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Multi-objective dynamic layout problem for temporary construction facilities with unequal-area departments under fuzzy random environment

机译:模糊随机环境下不等地区部门的临时建筑设施多目标动态布局问题

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An optimal layout problem for temporary construction facilities (TFLP) is very important in large-scale construction projects. This problem involves the planning of temporary construction facilities within the boundaries of the restricted site so that materials transportation and rearrangement costs are minimized and distances between the various departments are optimized. As construction continues, however, the temporary facilities may need to be dynamically relocated several times to accommodate the various operational demands. Thus, this study proposes a new method for dynamic TFLP with unequal-area departments. To begin with, a multi-objective dynamic optimization layout model based on facilities coordinates is presented, in which the transportation costs between the facilities are described as fuzzy random variables and the temporary facilities, represented as rectangles or squares, are restricted to two-dimensional geometric constraints. Subsequently, the multi-objective position-based adaptive particle swarm optimization (p-based MOPSO) is developed to obtain feasible optimization solutions for the proposed problem. In order to evaluate the performance of the proposed method, the Jinping-I Hydropower construction project is used as a practical example. The resulti and further analyses of the model, algorithm evaluation and effectiveness proved that satisfactory solutions were able to be obtained. (C) 2015 Elsevier B.V. All rights reserved.
机译:临时建筑设施(TFLP)的最佳布局问题在大型建筑项目中非常重要。这个问题涉及禁区边界内的临时建筑设施规划,以便最小化材料运输和重排成本,并且各部门之间的距离是优化的。然而,由于施工继续,可能需要多次动态重新定位临时设施以适应各种操作需求。因此,本研究提出了一种具有不等地区部门的动态TFLP的新方法。首先,提出了一种基于设施坐标的多目标动态优化布局模型,其中设施之间的运输成本被描述为模糊的随机变量,并且临时设施,表示为矩形或正方形,限制为二维几何约束。随后,开发了基于多目标位置的自适应粒子群优化(基于P的MOPSO)以获得所提出的问题的可行优化解决方案。为了评估所提出的方法的性能,金平-I水电建设项目用作实际例子。结果和进一步分析模型,算法评估和有效性证明能够获得令人满意的解决方案。 (c)2015 Elsevier B.v.保留所有权利。

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