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A data-driven health assessment method for electromechanical actuation systems

机译:机电驱动系统的数据驱动的健康评估方法

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摘要

The design of health assessment applications for the electromechanical actuation system of the aircraft is a challenging task. Physics-of-failure models involve non-linear complex equations which are further complicated at the system-level. Data-driven techniques require run-to-failure tests to predict the remaining useful life. However, components are not allowed to run until failure in the aerospace engineering arena. Besides, when adding new monitoring elements for an improved health assessment, the airliner sets constraints due to the increased cost and weight. In this context, the health assessment of the electromechanical actuation system is a challenging task. In this paper we propose a data-driven approach which estimates the health state of the system without run-to-failure data and limited health information. The approach combines basic reliability theory with Bayesian concepts and obtained results show the feasibility of the technique for asset health assessment.
机译:飞机机电致动系统的健康评估应用程序的设计是一项艰巨的任务。失效物理模型涉及非线性复杂方程,这些方程在系统级别进一步复杂。数据驱动技术需要进行全面测试以预测剩余使用寿命。但是,在航空工程领域失败之前,不允许组件运行。此外,在增加新的监控元素以改善健康状况评估时,由于成本和重量的增加,客机设置了限制条件。在这种情况下,机电致动系统的健康评估是一项艰巨的任务。在本文中,我们提出了一种数据驱动的方法,该方法可以在没有运行失败数据和有限健康信息的情况下估计系统的健康状态。该方法将基本可靠性理论与贝叶斯概念相结合,获得的结果表明了该技术在资产健康评估中的可行性。

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