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Condition-based inspection scheme for condition-based maintenance

机译:基于状态的维护计划

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In condition-based maintenance (CBM) with periodic inspection, the item is preventively replaced if failure risk, which is calculated based on the information obtained from inspection, exceeds a pre-determined threshold. The determination of optimal replacement threshold is often based on minimisation of long-run average maintenance costs per unit time due to preventive and failure replacements. It is assumed that inspections are performed at equal time intervals and that the corresponding cost is negligible. However, in many practical situations where CBM is implemented, e.g. manufacturing processes, inspections require labours, specific test devices, and sometimes suspension of operations. Thus, when inspection cost is considerable, it is reasonable to inspect less frequently during the time the item is in healthier states, and, more frequently as time passes and/or the item degrades, namely, a condition-based inspection scheme. This paper proposes a novel two-phase approach for determination of replacement threshold and a condition-based inspection scheme for CBM. First, it takes into account failure and preventive replacement costs to determine the optimal replacement threshold assuming that inspections are performed at equal time intervals with no cost. This assumption is, then, relaxed and its consequences on total average cost are evaluated using a proposed iterative procedure to obtain a cost-effective condition-based inspection scheme. The proposed approach can be utilised in many CBM applications. For the sake of simplicity of presentation, the approach is illustrated through a simplified case study already reported by some researchers referenced in the paper.
机译:在定期检查的基于状态的维护(CBM)中,如果根据从检查中获得的信息计算出的故障风险超过了预定阈值,则应预防性地更换该项目。最佳替换阈值的确定通常基于最小化由于预防性替换和故障替换而导致的每单位时间的长期平均维护成本。假定以相等的时间间隔执行检查,并且相应的成本可以忽略不计。但是,在许多实施CBM的实际情况下,例如制造过程,检查需要人工,特定的测试设备,有时还需要中止操作。因此,当检查成本相当大时,合理的做法是在项目处于较健康状态的时间内进行较少的检查,而随着时间的流逝和/或项目的退化而进行更频繁的检查,即基于条件的检查方案。本文提出了一种新颖的两阶段方法,用于确定替换阈值和基于条件的煤层气检查方案。首先,考虑到故障和预防性更换成本,确定最佳更换阈值,前提是假定以相等的时间间隔进行检查且没有任何成本。然后,放宽此假设,并使用提议的迭代过程评估其对总平均成本的影响,以获得成本有效的基于条件的检查方案。所提出的方法可用于许多煤层气应用中。为了简化说明,本文通过一些研究人员已经报告的简化案例研究来说明该方法。

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