Availability optimization of periodically inspected production systems generating environmental damage

L. Tlili, M. Radhoui, A. Chelbi
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Abstract

This paper deals with a condition-based maintenance policy for single-unit production systems which generate damage to environment as they degrade and get older. The system is submitted to periodic inspections to assess the generated environmental damage. In case an inspection reveals that the environmental degradation level has exceeded a critical level, the system is considered in a failed state and will have generated significant environmental damage. It is stopped during a certain time necessary to perform a corrective maintenance (CM) action and to eventually clean the environment. In order to prevent such an undesirable situation, a lower threshold level is considered to trigger a preventive maintenance (PM) action which takes less time than the corrective one. A mathematical model and a numerical procedure are developed to determine simultaneously the PM threshold level and the inspection period which maximize the stationary availability of the system. Numerical calculations are performed to illustrate the proposed model.
定期检查产生环境破坏的生产系统的可用性优化
本文研究了单机生产系统在老化老化过程中对环境造成破坏的一种基于状态的维护策略。该系统提交定期检查,以评估所产生的环境损害。如果检查发现环境退化程度超过临界水平,则认为系统处于失效状态,将产生重大的环境破坏。它在执行纠正维护(CM)操作和最终清洁环境所需的一定时间内停止。为了防止这种不希望发生的情况,考虑使用较低的阈值水平来触发预防性维护(PM)操作,该操作所需的时间比纠正操作少。建立了一个数学模型和一个数值计算过程,以同时确定最大化系统平稳可用性的PM阈值水平和检查周期。数值计算说明了所提出的模型。
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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