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Production Systems with Rework and Machine Failure Taking Place in Backorder Filling Time

机译:生产系统,具有返工和机器故障的延迟填充时间

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This paper investigates the optimal refilling policy for an economic production quantity (EPQ) model with rework and breakdown taking place in backorder replenishing time. A recent published article [Chiu, Y.P., 2003. Determining the optimal lot size for the finite production model with random defective rate, the rework process, and backlogging. Engineering Optimization 35, 427-437] has studied the lot-sizing problem on an imperfect quality EPQ model. However, another reliability factor - random machine breakdown is inevitable in most real-life production systems. To deal with stochastic machine failures, production planners must practically calculate the mean time between failures (MTBF) and establish the robust plan accordingly, in terms of the optimal production run time that minimizes total production-inventory costs for such an unreliable system. This study extends Chiu's work and assumes that a machine failure takes place in the backorder replenishing stage. Mathematical modeling and cost analysis are employed. The renewal reward theorem is used to cope with variable cycle length. Convexity of the long-run average cost function is proved and an optimal manufacturing lot-size that minimizes the expected overall costs for such an imperfect system is derived. Numerical example is provided to demonstrate its practical usages.
机译:本文调查了经济生产量(EPQ)模型的最佳再填充政策,返回和故障发生在延期交付补充时间。最近发表的文章[Chiu,Y.P.,2003。用随机缺陷,返工过程和积压确定有限生产模型的最佳批量大小。工程优化35,427-437研究了在不完美的质量EPQ模型上的批量问题。然而,在大多数现实生活生产系统中,另一种可靠性因子 - 随机机器故障是不可避免的。要处理随机机器故障,生产规划师实际上必须计算故障(MTBF)之间的平均时间,并在最佳生产运行时间方面相应地建立强大的计划,这最小化了这种不可靠系统的总生产库存成本。本研究扩展了Chiu的工作,并假设在延期补贴阶段进行机器故障。采用数学建模和成本分析。续订奖励定理用于应对可变循环长度。证明了长期平均成本函数的凸性,并且最佳的制造批号可最大限度地推出这种不完美系统的预期总成本。提供数值示例以展示其实际用途。

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