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Mathematical models for a batch scheduling problem to minimize earliness and tardiness

机译:批处理调度问题的数学模型,以最大程度地减少早期和拖延

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Purpose: Today’s manufacturing facilities are challenged by highly customized products and just in time manufacturing and delivery of these products. In this study, a batch scheduling problem is addressed to provide on-time completion of customer orders in the environment of lean manufacturing. The problem is to optimize partitioning of product components into batches and scheduling of the resulting batches where each customer order is received as a set of products made of various components.Design/methodology/approach: Three different mathematical models for minimization of total earliness and tardiness of customer orders are developed to provide on-time completion of customer orders and also, to avoid from inventory of final products. The first model is a non-linear integer programming model while the second is a linearized version of the first. Finally, to solve larger sized instances of the problem, an alternative linear integer model is presented.Findings: Computational study using a suit set of test instances showed that the alternative linear integer model is able to solve all test instances in varying sizes within quite shorter computer times comparing to the other two models. It was also showed that the alternative model can solve moderate sized real-world problems.Originality/value: The problem under study differentiates from existing batch scheduling problems in the literature since it includes new circumstances which may arise in real-world applications. This research, also, contributes the literature of batch scheduling problem by presenting new optimization models.
机译:目的:高度定制的产品以及及时的制造和交付这些产品,对当今的制造工厂构成了挑战。在这项研究中,解决了批次计划问题,以在精益制造环境中按时完成客户订单。问题在于优化将产品组件划分为批次并计划最终批次的调度,在该批次中,将接收每个客户订单作为一组由各种组件组成的产品。设计/方法/方法:三种不同的数学模型可以最大程度地减少总提前期和延误开发客户订单以提供客户订单的及时完成,并且避免最终产品的库存。第一个模型是非线性整数规划模型,而第二个模型是第一个模型的线性化版本。最后,为了解决更大的问题实例,提出了一种替代的线性整数模型。发现:使用一组测试实例的计算研究表明,替代的线性整数模型能够在相当短的时间内解决所有大小不同的测试实例与其他两种模型相比的计算机时间。还显示了替代模型可以解决中等大小的实际问题。来源/价值:研究中的问题与文献中现有的批处理计划问题有所不同,因为它包含了可能在实际应用中出现的新情况。通过提供新的优化模型,该研究也为批处理调度问题的文献提供了帮助。

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