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Optimization of POLCA-controlled production systems with a simulation-driven genetic algorithm

机译:用模拟驱动的遗传算法优化POLCA控制的生产系统

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摘要

The present work is meant to show the effective capability of optimizing an unbalanced Paired-Cell Overlapping Loops of Cards with Authorization (POLCA)-controlled production system by means of a heuristic algorithm. This objective is suggested by the fact that one of the most significant issues when using card-driven production control systems is represented by the optimized setting of the large number of cards within the control loops. This is particularly true in the case of unbalanced systems, where the number of cards may vary significantly among the different loops. Little law is usually adopted in literature to infer this number from historical data, but the obtained number is usually far from the optimum. Indeed, in real-world applications, the systems to be controlled are designed to process units with very different routings, each with different probability to occur. In all these situations, they result particularly difficult to set correctly. To this aim, in the present work a Genetic Algorithm is used. The objective is that of finding the correct number of cards and to reduce the overall Total Throughput Time and the average Work In Process. The proposed approach may provide a valid support tool to overcome these limitations, making the most of POLCA capabilities in many manufacturing configurations.
机译:本工作旨在展示一种有效的能力,可以通过启发式算法优化具有授权(POLCA)控制的生产系统的卡片的不平衡成对单元重叠环。通过使用卡驱动的生产控制系统时最重要的问题之一是控制回路内大量卡的优化设置,从而表明了这一目标。在不平衡系统的情况下尤其如此,在该系统中,卡的数量在不同的回路之间可能有很大的不同。在文献中通常很少采用法律来从历史数据中推断出该数字,但是所获得的数字通常远非最优。实际上,在实际应用中,要控制的系统被设计为处理路径非常不同的单元,每个单元都有不同的发生概率。在所有这些情况下,它们导致特别难以正确设置。为了这个目的,在本工作中使用遗传算法。目的是找到正确数量的卡,并减少总的总吞吐时间和平均在制品。所提出的方法可以提供有效的支持工具来克服这些限制,从而在许多制造配置中充分利用POLCA的功能。

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