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[1] 舒印彪,张智刚,郭剑波,等.新能源消纳关键因素分析及解决措施研究[J].中国电机工程学报,2017,37(1):1-9. Shu Yinbiao,Zhang Zhigang,Guo Jianbo,et al.Study on key factors and solution of renewable energy accommodation[J].Proceedings of the CSEE,2017,37(1):1-9(in Chinese).
[2] 李明节,于钊,许涛,等.新能源并网系统引发的复杂振荡问题及其对策研究[J].电网技术,2017,41(4):1035-1042. Li Mingjie,Yu Zhao,Xu Tao,et al.Study of complex oscillation caused by renewable energy integration and its solution[J].Power System Technology,2017,41(4):1035-1042(in Chinese).
[3] 薛禹胜,雷兴,薛峰,等.关于风电不确定性对电力系统影响的评述[J].中国电机工程学报,2014,34(29):5029-5040. Xue Yusheng,Lei Xing,Xue Feng,et al.A review on impacts of wind power uncertainties on power systems[J].Proceedings of the CSEE,2014,34(29):5029-5040(in Chinese).
[4] 张丽英,叶廷路,辛耀中,等.大规模风电接入电网的相关问题及措施[J].中国电机工程学报,2010,30(25):1-9. Zhang Liying,Ye Tinglu,Xin Yaozhong,et al.Problem and measure of power grid accommodating large scale wind power[J].Proceedings of the CSEE,2010,30(25):1-9(in Chinese).
[5] 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 Xiaoming,Cheng Shijie,Wen Jinyu.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(in Chinese).
[6] Telaretti E,Dusonchet L.Stationary battery technologies in the US: development trends and prospects[J].Renewable & Sustainable Energy Reviews,2017(75):380-392.
[7] Efstratios C,Rogers,Daniel J.A comparison of grid-connected battery energy storage system designs[J].IEEE Transactions on Power Electronics,2017,32(9):6913-6923.
[8] 张新松,顾菊平,袁越,等.基于电池储能系统的风功率波动平抑策略[J].中国电机工程学报,2014,34(28):4752-4760. Zhang Xinsong,Gu Juping,Yuan Yue,et al.Strategy of smoothing wind power fluctuation based on battery energy storage system[J].Proceedings of the CSEE,2014,34(28):4752-4760(in Chinese).
[9] 程时杰,李刚,孙海顺,等.储能技术在电气工程领域中的应用与展望[J].电网与清洁能源,2009,25(2):1-8. Cheng Shijie,Li Gang,Sun Haishun,et al.Application and prospect of energy storage in electrical engineering[J].Power System and Clean Energy,2009,25(2):1-8(in Chinese).
[10] 项顶,胡泽春,宋永华,等.通过电动汽车与电网互动减少弃风的商业模式与日前优化调度策略[J].中国电机工程学报,2015,35(24):6293-6303. Xiang Ding,Hu Zechun,Song Yonghua,et al.Business model and day-ahead dispatch strategy to reduce wind power curtailment through vehicle-to-grid[J].Proceedings of the CSEE,2015,35(24):6293-6303(in Chinese).
[11] 李志伟,赵书强,刘应梅.电动汽车分布式储能控制策略及应用[J].电网技术,2016,40(2):442-450. LiZhiwei,Zhao Shuqiang,Liu Yingmei.Control strategy and application of distributed electric vehicle energy storage[J].Power System Technology,2016,40(2):442-450(in Chinese).
[12] Hina1 F A,Palanisamy K.Battery energy storage applications in wind integrated systems-a review[C]//2014 International Conference on Smart Electric Grid,ISEG 2014.Guntur:ISEG 2014,2015:1-8.
[13] 蒋凯,李浩秒,李威,等.几类面向电网的储能电池介绍[J].电力系统自动化,2013,37(1):47-53. JiangKai,Li Haomiao,Li Wei,et al.On several battery technologies for power grids[J].Automation of Electric Power Systems,2013,37(1):47-53(in Chinese).
[14] 王松岑. 大规模储能技术及其在电力系统中的应用[M].北京:中国电力出版社,2016:30-46.
[15] 汪海蛟,江全元.应用于平抑风电功率波动的储能系统控制与配置综述[J].电力系统自动化,2014,38(19):126-135. Wang Haijiao,Jiang Quanyuan.An overview of control and configuration of energy storage system used for wind power fluctuation mitigation[J].Power System Technology,2014,38(19):126-135(in Chinese).
[16] Li X J,Yao L Z,Hui D.Optimal control and management of large-scale battery energy storage system to mitigate the fluctuation and intermittence of renewable generations[J].Journal of Modern Power Systems and Clean Energy,2016,4(4):593-603.
[17] Li X J,Hui D,Lai X K.Battery energy storage station (BESS)-based smoothing control of photovoltaic (PV) and wind power generation fluctuations[J].IEEE Transactions on Sustainable Energy,2013,4(2):464-473.
[18] Lei M Y,Yang Z L,Wang Y B,et al.Design of energy storage control strategy to improve the PV system power quality[C]//IECON 2016 - 42nd Annual Conference of the IEEE Industrial Electronics Society.Florence:IEEE,2016:2022-2027.
[19] 单茂华,李陈龙,梁廷婷,等.用于平滑可再生能源出力波动的电池储能系统优化控制策略(英文)[J].电网技术,2014,38(2):469-477. Shan Maohua,Li Chenlong,Liang Tingting,et al.A real-time optimal control strategy for battery energy storage system to smooth active output fluctuation of renewable energy sources[J].Power System Technology,2014,38(2):469-477(in English).
[20] 李相俊,张晶琼,何宇婷,等.基于自适应动态规划的储能系统优化控制方法[J].电网技术,2016,40(5):1355-1362. Li Xiangjun,Zhang Jingqiong,He Yuting,et al.Optimal control method of energy storage system based on adaptive dynamic programming[J].Power System Technology,2016,40(5):1355-1362(in Chinese).
[21] GB/Z 19963—2005 风电场接入电力系统技术规定[S].北京:中国国家标准化管理委员会,2005.
[22] GB-Z19964—2005 光伏发电站接入电力系统技术规定[S].北京:中国国家标准化管理委员会,2005.
[23] 沈欣炜,朱守真,郑竞宏,等.考虑分布式电源及储能配合的主动配电网规划运行联合优化[J].电网技术,2015,39(7):1913-1920. Shen Xinwei,Zhu Shouzhen,Zheng Jinghong,et al.Active distribution network planning-operation co-optimization considering the coordination of ESS and DG[J].Power System Technology,2015,39(7):1913-1920(in Chinese).
[24] 任洛卿,白泽洋,于昌海,等.风光储联合发电系统有功控制策略研究及工程应用[J].电力系统自动化,2014,38(7):105-111. Ren Luoqing,Bai Zeyang,Yu Changhai,et al.Research on active power control strategy for wind/photovoltaic/energy storage hybrid power system and its engineering application[J].Automation of Electric Power Systems,2014,38(7):105-111(in Chinese).
[25] 李碧辉,申洪,汤涌,等.风光储联合发电系统储能容量对有功功率的影响及评价指标[J].电网技术,2011,35(4):123-128. Li Bihui,Shen Hong,Tang Yong,et al.Impacts of energy storage capacity configuration of HPWS to active power acteristics and its relevant indices[J].Power System Technology,2011,35(4):123-128(in Chinese).
[26] 刘泽槐,翟世涛,张勇军,等.基于扩展QV 节点潮流的光储联合日前计划[J].电网技术,2015,39(12):3435-3441. Liu Zehuai,Zhai Shitao,Zhang Yongjun,et al.A joint day-ahead scheduling for photovoltaic-storage systems based on extended QV bus-type power flow[J].Power System Technology,2015,39(12):3435-3441(in Chinese).
[27] Wei Q L,Shi G,Song R Z,et al.Adaptive dynamic programming-based optimal control scheme for energy storage systems with solar renewable energy[J].IEEE Transactions on Industrial Electronics,2017,64(7):5468-5478.
[28] 闫鹤鸣,李相俊,麻秀范,等.基于超短期风电预测功率的储能系统跟踪风电计划出力控制方法[J].电网技术,2015,39(2):432-439. Yan Heming,Li Xiangjun,Ma Xiufan,et al.Wind power output schedule tracking control method of energy storage system based on ultra-short term wind power prediction[J].Power System Technology,2015,39(2):432-439(in Chinese).
[29] 杨锡运,任杰,李相俊,等.储能系统平滑光伏电站功率波动的变参数斜率控制方法[J].电力系统自动化,2016,40(24):56-63. Yang Xiyun,Ren Jie,Li Xiangjun,et al.Slope control method with variable coefficients of battery energy storage system for smoothing photovoltaic power fluctuation[J].Automation of Electric Power Systems,2016,40(24):56-63(in Chinese).
[30] 高明杰,惠东,高宗和,等.国家风光储输示范工程介绍及其典型运行模式分析[J].电力系统自动化,2013,37(1):59-64. Gao Mingjie,Hui Dong,Gao Zonghe,et al.Presentation of national wind/photovoltaic/energy storage and transmission demonstration project and analysis of typical operation modes[J].Automation of Electric Power Systems,2013,37(1):59-64(in Chinese).
[31] 胡娟,杨水丽,侯朝勇,等.规模化储能技术典型示范应用的现状分析与启示[J].电网技术,2015,39(4):879-885. Hu Juan,Yang Shuili,Hou Zhaoyong,et al.Present condition analysis on typical demonstration application of large-scale energy storage technology and its enlightenment[J].Power System Technology,2015,39(4):879-885(in Chinese).
[32] Wu Z P,Gao D W,Zhang H G,et al.Coordinated control strategy of battery energy storage system and PMSG-WTG to enhance system frequency regulation capability[J].IEEE Transaction on Sustainable Energy,2017,8(3):1330-1343.
[33] 魏承志,陈晶,涂春鸣,等.基于储能装置与静止无功发生器协同控制策略的微网电压波动抑制方法[J].电网技术,2012,36(11):18-24. Wei Chengzhi,Chen Jing,Tu Chunming,et al.An approach to suppress voltage fluctuation in microgrid by cooperative control by energy storage device and static var generator[J].Power System Technology,2012,36(11):18-24(in Chinese).
[34] 徐明,李相俊,贾学翠,等.规模化电池储能系统的无功功率控制策略研究[J].可再生能源,2013(7):81-84. Xu Ming,Li Xiangjun,Jia Xuecui,et al.Research on reactive power control strategy for large-scale battery energy storage systems[J].Renewable Energy Resources,2013(7):81-84(in Chinese).
[35] Xie X,Guo Y,Wang B,et al.Improving AGC performance of coal-fueled thermal generators using multi-MW scale BESS: a practical application[J].IEEE Transactions on Smart Grid,2016,PP(99):1-1.
[36] 李建林,杨水丽,高凯.大规模储能系统辅助常规机组调频技术分析[J].电力建设,2015,36(5):105-110.Li Jianlin,Yang Shuili,Gao Kai.Frequency modulation technology for conventional units assisted by large scale energy storage system[J].Electric Power Construction,2015,36(5):105-110(in Chinese).
[37] 孙冰莹,杨水丽,刘宗歧,等.国内外兆瓦级储能调频示范应用现状分析与启示[J].电力系统自动化,2017,41(11):8-16,38. Sun Bingying,Yang Shuili,Liu Zongqi,et al.Analysis on present application of megawatt-scale energy storage in frequency regulation and its enlightenment[J].Automation of Electric Power Systems,2017,41(11):8-16,38(in Chinese).
[38] 陈大宇,张粒子,王澍,等.储能在美国调频市场中的发展及启示[J].电力系统自动化,2013,37(1):9-13.Chen Dayu,Zhang Lizi,Wang Shu,et al.Development of energy storage in frequency regulation market of United States and its enlightenment[J].Automation of Electric Power Systems,2013,37(1):9-13(in Chinese).
[39] 李欣然,黄际元,陈远扬,等.大规模储能电源参与电网调频研究综述[J].电力系统保护与控制,2016,44(7):145-153. Li Xinran,Huang Jiyuan,Chen Yuanyang,et al.Review on large-scale involvement of energy storage in power grid fast frequency regulation[J].Power System Protection and Control,2016,44(7):145-153(in Chinese).
[40] 黄际元,李欣然,曹一家,等.考虑储能参与快速调频动作时机与深度的容量配置方法[J].电工技术学报,2015,30(12):454-464. Huang Jiyuan,Li Xinran,Cao Yijia,et al.Capacity allocation of energy storage system considering its action moment and output depth in rapid frequency regulation[J].Transactions of China Electrotechnical Society,2015,30(12):454-464(in Chinese).
[41] Falabretti D,Moncecchi,Brivio,et al.IoT-oriented management of distributed energy storage for the primary frequency control[C]// 2017 IEEE International Conference on Environment and Electrical Engineering and 2017 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe).Milan:IEEE,2017:1-6.
[42] Lee S J,Kim J H,Kim C H,et al.Coordinated control algorithm for distributed battery energy storage systems for mitigating voltage and frequency deviations[J].IEEE Transactions on Smart Grid,7(3):1713-1722.
[43] 黄碧斌,李琼慧.储能支撑大规模分布式光伏接入的价值评估[J].电力自动化设备,2016,36(6):88-93.Huang Bibin,Li Qionghui.Evaluation of energy storage support for large scale distributed photovoltaic access[J].Electric Power Automation Equipment,2016,36(6):88-93(in Chinese).
[44] 梁亮,李建林,惠东.光伏-储能联合发电系统运行机理及控制策略[J].电力自动化设备,2011,31(8):20-23. Liang Liang,Li Jianlin,Hui Dong.Operating modes of photovoltaic/energy-storage hybrid system and its control strategy[J].Electric Power Automation Equipment,2011,31(8):20-23(in Chinese).
[45] Zuo Y H,Li X J.Game theory applied in system of renewable power generation with HVDC out-sending facilitated by hundred megawatts Battery Energy Storage Station[J].Computational Intelligence,2017(99):1-1.
[46] 王琦,易俊,刘丽平,等.基于直流侧储能的新型统一潮流控制器优化设计[J].中国电机工程学报,2015,35(17):4371-4378. Wang Qi,Yi Jun,Liu Liping,et al.Optimal design of a novel unified power flow controller incorporated with a battery energy storage system at DC side[J].Proceedings of the CSEE,2015,35(17):4371-4378(in Chinese)
[47] 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(in Chinese).
[48] 张步涵,曾杰,毛承雄,等.电池储能系统在改善并网风电场电能质量和稳定性中的应用[J].电网技术,2006,30(15):54-58. Zhang Buhan,Zeng Jie,Mao Chengxiong,et al.Improvement of power quality and stability of wind farms connected to power grid by battery energy storage system[J].Power System Technology,2006,30(15):54-58(in Chinese).
[49] 程时杰,文劲宇,孙海顺.储能技术及其在现代电力系统中的应用[J].电气应用,2005,24(4):1-8,19.Cheng Shijie,Wen Jinyu,Sun Haishun.Application of power energy storage techniques in the modern power system[J].Electrotechnical Application,2005,24(4):1-8,19(in Chinese).
[50] 赵静波,雷金勇,甘德强.电池储能装置在抑制电力系统低频振荡中的应用[J].电网技术,2008,32(6):93-99,108. Zhao Jingbo,Lei Jinyong,Gan Deqiang.Application of battery energy storage devices in suppressing low-frequency oscillation of power system[J].Power System Technology,2008,32(6):93-99,108(in Chinese).
[51] 袁敞,刘昌,赵天扬,等.基于储能物理约束的虚拟同步机运行边界研究[J].中国电机工程学报,2017,37(2):506-516. Yuan Chang,Liu Chang,Zhao Tianyang,et al.Research on operating boundary of virtual synonous machine based on physical constraint of energy storage system[J].Proceedings of the CSEE,2017,37(2):506-516(in Chinese).
[52] 陶琼,桑丙玉,叶季蕾,等.高光伏渗透率配电网中分布式储能系统的优化配置方法[J].高电压技术,2016,42(7):2158-2165. Tao Qiong,Sang Bingyu,Ye Jilei,et al.Optimal configuration method of distributed energy storage systems in distribution network with high penetration of photovoltaic[J].High Voltage Engineering,2016,42(7):2158-2165(in Chinese).
[53] 杨玉青,牛利勇,田立亭,等.考虑负荷优化控制的区域配电网储能配置[J].电网技术,2015,39(4):1019-1025. Yang Yuqing,Niu Liyong,Tian Liting,et al.Configuration of energy storage devices in regional distribution network considering optimal load control[J].Power System Technology,2015,39(4):1019-1025(in Chinese).
[54] 吴鸣,崔光鲁,季宇,等.配电网中分布式储能系统一致性主动控制[J].电力建设,2015,36(6):20-26. WuMing,Cui Guanglu,Ji Yu,et al.Consistent and active control for distributed energy storage system in distribution network[J].Electric Power Construction,2015,36(6):20-26(in Chinese).
[55] 林少伯,韩民晓,赵国鹏,等.基于随机预测误差的分布式光伏配网储能系统容量配置方法[J].中国电机工程学报,2013,33(4):25-33,5. Lin Shaobo,Han Minxiao,Zhao Guopeng,et al.Capacity allocation of energy storage in distributed photovoltaic power system based on stochastic prediction error[J].Proceedings of the CSEE,2013,33(4):25-33,5(in Chinese).
[56] 慈松. 能量信息化和互联网化管控技术及其在分布式电池储能系统中的应用[J].中国电机工程学报,2015,35(14):3643-3648. Ci Song.Energy informatization and internet-based management and its applications in distributed energy storage system[J].Proceedings of the CSEE,2015,35(14):3643-3648(in Chinese).
[57] Bahramipanah M,Torregrossa D,Cherkaoui R,et al.A decentralized adaptive model-based real-time control for active distribution networks using battery energy storage systems[J].IEEE Transactions on Smart Grid,2016,PP(99):1-1.
[58] 李霞林,郭力,王成山,等.直流微电网关键技术研究综述[J].中国电机工程学报,2016,36(1):2-16. LiXialin,Guo Li,Wang Chengshan,et al.Key technologies of DC microgrids: an overview[J].Proceedings of the CSEE,2016,36(1):2-16(in Chinese).
[59] 马骏超,江全元,余鹏,等.直流配电网能量优化控制技术综述[J].电力系统自动化,2013,37(24):89-96.Ma Junchao,Jiang Quanyuan,Yu Peng,et al.Survey on energy optimized control technology in DC distribution network[J].Automation of Electric Power Systems,2013,37(24):89-96(in Chinese).
[60] 贺悝,李勇,曹一家,等.考虑分布式储能参与的直流配电网电压柔性控制策略[J].电工技术学报,2017,32(10):101-110. He Li,Li Yong,Cao Yijia,et al.Flexible voltage control strategy of dc distribution network considering distributed energy storage[J].Transactions of China Electrotechnical Society,2017,32(10):101-110(in Chinese).
[61] 孟润泉,刘家赢,文波,等.直流微网混合储能控制及系统分层协调控制策略[J].高电压技术,2015,41(7):2186-2193. Meng Runquan,Liu Jiaying,Wen Bo,et al.Hybrid energy storage control and system hierarchical coordinated control strategy for DC microgrids[J].High Voltage Engineering,2015,41(7):2186-2193(in Chinese).
[62] 陆晓楠,孙凯,黄立培,等.直流微电网储能系统中带有母线电压跌落补偿功能的负荷功率动态分配方法[J].中国电机工程学报,2013,33(16):37-46. Lu Xiaonan,Sun Kai,Huang Lipei,et al.Dynamic load power sharing method with elimination of bus voltage deviation for energy storage systems in DC micro-grids[J].Proceedings of the CSEE,2013,33(16):37-46(in Chinese).
[63] 尤毅,刘东,于文鹏,等.主动配电网技术及其进展[J].电力系统自动化,2012,36(18):10-16. You Yi,LiuDong,Yu Wenpeng,et al.Technology and its trends of active distribution network[J].Automation of Electric Power Systems,2012,36(18):10-16(in Chinese).
[64] 蒲天骄,陈乃仕,王晓辉,等.主动配电网多源协同优化调度架构分析及应用设计[J].电力系统自动化,2016,40(1):17-23. Pu Tianjiao,Chen Naishi,Wang Xiaohui,et al.Application and architecture of multi-source coordinated optimal dispatch for active distribution network[J].Automation of Electric Power Systems,2016,40(1):17-23(in Chinese).
[65] 沙熠,邱晓燕,宁雪姣,等.协调储能与柔性负荷的主动配电网多目标优化调度[J].电网技术,2016,40(5):1394-1399. Sha Yi,Qiu Xiaoyan,Ning Xuejiao,et al.Multi-objective optimization of active distribution network by coordinating energy storage system and flexible load[J].Power System Technology,2016,40(5):1394-1399(in Chinese).
[66] 朱泽锋,赵晋泉,魏文辉,等.主动配电网中电池储能系统最优充放电策略[J].电力系统自动化,2016,40(20):47-53. Zhu Zefeng,Zhao Jinquan,Wei Wenhui,et al.Optimal ging and disging scheme of battery energy storage system in active distribution network[J].Automation of Electric Power Systems,2016,40(20):47-53(in Chinese).
[67] 沈欣炜,朱守真,郑竞宏,等.考虑分布式电源及储能配合的主动配电网规划-运行联合优化[J].电网技术,2015,39(7):1913-1920. Shen Xinwei,Zhu Shouzhen,Zheng Jinghong,et al.Active distribution network planning-operation co-optimization considering the coordination of ESS and DG[J].Power System Technology,2015,39(7):1913-1920(in Chinese).
[68] 刘坚,胡泽春.电动汽车作为电力系统储能应用潜力研究[J].中国能源,2013(7):32-37. Liu Jian,HuZechun.The research of electric car as a potential application of power system with energy storage[J].Energy of China,2013(7):32-37(in Chinese).
[69] 杨永标,丁孝华,朱金大,等.物联网应用于电动汽车充电设施的设想[J].电力系统自动化,2010,34(2):95-98. Yang Yongbiao,Ding Xiaohua,Zhu Jinda,et al.Assumption of internet of things applied in electric vehicle ging facilities[J].Automation of Electric Power Systems,2010,34(2):95-98(in Chinese).
[70] 苗轶群,江全元,曹一家.基于微电网的电动汽车换电站运营策略[J].电力系统自动化,2012,36(15):33-38. Miao Yiqun,Jiang Quanyuan,Cao Yijia.Operation strategy for battery swap station of electric vehicles based on micro grid[J].Automation of Electric Power Systems,2012,36(15):33-38(in Chinese).
[71] 胡泽春,宋永华,徐智威,等.电动汽车接入电网的影响与利用[J].中国电机工程学报,2012,32(4):1-10,25. Hu Zechun,Song Yonghua,Xu Zhiwei,et al.Impacts and utilization of electric vehicles integration into power systems[J].Proceedings of the CSEE,2012,32(4):1-10,25(in Chinese).
[72] 贾龙,胡泽春,宋永华,等.储能和电动汽车充电站与配电网的联合规划研究[J].中国电机工程学报,2017,37(1):73-84. Jia Long,Hu Zechun,Song Yonghua,et al.Joint planning of distribution networks with distributed energy storage systems and electric vehicle ging stations[J].Proceedings of the CSEE,2017,37(1):73-84(in Chinese).
[73] 鲍谚,姜久春,张维戈,等.电动汽车移动储能系统模型及控制策略研究[J].电力系统自动化,2012,36(22):36-43. Bao Yan,Jiang Jiuchun,Zhang Weige,et al.Model and control strategy of electric vehicle mobile energy storage system[J].Automation of Electric Power Systems,2012,36(22):36-43(in Chinese).
[74] 李志伟,赵书强,刘应梅.电动汽车分布式储能控制策略及应用[J].电网技术,2016,40(2):442-450. LiZhiwei,Zhao Shuqiang,Liu Yingmei.Control strategy and application of distributed electric vehicle energy storage[J].Power System Technology,2016,40(2):442-450(in Chinese).
[75] 林飞武,吴文宣,蔡金锭,等.移动式储能装置在季节性负荷侧的应用研究[J].电力与电工,2013,33(1):1-4. Lin Feiwu,Wu Wenxuan,Cai Jinding,et al.Study for application of movable energy storage device for seasonal load[J].Electric Power & Electrical Engineering,2013,33(1):1-4( in Chinese).
[76] 范元亮,黄桂兰,陈彬,等.移动式电池储能直流融冰装置的功率与容量的优化选取[J].电气应用,2017(1):42-48. Fan Yuanliang,Huang Guilan,Chen Bin,et al.Optimization of power and capacity of mobile battery energy saving DC ice melting device[J].Electrotechnical Application,2017(1):42-48(in Chinese).
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可再生能源开发商EnergyAustralia公司在2月28日确认,在融资结束几天后,该公司已经开工建设350MW/1400MWh的Wooreen电池储能系统。EnergyAustralia公司在2月20日完成了Wooreen电池储能系统融资该项目部署在维多利亚州拉特罗布山谷。旨在部分取代EnergyAustralia公司计划于2028年中退役的1450MWYalourn
据外媒报道,日前,总部位于瑞典的锂离子电池制造商Northvolt公司宣布,该公司已经对外出售了其旗下的工业部门,其中包含在波兰运营的一座电池储能系统生产工厂,此举是在该公司实施其剥离非核心资产战略的一部分。Northvolt公司已与一家行业领先的工业集团(未透露名称)的买家为此签署了一项出售与收
日前,埃及政府与总部位于迪拜的可再生能源开发商AMEAPower公司签署了部署两个大型电池储能项目的容量采购协议(CPA),这两个电池储能系统是埃及部署的首批此类项目。埃及电力与可再生能源部长MahmoudEsmat博士(中)出席容量采购协议签署仪式AMEAPower公司在2月25日宣布,该公司已经为总容量为1500MW
日前,可再生能源开发商和运营商ApexCleanEnergy公司宣布,该公司已经开通运营在美国德克萨斯州伊达尔戈县部署的100MW/200MWhGreatKiskadee电池储能系统。该项目最初预计于2024年第三季度投入商业运营,并获得了FirstCitizens银行提供的融资,该银行还为ApexCleanEnergy公司在德克萨斯州汤姆格林县部署
据外媒报道,日前,储能系统开发商LionStorage公司表示,该公司已经成完成了计划在荷兰开发部署的1.4GWh电池储能系统融资。Dentons律师事务所为包括荷兰银行、荷兰合作银行、荷兰国际集团银行、Triodos银行、桑坦德银行和ASR在内的六家银行组成的财团提供咨询服务,计划为LionStorage公司部署的电池储
据外媒报道,日前,德国公用事业厂商莱茵集团(RWE)在北莱茵-威斯特伐利亚州的哈姆(Hamm)开通运营了一个230MW/235MWh电池储能系统。该项目采用690块锂离子电池构建,整体开发成本约为1.4亿欧元(1.46亿美元)。值得一提的是,此次开通这个电池储能系统意味着莱茵集团在全球部署了约1.2GW储能系统,
据外媒报道,澳大利亚国有电力基础设施开发商EssentialEnergy公司已经在澳大利亚新南威尔士州的MaloneysBeach、Leeton和Goulburn三个城镇开通运营了三个社区电池储能系统,这三个电池储能系统的规模均为192kW/530kWh。这些社区电池储能系统是EssentialEnergy公司根据澳大利亚联邦政府的家庭太阳能社区
储能系统从早期的集中式发展到今天的组串式,解决了木桶效应,从直流舱拓展到交直流一体,减少了直流侧多级转换的效率损失问题。储能系统架构、集成技术的每一次革新,本质上是通过模块化解耦、功能融合、智能协同等解决传统架构的效率与安全矛盾。然而,随着大容量电芯的不断涌现,传统20尺集装箱如何
日前,行业专家指出,尽管2024年提交的规划部署储能系统规模同比下降了12%,但人们对英国储能市场仍具有浓厚兴趣,其未来市场增长仍然强劲。英国市场中的大多数储能项目仍处于早期阶段:它们或者由开发商对外宣布,或者已经提交规划申请。这其中包括156GWh独立部署电池储能系统,平均储能容量为254MWh
据外媒报道,电池储能系统开发商AkayshaEnergy与大宗商品贸易公司Guvnor集团签署了一项长期电力采购协议,将采购其在澳大利亚昆士兰州部署的205MW/410MWhBrendale电池储能项目电力。2月21日,双方确认这一风险对冲的电力采购协议是一种收益互换协议,与开发商EkuEnergy公司在澳大利亚首都特区部署500MW
目前,德国和英国是欧洲“最热门”的电池储能市场,但欧洲其他国家也提供了令人兴奋的机会。这是2025年欧盟储能峰会中的小组讨论对于“大辩论:最热门的欧洲存储市场在哪里?”话题中得出一个关键结论。会议主持人、WoodMackenzie公司欧洲、中东和非洲地区储能市场首席分析师AnnaDarmani表示,在过去的
作者:张文婧肖伟伊亚辉钱利勤单位:长江大学机械工程学院引用:张文婧,肖伟,伊亚辉,等.锂离子电池安全改性策略研究进展[J].储能科学与技术,2025,14(1):104-123.DOI:10.19799/j.cnki.2095-4239.2024.0579本文亮点:1.根据锂离子电池热失控机制,总结了在电池部件集流体上最具有创新性的改进方法:将集
可再生能源开发商EnergyAustralia公司在2月28日确认,在融资结束几天后,该公司已经开工建设350MW/1400MWh的Wooreen电池储能系统。EnergyAustralia公司在2月20日完成了Wooreen电池储能系统融资该项目部署在维多利亚州拉特罗布山谷。旨在部分取代EnergyAustralia公司计划于2028年中退役的1450MWYalourn
北极星储能网获悉,3月10日,中国石油集团济柴动力有限公司再开启5MWh液冷电池系统框架协议采购,招标范围为总容量200MWh液冷电池系统,包含储能系统电气分部件及电气汇流系统预制舱。储能系统电气分部件包括:磷酸铁锂电池、电池模块、电池管理系统、高压盒、内部电缆及附件;电池采用不低于314Ah的磷
据外媒报道,日前,总部位于瑞典的锂离子电池制造商Northvolt公司宣布,该公司已经对外出售了其旗下的工业部门,其中包含在波兰运营的一座电池储能系统生产工厂,此举是在该公司实施其剥离非核心资产战略的一部分。Northvolt公司已与一家行业领先的工业集团(未透露名称)的买家为此签署了一项出售与收
北极星储能网获悉,3月10日,北京华夏佳业新能源有限公司与浙江湖钠能源有限责任公司在北京成功签署1GWH储能系统战略合作协议。双方就江阴徐霞客镇、南京高淳、镇江鑫华等多个储能电站达成合作,具体采购量将通过后续采购合同确定,以上项目预计均将于6月30日并网运营。值得关注的是,本次签约的1GWH储
北极星储能网讯:3月5日,工信部公开征集对318项行业标准计划项目的意见,其中包括《通信基站共享式储能系统》与《船舶建造企业三元锂电池储能系统安装和调试安全要求》两项标准。《通信基站共享式储能系统》由信息通信发展司主管,中国通信标准化协会归口,主要起草单位有中国铁塔股份有限公司,中国
北极星储能网讯:据韩国全罗南消防局3月9日消息,当天下午2点07分,接到报告称,位于康津洞的光伏储能设施发生火灾。消防部门启动了第一阶段的响应,动员了18辆消防车和43名人员灭火。主要火势已得到控制,其余火势正在被扑灭。一名消防员因肩部和背部烧伤被送往医院,无生命危险。经确定,500多平方米
今年,是全国人大代表,天能控股集团党委书记、董事长,长兴县煤山镇新川村党委书记张天任连续第13年参加全国两会。履职13年来,张天任注重联系群众,广泛收集民智民意,为国家高质量发展建言献策。他围绕生态文明建设、经济高质量发展、乡村振兴和共同富裕等,已累计向全国人大提交议案建议300余篇,
日前,可再生能源开发商和运营商ApexCleanEnergy公司宣布,该公司已经开通运营在美国德克萨斯州伊达尔戈县部署的100MW/200MWhGreatKiskadee电池储能系统。该项目最初预计于2024年第三季度投入商业运营,并获得了FirstCitizens银行提供的融资,该银行还为ApexCleanEnergy公司在德克萨斯州汤姆格林县部署
据外媒报道,日前,储能系统开发商LionStorage公司表示,该公司已经成完成了计划在荷兰开发部署的1.4GWh电池储能系统融资。Dentons律师事务所为包括荷兰银行、荷兰合作银行、荷兰国际集团银行、Triodos银行、桑坦德银行和ASR在内的六家银行组成的财团提供咨询服务,计划为LionStorage公司部署的电池储
北极星储能网获悉,3月5日,工业和信息化部科技司公开征集对《碱性锌-二氧化锰电池工厂智能化技术导则》等318项行业标准计划项目的意见,其中包括《通信基站共享式储能系统》与《船舶建造企业三元锂电池储能系统安装和调试安全要求》两项标准。《通信基站共享式储能系统》由信息通信发展司主管,中国通
北极星储能网获悉,2月18日,银川市人民政府办公室印发《2025年银川市重点建设项目投资计划》。其中包括宝丰电池及储能集装系统示范项目、吉洋绿储200MW/400MWh共享储能电站项目等7个储能相关项目,共计超1.2GWh,有3个新建项目,其余为续建项目。储能相关项目见下表:
2月23日,河北邢台300MW/1200MWh独立共享储能电站开工。该项目为河北省重点项目,河北邢台300MW/1200MWh独立共享储能电站采用大容量、长寿命、高安全、强效能的磷酸铁锂电池储能集成系统,结合先进的储能技术与数智化运营管理平台,充分发挥储能在电力系统中的关键作用,实现电力智能高效调度,显著提
日前,在第二届中国全固态电池创新发展高峰论坛上,全国政协常委、经济委员会副主任苗圩曾表示,“尽管固态电池产业化仍需解决技术、工艺和成本的问题。但从当前全球研发进展来看,随着量产技术工艺逐渐成熟,2027年前后全固态电池将实现小批量生产”。固态电池企业急需产学研协同创新发展,推动技术突
北极星储能网获悉,2月20日,振华股份在投资者互动平台上回答投资者有关公司铁铬流液储能示范站建设情况。振华股份回答,公司于湖北工厂自建的铁-铬液流储能电站一期装置已于本月投入运行。一期配置功率250Kw,容量1Mwh,二期拟完成1Mw/4Mwh规模。电站所需电解液由公司自主研发,双极板、交换膜等电堆
当地时间2月14日,马来西亚砂拉越州总理拿督阿邦佐哈里(DatukPatinggiTanSriAbangJohariTunOpeng)率政府代表团,专程视察由中国能建中电工程江苏院总承包建设的赛京卡特60兆瓦/82兆瓦时电池储能电站,高度评价该项目在砂拉越能源转型中所发挥的示范作用。作为马来西亚首个公用事业级储能项目,赛京卡
2月16日,上海宝龙安庆药业有限公司1MW/2.33MWh储能电站项目在安徽省安庆市正式开工建设,该项目由安徽汉星能源有限公司承建。此项目预计将建设一套1MW/2.33MWh的锂电池储能系统,设备采用10台汉星能源自主研发并生产100kW/233kWh工商业储能液冷一体机标准化产品。该储能系统拟采用两充两放模式。在实
从手机、电车到储能电站,锂电池在人们生活中无处不在。但由于在使用过程中不断损失锂离子最长寿命都只有6-8年,复旦大学高分子科学系彭慧胜/高悦团队打破锂电池传统设计原则,通过AI和有机电化学的结合,成功设计了一种锂载体分子。让废旧电池“打一针”就可无损修复将锂电池寿命提升1-2个数量级为电
2月12日,平顶山尼龙城热电有限公司启动中国尼龙城源网荷储-储能项目100MW(400MWh)全钒液流电池储能施工、设备采购及监理项目招标,项目占地约40.99亩,新建尼龙城储能电站1座:直流侧装机规模100MW/400MWh,电池采用全钒液流电池,预制舱布置;储能电站新建35kV开关站1座,设置四段35kV母线,35kV并
近日,国家能源局公布2024年度能源行业十大科技创新成果,广西电网公司牵头完成的“大容量钠离子电池储能系统”入选,是南方电网公司唯一入选成果。该项成果突破了大容量钠离子电池储能技术和工艺难题,在核心材料体系、高性能电芯、系统集成、安全防控等方面具有完全自主知识产权,储能系统能量转化效
日前,衡水春晟新能源200MW/800MWh独立储能电站项目并网成功。作为全国单体最大的组串式储能电站,该项目并网投运后,将通过储能设备削峰填谷,提升区域电网内的风电、光伏等新能源电能消纳能力,助力区域经济绿色低碳发展。项目地处河北衡水武邑县,土壤条件复杂施工建设难度大,对储能系统的系统适应
北极星储能网获悉,1月23日,广东省应急管理厅发布《电化学储能电站安全管控技术规范》(送审稿)。此前,广东省应急管理厅曾公开征求相关意见,(详情参见明确储能管控技术!广东《电化学储能电站安全管控技术规范》征意见),此次送审稿相较征求意见稿在应急预案与运行监控方面均有新增。应急预案中
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