DocumentCode
158518
Title
Nonlinear observer-based fault detection and isolation for wind turbines
Author
Hwas, Abdulhamed ; Katebi, Reza
Author_Institution
Ind. Control Centre, Univ. of Strathclyde, Glasgow, UK
fYear
2014
fDate
16-19 June 2014
Firstpage
870
Lastpage
875
Abstract
This paper is concerned with the development of a novel nonlinear observer-based scheme for early Fault Detection and Isolation (FDI) in wind turbines. The method is based on designing a nonlinear observer using State Dependent Differential Riccati Equation (SDDRE) and a nonlinear model of the 5MW wind turbine. The fault detection system is designed and optimized to be most sensitive to system faults and least sensitive to system disturbances and noises. The comparison of system outputs with nonlinear observer outputs are given to demonstrate good estimation performance. The residual generator based on the nonlinear observer is also employed to develop a monitoring system. Simulation results presented to illustrate that the proposed method is robust and can detect and isolate a fault or multi-faults in sensors of the wind turbine.
Keywords
Riccati equations; differential equations; fault diagnosis; nonlinear control systems; observers; wind turbines; SDDRE; early fault detection and isolation; multifaults; nonlinear observer outputs; nonlinear observer-based fault detection and isolation; sensors; state dependent differential Riccati equation; wind turbines; Equations; Generators; Mathematical model; Observers; Rotors; Torque; Wind turbines; fault detection and isolation; nonlinear observer; state dependent differential Riccati equation; wind turbine;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Automation (MED), 2014 22nd Mediterranean Conference of
Conference_Location
Palermo
Print_ISBN
978-1-4799-5900-6
Type
conf
DOI
10.1109/MED.2014.6961483
Filename
6961483
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