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Bridging the gap between theory and practice in LPV fault detection for flight control actuators

机译:弥合飞行控制执行器LPV故障检测的理论与实践之间的鸿沟

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摘要

Two different approaches for fault detection, the geometric and the detection filter based methods, are compared in the paper from practical aspects, using the linear parameter-varying (LPV) framework. Presenting two designs allows a comparison of global, system level, and local component level fault detection methods with special emphasis on their relevance to aircraft industry. Practical engineering design decisions are highlighted via applying them to a high-fidelity commercial aircraft problem. The successive steps of the design, including fault modeling, LPV model generation, and LPV FDI filter synthesis, including implementation aspects, are discussed. Results are presented according to the industrial assessment perspectives phrased within the EU ADDSAFE project.
机译:在本文中,使用线性参数变化(LPV)框架从实际方面比较了两种不同的故障检测方法,即几何检测方法和基于检测滤波器的方法。提出两种设计可以比较全局,系统级别和本地组件级别的故障检测方法,并特别强调它们与飞机行业的相关性。通过将其应用于高保真度商用飞机问题,可以突出实际的工程设计决策。讨论了设计的后续步骤,包括故障建模,LPV模型生成和LPV FDI滤波器综合(包括实现方面)。结果是根据欧盟ADDSAFE项目中所述的工业评估观点提出的。

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