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A Hierarchical Modeling Approach for Coordinating Production Operations within a Multi-Plant Supply Network

机译:用于在多工厂供应网络中协调生产操作的分层建模方法

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A hierarchical modelling approach is presented which coordinates the individual plant operations within a multi-plant supply network. The entire decision problem is subdivided into three consecutive stages. in the first stage, the length of the production runs, their timing, the corresponding material flows be tween the various plants, and equipment requirements have to be determined. At this stage, an aggregation scheme based on the concept of feasibility constraints is employed in order to reflect the limited availability of the various types of production equipment. This concept permits a feasible disaggregation at the lower assignment level. The second stage consists of an assignment model, which allocates the available equipment units between the production runs determined in the first stage of the solution procedure. Finally, resource conflicts are resolved, which may occur if set-up operations and minimal lengths of production runs have to be considered. At this stage, constraint logic programming is applied in order to time-shift individual operations. The proposed hierarchical approach allows a more compact model formulation compared to other approaches known from the literature. As a result, a very efficient and flexible solution procedure is obtained. Its applicability is demonstrated in an industrial application.
机译:提出了一种分层建模方法,其协调多工厂供应网络内的个体植物操作。整个决策问题被细分为三个连续阶段。在第一阶段,生产的长度运行,它们的时序,相应的材料流动是各种植物的补间,并且必须确定设备要求。在此阶段,采用基于可行性约束概念的聚合方案,以反映各种类型的生产设备的有限可用性。该概念允许在较低的分配级别进行可行的分类。第二阶段由分配模型组成,该分配模型分配了在解决方案过程的第一阶段中确定的生产运行之间的可用设备单元。最后,解决了资源冲突,如果必须考虑设置操作和最小的生产长度,可能会发生。在此阶段,应用约束逻辑编程以使各个操作换转。所提出的等级方法允许更紧凑的模型配方与文献中已知的其他方法相比。结果,获得了非常有效和灵活的解决方案程序。其适用性在工业应用中证明。

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