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Digital Twin in Computational Design and Robotic Construction of Wooden Architecture

机译:数字双胞胎在计算设计和木制建筑机器人建设中

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This study proposes a cyber-physical interconnection method for computational design and robotic construction in a wooden architectural realm. It aims to provide a highly efficient, flexible, and adaptive design-construction approach by continuously updating digital models and physical operations according to the locally sourced materials. A perception-modeling system to scan the source materials on-site and send their data simultaneously to design software was developed by using physical sensors and computational technologies in an innovative manner. The data was used for architectural programs to generate design outcomes and guide the robotic construction. The novelty of this study is to establish a real-time, bidirectional interaction mechanism between digital design and physical construction. The design outcome is no longer a fixed, predefined geometric model but a dynamic, data-driven model which would be updated by material conditions on-site. The construction robot is able to make synchronous adjustment automatically in coordination with the dynamic design. The success of the iterative perceiving-simulating-updating loop was demonstrated by building two pavilions.
机译:本研究提出了一种用于木制建筑领域的计算设计和机器人结构的网络物理互连方法。它旨在通过根据本地源材料连续更新数字模型和物理操作来提供高效,灵活和自适应的设计 - 建设方法。通过使用物理传感器和计算技术以创新的方式使用物理传感器和计算技术,开发了一种感知建模系统并同时向设计软件发送数据。数据用于建筑程序以产生设计结果并引导机器人结构。本研究的新颖性是在数字设计和物理结构之间建立实时,双向交互机制。设计结果不再是固定的预定义的几何模型,而是一种动态的数据驱动模型,其将在现场材料条件更新。建筑机器人能够在与动态设计协调中自动进行同步调整。通过构建两个亭子来证明了迭代感知更新循环的成功。

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