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Operational flexibility quantification in a make-to-order assembly system

机译:按订单组装系统中的操作灵活性量化

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Manufacturing flexibility is becoming a fundamental production objective, along with cost, quality, and delivery time. Current production systems face quick changes in market conditions and they need to adapt in this environment. The supply chain and industrial globalization give an important role for assembly systems. Placed at the end of the value chain, assembly systems must face those quick changes successfully to reach the expected performance. The key performance indicators are normally based on cost, quality, and delivery time objectives. Reducing costs and improving quality are almost universal goals. Delivery time is typically determined by customer demand in the supply chain, planning from make-to-stock to make-to-order, and aspiring to reach a just-in-time manufacturing system. In this context, flexibility could be the differential advantage to tackle uncertainty. Closely related to the rest of production objectives and the overall performance of the system, flexibility must be integrated in the system for successful decision-making in operations. This work presents this approach of flexibility. A brief review of flexibility concepts and measurements in the literature precedes an introduction to flexibility, defined based on the function of utility. This function represents the expectations of system performance. This approach allows the formulation of the taxonomy of operational flexibility in agreement with the classical types identified in former works. Next, an integer model is programmed to simulate the basic behavior of task planning in a make-to-order assembly system. This first application illustrates flexibility quantification based on utility evolution. The use of common industrial parameters to quantify operational flexibility will finally facilitate an integrated interpretation of system performance trends.
机译:制造灵活性以及成本,质量和交货时间已成为基本的生产目标。当前的生产系统面临着市场条件的快速变化,因此需要适应这种环境。供应链和产业全球化对装配系统起着重要作用。装配系统位于价值链的末端,必须成功面对这些快速变化,才能达到预期的性能。关键绩效指标通常基于成本,质量和交货时间目标。降低成本和提高质量几乎是普遍目标。交货时间通常由供应链中的客户需求,从按库存制造到按订单计划以及渴望建立及时生产系统来确定。在这种情况下,灵活性可能是解决不确定性的差异优势。与其他生产目标和系统的整体性能密切相关,必须将灵活性集成到系统中,以成功进行运营决策。这项工作提出了这种灵活性的方法。在对灵活性概念和度量进行简要回顾之前,先介绍了基于效用函数定义的灵活性。此功能代表对系统性能的期望。这种方法允许制定与以前作品中确定的经典类型一致的操作灵活性分类法。接下来,对整数模型进行编程,以模拟按订单组装系统中任务计划的基本行为。该第一个应用程序说明了基于效用演变的灵活性量化。使用通用的工业参数来量化操作灵活性最终将有助于系统性能趋势的综合解释。

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