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Finite time estimation of actuator faults, states, and aerodynamic load of a realistic wind turbine

机译:实际风力涡轮机的执行器故障,状态和空气动力负载的有限时间估计

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This paper provides finite time estimation of wind turbine actuator faults and unknown aerodynamic load. Furthermore, finite-time state estimation of drivetrain, generator, and pitch subsystems are addressed in the contrary of asymptotic state/fault estimation in previous works. A realistic wind turbine model, incorporating the aero-elastic FAST simulator, is considered as the simulation example. Generally, aerodynamic load is not measurable in real applications due to instrument limitations, then, it is considered as an unknown input in this study. A novel terminal sliding mode observer is introduced for finite-time estimation of generator/convertor states, faults, and unknown aerodynamic load. Pitch actuator hydraulic pressure drop is modelled as an additive fault, by introducing a fault indicator. Then, two cascaded sliding mode observers are exploited for each pitch subsystem, to provide finite time state and fault reconstructions. Sufficient number of design parameters helps to achieve desired accuracy and convergence time. Finally, simulation results authenticate finite time estimation of wind turbine states and simultaneous actuator faults. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提供了对风力涡轮机执行器故障和未知气动负载的有限时间估计。此外,与先前工作中的渐近状态/故障估计相反,解决了传动系统,发电机和变桨子系统的有限时间状态估计问题。结合了气动弹性FAST仿真器的实际风力涡轮机模型被视为仿真示例。通常,由于仪器的限制,在实际应用中无法测量空气动力学负载,因此,在本研究中将其视为未知输入。引入了一种新颖的终端滑模观测器,用于发电机/转换器状态,故障和未知的空气动力学负载的有限时间估计。通过引入故障指示器,将变桨执行器液压降建模为附加故障。然后,为每个变桨子系统利用两个级联的滑模观测器,以提供有限的时间状态和故障重建。足够数量的设计参数有助于实现所需的精度和收敛时间。最后,仿真结果验证了风力涡轮机状态和同时执行器故障的有限时间估计。 (C)2018 Elsevier Ltd.保留所有权利。

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