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A suboptimal class of decentralized hedging production policies in single part-type, stochastic M-machine flow shop

机译:单一零件类型的随机M机流水车间中的分散对冲生产策略的次优类别

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Production optimization is considered for stochastic single-part M-machine flow shops over the class of so-called decentralized hedging production policies. A decomposition methodology previously developed for tandem two-machine systems is generalized to M-machine flow shops. Using a machines decoupling approximation and a so-called demand averaging principle, the considered M-machine flow shop is decomposed into a set of M decoupled single machine systems with known analytical production costs. The overall production cost obtained by adding individual costs is parametrized by M critical levels of parts to be determined. Subsequently, the best decentralized hedging production policy is found by minimizing the overall analytical cost over the hedging levels space. The predicted performance of the proposed class of decentralized policies is tested and validated on a number of three-machine flow shops with the help of Monte Carlo simulation techniques.
机译:在所谓的分散式对冲生产策略类别中,针对随机的单部分M机流水车间考虑了生产优化。以前为串联两机系统开发的分解方法被推广到M机流水车间。使用机器解耦近似和所谓的需求平均原理,将已考虑的M机流水车间分解为一组M个解耦的单机系统,并具有已知的分析生产成本。通过添加单个成本而获得的总生产成本由要确定的零件的M个关键级别参数化。随后,通过最小化对冲水平空间的总体分析成本,可以找到最佳的分散式对冲生产策略。借助蒙特卡洛模拟技术,在许多三机流水车间上测试和验证了所提议的分散策略类别的预测性能。

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