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Production rate control of an unreliable manufacturing cell with adjustable capacity

机译:容量可调的不可靠制造单元的生产率控制

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This article addresses the production control problem of an adjustable capacity unreliable manufacturing cell responding to a single product type demand. The manufacturing cell is composed of an unreliable machine, called the 'central machine'. Due to availability fluctuations, the central machine may fall short of meeting the long-term demand rate. In order to quickly adjust the production capacity and thus meet the demand, a reserve machine is called upon in support if the finished product inventory level drops below a specific threshold. Such a machine involves higher production costs compared with the central one. This article aims to determine the optimal production control policy for the involved machines in order to minimise production, inventory and backlog costs over an infinite horizon. This article proposes a continuous dynamic programming formulation of the problem and adopted a numerical scheme to solve the optimality conditions equations. The optimal production policy is shown to be described by a state dependent hedging point policy (SDHPP). To determine the optimal control policy parameters, an experimental approach based on design of experiments, simulation modelling, and response surface methodology is proposed. Several sensitivity analyses have been carried out and have shown the robust behaviour of the developed policy facing expected variations of the system parameters. The results also show that the proposed SDHPP policy outperforms classical stand-by and parallel machines based control policies. The usefulness of the proposed approach is outlined for more complex situations where the system must deal with non-exponential failure and repair time distributions.
机译:本文解决了响应单个产品类型需求的容量可调的不可靠制造单元的生产控制问题。制造单元由不可靠的机器(称为“中央机器”)组成。由于可用性波动,中央机器可能无法满足长期需求率。为了快速调整生产能力从而满足需求,如果成品库存水平下降到特定阈值以下,则需要备用机器。与中央机器相比,这种机器涉及更高的生产成本。本文旨在确定所涉及机器的最佳生产控制策略,以在无限的范围内最小化生产,库存和积压成本。本文提出了该问题的连续动态规划公式,并采用了数值方案来求解最优性条件方程。最佳生产策略显示为由状态相关的对冲点策略(SDHPP)描述。为了确定最优控制策略参数,提出了一种基于实验设计,仿真建模和响应面方法的实验方法。已经进行了几次灵敏度分析,这些分析表明,所开发策略的鲁棒行为面对系统参数的预期变化。结果还表明,所提出的SDHPP策略优于传统的基于待机和并行机的控制策略。概述了所提出方法的有用性,适用于系统必须处理非指数故障和维修时间分布的更为复杂的情况。

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