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A new approach for automation of location-based earthwork scheduling in road construction projects

机译:道路建设项目中基于位置的土方调度自动化的新方法

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Accurate information of working locations is vital for efficient resource planning, safety of the construction site and monitoring the weekly progress of earthworks, which is missing in the existing linear scheduling methods. Construction managers have to depend on the subjective decisions for resources allocation and progress monitoring from location aspects. This has caused uncertainties in planning and scheduling, and consequently delays and cost overruns of projects. In this context, a prototype computer-based model was developed using the theory of the location-based planning. An arithmetic algorithm was designed by incorporating road design data, sectional quantities, variable productivity rates and haulage distance. This paper focuses on the improvement and demonstration of the model functions through a case study experiment, which include the automatic generation of location-based earthwork schedules and the optimisation of the weekly resource allocation when and where necessary from the location aspects, considering different options such as construction sequences of the cut/fill sections, site access points and the equipment sets with known productivity rates. The study concluded that the model is a decision supporting tool that assists in the resources planning, identifying time-space congestion, monitoring the activities progress on a weekly basis from the location aspects, and reducing the gap when communicating the scheduling information amongst the construction site teams.
机译:准确的工作地点信息对于有效的资源计划,建筑工地的安全和每周监测土方工程至关重要,而现有的线性调度方法却缺少这些信息。施工经理必须依靠主观决定来进行资源分配和从位置方面进行进度监控。这导致了计划和进度的不确定性,因此导致了项目的延误和成本超支。在这种情况下,使用基于位置的规划理论开发了基于计算机的原型模型。通过结合道路设计数据,路段数量,可变生产率和牵引距离来设计算术算法。本文通过案例研究实验着重于模型功能的改进和演示,其中包括基于位置的土方工程计划的自动生成以及在必要时从位置方面进行每周资源分配的优化,并考虑不同的选择,例如作为切割/填充部分,现场访问点和已知生产率的设备集的施工顺序。研究得出结论,该模型是决策支持工具,可协助资源规划,识别时空拥塞,每周从位置方面监视活动进度,并减少在建筑工地之间传达调度信息时的差距团队。

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