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Remanufacturing-oriented process planning and scheduling: mathematical modelling and evolutionary optimisation

机译:雷纳制造的过程规划和调度:数学建模和进化优化

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摘要

Remanufacturing has been widely studied for its potential to achieve sustainable production in recent years. In the literature of remanufacturing research, process planning and scheduling are typically treated as two independent parts. However, these two parts are in fact interrelated and often interact with each other. Doing process planning without considering scheduling related factors can easily introduce contradictions or even infeasible solutions. In this work, we propose a mathematical model of integrated process planning and scheduling for remanufacturing (IPPSR), which simultaneously considers the process planning and scheduling problems. An effective hybrid multi-objective evolutionary algorithm (HMEA) is presented to solve the proposed IPPSR. For the HMEA, a multidimensional encoding operator is designed to get a high-quality initial population. A multidimensional crossover operator and a multidimensional mutation operator are also proposed to improve the convergence speed of the algorithm and fully exploit the solution space. Finally, a specific legalising method is used to 'legalise' possible infeasible solutions generated by the initialisation method and mutation operator. Extensive computational experiments carried out to compare the HMEA with some well-known algorithms confirm that the proposed HMEA is able to obtain more and better Pareto solutions for IPPSR.
机译:再制造已被广泛研究其近年来实现可持续生产的潜力。在再制造研究的文献中,过程规划和调度通常被视为两个独立的部分。然而,这两个部分实际上是相互关联的并且通常相互交互。在不考虑调度相关因素的情况下进行流程规划可以轻易引入矛盾甚至不可行的解决方案。在这项工作中,我们提出了一个数学模型的综合过程规划和调度,用于再制造(IPPSR),其同时考虑流程规划和调度问题。提出了一种有效的混合多目标进化算法(HMEA)以解决所提出的IPPSR。对于HMEA,多维编码操作员旨在获得高质量的初始群体。还提出了一种多维交叉运算符和多维突变算子以提高算法的收敛速度并充分利用解决方案空间。最后,使用特定的合法化方法来“合法化”初始化方法和突变操作员产生的可能不可行的解决方案。进行了广泛的计算实验,以将HMEA与一些众所周知的算法进行比较证实,所提出的HMEA能够为IPPSR获得更多更好的Pareto解决方案。

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