Publication | Open Access
An Interval NLPV Parity Equations Approach for Fault Detection and Isolation of a Wind Farm
97
Citations
36
References
2014
Year
Fault DiagnosisReliability EngineeringWind FarmEngineeringFault AnalysisFault ForecastingParity EquationsSystems EngineeringWind Turbine ModelingWind EngineeringFault DetectionAutomatic Fault Detection
In this paper, the problem of fault diagnosis of a wind farm is addressed using interval nonlinear parameter-varying (NLPV) parity equations. Fault detection is based on the use of parity equations assuming unknown but bounded description of the noise and modeling errors. The fault detection test is based on checking the consistency between the measurements and the model, by finding if the formers are inside the interval prediction bounds. The fault isolation algorithm is based on analyzing the observed fault signatures online and matching them with the theoretical ones obtained using structural analysis. Finally, the proposed approach is tested using the wind farm benchmark proposed in the context of the wind farm fault-detection-and-isolation/fault-tolerant-control competition.
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