Day-ahead Intra-day Economic Dispatch Methodology Accounting for the Participation of Electrolytic Aluminum Loads and Energy Storage in Power System Peaking

Author:

Zheng Wei1,Yu Peng2,Xu Zhaoyang3,Fan Tianzhen4,Liu Hengyu5,Yu Meng3,Zhang Jiong4,Li Junhui4

Affiliation:

1. State Grid Fushun Electric Power Supply Company,State Grid Liaoning Electric Power Supply Co., Ltd,Liao Ning,China

2. State Grid Liaoning Electric Power Company Limited Power Dispatch And Control Center,State Grid Liaoning Electric Power Co., Ltd,Liao Ning,China

3. State Grid Electric Power Research Institute Wuhan Efficiency Evaluation Co., Ltd,State Grid Electric Power Research Institute Co., Ltd,Hu Bei,China

4. (Northeast Electric Power University),Key Laboratory of Modern Power System Simulation and Control & Renewable Energy Technology,Ji Lin,China

5. State Grid Liaoning Electric Power Company Limited Electric Power Research Institute,State Grid Liaoning Electric Power Co., Ltd,Liao Ning,China

Publisher

IEEE

Reference11 articles.

1. Low-carbon economic dispatch of wind-fire storage considering thermal storage retrofit and optimal energy abandonment[J];Zikun;Power System Protection and Control,2022

2. Economic optimization study of thermal power unit deep peaking taking into account demand-side energy storage accidental standby risk[J];Wen;Power System Protection and Control,2022

3. Self-Sufficient Participation in Cloud-Based Demand Response

4. Artificial Intelligence Enabled Demand Response: Prospects and Challenges in Smart Grid Environment

5. Incentive-Based Integrated Demand Response Considering S&C Effect in Demand Side With Incomplete Information

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