Impact of correlated component failure on age replacement maintenance policies

Bentolhoda Jafary, V. Nagaraju, L. Fiondella
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Abstract

A primary goal of maintenance is to minimize the consequences of component and system failures. Two subcategories of maintenance actions include: Preventive Maintenance (PM) at predetermined time intervals prior to failure and Emergency Repair (ER) upon failure, where the cost and downtime of emergency repair is significantly greater than preventive maintenance. Most maintenance models developed over the past several decades assume component failures are statistically independent. This assumption simplifies calculations, but is dangerous for safety critical systems that must be maintained because correlated failures can lower the mean time to failure, increasing the probability that emergency repair will be required. This paper presents a simple method with an explicit correlation parameter to characterize the impact of correlated component failures on the optimal preventive maintenance interval of a system with arbitrary structure. This method is applied to two maintenance policies, including: age replacement to minimize cost and age replacement to maximize availability. Examples illustrate that our approach identifies optimal maintenance strategies for these policies such as cost per unit time and stationary availability despite correlated failures.
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相关部件失效对换龄维修政策的影响
维护的主要目标是尽量减少组件和系统故障的后果。维护行动的两个子类别包括:在故障之前预定时间间隔的预防性维护(PM)和故障后的紧急维修(ER),其中紧急维修的成本和停机时间明显大于预防性维护。过去几十年开发的大多数维护模型都假设组件故障在统计上是独立的。这种假设简化了计算,但对于必须维护的安全关键系统来说是危险的,因为相关故障可以缩短平均故障时间,增加需要紧急维修的可能性。本文提出了一种带有显式相关参数的简单方法来表征相关部件故障对任意结构系统的最佳预防维修间隔的影响。该方法适用于两种维护策略,即:以年龄替换为代价最小化的维护策略和以年龄替换为可用性最大化的维护策略。示例表明,我们的方法确定了这些策略的最佳维护策略,例如单位时间成本和相关故障的固定可用性。
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