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A model-based technique for early and robust detection of oscillatory failure case in A380 actuators

机译:一种基于模型的技术,用于A380执行器的振荡故障情况的早期和可靠检测

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摘要

This paper addresses the problem of Oscillatory Failure Cases (OFC) detection in the Electrical Flight Control System (EFCS) of the Airbus airplanes. OFC can lead to strong interactions with loads and aero-elasticity and consequently are to be detected very early in time. The work describes the status of on going research activity undertaken within a collaborative project between Bordeaux University (France) and Airbus. An hydraulic actuator model is currently used as the basis for a robust analytical redundancy-based technique implemented in A380 Flight Control Computer (FCC) for detecting unauthorized oscillatory events. For upcoming and future generation aircraft (A/C), it could be required to detect OFC earlier with less important amplitude. The method presented here is based on nonlinear state space modeling, associated with the same decision test as used by in-service Airbus A/C. It is shown that the model quality could be improved significantly by reliable estimating of some physical parameters. The fault indicating signals are compared on data set obtained from A380 computers during flight tests.
机译:本文解决了空中客车飞机电子飞行控制系统(EFCS)中的振动故障案例(OFC)检测问题。 OFC可能导致与载荷和空气弹性的强烈相互作用,因此必须在很早的时候就进行检测。该工作描述了法国波尔多大学和​​空中客车公司在一个合作项目中正在进行的研究活动的现状。目前,液压执行器模型被用作A380飞行控制计算机(FCC)中实施的基于鲁棒分析冗余的可靠技术的基础,该技术可用于检测未经授权的振荡事件。对于即将到来的下一代飞机(A / C),可能需要更早地以较小的幅度检测OFC。此处介绍的方法基于非线性状态空间建模,并与在役空中客车A / C使用的相同决策测试相关联。结果表明,通过可靠地估计一些物理参数可以大大提高模型质量。在飞行测试期间,将故障指示信号与从A380计算机获得的数据集进行比较。

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