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Multivariate analysis of a simulated prognostics and health management system for military aircraft maintenance

机译:用于军机维修的模拟预测和健康管理系统的多元分析

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The Air Force logistics operations system is, in general, reactive in nature, with unscheduled aircraft maintenance beginning with a signal for out of tolerance conditions from the aircraft, subsequent fault isolation procedures performed by a maintenance team, and the steps taken to repair or replace the faulty item. The Joint Strike Fighter (JSF) programme has been pursuing an autonomic logistics system (ALS) concept that changes this reactive process into a proactive one, with the employment of technologies such as prognostics and a distributed information network. This paper briefly describes a simulation model of a prognostics and health management (PHM) system employed as part of an ALS for a JSF-type aircraft. The simulation produces a large number of commonly used flight line measures of performance for aircraft availability and mission effectiveness. Multivariate statistical analysis of these outputs provides a means to assess the impact of a PHM system on aircraft productivity.
机译:空军的后勤运营系统通常是被动的,计划外的飞机维护从飞机的超限情况信号,维护团队执行的后续故障隔离程序以及维修或更换步骤开始有缺陷的物品。联合打击战斗机(JSF)计划一直在追求自主物流系统(ALS)的概念,该概念通过使用预测技术和分布式信息网络等技术,将这种反应性过程转变为一种主动过程。本文简要描述了作为JSF型飞机的ALS的一部分的预测和健康管理(PHM)系统的仿真模型。该模拟产生了大量常用的飞行路线性能度量,以评估飞机的可用性和任务有效性。这些输出的多元统计分析为评估PHM系统对飞机生产率的影响提供了一种手段。

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