Logistics Planning and Visualization of Modular Integrated Construction Projects Based on BIM-GIS Integration and Vehicle Routing Algorithm

Sanyuan Niu, Yezhou Yang, W. Pan
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引用次数: 21

Abstract

Logistics planning is a critical part of developing supply chain for modular integrated construction (MiC) projects in Hong Kong where high-rise, high density and hilly landscape is the norm. It is important to minimize the total logistics and to guarantee timely delivery of modules, especially for several MiC projects being constructed during the same period. Nevertheless, there is a significant lack of studies on logistics planning, optimization and visualization for MiC projects. The aim of this paper is to establish an integrated MiC logistics planning and visualization platform, which is grounded on the integration of building information modeling (BIM), geographical information system (GIS) and vehicle routing problem (VRP) algorithm. The framework is then presented and evaluated using a case study to identify optimal logistics scenario of trailer routes to meet the installation time window of MiC projects in Hong Kong. The paper finds that the proposed platform has the ability to make optimized logistics scenario for MiC projects, and to visualize the logistics scenario in a 3-dimentional interactive environment. Future study will focus on adopting flexible control strategies and including more decision-making criteria of logistics planning in MiC projects such as road width limitation, travel speed and different module types
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基于BIM-GIS集成和车辆路径算法的模块化集成建设项目物流规划与可视化
在香港,高层建筑、高密度建筑和丘陵景观已成为常态,物流规划是模块化集成建筑(MiC)项目供应链发展的重要组成部分。重要的是尽量减少总物流,并保证及时交付模块,特别是在同一时期正在建设的几个MiC项目。然而,对于MiC项目的物流规划、优化和可视化研究明显缺乏。本文的目的是基于建筑信息模型(BIM)、地理信息系统(GIS)和车辆路径问题(VRP)算法的集成,建立集成MiC物流规划和可视化平台。然后提出该框架,并通过案例研究进行评估,以确定拖车路线的最佳物流方案,以满足香港MiC项目的安装时间窗口。研究发现,所提出的平台能够为MiC项目制定优化的物流场景,并在三维交互环境中可视化物流场景。未来的研究将侧重于采用灵活的控制策略,在MiC项目中纳入更多的物流规划决策准则,如道路宽度限制、行驶速度和不同的模块类型
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