A Sliding Mode Observer-Based Icing Detection and Estimation Scheme for Wind Turbines

Author:

Corradini Maria Letizia1,Ippoliti Gianluca2,Orlando Giuseppe2

Affiliation:

1. Scuola di Scienze e Tecnologie, Università di Camerino, Camerino (MC) 62032, Italy e-mail:

2. Dipartimento di Ingegneria dell'Informazione, Università Politecnica delle Marche, Ancona 60131, Italy e-mail:

Abstract

In this paper, the problem of icing detection is considered for wind turbines (WTs) operating in medium speed wind region (region 2) and subject to a control law tracking the maximum delivery point of the power coefficient characteristic. Based on a robust observer of the rotor angular acceleration, rotor inertia is estimated in order to detect its eventual increase due to icing. Moreover, the observed value of rotor inertia can be potentially used for updating the controller parameters or to stop the turbine when icing is too severe. The proposed approach has been tested by intensive MatLab® simulations using the National Renewable Energy Laboratory 5 MW WT model.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference29 articles.

1. Fatigue Loads of Iced Turbines: Two Case Studies;J. Wind Eng. Ind. Aerodyn.,2016

2. Anti-Icing and De-Icing Techniques for Wind Turbines—A Critical Review;Cold Reg. Sci. Technol.,2011

3. Fortin, G., Perron, J., and Ilinca, A., 2005, “A Study of Icing Events at Murdochville: Conclusions for the Wind Power Industry,” International Symposium, Wind Energy in Remote Regions, Magdalene Islands, QC, Canada, Oct. 19–21, pp. 1–9.http://www.uqac.ca/amil/en/publications/papers/2005-2006/ColloqueIleMadeleine.pdf

4. Climate Change Impacts on Wind Energy: A Review;Renewable Sustainable Energy Rev.,2010

5. Wavelet-Based Signal Processing Method for Detecting Ice Accretion on Wind Turbines;IEEE Trans. Sustainable Energy,2012

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