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Graph theory-based approach for automatic recognition of CAD data

机译:基于图论的CAD数据自动识别方法

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摘要

CAD architectural plans basically contain original geometrical information of graphical primitives. However, in many applications, such as building's 3D reconstruction, auto-detecting errors of design, original CAD data are very hard to be directly utilized. It is always a time-consuming and exhaustive task to extract useful information like the coordinates of a line from CAD files. To make this task performed in more efficient way, a way to develop an automatic method to extract spatial information from architectural plans produced in the form of computer-drawn CAD drawings is proposed in this article. The aim of the proposed method is to provide automatic transformation of architectural drawings into the spatial and topological information of the enclosure in a building. To auto-understand the 'meaning' of the graphic elements in the drawings such as walls, doors and rooms, the approach employs algorithms in graph theory, which can identify every functional component in the enclosure and establish their connectivity relationships. The method has been implemented by using object-oriented C ++ language and is found to be able to produce satisfying results.
机译:CAD建筑平面图基本上包含图形图元的原始几何信息。但是,在许多应用中,例如建筑物的3D重建,自动检测设计错误,原始CAD数据都很难直接利用。从CAD文件中提取有用信息(如线的坐标)始终是一项耗时且详尽的任务。为了使该任务更有效地执行,本文提出了一种开发自动方法的方法,该方法可以从以计算机绘制的CAD图纸形式生成的建筑平面图中提取空间信息。所提出的方法的目的是提供将建筑图自动转换为建筑物中外壳的空间和拓扑信息。为了自动理解诸如墙壁,门和房间之类的图形中图形元素的“含义”,该方法采用了图论中的算法,该算法可以识别机柜中的每个功能组件并建立它们之间的连接关系。该方法已通过使用面向对象的C ++语言实现,并且发现能够产生令人满意的结果。

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