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Spatial scheduling for large assembly blocks in shipbuilding

机译:造船中大型装配块的空间调度

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This paper addresses the spatial scheduling problem (SPP) for large assembly blocks, which arises in a shipyard assembly shop. The spatial scheduling problem is to schedule a set of jobs, of which each requires its physical space in a restricted space. This problem is complicated because both the scheduling of assemblies with different due dates and earliest starting times and the spatial allocation of blocks with different sizes and loads must be considered simultaneously. This problem under consideration aims to the minimization of both the makespan and the load balance and includes various real-world constraints, which includes the possible directional rotation of blocks, the existence of symmetric blocks, and the assignment of some blocks to designated workplaces or work teams. The problem is formulated as a mixed integer programming (MIP) model and solved by a commercially available solver. A two-stage heuristic algorithm has been developed to use dispatching priority rules and a diagonal fill space allocation method, which is a modification of bottom-left-fill space allocation method. The comparison and computational results shows the proposed MIP model accommodates various constraints and the proposed heuristic algorithm solves the spatial scheduling problems effectively and efficiently.
机译:本文针对大型装配体的空间调度问题(SPP),该问题在造船厂的装配车间中出现。空间调度问题是调度一组作业,每个作业都需要在受限的空间中使用其物理空间。这个问题很复杂,因为必须同时考虑具有不同到期日期和最早开始时间的组件的调度以及具有不同大小和负载的块的空间分配。所考虑的问题旨在使制造期和负载平衡最小化,并包括各种实际限制,包括可能的方向旋转块,对称块的存在以及将某些块分配给指定的工作场所或工作团队。该问题被公式化为混合整数编程(MIP)模型,并由市售求解器解决。已经开发了一种使用调度优先级规则和对角填充空间分配方法的两阶段启发式算法,该方法是对左下填充空间分配方法的一种改进。比较和计算结果表明,所提出的MIP模型能够适应各种约束条件,并且启发式算法能够有效地解决空间调度问题。

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