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Multi-dimensional clearing functions for aggregate capacity modelling in multi-stage production systems

机译:用于多阶段生产系统中总产能建模的多维清算功能

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摘要

Nonlinear clearing functions have been proposed in the literature as metamodels to represent the behaviour of production resources that can be embedded in optimisation models for production planning. However, most clearing functions tested to date use a single-state variable to represent aggregate system workload over all products, which performs poorly when product mix affects system throughput. Clearing functions using multiple-state variables have shown promise, but require significant computational effort to fit the functions and to solve the resulting optimisation models. This paper examines the impact of aggregation in state variables on solution time and quality in multi-item multi-stage production systems with differing degrees of manufacturing flexibility. We propose multi-dimensional clearing functions using alternative aggregations of state variables, and evaluate their performance in computational experiments. We find that at low utilisation, aggregation of state variables has little effect on system performance; multi-dimensional clearing functions outperform single-dimensional ones in general; and increasing manufacturing flexibility allows the use of aggregate clearing functions with little loss of solution quality.
机译:非线性清算功能已在文献中提出为元模型,以表示可以嵌入生产计划优化模型中的生产资源的行为。但是,迄今为止测试的大多数清算功能都使用单状态变量来表示所有产品上的总系统工作量,当产品组合影响系统吞吐量时,该工作量表现不佳。使用多状态变量清除函数已显示出希望,但需要大量的计算工作才能拟合这些函数并解决生成的优化模型。本文研究了状态变量的聚集对具有不同制造灵活性程度的多项目多阶段生产系统中解决时间和质量的影响。我们提出使用状态变量的替代集合的多维清除函数,并在计算实验中评估其性能。我们发现,在利用率较低的情况下,状态变量的聚合对系统性能的影响很小。多维清算功能通常胜过一维清算功能;随着制造灵活性的提高,可以使用总体清除功能,而解决方案质量的损失很小。

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