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Rule-based method for automatic scaffold assembly from 3D building models

机译:基于规则的3D建筑模型自动脚手架组装方法

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To manually specify an optimal scaffold assembly for a given building geometry is a time consuming task. Our goal is to automate the process of selecting and placing scaffold components in order to design an optimal scaffold assembly for a specific building. The resulting assembly must be possible to construct in practice, should be practical to use for the workers, must satisfy governmental rules and regulations and should ideally result in minimum accumulated component cost. We propose a novel procedural modeling pipeline based on an input house model. First we extract vital coordinates from the house model that define the 3D scaffold placement. These coordinates are the basis for defining the positioning of scaffold cells. In the next step we populate the cells with actual scaffold components geometry. The resulting model is visualized to assist the assembly process. Additionally it is decomposed into elementary building blocks to produce assembly component lists to estimate the scaffold cost estimates, compute the weight for transportation and packing of components from a warehouse. The result from the automated process is compared to scaffold design produced manually by a professional scaffold designer.
机译:为给定的建筑几何形状手动指定最佳的脚手架组件是一项耗时的工作。我们的目标是自动化选择和放置脚手架组件的过程,以便为特定建筑物设计最佳的脚手架组件。最终的组件必须能够在实践中进行构造,对于工人而言应是实用的,必须满足政府的规章制度,并且理想情况下应使组件的总成本最小化。我们提出了一种基于输入房屋模型的新颖过程建模管道。首先,我们从房屋模型中提取生命坐标,以定义3D支架的位置。这些坐标是定义支架细胞定位的基础。在下一步中,我们使用实际的脚手架组件几何填充单元格。可视化生成的模型以辅助组装过程。另外,它被分解成基本的构造块,以生成组装组件清单,以估算支架成本估算,计算出仓库中组件运输和包装的重量。将自动化过程的结果与专业脚手架设计师手动制作的脚手架设计进行比较。

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