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Multi-parallel work centers scheduling optimization with shared or dedicated resources in low-volume low-variety production systems

机译:在低批量低品种生产系统中使用共享或专用资源的多平行工作中心调度优化

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A new methodology for modeling large-scale scheduling problems in low-volume low-variety production systems is proposed through this paper. Such scheduling problems are constrained by limited time and resources, where each work center is assigned a unique statement of work, to be completed on-time with the budgeted number of resources. Products assembled in low-volume low-variety production systems are processed through a series of stations referred to as work centers, where varying levels and classifications of resources are deployed onto the product. Aircraft, heavy aero-structures, and heavy military equipment are examples of products assembled in low-volume low-variety production systems. To ensure products are delivered on-time and on-budget, it is crucial to execute to a detailed schedule, such that all precedence, resource, zonal, and other constraints and characteristics inherent in such production systems are successfully satisfied. Despite the criticality of detailed schedules in delivering products on-time and on-budget, limited research is reported on mixed-integer programming approaches for scheduling optimization of activities in low-volume low-variety production systems. The discrete-time linear mixed-integer mathematical programming model developed in this paper fills the gap in the current literature with a direct impact on the organizations' service levels and bottom line. The proposed mathematical programming models are validated through a real-world case-study of the assembly process of a narrow body aircraft to ensure compatibility in the modeling of large-scale industrial problems. (C) 2019 Elsevier Inc. All rights reserved.
机译:通过本文提出了一种用于在低批量低品种生产系统中建模大规模调度问题的新方法。这种调度问题受限制的时间和资源限制,其中每个工作中心被分配了唯一的工作陈述,按照预算的资源按次完成。在低批量低品种生产系统中组装的产品通过一系列代表进行处理,该网站被称为工作中心,其中水平和资源分类部署到产品上。飞机,重型航空结构和重型军事装备是在低批量低品种生产系统中组装的产品的例子。为确保按时和按预算提供产品,对详细的时间表执行至关重要,从而成功满足此类生产系统中固有的所有优先级,资源,地位和其他限制和特性。尽管提供了详细的时间表在提供产品准时和预算中的详细时间表,但有限的研究报告了混合整数规划方法,用于调度低批量低品种生产系统中活动的优化。本文开发的离散时间线性混合整数数学编程模型填补了当前文献中的差距,直接影响组织的服务水平和底线。通过真实世界的案例研究通过真实的窄体飞机的装配过程进行验证,以确保在大规模产业问题的建模中兼容性的核算。 (c)2019 Elsevier Inc.保留所有权利。

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