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A multi-objective dynamic rebalancing scheduling algorithm for mixed-model assembly line

机译:混合模型装配线的多目标动态再平衡调度算法

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In this paper, a new multi-objective dynamic rebalance scheduling model for the mixed-model assembly line is introduced to minimize the idle time of stations with the given resource and balance the workload between stations and within stations. The scheduling model includes a priority queue scheduler, a cyclic production strategy named optimal part set (OPS) and a sliding window scheme for processing products stream. Then, a multi-objective dynamic rebalance scheduling algorithm base on this model is presented, and it is used for balancing the workload during the production process. The test instance LA01 in job shop scheduling benchmark described by S.Lawrence is applied to verify this dynamic rebalance scheduling algorithm. Experiments show that the idle time in all stations for all arrived orders has reduced significantly when this algorithm is applied. With this algorithm, the idle time will decrease when working cycle is extended. But the average workload difference between stations and within stations for all orders will increase with working cycles extended.
机译:本文介绍了一种用于混合模型装配线的新的多目标动态再平衡调度模型,以最小化具有给定资源的站点的空闲时间,并平衡站点之间和站点内部的工作量。该调度模型包括优先级队列调度器,名为最优零件集(OPS)的循环生产策略以及用于处理产品流的滑动窗口方案。然后,提出了一种基于该模型的多目标动态再平衡调度算法,用于平衡生产过程中的工作量。 S.Lawrence描述的作业车间调度基准中的测试实例LA01用于验证此动态重新平衡调度算法。实验表明,应用该算法后,所有到达订单的所有站点的空闲时间都大大减少。使用此算法,延长工作周期后,空闲时间将减少。但是,随着工作周期的延长,工作站之间以及工作站内部所有订单的平均工作量差异会增加。

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