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A modified multi-objective genetic algorithm for two-sided assembly line re-balancing problem of a shovel loader

机译:铲装机两面流水线再平衡问题的改进多目标遗传算法

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This article deals with a real-life multi-objective two-sided assembly line rebalancing problem (MTALRBP) with modifications of production demand, line's structure and production process in a Chinese construction machinery manufacturing firm. The objectives are minimising the cycle time and rebalancing cost, considering some specific constraints associated with the inevitable wait time, such as novel cycle time, idle time and balanced constraints. A modified non-dominated sorting genetic algorithm II (MNSGA-II) is proposed to solve this problem. MNSGA-II employs some problem-specific designs for encoding and decoding, initial population, crossover operator, mutation operator and selection operator. The great performance of MNSGA-II is demonstrated from two aspects: one is through the comparison between the representative results and current situation in the production system in terms of some ALs' performance evaluation index, the other is utilising the comparison between the proposed MNSGA-II and two versions of initial NSGA-II in terms of ratio, convergence and spread.
机译:本文讨论了一家中国工程机械制造公司的现实生活中多目标的两面流水线生产线再平衡问题(MTALRBP),其中涉及生产需求,生产线的结构和生产工艺的修改。考虑到与不可避免的等待时间相关的一些特定限制,例如新颖的循环时间,空闲时间和平衡的限制,目标是最小化循环时间和重新平衡成本。为了解决这个问题,提出了一种改进的非支配排序遗传算法II(MNSGA-II)。 MNSGA-II使用一些特定于问题的设计进行编码和解码,初始填充,交叉算子,变异算子和选择算子。从两个方面展示了MNSGA-II的出色性能:一个是通过比较代表结果和生产系统中的现状来评估某些AL的性能评估指标,其二是利用提议的MNSGA-II之间的比较。 II,初始版NSGA-II的两个版本,包括比率,收敛性和传播性。

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