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Balancing mixed-model assembly systems in the footwear industry with a variable neighbourhood descent method

机译:用可变邻域下降法平衡制鞋业中的混合模型装配系统

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This paper addresses new Mixed-model Assembly Line Balancing Problems (MALBP) in a real industrial context, the stitching systems of a footwear company. The work is part of large ongoing projects with this industry, and the main purposes are minimising the number of required workstations and smoothing the operators’ workload.The company has invested in new flexible automated assembly systems, which accommodate dozens of workstations and many moving boxes. Footwear components are inside boxes (with various quantities) which can move from the warehouses to a convenient workstation or between any workstations (in any order). This is a significant and distinct feature of the MALBP, together with the fact that the assignment of different skilled operators and machines is achieved simultaneously.An optimisation model is developed, in part to facilitate the understanding of the situation and to solve small-size instances. Due to the complexity of the problems, we had to devise an approximate method, based on the Variable Neighbourhood Descent (VND) metaheuristic and integrating an adaptation of the Ranked Positional Weighted (RPW) method. The adapted RPW method is used to create initial feasible solutions, while preassigning special operators and machines. After choosing good initial solutions, VND is applied to improve their quality.The new contributed method, named as RPW-VNDbal, is tested with medium and large instances, in two distinct stitching systems. A Lower Bound of the objective function and Simulation contribute to evaluate the solutions and their practicability. The results implemented by the project team, show that the RPW-VNDbal method is fast enough and offers better solutions than those implemented by the experienced operation managers of the company.
机译:本文在实际的工业环境中解决了新的混合模型流水线平衡问题(MALBP),这是一家鞋类公司的缝合系统。该工作是该行业正在进行的大型项目的一部分,其主要目的是最大程度地减少所需工作站的数量并减轻操作员的工作量。该公司已投资新的灵活的自动化装配系统,该系统可容纳数十个工作站和许多移动箱。鞋类组件位于箱子内(数量众多),可以从仓库移动到便利的工作站,也可以在任何工作站之间(以任何顺序)移动。这是MALBP的显着和独特特征,同时还可以完成不同熟练操作员和机器的分配工作。开发了一个优化模型,部分目的是促进对情况的理解并解决小型实例。由于问题的复杂性,我们不得不设计一种近似方法,该方法基于可变邻域下降(VND)元启发式方法,并结合了排名位置加权(RPW)方法的适应性。改编的RPW方法用于创建初始可行的解决方案,同时预先分配特殊的操作员和机器。在选择了良好的初始解决方案之后,VND可以提高质量。新的贡献方法RPW-VNDbal在两个不同的缝合系统中分别针对中型和大型实例进行了测试。目标函数和仿真的下界有助于评估解决方案及其实用性。项目团队执行的结果表明,与公司经验丰富的运营经理实施的方法相比,RPW-VNDbal方法具有足够的速度并提供了更好的解决方案。

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