[1] International Energy Agency. The power of transformation: wind, sun and the economics of flexible power systems [R]. U.S.A.: International Energy Agency, 2014.
[2] 李建林,田立亭,来小康. 能源互联网背景下的电力储能技术展望[J]. 电力系统自动化,2015,39(23): 15-25.

LI J L,TIAN L T,LAI X K. Outlook of electrical energy storage technologies under energy internet background [J]. Automation of Electric Power Systems,2015,39(23): 15-25.
[3] 袁小明,程时杰,文劲宇. 储能技术在解决大规模风电并网问题中的应用前景分析[J]. 电力系统自动化,2013,37(1): 14-18.

YUAN X M,CHENG S J,WEN J Y. Prospects analysis of energy storage application in grid integration of large-scale wind power [J]. Automation of Electric Power Systems,2013,37(1): 14-18.
[4] 贾燕冰,郑晋,陈浩,等.基于集合经验模态分解的火-储联合调度调频储能容量优化配置 [J]. 电网技术,2018,42(9):2930- 2937.

JIA Y B, ZHENG J,CHEN H, et al. Capacity allocation optimization of energy storage in thermal-storage frequency regulation dispatch system based on EEMD [J]. Power System Technology, 2018, 42(9):2930-2937.
[5] 潘福荣,张建赟,周子旺,等. 用户侧电池储能系统的成本效益及投资风险分析 [J]. 浙江电力, 2019, 38(5): 43-49.

PAN F R, ZHANG J Y, ZHOU Z W, et al. Cost-benefit and investment risk analysis of user-side battery energy storage system [J]. Zhejiang Electric Power , 2019, 38(5): 43-49.
[6] 李建林,王上行,袁晓冬,等. 江苏电网侧电池储能电站建设运行的启示 [J]. 电力系统自动化, 2018, 42(21): 1-9.

LI J L, WANG S X, YUAN X D, et al. Enlightenment from construction and operation of battery energy storage station on grid side in Jiangsu Power Grid [J]. Automation of Electric Power Systems, 2017, 41(21): 2-8.
[7] 康重庆,刘静琨,张宁. 未来电力系统储能的新形态:云储能[J]. 电力系统自动化, 2017, 41(21): 2-8.

KANG C Q, LIU J K, ZHANG N. A new form of energy storage in future power system: cloud energy storage [J]. Automation of Electric Power Systems, 2017, 41(21): 2-8.