Modeling and solving the two-sided U-type assembly line balance based on a heuristic algorithm of a multi-priority rule

Yu-ling Jiao, Xue Deng, Lin Li, Xinran Liu, Nan Cao
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Abstract

In order to improve the efficiency of assembly line and optimize the layout, this paper presents a collaborative optimization model for a two-sided U-type assembly line and a novel design with p-l partition layout is proposed to minimize number of workstations without increasing the length of the assembly line. Considering the task orientation and time sequencing in cross-workstation, the mathematical model of two-sided U-type assembly line balancing problem is derived. A multi-level priority rule heuristic algorithm is developed to drive the optimization process. The multi-level priority rule heuristic algorithm, modified particle swarm optimization algorithm, and the bi-objective integer programming method are applied to 20 classic examples, respectively. The calculation results suggest that the optimal results of the proposed method account for 90%, which verifies the rationality of the collaborative optimization model and algorithm, and provides a useful reference for the modeling and solution of the two-sided U-type assembly line balancing problems.
基于多优先规则启发式算法的双面u型装配线平衡建模与求解
为了提高装配线效率,优化装配线布局,提出了双面u型装配线的协同优化模型,在不增加装配线长度的情况下,提出了一种p-l分区布局的新设计,以减少工作站数量。考虑跨工作站的任务定向和时间排序,推导了双面u型装配线平衡问题的数学模型。提出了一种多级优先级规则启发式算法来驱动优化过程。采用多级优先规则启发式算法、改进粒子群优化算法和双目标整数规划法分别对20个经典实例进行了求解。计算结果表明,所提方法的最优结果占90%,验证了协同优化模型和算法的合理性,为双面u型装配线平衡问题的建模和求解提供了有益的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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