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Mixed-integer programming models for tower crane selection and positioning with respect to mutual interference

机译:用于塔式起重机选择和相互干扰定位的混合整数编程模型

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摘要

Cranes have a major impact on a construction project from both an operational and an economic perspective as they are the primary lifting equipment and among the most expensive construction equipment. In this research we, thus, focus on two inter-related decisions regarding tower cranes, namely their selection and their on-site location. On a given polygonal construction site, there are given polygonal supply and demand areas that have to be connected by tower cranes with given specifications such as operating radius, operating height and costs. Cranes have to be selected and their on-site locations have to be determined so that each demand area is connected to its supply area. The objective is to minimize overall cost. When locating cranes, infeasible areas, minimum distances between cranes and obstacles limiting the cranes' slewing ranges, e.g. other cranes or existing structures, have to be respected. We provide a formal problem definition, analyze its computational complexity, and develop four different mixed-integer programming models. Finally, an extensive computational study investigates the performance of standard solver CPLEX using the model formulations. (C) 2018 Elsevier B.V. All rights reserved.
机译:起重机对从运营和经济角度的建筑项目产生重大影响,因为它们是主要的提升设备和最昂贵的建筑设备。因此,在这项研究中,我们专注于有关塔式起重机的两个与相关的决定,即他们的选择及其现场位置。在给定的多边形施工现场上,给定的多边形供需和需求区域,必须通过塔式起重机连接,具有给定规范,例如操作半径,操作高度和成本。必须选择起重机,必须确定其现场位置,以便每个需求区域连接到其供应区域。目标是最大限度地减少总体成本。当定位起重机时,可行区域,起重机和限制起重机的障碍物之间的最小距离,限制起重机的回转范围,例如,其他起重机或现有结构必须受到尊重。我们提供正式的问题定义,分析其计算复杂性,并开发四种不同的混合整数编程模型。最后,广泛的计算研究通过模型配方调查了标准求解器CPLEX的性能。 (c)2018年elestvier b.v.保留所有权利。

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