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Spare parts stock control for redundant systems using reliability centered maintenance data

机译:使用以可靠性为中心的维护数据来控制冗余系统的备件库存

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In the classical approach to determine how many spare parts to stock, the spare parts shortage costs or the minimum fill rate is a key factor. A difficulty with this approach lies in the estimation of these shortage costs or the determination of appropriate minimum fill rates. In an attempt to overcome this problem, we propose to use the data gathered in reliability centered maintenance (RCM) studies to determine shortage costs. We discuss the benefits of this approach. At the same time, the approach gives rise to complications, as the RCM study determines downtime costs of the underlying equipment, which have a complex relation with the shortage cost for spare parts in case multiple pieces of equipment have different downtime costs. A further complication is redundancy in the equipment. We develop a framework that enables the modeling of these more complicated systems. Based on the framework, we propose an approximative, analytic method that can be used to determine minimum stock quantities in case of redundancy and multiple systems. In a quantitative study we show that the method performs well. Moreover, we show that including redundancy information in the stocking decision gives significant cost benefits.
机译:在确定库存多少备件的经典方法中,备件短缺成本或最低填充率是关键因素。这种方法的困难在于估计这些短缺成本或确定适当的最小填充率。为了克服这个问题,我们建议使用以可靠性为中心的维护(RCM)研究中收集的数据来确定短缺成本。我们讨论了这种方法的好处。同时,由于RCM研究确定了基础设备的停机成本,因此这种方法会带来复杂性,如果多个设备的停机成本不同,则备件短缺成本与备件的短缺成本有着复杂的关系。更复杂的是设备的冗余。我们开发了一个框架,可以对这些更复杂的系统进行建模。基于该框架,我们提出了一种近似分析方法,可用于确定冗余和多个系统情况下的最小库存量。在定量研究中,我们表明该方法表现良好。此外,我们表明在库存决策中包含冗余信息会带来明显的成本优势。

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