Incremental Benefits Allocation for Multi-stakeholder Wind-Solar-Hydro-Hydrogen Energy System Based on Cooperative Game Theory

Author:

Duan Jia’nan,Xie Jun,Zhou Cuiyu,Jin Yongtian

Publisher

Springer Nature Singapore

Reference12 articles.

1. Liu, Q.Y., Li, L., Luo, L.F., et al.: Power quality management of PV power plant with transformer integrated filtering method. IEEE Trans. Power Delivery 34(3), 941–949 (2019)

2. Xia, Y.S., Liu, J.Y., Liu, J.C., et al.: Optimal scheduling strategy of cascaded hydro-photovoltaic-pumped storage hybrid generation system based on electric energy sharing. Electr. Power Autom. Equip. 41(9), 118–125 (2021)

3. Zhang, L.Q., Xie, J., Zhang, Q.Y., et al.: Synergistic benefit allocation method for wind-solar-hydro complementary generation with sampling-based Shapley value estimation method. Electr. Power Autom. Equip. 41(9), 126–132 (2021)

4. Zhou, B.R., Geng, G.C., Jiang, Q.Y.: Hydro-thermal-wind coordination in day-ahead unit commitment. IEEE Trans. Power Syst. 31(6), 4626–4637 (2016)

5. Ma, T.F., Pei, W., Xiao, H., et al.: Cooperative operation method for wind-solar-hydrogen multi-agent energy system based on Nash bargaining theory. Proc. CSEE 41(1), 25–39 (2021)

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