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Parameter-varying modelling and fault reconstruction for wind turbine systems

机译:风力发电机系统的变参数建模与故障重构

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摘要

In this paper, parameter-varying technique is firstly addressed for modelling a 4.8 MW wind turbine system which is nonlinear in essence. It is worthy to point out that the proposed parameter-varying model is capable of describing a nonlinear real-time process by using real-time system parameter updating. Secondly, fault reconstruction approach is proposed to reconstruct system component fault and actuator fault by utilizing augmented adaptive observer technique with parameter-varying. Different from the offline tuning adaptive scheme, the proposed adaptive observer includes adaptive tuning ability to online adjust the observer based on varying parameter. The effectiveness of the proposed parameter-varying modelling and fault reconstruction methods is demonstrated by using a widely-recognized 4.8 MW wind turbine benchmark system.
机译:在本文中,首先讨论了参数可变技术,用于建模本质上是非线性的4.8 MW风力涡轮机系统。值得指出的是,所提出的参数变化模型能够通过使用实时系统参数更新来描述非线性实时过程。其次,提出了一种故障重构方法,利用参数可变的增强型自适应观测器技术重构系统部件故障和执行器故障。与离线调整自适应方案不同,所提出的自适应观测器包括自适应调整功能,可基于变化的参数在线调整观测器。通过广泛认可的4.8 MW风力发电机基准系统,证明了所提出的参数变化建模和故障重建方法的有效性。

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