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首页> 外文期刊>Journal of Quality in Maintenance Engineering >Maintenance/production planning with interactive feedback of product quality
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Maintenance/production planning with interactive feedback of product quality

机译:具有产品质量交互式反馈的维护/生产计划

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摘要

Purpose - This paper seeks to develop an optimal stochastic control model where interactive feedback consists of the quantity of flawless and defective products. The main objective of this study is to minimize the expected discounted overall cost due to maintenance activities, inventory holding and backlogs.Design/methodology/approach - The model differs from similar research projects in that, instead of age-dependent machine failure, it considers only defective products as feedback into the optimal model for maintenance and production planning. In this paper a near optimal control policy of the system through numerical techniques is obtained.Findings - In this paper, a new model in which the system's retroaction is the quantity of defective products is presented, considering that defective products are a consequence of global manufacturing system deterioration. Instead of taking into account machine failure and human error separately, it considers a defect in product as being the consequence of a combined failure; this consideration allows one to be more realistic by merging all failure parameters into a single one. A new stochastic control model, which focuses on defective products, inventory, and backlog, has been developed. Research limitations/implications - This approach extended the concept of hedging point policy to the quantity of defective products combined with preventive and corrective maintenance strategies. The control policy obtained has a bang bang structure and is completely known for given parameters.Originality/value - The integration of maintenance and production strategies has been mainly focused on the machine. Many research projects have been focusing on the age when dealing with machine failure. It is considered as the main target of the cost reduction in maintenance engineering departments. The originality of this paper is the taking into account of all operational failures into the same optimization model. It brings a value added to high level of maintenance and for operation managers who need to consider all failure parameters before taking decisions related to cost.
机译:目的-本文旨在开发一种最优的随机控制模型,其中交互式反馈包括无缺陷和有缺陷的产品的数量。这项研究的主要目的是最大程度地减少由于维护活动,库存持有和积压而导致的预期折现总成本。设计/方法/方法-该模型与类似的研究项目不同之处在于,它考虑的不是年龄相关的机器故障仅将有缺陷的产品作为对维护和生产计划的最佳模型的反馈。发现-本文提出了一种新模型,其中系统的追溯力是缺陷产品的数量,考虑到缺陷产品是全球制造的结果系统恶化。它没有将机器故障和人为错误分开考虑,而是将产品缺陷视为组合故障的结果。通过将所有故障参数合并为一个参数,这一考虑使一个参数更加现实。已经开发了一种新的随机控制模型,该模型侧重于缺陷产品,库存和积压订单。研究局限性/含义-这种方法将对冲点策略的概念扩展到缺陷产品的数量,并结合了预防性和纠正性维护策略。所获得的控制策略具有爆炸性结构,并且对于给定的参数是完全已知的。原始性/价值-维护和生产策略的集成主要集中在机器上。许多研究项目一直专注于处理机器故障的时代。它被视为维护工程部门降低成本的主要目标。本文的独创性是将所有操作故障纳入同一优化模型。它为高水平的维护以及为需要在制定与成本相关的决定之前考虑所有故障参数的运营经理带来了附加值。

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