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An Improved Lexicographical Whale Optimization Algorithm for the Type-II Assembly Line Balancing Problem Considering Preventive Maintenance Scenarios

机译:考虑预防性维护方案的II型装配线平衡问题改进的词典鲸鲸优化算法

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摘要

In the traditional assembly line balancing, all the workstations are assumed available and hence the unavailability of any workstation brings about the stoppage of the whole line and the waste of the production capacity in the rest workstations. Considering the planning characteristic of preventive maintenance, this paper proposes a novel methodology of integrating the preventive maintenance scenarios into assembly line balancing problems to bypass the unavailable workstation. A lexicographic model is formulated to generate multiple task assignment plans that ensure primarily the high productivity under regular operation scenario and guarantee secondarily the production continuity under preventive maintenance scenarios. And, an improved whale optimization algorithm (IWOA) with three modifications is proposed to solve this problem. Specifically, a combined crossover operator enhances better combination in exploration; three best search agents promote the exploitation; partial regeneration avoids being trapped in local optima. More than five thousand experiments demonstrate that the joint of three modifications endows the IWOA significant superiority over six variants and other six well-known algorithms. Moreover, integrating preventive maintenance scenarios into the assembly line balancing problem increases the production efficiency by 1 & x0025; at the cost of small production adjustment.
机译:在传统的装配线平衡中,假设所有工作站都有,因此任何工作站的不可用带来整个线路的停工和剩余工作站中的生产能力的浪费。考虑到预防性维护的规划特征,本文提出了一种将预防性维护方案集成到装配线平衡问题中的新方法,以绕过不可用的工作站。配制内容模型以生成多个任务分配计划,该计划主要在常规操作场景下的高生产率,并保证在预防性维护方案下的生产连续性。并且,提出了一种改进的鲸鱼优化算法(IWOA),具有三种修改以解决这个问题。具体地,组合的交叉算子在勘探中提高了更好的组合;三个最好的搜索代理商促进剥削;部分再生避免被困在本地最佳状态。超过五千的实验表明,三种修改的关节赋予IWOA在六种变体和其他六种众所周知的算法中的显着优势。此外,将预防性维护方案集成到装配线平衡问题中,将生产效率提高1&x0025;以小生产调整的成本。

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