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Analysis and design of sequencing rules for car sequencing

机译:汽车排序的排序规则分析与设计

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摘要

This paper presents novel approaches for generating sequencing rules for the car sequencing (CS) problem in cases of two and multiple processing times per station. The CS problem decides on the succession of different car models launched down a mixed-model assembly line. It aims to avoid work overloads at the stations of the line by applying so-called sequencing rules, which restrict the maximum occurrence of labor-intensive options in a subsequence of a certain length. Thus to successfully avoid work overloads, suitable sequencing rules are essential. The paper shows that the only existing rule generation approach leads to sequencing rules which misclassify feasible sequences. We present a novel procedure which overcomes this drawback by generating multiple sequencing rules. Then, it is shown how to apply both procedures in case of multiple processing times per station. For both cases analytical and empirical results are derived to compare classification quality.
机译:本文介绍了一种新颖的方法,用于在每个工作站有两次或多次处理时间的情况下,为汽车排序(CS)问题生成排序规则。 CS问题决定了混合模型装配线下推出的不同车型的继承性。它的目的是通过应用所谓的排序规则来避免生产线站点的工作超负荷,该规则将在一定长度的子序列中最大程度地限制劳动密集型选项的发生。因此,为了成功避免工作过载,必须使用合适的排序规则。本文表明,仅有的现有规则生成方法会导致排序规则,从而对可行序列进行错误分类。我们提出了一种新颖的程序,该程序通过生成多个排序规则来克服此缺点。然后,显示了在每个站有多个处理时间的情况下如何应用这两个过程。对于这两种情况,都得出了分析和经验结果以比较分类质量。

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