共 15 条
- [1] ZHAI Qiaozhu, ZHOU Yuzhou, LI Xuan, Et al., Nonanticipativity and all-scenario-feasibility: State of the art, challenges, and future in dealing with the uncertain load and renewable energy, Proceedings of the CSEE, 40, 20, pp. 6418-6433, (2020)
- [2] ZHOU Baorong, HUANG Tingcheng, ZHANG Yongjun, Reliability analysis on microgrid considering incentive demand response, Automation of Electric Power Systems, 41, 13, pp. 70-78, (2017)
- [3] LIU Z H, YI Y Q, YANG J H, Et al., Optimal planning and operation of dispatchable active power resources for islanded multi-microgrids under decentralised collaborative dispatch framework, IET Generation, Transmission & Distribution, 14, 3, pp. 408-422, (2020)
- [4] SONG W W, CHEN Y F, ZHANG Y J, Et al., Bidirectional boost converter for high-power transmission between energy storage battery and DC microgrid, Electronics Letters, 55, 7, pp. 402-404, (2019)
- [5] ZHUO Ranqun, Research on flexible network planning of autonomy micro grid, (2018)
- [6] ZHANG G P, WANG W J, MAO L B., An overview of microgrid planning and design method, 2018 IEEE 3rd Advanced Information Technology, Electronic and Automation Control Conference, pp. 326-329
- [7] ZHAO W X, XU M, NING N, Et al., A microgrid capacity optimization method considering carbon emission cost, 2020 IEEE Sustainable Power and Energy Conference, pp. 2219-2224
- [8] XIE Peng, CAI Zexiang, LIU Ping, Et al., Cooperative optimization of energy storage capacity for renewable and storage involved microgrids considering multi time scale uncertainty coupling influence, Proceedings of the CSEE, 39, 24, pp. 7126-7136, (2019)
- [9] MA Guolong, CAI Zexiang, LIU Ping, Power capacity optimization of microgrid with multiple subjects considering price incentive demand response, Electric Power Automation Equipment, 39, 5, pp. 96-102, (2019)
- [10] LI Hongzhong, LU Menglin, HU Liexiang, Et al., Joint planning of microgrid considering generalized energy storage, Electric Power Automation Equipment, 40, 7, pp. 149-160, (2020)