[1] 李军徽,朱星旭,严干贵,等. 抑制风电并网影响的储能系统调峰控制策略设计[J]. 中国电力,2014,47(7):91-95. LI Junhui, ZHU Xingxu, YAN Gangui, et al . Design of control strategies of energy storage for peak shaving to restrain wind power’s influence on power grid [J]. Electric Power, 2014, 47(7): 91-95. [2] 叶季蕾,薛金花,王伟,等. 储能技术在电力系统中的应用现状与前景[J]. 中国电力,2014,47(3):1-5. YE Jilei, XUE Jinhua, WANG Wei, et al . Application of energy storage technology and its prospect in power system [J]. Electric Power, 2014, 47(3): 1-5. [3] 吴晋波,文劲宇,孙海顺,等. 基于储能技术的交流互联电网稳定控制方法[J]. 电工技术学报,2012,27(6):262-267. WU Jinbo, WEN Jinyu, SUN Haishun, et al . Study of control method for improving AC interconnected grid stability based on energy storage technology[J]. Transactions of China Electrotechnical Society, 2012, 27(6): 262-267. [4] GAO Lijun, DOUGAL R A, LIU Shengyi. Power enhancement of an actively controlled battery/ultracapacitor hybrid [J]. IEEE Trans on Power Electronics, 2005, 20(1): 236-243. [5] ASAO T, TAKAHASHI R, MURATA T, et al . Smoothing control of wind power generator output by superconducting magnetic energy storage system[C]//International Conference on Electrical Machines and Systems, October 8-11, 2007, Seoul, South Korea:302-307. [6] 丁明,吴建锋,朱承治,等. 具备荷电状态调节功能的储能系统实时平滑控制策略[J]. 中国电机工程学报,2013,33(1):22-29. DING Ming, WU Jianfeng, ZHU Chengzhi, et al . A real-time smoothing control strategy with SOC adjustment function of storage systems [J]. Proceedings of the CSEE, 2013, 33(1): 22-29. [7] 张国驹,唐西胜,齐智平. 超级电容器与蓄电池混合储能系统在微网中的应用[J]. 电力系统自动化,2010,34(12):85-89. ZHANG Guoju, TANG Xisheng, QI Zhiping. Application of hybrid energy storage systems of super-capacitors and batteries in a micro-grid[J]. Automation of Electric Power Systems, 2010, 34(12): 85-89. [8] 于芃,赵瑜,周玮,等. 基于混合储能系统的平抑风电波动功率方法的研究[J]. 电力系统保护与控制,2011,39(24):35-40. YU Peng, ZHAO Yu, ZHOU Wei, et al . Research on the method based on hybrid energy storage systems for balancing fluctuant wind power[J]. Power System Protection and Control, 2011, 39(24): 35-40. [9] 于芃,周玮,孙辉,等. 用于风电功率平抑的混合储能系统及其控制系统设计[J]. 中国电机工程学报,2011,31(17):127-133. YU Peng, ZHOU Wei, SUN Hui, et al . Hybrid energy storage system and control system design for wind power balancing[J].Proceedings of the CSEE, 2011, 31(17): 127-133. [10] 李逢兵,谢开贵,张雪松,等. 基于寿命量化的混合储能系统协调控制参数优化[J]. 电力系统自动化,2014,38(1):1-4. LI Fengbing, XIE Kaigui, ZHANG Xuesong, et al . Optimization of coordinated control parameters for hybrid energy storage system based on life quantization[J]. Automation of Electric Power Systems, 2014, 38(1): 1-4. [11] 王伟,薛金花,叶季蕾,等. 基于SOC调控的用于抑制光伏波动的电池储能优化控制方法[J]. 电力系统保护与控制,2014, 42(2):76-80. WANG Wei, XUE Jinhua, YE Jilei, et al . An optimization control design of battery energy storage based on SOC for leveling off the PV power fluctuation[J]. Power System Protection and Control,2014, 42(2): 76-80. [12] ISE T, KITA M, TAGUCHI A. A hybrid energy storage with an SMES and secondary battery[J]. IEEE Trans on Applied Superconductivity, 2005, 15(2): 1915-1918. [13] 赵艳雷,李海东,张磊,等. 基于快速储能的风电潮流优化控制系统[J]. 中国电机工程学报,2012,32(13):21-28. ZHAO Yanlei, LI Haidong, ZHANG Lei, et al . Wind power flow optimization and control system based on rapid energy storage[J].Proceedings of the CSEE, 2012, 32(13): 21-28. [14] 邹见效,戴碧蓉,彭超,等. 基于荷电状态分级优化的混合储能风电功率平抑方法[J]. 电力系统自动化,2013,37(24):1-6. ZOU Jianxiao, DAI Birong, PENG Chao, et al . Wind power smoothing method using hybrid energy storage system based on SOC hierarchical optimization[J]. Automation of Electric Power Systems, 2013, 37(24): 1-6. |