept exploration phase is challenging, due to the dynamic and unpredictable characteristics of mechanisms. We present Mechanism Perfboard, an augmented reality environment that supports linkage mechanism design and fabrication. It supports the concretization of ideas by generating the initial desired linkage mechanism from a real world movement. The projection of simulated movement within the environment enables iterative tests and modifications in real scale. Augmented information and accompanying tangible parts help users to fabricate mechanisms. Through a user study with 10 participants, we found that Mechanism Perfboard helped the participant to achieve their desired movement. The augmented environment enabled intuitive modification and fabrication with an understanding of mechanical movement. Based on the tool development and the user study, we discuss implications for mechanism prototyping with augmented reality and computational support.
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