4.8 Article

Multisource Wind Speed Fusion Method for Short-Term Wind Power Prediction

Journal

IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS
Volume 17, Issue 9, Pages 5927-5937

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TII.2020.3006928

Keywords

Wind power generation; Wind speed; Wind forecasting; Predictive models; Wind farms; Information fusion; numerical weather prediction (NWP); weighted naive Bayes (WNB); wind power prediction (WPP)

Funding

  1. National Natural Science Foundation of China [61973287]
  2. 111 Project [B17040, TII-20-2165]

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The study proposes a short-term wind power prediction method based on multisource wind speed fusion, which significantly increases the accuracy of wind power generation prediction compared to conventional methods.
Wind is the dominant factor for wind power generation. However, wind, which is intermittent and fluctuating all the time, is hard to be accurately forecasted, especially only by single-source numerical weather prediction. This article presents a short-term wind power prediction method based on multisource wind speed fusion. First, the relationships among the weather factors and wind power, and the characteristics of three independent forecasted wind speed (FWS) provided by three organizations are analyzed. Next, a weighted naive Bayes method is described to fuse the three FWSs in order to estimate an accurate wind speed according to their characteristics. Then, a backpropagation neural network is designed to predict the wind power based on the fused wind speed. Finally, application results show that the method accurately predicts wind power generation, and the accuracy is much higher than that predicted by conventional methods.

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