DocumentCode :
2256992
Title :
A new method for wind speed forecasting based on empirical mode decomposition and improved persistence approach
Author :
Chengchen Sun ; Yue Yuan ; Qiang Li
Author_Institution :
Coll. of Energy & Electr. Eng., Hohai Univ., Nanjing, China
fYear :
2012
fDate :
12-14 Dec. 2012
Firstpage :
659
Lastpage :
664
Abstract :
Wind speed forecasting plays an important role in sizing the capacity of the energy storage system and guaranteeing the security and stability of power system. In order to forecast wind speeds more accurately, a hybrid forecasting method based on empirical mode decomposition (EMD) and an improved persistence approach has been proposed in this paper. Employing the EMD technique to decompose the measured wind speeds into many intrinsic mode function (IMF) components and a residue, which represent the original signal in both high-frequency and low-frequency signals. Meanwhile each IMF is analyzed and predicted using Moving Average method (high-frequency signals) and Persistence Approach (low-frequency signals), so does the residue. The sum of the predictive value for each decomposed component is the forecasted data. A set of measured wind speed data from a given wind farm locating at Jiangsu Province in China were modeled using the proposed method and the forecasted results were compared to the measured wind speeds as well as those predicted with other traditional methods. The results indicate that the forecasting precision can be improved with the developed model.
Keywords :
energy storage; load forecasting; moving average processes; power system security; power system stability; wind power plants; China; EMD technique; IMF components; Jiangsu province; empirical mode decomposition; energy storage system; high-frequency signals; hybrid forecasting method; improved persistence approach; intrinsic mode function; low-frequency signals; moving average method; power system security; power system stability; wind farm; wind speed forecasting method; Empirical Mode Decomposition; Persistence Approach; Wind Speed Forecasting;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IPEC, 2012 Conference on Power & Energy
Conference_Location :
Ho Chi Minh City
Type :
conf
DOI :
10.1109/ASSCC.2012.6523347
Filename :
6523347
Link To Document :
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