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Condition-Based Maintenance for Systems with Aging and Cumulative Damage Based on Proportional Hazards Model

机译:基于条件的维护,用于基于比例危害模型的老​​化和累积损伤的系统

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摘要

This paper develops a condition-based maintenance (CBM) policy for systems subject to aging and cumulative damage. The cumulative damage is modeled by a continuous degradation process. Different from previous studies which assume that the system fails when the degradation level exceeds a specific threshold, this paper argues that the degradation itself does not directly lead to system failure, but increases the failure risk of the system. Proportional hazards model (PHM) is employed to characterize the joint effect of aging and cumulative damage. CBM models are developed for two cases: one assumes that the distribution parameters of the degradation process are known in advance, while the other assumes that the parameters are unknown and need to be estimated during system operation. In the first case, an optimal maintenance policy is obtained by minimizing the long-run cost rate. For the case with unknown parameters, periodic inspection is adopted to monitor the degradation level of the system and update the distribution parameters. A case study of Asphalt Plug Joint in UK bridge system is employed to illustrate the maintenance policy.
机译:本文开发一个基于条件的维护(CBM)策略系统受到老化和累积损伤。的累积损伤是由一个连续的降解过程建模。从以往的研究,其假设如果该劣化水平超过特定的阈值时,系统出现故障时不同的是,本文认为降解本身并不直接导致系统故障,但会增加系统的故障风险。比例风险模型(PHM)被用来表征老化和累积损伤的联合作用。 CBM模型两种情况下发展:一个假设降解过程的分布参数是预先知道的,而其他假设参数是未知的,需要在系统运行期间进行估算。在第一种情况下,最佳的维护策略是通过最小化长期成本率获得。参数未知的情况下,定期检查是通过监视系统的退化水平和更新分布参数。采用英国桥梁系统沥青火花塞接头为例来说明维护策略。

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