Yongqiang Sun, Haiyue Yang, Lijuan Gao, Yongchao Wu, Zien Li, Haiping Liang
[1] R. Akshay and R. Abraham, “Load-frequency regulation withsolar pv and battery energy storage system,” InternationalJournal of Power and Energy Systems, vol. 39, 01 2019. [2] S. H. Abdallah and S. Tounsi, “Optimal design and control of ac-dc-dc wind energy system for electric vehicle batteries recharg-ing stations,” International Journal of Power and Energy Sys-tems, vol. 44, no. 10, pp. 1–9, 2024. [3] R. Fan, G. Xu, and H. Song, “Strategies for solving the problemof power flow over-limit in active distribution network,” Elec-trotechnical Studies, vol. 24, pp. 165–167, 2023. [4] X. Dong, Z. Hua, L. Shang, et al., “Morphological characteris-tics and technology prospect of new distribution system,” HighVoltage Engineering, vol. 47, no. 9, pp. 3021–3035, 2021.209 [5] S. Grillo, M. Marinelli, S. Massucco, et al., “Optimal manage-ment strategy of a battery-based storage system to improverenewable energy integration in distribution networks,” IEEETransactions on Smart Grid, vol. 3, no. 2, pp. 950–958, 2013. [6] Z. Yu, Z. Junhua, S. Yue, et al., “Optimal operation of batteryess considering distribution system uncertainty,” IEEE Trans-actions on Sustainable Energy, vol. 9, no. 3, pp. 1051–1060,2018. [7] X. Li, M. Zhuang, W. Yang, X. Zhu, and Q. Wang, “Neuralnetwork based data quality monitoring and real-time analysismethod for energy storage power plants,” International Journalof Power and Energy Systems, vol. 44, no. 10, pp. 1–15, 2024. [8] C. Wang, L. Zhang, K. Zhang, et al., “Des planning consider-ing reactive power output of energy storage and photovoltaic,”Energy Reports, vol. 8, no. 10, pp. 562–569, 2022. [9] J. Li, S. Chen, Y. Wu, et al., “How to make better use of inter-mittent and variable energy: A review of wind and photovoltaicpower consumption in china,” Renewable and Sustainable En-ergy Reviews, vol. 137, p. 110626, 2021. [10] Y. Jia, Z. Mi, L. Liu, et al., “Comprehensive optimizationmethod of capacity configuration and ordered installation fordess accessing distribution network,” Electric Power Automa-tion Equipment, vol. 39, no. 4, pp. 1–7, 2019. [11] J. Li, Z. Guo, W. Zeng, et al., “Modeling and simulation analysisof lithium battery energy storage oriented to frequency modu-lation,” Power System Protection and Control, vol. 50, no. 13,pp. 33–42, 2022. [12] J. Yang, W. Wang, M. Zhang, et al., “A voltage hierarchicalcontrol method for distribution networks considering distributedphotovoltaic and energy storage participation,” Journal of Elec-tric Power Science and Technology, vol. 38, no. 5, pp. 111–120,2023. [13] J. Li, D. Sun, X. Zhu, et al., “Voltage control strategy for inter-cluster cooperative des under high photovoltaic penetration,”Power System Automation, vol. 47, no. 10, pp. 47–56, 2023. [14] B. Liu, H. Wu, J. Huang, et al., “Research on ess capacity config-uration of wind farm and photovoltaic plant considering activeand reactive power coordinated optimization,” Proceedings ofthe CSU-EPSA, vol. 33, no. 11, pp. 82–89, 2021. [15] N. He, W. Li, X. Li, et al., “Harmonic control study of high-power converter for energy storage power supply in grid powersystem,” Microcomputer Applications, vol. 39, no. 8, pp. 48–51,2023. [16] M. N. Kabir, M. Yateendra, and L. Gerard, “Coordinated con-trol of grid-connected photovoltaic reactive power and batteryenergy storage systems to improve the voltage profile of a res-idential distribution feeder,” IEEE Transactions on IndustrialInformatics, vol. 10, no. 2, pp. 967–977, 2014. [17] A. A. Ahmad and S. Reza, “Optimal planning and operationalstrategy of energy storage systems in power transmission net-works: An analysis of wind farms,” International Journal ofEnergy Research, vol. 45, no. 7, pp. 11258–11283, 2022. [18] X. Wei, D. Liu, F. Gao, et al., “Power generation planning of anew power system considering the coordinated and optimal op-eration of source-grid-load-storage under the dual carbon goals,”Power System Technology, vol. 47, no. 9, pp. 3648–3661, 2023. [19] J. Zhang, X. Xue, D. Li, et al., “Optimization of energy storageallocation in wind energy storage combined system based onimproved sand cat swarm optimization algorithm,” Processes,vol. 11, no. 12, p. 3274, 2023. [20] H. Zhang, “Optimal allocation method of dess to improve theproportion of new energy consumption in distribution network,”Electrical Application, vol. 41, no. 3, pp. 56–63, 2022. [21] F. Yang, Z. Zhang, J. Xu, et al., “Des planning for distributionnetwork for reliability improvement,” Power Capacitors & Re-active Power Compensation, vol. 43, no. 1, pp. 188–196, 2022. [22] W. Bo, Z. Cuo, Z. D. Yang, et al., “Improving hosting capac-ity of unbalanced distribution networks via robust allocation ofbattery energy storage systems,” IEEE Transactions on PowerSystems, vol. 36, no. 3, pp. 2174–2185, 2020. [23] S. Zhao, J. Yao, and Z. Li, “Research on wind power scenereduction method based on improved k-means clustering and sbralgorithm,” Power System Technology, vol. 45, no. 10, pp. 3947–3954, 2021. [24] J. Guo and S. Hou, “Research on evaluation index of opti-mal clustering number of k-means algorithm,” Software Guide,vol. 16, no. 11, pp. 5–8, 2014. [25] H. Cai, J. Sun, Y. Xie, et al., “Strategic economic allocation ofintegrated energy system considering peak-to-valley price spreadarbitrage of energy storage,” Sichuan Electric Power Technol-ogy, vol. 46, no. 5, pp. 35–42, 2023. [26] Y. Zhou, S. Huang, S. Shi, et al., “Energy storage allocationplanning based on group structure optimization,” Power Systemand Clean Energy, vol. 38, no. 11, pp. 126–133+145, 2022.
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