Calendar-based age replacement policy with dependent renewal cycles

M. A. Bajestani, D. Banjevic
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引用次数: 19

Abstract

ABSTRACT In this article, we introduce an age-based replacement policy in which the preventive replacements are restricted to specific calendar times. Under the new policy, the assets are renewed at failure or if their ages are greater than or equal to a replacement age at given calendar times, whichever occurs first. This policy is logistically applicable in industries such as utilities where there are large and geographically diverse populations of deteriorating assets with different installation times. Since preventive replacements are performed at fixed times, the renewal cycles are dependent random variables. Therefore, the classic renewal reward theorem cannot be directly applied. Using the theory of Markov chains with general state space and a suitably defined ergodic measure, we analyze the problem to find the optimal replacement age, minimizing the long-run expected cost per time unit. We further find the limiting distributions of the backward and forward recurrence times for this policy and show how our ergodic measure can be used to analyze more complicated policies. Finally, using a real data set of utility wood poles’ maintenance records, we numerically illustrate some of our results including the importance of defining an appropriate ergodic measure in reducing the computational expense.
具有相关更新周期的基于日历的年龄替换策略
在本文中,我们介绍了一种基于年龄的替换策略,其中预防性替换被限制在特定的日历时间。在新政策下,如果资产失效,或者在给定的日历时间内,资产的年龄大于或等于替换年龄,以先发生的为准。这一政策在物流上适用于公用事业等行业,这些行业存在大量不同地理位置的老化资产,安装时间也不同。由于预防性更换是在固定时间进行的,更新周期是依赖的随机变量。因此,经典的更新奖励定理不能直接应用。利用具有一般状态空间的马尔可夫链理论和适当定义的遍历测度,分析了寻找最优替换年龄的问题,使每时间单位的长期期望成本最小。我们进一步发现了该策略的向后和向前递归时间的极限分布,并展示了如何使用我们的遍历度量来分析更复杂的策略。最后,使用公用事业木杆维护记录的真实数据集,我们用数字说明了我们的一些结果,包括定义适当的遍历度量在减少计算费用方面的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IIE Transactions
IIE Transactions 工程技术-工程:工业
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4.5 months
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