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Order sequencing and capacity balancing in synchronous manufacturing

机译:同步制造中的订单排序和产能平衡

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Synchronous manufacturing aims at achieving the benefits of intermittent production lines in production situations that operate without lines. Benefits such as short and constant throughput times and predictable capacity loading can be acquired through an appropriate design of the synchronous manufacturing system and its control system. The order release mechanism is an essential part of this control system. It determines the sequence in which orders are released to the shop floor. As orders may differ in the amount and distribution of their capacity requirements over subsequent production stages, total capacity load may vary over time. If the available capacity per period is not flexible, capacity balancing becomes an issue in the order release decision. In practice, heuristics or rules of thumb are used to solve this problem, but their effectiveness is questioned. This paper examines the effectiveness of some new heuristics that are based on insights from assembly system design and work load control, and compare their performance with an optimal solution approach. The approaches are evaluated in a rolling schedule environment, and under different levels of capacity fluctuations and problem sizes. The results show that the performance of the heuristic solutions deteriorates if capacity fluctuations between the stages increase. If we measure both the amount and frequency of shortages over a long period of time in a rolling schedule environment, a quite simple rule that only takes the available capacity during the first stage into account outperforms more intelligent rules.
机译:同步制造旨在在没有生产线的生产情况下获得间歇生产线的好处。通过同步制造系统及其控制系统的适当设计,可以获得诸如较短且恒定的生产时间以及可预测的产能负荷之类的优势。订单下达机制是此控制系统的重要组成部分。它确定将订单下达到车间的顺序。由于订单在后续生产阶段的容量需求量和分布可能会有所不同,因此总容量负荷可能会随时间变化。如果每个期间的可用容量不灵活,那么在订单下达决策中,容量平衡就成为一个问题。在实践中,试探法或经验法则用于解决此问题,但其有效性受到质疑。本文基于组装系统设计和工作负载控制的见解,研究了一些新的启发式方法的有效性,并将其性能与最佳解决方案进行了比较。在滚动计划环境中以及在不同级别的容量波动和问题规模下评估这些方法。结果表明,如果阶段之间的容量波动增加,则启发式解决方案的性能会下降。如果我们在滚动计划环境中长时间测量短缺的数量和频率,那么一个非常简单的规则(仅考虑第一阶段的可用容量)就会胜过更智能的规则。

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