DocumentCode :
2745894
Title :
Takagi-Sugeno sliding mode observer design for load estimation and sensor fault detection in wind turbines
Author :
Schulte, Horst ; Zajac, Michal ; Georg, Sören
Author_Institution :
Dept. of Eng. I, HTW Berlin, Berlin, Germany
fYear :
2012
fDate :
10-15 June 2012
Firstpage :
1
Lastpage :
8
Abstract :
The performance and reliability of pitch control systems significantly influences the functional safety of wind turbines. In this paper, an observer-based fault detection approach for a class of nonlinear systems, which can be modeled as Takagi-Sugeno (TS) fuzzy models, is presented and applied to electro mechanical pitch drive systems of wind turbines. To achieve robustness we propose a TS fuzzy observer combined with sliding mode that deals with unmeasurable premise variables and bounded uncertainties in the plant. It is shown that this formulation allows sensor fault estimation and load reconstruction based on an equivalent output error injection approach. The stability of the error dynamics is ensured by sufficient linear matrix inequality (LMI) conditions. Based on a derived physical model of the pitch drive system and the unknown but bounded wind loads the robust observer is systematically designed using the TS system form of the plant. Simulation results demonstrate the effectiveness of the proposed scheme.
Keywords :
control system synthesis; fault diagnosis; fuzzy systems; linear matrix inequalities; nonlinear control systems; observers; robust control; sensors; uncertain systems; variable structure systems; wind turbines; LMI; TS fuzzy robust observer; Takagi-Sugeno fuzzy models; Takagi-Sugeno sliding mode observer design; bounded uncertainties; electromechanical pitch drive systems; error dynamics stability; load estimation; load reconstruction; nonlinear systems; output error injection approach; physical model; pitch control system performance; pitch control system reliability; sensor fault detection; sufficient linear matrix inequality conditions; unknown bounded wind loads; unmeasurable premise variables; wind turbine functional safety; Blades; Control systems; Load modeling; Observers; Rotors; Uncertainty; Wind turbines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Fuzzy Systems (FUZZ-IEEE), 2012 IEEE International Conference on
Conference_Location :
Brisbane, QLD
ISSN :
1098-7584
Print_ISBN :
978-1-4673-1507-4
Electronic_ISBN :
1098-7584
Type :
conf
DOI :
10.1109/FUZZ-IEEE.2012.6250806
Filename :
6250806
Link To Document :
بازگشت