Application of simulation for order sequencing in flow-shop production systems

Rolf Schmidt
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引用次数: 7

Abstract

In many cases the functionality and performance of flow-shop production systems depends heavily on the selection of a suitable sequence of orders. The main objectives of order sequencing in production systems are minimization of set-up times, continuous and optimal use of capacities, reliability of delivery, minimization of stock and throughput time as well as avoidance of undue system states. The complexity of the task of order sequencing usually requires the employment of heuristic methods rather than analytical approaches. In this context computer simulation can be used for 1. testing and evaluation of rules for heuristic order sequencing applied to a given production system, 2. iterative optimization of partial order sequences and 3. realization of a closed-loop control system, in which the decision of the next job to be placed is made every time dependent on the actual state of the production system and its change tendencies. Integration of simulation programs within production control stations dealing with order sequencing problems thus allows to increase the performance of the production system as well as to make forecasts of future system states according to a chosen order sequence. In the following article the possibilities and limits of simulation employed to create optimal order sequences for flow-shop production systems will be outlined and discussed and some examples will be given.
订单排序仿真在流水车间生产系统中的应用
在许多情况下,流水车间生产系统的功能和性能在很大程度上取决于选择合适的订单顺序。生产系统中订单排序的主要目标是最大限度地减少设置时间,持续和最佳地使用能力,交付的可靠性,最大限度地减少库存和生产时间,以及避免不必要的系统状态。排序任务的复杂性通常要求采用启发式方法而不是分析方法。在这种情况下,计算机模拟可以用于1。应用于给定生产系统的启发式排序规则的测试与评价,2。3.偏序序列的迭代优化。实现闭环控制系统,每次根据生产系统的实际状态及其变化趋势来决定下一个作业的布置。因此,在处理订单排序问题的生产控制站内集成仿真程序可以提高生产系统的性能,并根据选定的订单顺序预测未来系统的状态。在下面的文章中,将概述和讨论用于为流水车间生产系统创建最佳订单序列的模拟的可能性和局限性,并给出一些示例。
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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