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Aircraft applications of fault detection and isolation techniques.

机译:飞机故障检测与隔离技术的应用。

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In this thesis the problems of fault detection & isolation and fault tolerant systems are studied from the perspective of LTI frequency-domain, model-based techniques. Emphasis is placed on the applicability of these LTI techniques to nonlinear models, especially to aerospace systems. Two applications of H LTI fault diagnosis are given using an open-loop (no controller) design approach: one for the longitudinal motion of a Boeing 747-100/200 aircraft, the other for a turbofan jet engine. An algorithm formalizing a robust identification approach based on model validation ideas is also given and applied to the previous jet engine.; A general linear fractional transformation formulation is given in terms of the Youla and Dual Youla parameterizations for the integrated (control and diagnosis filter) approach. This formulation provides better insight into the trade-off between the control and the diagnosis objectives. It also provides the basic groundwork towards the development of nested schemes for the integrated approach. These nested structures allow iterative improvements on the control/filter Youla parameters based on successive identification of the system uncertainty (as given by the Dual Youla parameter). The thesis concludes with an application of H LTI techniques to the integrated design for the longitudinal motion of the previous Boeing 747-100/200 model.
机译:本文从基于模型的LTI频域技术的角度研究了故障检测与隔离以及容错系统的问题。重点放在这些LTI技术在非线性模型(尤其是航空航天系统)上的适用性。使用开环给出了 H LTI故障诊断的两个应用(无控制器)设计方法:一种用于波音747-100 / 200飞机的纵向运动,另一种用于涡扇喷气发动机。还给出了一种基于模型验证思想的形式化鲁棒识别方法的算法,并将其应用于先前的喷气发动机。对于集成(控制和诊断过滤器)方法,根据Youla和Dual Youla参数化给出了一般的线性分数变换公式。此公式可更好地了解控制与诊断目标之间的权衡。它还为开发集成方法的嵌套方案提供了基础。这些嵌套结构可基于对系统不确定性的连续识别(如Dual Youla参数所给出的),对控制/滤波器Youla参数进行迭代改进。最后,本文将 H LTI技术应用到前一个纵向运动的集成设计中波音747-100 / 200型号。

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