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Modelling Method for Maintenance Decision-Making in Civil Aero Engines Based on Multiple State Parameters

机译:基于多状态参数的民用航空发动机维修决策的建模方法

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For airlines, a scientific and effective method for engine maintenance decision-making should be developed for the planning of aero engine maintenance and removal. The mathematical modelling method of maintenance decision-making for civil aero engines based on the currently widely used condition-based maintenance (CBM) strategy was mainly studied in this work, and the effects of multiple state parameters on the system operation were fully considered. Based on historical data for aero engine removal due to performance degradation, statistical regression modelling was used to establish a mathematical model of maintenance decision-making that can reflect a functional relationship between the engine state parameters and the time on wing. The model was based on the proportional hazards-proportional odds (PH-PO) model, combining two commonly used statistical regression models, the proportional hazards model (PHM) and the proportional odds model (POM), into a single new model form; as a result, the scope of application of the model was improved. Finally, the results of a case study of a specific example showed the high practical value of this method.
机译:对于航空公司,应制定用于航空发动机维护和拆卸的科学和有效的发动机维护决策方法。在本工作中研究了基于目前广泛使用的基于条件的维护(CBM)策略的Cine Aero发动机的维修决策数学建模方法,并充分考虑了多种状态参数对系统操作的影响。基于性能下降导致的Aero发动机去除的历史数据,使用统计回归建模来建立维护决策的数学模型,可以反映发动机状态参数与机翼上的时间之间的功能关系。该模型基于比例危害 - 比例比例赔率(pH-PO)模型,将两个常用的统计回归模型,比例危险模型(PHM)和比例赔率模型(POM)组合成一个新的模型形式;结果,改进了模型的应用范围。最后,具体实施例的案例研究结果显示了该方法的高实际值。

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