A novel data-driven tighten-constraint method for wind-hydro hybrid power system to improve day-ahead plan performance in real-time operation
Author:
Funder
China Scholarship Council
Publisher
Elsevier BV
Reference44 articles.
1. Global wind report 2021;Lee,2021
2. A review of wind speed and wind power forecasting with deep neural networks;Wang;Appl Energy,2021
3. Long-term stochastic model predictive control and efficiency assessment for hydro-wind-solar renewable energy supply system;Zhang;Appl Energy,2022
4. A novel coordinated optimization strategy for high utilization of renewable energy sources and reduction of coal costs and emissions in hybrid hydro-thermal-wind power systems;Li;Appl Energy,2022
5. Active pressure and flow rate control of alkaline water electrolyzer based on wind power prediction and 100% energy utilization in off-grid wind-hydrogen coupling system;Li;Appl Energy,2022
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