Short-term wind power forecasting using wavelet-based neural network
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Publisher
Elsevier BV
Reference15 articles.
1. Wind integration in power systems: Operational challenges and possible solutions, Proc;Xie;IEEE.,2011
2. AWNN-assisted wind power forecasting using Feed-Forward Neural Network;Bhaskar;IEEE Trans. Sustain. Energy.,2012
3. Hybrid probabilistic wind power forecasting using temporally local Gaussian Process;Yan;IEEE Trans. Sustain. Energy.,2016
4. Short-term wind speed or power forecasting with Heteroscedastic Support Vector Regression;Hu;IEEE Trans. Sustain. Energy.,2016
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