DocumentCode
2454996
Title
Wind Speed Forecasting Based on Second Order Blind Identification and Autoregressive Model
Author
Firat, Umut ; Engin, Seref Naci ; Saraclar, Murat ; Ertuzun, Aysin Baytan
Author_Institution
Energy Inst., TUBITAK MAM, Kocaeli, Turkey
fYear
2010
fDate
12-14 Dec. 2010
Firstpage
686
Lastpage
691
Abstract
Wind power may present undesirable discontinuities and fluctuations due to considerable variations in wind speed, which may affect adversely the smooth operation of the grid. Effective wind forecast is essential in order to report the amount of energy supply with high accuracy, which is crucial for planning energy resources for power system operators. Variations in wind power cannot be sufficiently estimated by persistence type basic forecasting methods particularly in medium and long terms. Therefore a new statistical method is presented here in this paper based on independent component analysis (ICA) and autoregressive (AR) model. ICA is utilized in order to exploit the hidden factors which may exist in the wind speed time-series. It is understood that ICA, especially ICA methods based on exploiting the time structure like second order blind identification (SOBI) can be used as a preliminary step in wind speed forecasting.
Keywords
autoregressive processes; independent component analysis; power generation planning; time series; wind; wind power; autoregressive model; energy resource planning; energy supply; independent component analysis; power system operators; second order blind identification; statistical method; time structure; wind power; wind speed forecasting; wind speed time-series; wind speed variation; Covariance matrix; Forecasting; Predictive models; Wind forecasting; Wind power generation; Wind speed; autoregressive model; second order blind identification; wind speed forecasting;
fLanguage
English
Publisher
ieee
Conference_Titel
Machine Learning and Applications (ICMLA), 2010 Ninth International Conference on
Conference_Location
Washington, DC
Print_ISBN
978-1-4244-9211-4
Type
conf
DOI
10.1109/ICMLA.2010.106
Filename
5708905
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