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Risk-Based Maintenance Scheduling with application to naval vessels and ships

机译:基于风险的维修计划及其在海军舰船上的应用

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AbstractMaintenance scheduling for naval vessels and ships requires ongoing improvement to manage rising maintenance costs within availability constraints. Existing maintenance scheduling approaches are not optimal as maintenance costs continue to rise without an improvement in vessel availability. This paper reviews the Risk-Based Maintenance Scheduling (RBM) framework as applied to ships and naval vessels, and provides a critical analysis of Risk Assessment and Maintenance Scheduling techniques used. Further, objectives and considerations are defined for future applications for ships and naval vessels, and the framework evaluated as an improvement on existing Preventative Maintenance (PM) and Reliability Centered Maintenance (RCM) methods. A probabilistic approach supported by condition monitoring data in combination with Decision Theory is suggested for the Risk Assessment and Maintenance Scheduling elements comprising an RBM Scheduling framework. Implementation of this framework from both periodic PM and RCM is presented. Development of applications from the component level upwards is suggested. Availability and overall maintenance cost are suggested as evaluation metrics against existing methods. The development of an application is formalized within a proposed framework. The development of an application within the RBM Scheduling framework is expected to result in reduced maintenance costs while meeting availability requirements for ship and naval vessel applications.HighlightsRisk-based Maintenance Scheduling is applied in other industries but not for ships.Existing applications for naval vessels and ships are reviewed.A framework and implementation strategy are proposed for new applications.Probabilistic modelling and decision analysis are suggested framework elements.
机译: 摘要 海军舰船的维修计划需要不断改进,以在可用性限制内管理不断上升的维护成本。现有的维护计划方法不是最佳的,因为维护成本在不提高船只可用性的情况下持续增加。本文回顾了应用于船舶和海军舰船的基于风险的维修计划(RBM)框架,并对使用的风险评估和维修计划技术进行了严格的分析。此外,为舰船和海军舰船的未来应用定义了目标和考虑因素,并对框架进行了评估,以作为对现有预防性维护(PM)和以可靠性为中心的维护(RCM)方法的改进。对于包括RBM计划框架的风险评估和维护计划元素,建议了一种状态监测数据与决策理论相结合的概率方法。定期PM和RCM都介绍了该框架的实现。建议从组件级别开始开发应用程序。建议将可用性和总体维护成本作为对现有方法的评估指标。应用程序的开发在建议的框架内进行了形式化。在RBM计划框架内开发应用程序有望减少维护成本,同时满足船舶和海军舰船应用程序的可用性要求。 突出显示 基于风险的维护计划适用于其他行业,但不适用于船舶。 海军舰船的现有应用是 为新应用程序提出了框架和实施策略。 < ce:label>• 概率建模和决策分析是建议的框架元素。

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