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Spatial scheduling for shape-changing mega-blocks in a shipbuilding company

机译:造船公司变形大型块的空间调度

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To overcome space restriction and to increase productivity, some shipbuilding companies use floating-docks on the sea instead of dry-docks on the land. In that case, a floating-crane that is capable of lifting very heavy objects (up to 3600 tons) is used to handle the blocks which are the basic units in shipbuilding processes, and therefore, very large blocks (also called mega-blocks) can be used to build a ship, but because there are some positional restrictions under which the mega-block assembly yard can be constructed, the space is the scarcest resource in the process. The focus of the research reported in this paper is to develop an efficient spatial schedule for the mega-block assembly yard. First, we develop a length-time two-dimensional packing model for this problem. Since the optimisation model cannot be solved using an analytical method, we propose a GA-based heuristic algorithm using computational geometry theory. Through performing a series of computational experiments, we finally show that the proposed spatial scheduling algorithm can provide solutions of good quality very efficiently.
机译:为了克服空间限制并提高生产率,一些造船公司在海上使用浮船坞,而不是在陆地上使用干船坞。在这种情况下,使用能够吊起非常重的物体(最大3600吨)的浮吊来处理造船过程中作为基本单元的木块,因此,要处理非常大的木块(也称为巨型木块)可以用来建造船,但是由于在建造大型积木场时存在一些位置限制,因此空间是此过程中最稀缺的资源。本文报道的研究重点是为大型积木场制定有效的空间计划。首先,我们针对此问题开发了一个长时二维包装模型。由于优化模型无法使用解析方法求解,因此我们使用计算几何理论提出了一种基于遗传算法的启发式算法。通过进行一系列的计算实验,我们最终证明所提出的空间调度算法可以非常有效地提供高质量的解决方案。

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