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Maintenance Optimization for Degrading Systems under Installation Constraints

机译:在安装约束下降解系统的维护优化

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To maintain a degrading system, many groups focusing on different tasks may be involved. It is often expected to allocate limited resources (e.g., the budget for technical training) among those maintenance groups to achieve the highest system performance. However, to allocate the resources and implement the maintenance tasks, the sequence of maintenance activities constrained by the system structure has to be considered. This paper provides a model for the maintenance of degrading systems under installation constraints. Based on this model, a nonlinear programming (NLP) model is presented in optimizing the allocation of maintenance resources. In particular, the failure replacement (FR) policy and opportunistic maintenance (OM) policy are considered for a two-module series system. The associated steady-state availabilities of the system are derived for the two cases. To demonstrate the approach in practical use, a numerical example for the FR maintenance policy is provided, and a significance analysis is conducted to provide more insight into the resource allocation issue.
机译:为了维护降级系统,可能会涉及许多专注于不同任务的小组。通常期望在这些维护组之间分配有限的资源(例如,技术培训预算),以实现最高的系统性能。但是,要分配资源并执行维护任务,必须考虑受系统结构约束的维护活动的顺序。本文提供了在安装约束下维护退化系统的模型。在此模型的基础上,提出了一种非线性规划(NLP)模型,以优化维护资源的分配。特别是,对于两模块系列系统,考虑了故障更换(FR)策略和机会性维护(OM)策略。对于这两种情况,得出了系统的相关稳态可用性。为了演示该方法的实际使用,提供了一个FR维护策略的数值示例,并进行了重要度分析以提供对资源分配问题的更多见解。

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