Fault diagnosis-based observers using Kalman filters and Luenberger estimators: Application to the pitch system fault actuators

Q3 Engineering Diagnostyka Pub Date : 2023-02-17 DOI:10.29354/diag/161307
Zakaria Zemali, L. Cherroun, Nadji Hadroug, M. Nadour, A. Hafaifa
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引用次数: 0

Abstract

This paper aims to present a robust fault diagnosis structure-based observers for actuator faults in the pitch part system of the wind turbine benchmark. In this work, two linear estimators have been proposed and investigated: the Kalman filter and the Luenberger estimator for observing the output states of the pitch system in order to generate the appropriate residual between the measured positions of blades and the estimated values. An inference step as a decision block is employed to decide the existence of faults in the process, and to classify the detected faults using a predetermined threshold defined by upper and lower limits. All actuator faults in the pitch system of the horizontal wind turbine benchmark are studied and investigated. The obtained simulation results show the ability of the proposed diagnosis system to determine effectively the occurred faults in the pitch system. Estimation of the output variables is effectively realized in both situations: without and with the occurrence of faults in the studied process. A comparison between the two used observers is demonstrated.
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基于卡尔曼滤波和Luenberger估计的故障诊断观测器:在俯仰系统故障执行器中的应用
本文旨在提出一种基于观测器的鲁棒故障诊断结构,用于风力涡轮机基准变桨部分系统中的执行器故障。在这项工作中,提出并研究了两种线性估计器:卡尔曼滤波器和Luenberger估计器,用于观察变桨系统的输出状态,以便在叶片的测量位置和估计值之间产生适当的残差。采用作为决策块的推理步骤来确定过程中是否存在故障,并使用由上限和下限定义的预定阈值对检测到的故障进行分类。对水平风机基准变桨系统中的所有执行器故障进行了研究。所获得的仿真结果表明,所提出的诊断系统能够有效地确定变桨系统中发生的故障。输出变量的估计在两种情况下都能有效地实现:在所研究的过程中没有和有故障发生。演示了两种使用的观察器之间的比较。
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来源期刊
Diagnostyka
Diagnostyka Engineering-Mechanical Engineering
CiteScore
2.20
自引率
0.00%
发文量
41
期刊介绍: Diagnostyka – is a quarterly published by the Polish Society of Technical Diagnostics (PSTD). The journal “Diagnostyka” was established by the decision of the Presidium of Main Board of the Polish Society of Technical Diagnostics on August, 21st 2000 and replaced published since 1990 reference book of the PSTD named “Diagnosta”. In the years 2000-2003 there were issued annually two numbers of the journal, since 2004 “Diagnostyka” is issued as a quarterly. Research areas covered include: -theory of the technical diagnostics, -experimental diagnostic research of processes, objects and systems, -analytical, symptom and simulation models of technical objects, -algorithms, methods and devices for diagnosing, prognosis and genesis of condition of technical objects, -methods for detection, localization and identification of damages of technical objects, -artificial intelligence in diagnostics, neural nets, fuzzy systems, genetic algorithms, expert systems, -application of technical diagnostics, -diagnostic issues in mechanical and civil engineering, -medical and biological diagnostics with signal processing application, -structural health monitoring, -machines, -noise and vibration, -analysis of technical and civil systems.
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