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Maintenance decision support for manufacturing systems based on the minimization of the life cycle cost

机译:基于最小化生命周期成本的制造系统维护决策支持

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The reduction of the overall Life Cycle Costs (LCC) is a key issue in manufacturing sector. Among the various contributions to LCC an important part is due to Reliability and Maintainability (R&M) issues and therefore a substantial reduction in LCC can be achieved by a conscious decisions and planning. Besides the failure and repair characteristics, the R&M related costs vary according to the maintenance strategy and policy selected for each components that form the manufacturing system. The aim of this paper is to describe a mathematical model that takes into account the R&M related fraction of the LCC in order to compare scenarios in which different maintenance strategies and policies are applied on the components of manufacturing systems. The calculations cover three policy possibilities: internal crew, external service (on-demand) and external service (annual contract). Both scheduled (preventive maintenance, inspection-based maintenance) and unscheduled (corrective maintenance, condition monitoring) strategies are considered. On the basis of the proposed formulae, optimization is carried out with a view to find the best solution in economical aspect. Furthermore, the method takes into account the possibility of clustering the scheduled interventions with the intention of reaching a predefined availability constraint while keeping the costs as low as possible. The paper presents the results of the European FP7 research project EASE-R3 where a specific maintenance planning software tool is being developed implementing the methodologies outlined above.
机译:整体生命周期成本(LCC)的降低是制造业的关键问题。在LCC的各种贡献中,重要部分是由于可靠性和可维护性(R&M)问题,因此可以通过有意识的决策和规划来实现LCC的大幅减少。除了故障和修复特性外,R&M相关成本是否根据为形成制造系统的每个组件选择的维护策略和政策而有所不同。本文的目的是描述一种数学模型,考虑到LCC的R&M相关分数,以便比较不同维护策略和政策应用于制造系统的组件的情况。计算涵盖了三种政策可能性:内部机组人员,外部服务(按需)和外部服务(年度合同)。预定(预防性维护,检查,维护)和未划分的(纠正维护,条件监测)策略都被考虑。在拟议的公式的基础上,进行了优化,以便在经济方面找到最佳解决方案。此外,该方法考虑了群集预定干预的可能性,以达到预定义的可用性约束,同时保持成本尽可能低。本文介绍了欧洲FP7研究项目的结果,其中正在开发特定的维护计划软件工具,实现上述方法。

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