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首页> 外文期刊>Journal of Construction Engineering and Management >Hybrid Genetic Algorithm-Simulation Optimization Method for Proactively Planning Layout of Material Yard Laydown
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Hybrid Genetic Algorithm-Simulation Optimization Method for Proactively Planning Layout of Material Yard Laydown

机译:主动规划物料堆场布局的混合遗传算法-模拟优化方法

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This paper presents a hybrid optimization method combining a genetic algorithm (GA) and simulation for planning the layout of material yard laydown areas. An optimized material yard layout entails efficiency in terms of time and cost for decision makers who seek increased performance in material handling, availability, and accessibility. Laying out materials on yards is mostly performed reactively in current practice, where the planner decides daily where to position the incoming materials, based on the list of material arrival and required materials for consumption, received daily. This policy cannot account for the dynamism of material flow in and out of the yard during a construction project. In contrast, a proactive materials placement policy can be used to address this concern based on incoming and outgoing material schedules for a certain period of time. This paper aims to evaluate the proactive material placement policy and present an integrated framework to determine the optimum layout for placing materials resulting in minimum material haulage time. To this end, a hybrid optimization is implemented through a case study from the steel fabrication industry, where an effective materials handling method could be of great significance. The major contribution of this work is the development of an approach that performs dynamic layout optimization of materials arriving at construction yards, using GA to heuristically search for the solution, and use of simulation to model the material handling process and determine the material haulage time. Results of the analyses show clear merits of proactive material placement over the reactive strategy and demonstrate the importance of GA and simulation integration to obtain more realistic outcomes. (C) 2015 American Society of Civil Engineers.
机译:本文提出了一种混合优化方法,将遗传算法和模拟相结合,用于规划物料堆放场区域的布局。对于寻求在物料搬运,可用性和可及性方面提高性能的决策者来说,优化的物料堆场布局可提高时间和成本效率。在目前的实践中,在院子里布置物料大多是被动地执行的,计划人员根据每天收到的物料到达清单和所需的消耗物料清单,每天决定将物料放置在何处。该政策无法解释建筑项目期间进出院子的物料的动态性。相反,可以使用主动材料放置策略基于特定时间段内进出物料计划来解决此问题。本文旨在评估主动材料放置策略,并提出一个综合框架来确定放置材料的最佳布局,从而缩短材料运输时间。为此,通过钢铁制造行业的案例研究实现了混合优化,其中有效的材料处理方法可能具有重要意义。这项工作的主要贡献是开发了一种方法,该方法可以对到达施工场的物料进行动态布局优化,使用GA启发式搜索解决方案,并使用模拟方法对物料处理过程进行建模并确定物料运输时间。分析结果表明,将主动材料放置在反应策略上具有明显的优势,并证明了遗传算法和模拟集成对于获得更实际结果的重要性。 (C)2015年美国土木工程师学会。

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