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Journal article

Fault diagnosis and condition monitoring of wind turbines : Fault diagnosis and condition monitoring of wind turbines

From

Department of Electrical Engineering, Technical University of Denmark1

Automation and Control, Department of Electrical Engineering, Technical University of Denmark2

Department of Applied Mathematics and Computer Science, Technical University of Denmark3

Dynamical Systems, Department of Applied Mathematics and Computer Science, Technical University of Denmark4

Department of Wind Energy, Technical University of Denmark5

Wind turbine loads & control, Department of Wind Energy, Technical University of Denmark6

AF Consult7

This paper describes a model-free method for the fault diagnosis and condition monitoring of rotor systems in wind turbines. Both fault diagnosis and monitoring can be achieved without using a model for the wind turbine, applied controller, or wind profiles. The method is based on measurements from standard sensors on modern wind turbines, including moment sensors and rotor angle sensors.

This approach will allow the method to be applied to existing wind turbines without any modifications. The method is based on the detection of asymmetries in the rotor system caused by changes or faults in the rotor system. A multiblade coordinate transformation is used directly on the measured flap-wise and edge-wise moments followed by signal modulation.

Changes or faults in the rotor system will result in unique signatures in the set of modulation signals. These signatures are described through the amplitudes and phase information of the modulation signals. It is possible to detect and isolate which blade is faulty or has been changed based on these signatures.

Furthermore, the faulty component can be isolated, ie, the actuator, sensor or blade, and the type of fault can be determined. The method can be used both on- and off-line.

Language: English
Year: 2017
Pages: 586-613
ISSN: 10991115 and 08906327
Types: Journal article
DOI: 10.1002/acs.2782
ORCIDs: Niemann, Hans Henrik and Poulsen, Niels Kjølstad

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