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AN APPROACH FOR FAILURE DETECTION AND DIAGNOSIS IN PHOTOVOLTAIC POWER SYSTEMS BASED ON WEIBULL DISTRIBUTION FUNCTION

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SEPTEMBER 2017   -  Volume: 92 -  Pages: 532-537

DOI:

https://doi.org/10.6036/8252

Authors:

JESUS FERRERO BERMEJO - FERNANDO OLIVENCIA - GONZALO CERRUELA - ADOLFO CRESPO MARQUEZ - JUAN GOMEZ

Disciplines:

  • Industrial technology (INGENIERIA DE MANTENIMIENTO )

Downloads:   325

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Received Date :   19 December 2016

Reviewing Date :   10 January 2017

Accepted Date :   29 March 2017


Key words:
Sistemas de Información, Fotovoltaico, Energía, Predicción, Fallo, Distribución de Weibull, Information Systems, photovoltaic, energy, prediction, failure, Weibull distribution
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

This paper proposes a method to predict photovoltaic (PV) energy production based on the hypothesis that during the hours of activity of the plant, its production behaves as a stochastic process with a Weibull distribution function of two parameters which take into account the characteristics of the photovoltaic plant and the weather parameters measured in real time by a sensor network. The versatility and accuracy of the model has been validated through the deployment of a real-time SCADA system. The system developed includes power generation prediction and real-time comparison between the power expected and the power measured, for failure detection. With the implementation of the proposed system was achieved a production improvement of more than 7% with respect to the periods with failures.

Keywords: Information Systems, photovoltaic; energy; prediction; failure, Weibull distribution

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