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Active Fault Diagnosis on a Hydraulic Pitch System Based on Frequency-Domain Identification

机译:基于频域识别的液压变桨系统主动故障诊断

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The blade pitch system is a critical subsystem of variable-speed variable-pitch wind turbines that is characterized by a high failure rate. This paper addresses the fault detection and isolation (FDI) of a blade pitch system with hydraulic actuators. Focus is placed on incipient multiplicative faults, namely hydraulic oil contamination with water and air, bearing damage resulting in increased friction, and drop of the supply pressure of the hydraulic pump. An active model-based FDI approach is considered, where changes in the operating conditions (i.e., mean wind speed and turbulence intensity) are accounted through the identification of a linear parameter-varying model for the pitch actuators. Frequency-domain estimators are used to identify continuous-time models in a user-defined frequency band, which facilitates the design of the FDI algorithm. Besides, robustness with respect to noise in measurements and stochastic nonlinear distortions is ensured by estimating confidence bounds on the parameters used for FDI. The approach is thoroughly validated on a wind turbine simulator based on the FAST software that includes a detailed physical model of the hydraulic pitch system. This paper presents the design methodology and validation results for the proposed FDI approach. We show that an appropriate design of the excitation signal used for active fault detection allows an early fault diagnosis (except for oil contamination with water) while ensuring a short experiment duration and an acceptable impact on the wind turbine operation.
机译:叶片变桨系统是变速变桨风力涡轮机的关键子系统,其特征在于故障率高。本文介绍了带有液压执行器的桨距系统的故障检测和隔离(FDI)。重点放在最初的倍增故障上,即液压油被水和空气污染,轴承损坏导致摩擦增加以及液压泵的供应压力下降。考虑了基于模型的主动FDI方法,其中通过识别变桨执行器的线性参数变化模型来考虑运行条件的变化(即平均风速和湍流强度)。频域估计器用于识别用户定义频段中的连续时间模型,这有助于FDI算法的设计。此外,通过估计用于FDI的参数的置信范围,可以确保测量噪声和随机非线性失真的鲁棒性。该方法已在基于FAST软件的风力涡轮机模拟器上进行了全面验证,该软件包括液压变桨系统的详细物理模型。本文介绍了拟议的外国直接投资方法的设计方法和验证结果。我们表明,用于主动故障检测的激励信号的适当设计可以进行早期故障诊断(水污染油除外),同时确保较短的实验持续时间和对风机运行的可接受影响。

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