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Virtual Reality Supported Site Layout Planning for Modular Integrated Construction of High-Rise Buildings

机译:虚拟现实支持的高层建筑模块化集成施工的现场布局规划

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Site layout planning (SLP) is a classical assignment problem in determining the location of temporary facilities and site logistics. However, current research on SLP could not well fit in high-rise buildings using modular integrated construction (MiC) that is a game-changing construction practice transforming fragmented site activities into integrated module-driven construction. Therefore, this paper aims to develop an innovative SLP tool for high-rise modular buildings using virtual reality (VR) technology. First, a comprehensive literature review is conducted to identify the differences between conventional construction and MiC practices in terms of on-site activities, and analyze the previous methods on SLP and the features of VR technology. Second, the system architecture and functions of the VR-supported tool for SLP are designed. Third, the tool is developed with Unity3D and demonstrated using a real-life MiC project in Hong Kong. The demonstration reveals that the developed tool could help optimize the construction layout and module installation sequence through the provided functions of location tracking, overlapping area analysis, collision detection, simulation of different module installation scenarios, and lifting cost calculation. It proves that SLP assisted with VR technology can help construction planners identify the optimized facility locations to further secure the construction safety and increase the efficiency of module installation.
机译:站点布局规划(SLP)是确定临时设施和站点物流的位置的经典分配问题。然而,目前对SLP的研究不太适合使用模块化集成结构(MIC)的高层建筑物,这是一个变化的施工实践将分散的网站活动转化为集成模块驱动的结构。因此,本文旨在使用虚拟现实(VR)技术开发用于高层模块建筑的创新SLP工具。首先,进行了全面的文献综述,以确定现场活动方面的传统建设和MIC实践之间的差异,并分析了上一个关于SLP的方法和VR技术的特征。其次,设计了SLP的VR支持工具的系统架构和功能。第三,该工具是用Unity3D开发的,并在香港使用现实生活MIC项目进行了演示。演示揭示了开发的工具可以通过提供的位置跟踪,重叠区域分析,碰撞检测,不同模块安装方案的模拟和提升成本计算来帮助优化施工布局和模块安装序列。它证明,SLP辅助VR技术可以帮助建设规划人员确定优化的设施位置,以进一步保护施工安全性并提高模块安装的效率。

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