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Fault detection and isolation of gas turbine engine using inversion-based and optimal state observers

机译:逆转和最优状态观察器的故障检测与燃气轮机发动机的隔离

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This paper aims to design, develop and compare fault detection and isolation (FDI) schemes including inversion-based fault reconstruction and optimal state observers for a class of nonlinear system subject to concurrent faults and unknown disturbances that represents the nonlinear dynamic model of a gas turbine engine. Towards this end, for each fault, utilizing an existing coordinate transformation, the orig-inal system is transformed into a new form in which both observers are applied for fault diagnosis. The coordinate transformation comes from observability concept in differential geometry. The inversion-based observer is highly beneficial for straightforward detection and directly isolating the faults, and the state observer is optimal with respect to the magnitude of observer gain and convergence time. The mentioned approaches are implemented for FDI of a gas turbine model subject to compressor efficiency, compressor mass flow capacity, and actuator faults in addition to an unknown disturbance. The simulation results illustrate that the proposed FDI schemes are a promising tool for the gas turbine diagnostics. (c) 2020 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:本文旨在设计,开发和比较故障检测和隔离(FDI)方案,包括基于反转的故障重建和最佳状态观察者,用于一类非线性系统,其经过同时的故障和未知干扰,表示燃气轮机的非线性动态模型引擎。朝向此结束,对于每个故障,利用现有坐标转换,转换成一种新形式,其中两个观察者都应用于故障诊断。坐标变换来自差分几何中的可观察性概念。基于反转的观察者对于直接检测并直接隔离故障是非常有益的,并且状态观察者对于观察者增益和收敛时间的大小是最佳的。除了未知干扰之外,还针对压缩机效率,压缩机质量流量和致动器故障的燃气轮机模型的FDI实施了所提到的方法。仿真结果表明,所提出的FDI方案是燃气轮机诊断的有希望的工具。 (c)2020欧洲控制协会。 elsevier有限公司出版。保留所有权利。

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