2016 · 19 citations · 12 references
Fault DiagnosisEngineeringDiagnosisFault ForecastingGaussian Process AlgorithmPhotovoltaic SystemNormal Pv PerformancePhotovoltaicsGaussian Process AlgorithmsReliability EngineeringPhotovoltaic StringsFault AnalysisSystems EngineeringPower SystemsElectrical EngineeringSolar PowerStructural Health MonitoringComputer EngineeringAutomatic Fault DetectionAutomatic Fault ClassificationCurve TracesFault Detection
Current-voltage (I-V) curve traces of photovoltaic (PV) systems can provide detailed information for diagnosing fault conditions. The present work implemented an in situ, automatic I-V curve tracer system coupled with Support Vector Machine and a Gaussian Process algorithms to classify and estimate abnormal and normal PV performance. The approach successfully identified normal and fault conditions. In addition, the Gaussian Process regression algorithm was used to estimate ideal I-V curves based on a given irradiance and temperature condition. The estimation results were then used to calculate the lost power due to the fault condition.
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Corinna Cortes, Vladimir Vapnik · Machine Learning · 1995 · 39.8K citations · Full text
Corinna Cortes, Vladimir Vapnik · Machine Learning · 1995 · 31.8K citations · Full text
A tutorial on support vector regression
Alex Smola, Bernhard Schölkopf · Statistics and Computing · 2004 · 12.6K citations