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Graph-based Representation of Building Circulation With the Most-Remote Points and Virtual Space Objects

机译:基于图形的建筑循环表示与最远程点和虚拟空间对象的表示

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This research aims to develop a graph-based representation of building circulation as an extended version of the metric graph structure named UCN (Universal Circulation Network). There are several different methods and algorithms to represent pedestrians' indoor circulation for architectural purposes. The UCN has introduced a BIM-enabled approach to measure walking distances between different space objects using door-to-door connection network. In this paper, we focus on the extended development of the metric graph algorithm to expand its use scenarios such as measuring the exact distance of fire egress. There are two major issues we have encountered in this research and development: 1) finding the most-remote point in a given space objects to measure the distance of fire egress and 2) handling virtually subdivided space objects. This paper describes specific algorithms to resolve this problem on top of the structure of UCN. The major outcome of this development is the extended metric graph structure with the virtual space objects and the most-remote point. The implementation and demonstration depicted in this paper will show how the UCN structure can be enhanced in terms of its capability for visual representation as well as its extensibility of circulation-related analysis.
机译:该研究旨在开发基于图形的建筑循环表示,作为名为UCN(通用循环网络)的公制图结构的扩展版本。有几种不同的方法和算法代表行人的室内循环以实现建筑目的。 UCN推出了一种支持BIM的方法来测量使用门到门连接网络在不同空间对象之间的步行距离。在本文中,我们专注于公制图算法的扩展开发,以扩展其使用场景,例如测量火灾出口的确切距离。在本研究和开发中有两个主要问题:1)在给定的空间对象中找到最偏远的点,以测量火灾出口的距离和2)处理几乎细分的空间对象。本文介绍了在UCN结构之上解决此问题的特定算法。此开发的主要结果是具有虚拟空间对象和最偏远点的扩展度量图形结构。本文描述的实施和演示将展示如何在其视觉表现的能力方面提高UCN结构以及其与循环相关分析的可扩展性。

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