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Applying an Iterated Greedy Algorithm to Production Programming on Manufacturing Environment Controlled by the PBC Ordering System

机译:将迭代贪婪算法应用于PBC订购系统控制的制造环境的生产规划

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摘要

Ordering systems are a mechanism used to program the flow of production orders into the manufacturing system. The correct usage and parametrization of such systems have a significant impact on the performance of the production. One of the well-succeed ordering systems available in the literature is the Period-batch control (PBC), that allows one to group the orders into different production periods, and program it into the planning horizon. This paper assumes a manufacturing system controlled by PBC. On this system, this paper considered two performance indicators: a primary goal is to minimize the total tardiness and the second goal is to minimize the idleness of the production system. Two approaches are implemented to solve this problem: a mixed-integer programming model and eight algorithms based on the Iterated Greedy method. Beyond finding good results when comparing to the ones found by the mathematical model approach, this paper also performs the Tardiness x Production Capacity on each algorithm.
机译:订购系统是用于将生产订单流入制造系统的机制。这种系统的正确使用和参数化对生产性能产生了重大影响。文献中可用的良好顺序排序系统之一是批量控制(PBC),允许人们将订单分为不同的生产期,并将其编程到规划地平线中。本文假设由PBC控制的制造系统。在这个系统上,本文认为两个绩效指标:主要目标是最大限度地减少总迟到,第二个目标是最大限度地减少生产系统的闲置。实施了两种方法来解决这个问题:基于迭代贪婪方法的混合整数编程模型和八种算法。除了与数学模型方法发现的比较时,除了找到良好的结果,本文还在每种算法上执行初期X生产能力。

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