Fault Detection Algorithm for Wind Turbines’ Pitch Actuator Systems

A fault detection innovation to wind turbines’ pitch actuators is an important subject to guarantee the efficiency wind energy conversion and long lifetime operation of these rotatory machines. Therefore, a recent and effective fault detection algorithm is conceived to detect faults on wind turbine...

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Veröffentlicht in:Energies (Basel) Jg. 13; H. 11; S. 2861
Hauptverfasser: Pujol-Vazquez, Gisela, Acho, Leonardo, Gibergans-Báguena, José
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Basel MDPI AG 01.06.2020
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ISSN:1996-1073, 1996-1073
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Abstract A fault detection innovation to wind turbines’ pitch actuators is an important subject to guarantee the efficiency wind energy conversion and long lifetime operation of these rotatory machines. Therefore, a recent and effective fault detection algorithm is conceived to detect faults on wind turbine pitch actuators. This approach is based on the interval observer framework theory that has proved to be an efficient tool to measure dynamic uncertainties in dynamical systems. It is evident that almost any fault in any actuator may affect its historical-time behavior. Hence, and properly conceptualized, a fault detection system can be successfully designed based on interval observer dynamics. This is precisely our main contribution. Additionally, we realize a numerical analysis to evaluate the performance of our approach by using a dynamic model of a pitch actuator device with faults. The numerical experiments support our main contribution.
AbstractList A fault detection innovation to wind turbines’ pitch actuators is an important subject to guarantee the efficiency wind energy conversion and long lifetime operation of these rotatory machines. Therefore, a recent and effective fault detection algorithm is conceived to detect faults on wind turbine pitch actuators. This approach is based on the interval observer framework theory that has proved to be an efficient tool to measure dynamic uncertainties in dynamical systems. It is evident that almost any fault in any actuator may affect its historical-time behavior. Hence, and properly conceptualized, a fault detection system can be successfully designed based on interval observer dynamics. This is precisely our main contribution. Additionally, we realize a numerical analysis to evaluate the performance of our approach by using a dynamic model of a pitch actuator device with faults. The numerical experiments support our main contribution.
Author Gibergans-Báguena, José
Acho, Leonardo
Pujol-Vazquez, Gisela
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  surname: Acho
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  surname: Gibergans-Báguena
  fullname: Gibergans-Báguena, José
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Snippet A fault detection innovation to wind turbines’ pitch actuators is an important subject to guarantee the efficiency wind energy conversion and long lifetime...
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StartPage 2861
SubjectTerms Algorithms
Design
Experiments
fault detection
interval observer
Parameter estimation
pitch actuator
Signal processing
Turbines
wind turbines
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Title Fault Detection Algorithm for Wind Turbines’ Pitch Actuator Systems
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