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A stochastic programming approach to design the production system flexibility considering the evolution of the part families

机译:考虑零件族演变的随机编程方法来设计生产系统的灵活性

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Competitive companies decide to invest in manufacturing flexibility in order to guarantee to production systems the robustness required to face product changes. On the other hand, manufacturing flexibility costs can jeopardise system profitability. Therefore, to design a cost-effective and responsive system the flexibility degree needs to be tuned on production problems. For this purpose, a new class of manufacturing systems named Focused Flexibility Manufacturing Systems (FFMSs) is proposed. FFMS is characterised by the minimum level of flexibility required to face production problems with the minimum System Investment Cost over the system life cycle. The aim of this paper is to propose a FFMS design approach based on a Two Stage Mixed Integer Stochastic Programming Problem. The output of the FFMS design approach is the type and number of devices to be purchased, in terms of machines, load/unload stations and carriers. A comparison between FMS and FFMS costs has been carried out taking as reference a real production case.
机译:竞争性公司决定投资于制造灵活性,以确保生产系统具有应对产品变化所需的坚固性。另一方面,制造灵活性成本会危害系统的盈利能力。因此,为了设计一种经济高效的响应系统,需要根据生产问题来调整灵活性。为此,提出了一种新型的制造系统,称为聚焦柔性制造系统(FFMS)。 FFMS的特点是在整个系统生命周期中以最低的系统投资成本应对生产问题所需的最低灵活性。本文的目的是提出一种基于两阶段混合整数随机规划问题的FFMS设计方法。 FFMS设计方法的输出是要购买的设备的类型和数量,包括机器,装载/卸载站和运输工具。在FMS和FFMS成本之间进行了比较,以实际生产案例为参考。

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