Study on the Economy of Energy Storage System with Lithium-Ion Battery Participating in AGC Auxiliary Service

被引:0
|
作者
Sun B. [1 ]
Li Y. [2 ]
Gong M. [1 ]
Yang Y. [3 ]
Liang H. [1 ]
机构
[1] National Active Distribution Network Technology Research Center Collaborative Innovation, Center of Electric Vehicles in Beijing, BeijingJiaotong University, Beijing
[2] Shanghai CHINT Power Systems Co. Ltd, Shanghai
[3] Envision Energy, Shanghai
关键词
Automatic generation control auxiliary service; Central control strategy; Economic analysis; Energy decline model; Lithium-ion battery; Logistic function;
D O I
10.19595/j.cnki.1000-6753.tces.191151
中图分类号
学科分类号
摘要
With the vigorous development of new energy technologies, the traditional grid frequency control is facing an increasingly severe test. There is good development space for the lithium-ion battery energy storage system helps the thermal power unit to participate in frequency adjustment. In this paper, the application scenario is the lithium-ion battery energy storage system assists the thermal power unit to participate in the automatic generation control (AGC) auxiliary service. And the evaluation compensation algorithm of the AGC auxiliary service is compiled according to the "two rules". A comparatively conservative but reliable battery energy decay model was established through the decay experiment. About the control strategy, the SOE trend control strategy based on Logistic function and the economic strategy based on evaluation index were built. Operating conditions is used to be simulated to fit the daily adjustment model of the energy storage system. Finally, a project economic analysis is conducted for the project's life cycle net income, investment payback period and return on investment. This paper obtains the initial energy allocation scheme of the energy storage system by evaluating the payback period and return on investment, and provides a sensitivity analysis of possible policy updates and market changes. We can obtain more rigorous and reliable investment solutions having strong compatibility with policy and market changes by using this economic model. © 2020, Electrical Technology Press Co. Ltd. All right reserved.
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页码:4048 / 4061
页数:13
相关论文
共 22 条
  • [1] Wang Jun, Gu Yao, The influence of new energy power access on grid planning, Science and Technology Innovation Herald, 15, 36, pp. 220-222, (2018)
  • [2] Liu Weilong, Wang Lifang, Liao Chenglin, Et al., Model identification of electric vehicle power battery in charging mode, Transactions of China Electrotechnical Society, 32, 11, pp. 198-207, (2017)
  • [3] Takasu N, Oshi T, Miyawaki F, Et al., An experimental analysis of DC excitation of transformers by geomagnetically induced currents, IEEE Transactions on Power Delivery, 9, 2, pp. 1173-1182, (1994)
  • [4] (2018)
  • [5] He Jinghan, Xie Yuyu, Zhang Jinguo, Spatial and temporal distribution of EV charging load and its influence on distribution network, Electric Power Construction, 36, 7, pp. 83-88, (2015)
  • [6] Zhang Ping, Research on combined frequency modulation method of thermal power and electric energy storage, Telecom Power Technologies, 35, 10, pp. 31-33, (2018)
  • [7] Li Xinran, Cui Xiwen, Huang Jiyuan, Et al., The self-adaption control strategy of energy storage batteries participating in the primary frequency regulation, Transactions of China Electrotechnical Society, 34, 18, pp. 3897-3908, (2019)
  • [8] Zhang Li, Mou Fahai, Zhou Zhongfeng, Et al., Technology and economic analysis of AGC FM in power plant by battery energy storge, Electrotechnics, 8, pp. 76-78, (2018)
  • [9] Li Xinran, Huang Jiyuan, Chen Yuanyang, Et al., Battery energy storage control strategy in secondary frequency regulation considering its action moment and depth, Transactions of China Electrotechnical Society, 32, 12, pp. 224-233, (2017)
  • [10] Xie Xiaorong, Guo Yonghong, Wang Bin, Et al., Improving AGC performance of coal-fueled thermal generators using multi-MW scale BESS: a practical application, IEEE Transactions on Smart Grid, 9, 3, pp. 1769-1777, (2018)