[1] 戴兴建, 邓占峰, 刘刚, 等. 大容量先进飞轮储能电源技术发展状况[J]. 电工技术学报, 2011, 26(7):133-140. DAI Xingjian, DENG Zhanfeng, LIU Gang, et al. Review on advanced flywheel energy storage system with large scale[J]. Transactions of China Electrotechnical Society, 2011, 26(7):133-140.
[2] 戴兴建, 张小章, 姜新建, 等. 清华大学飞轮储能技术研究概况[J]. 储能科学与技术, 2012, 1(1):64-68. DAI Xingjian, ZHANG Xiaozhang, JIANG Xinjian, et al. Flywheel energy storage technology in Tsinghua University[J]. Energy Storage Science and Technology, 2012, 1(1):64-68.
[3] 陈亚爱, 甘时霖, 周京华, 等. 飞轮储能技术[J]. 电源技术, 2016, 40(8):1718-1721. CHEN Ya'ai, GAN Shilin, ZHOU Jinghua. Energy storage technology of flywheel[J]. Power Technology, 2016, 40(8):1718-1721.
[4] 薛小川, 王志强. 磁悬浮储能飞轮振动状态研究[J]. 自动化仪表, 2017, 38(7):89-94. XUE Xiaochuan, WANG Zhiqiang. Study on the vibration condition monitoring for magnetic levitation energy storage flywheel[J]. Process Automation Instrumentation, 2017, 38(7):89-94.
[5] 李树胜, 刘平, 付永领, 等. 磁悬浮储能飞轮永磁同步电机干扰特性分析及监测方法研究[J]. 储能科学与技术, 2018:doi:10.12028/j.issn.2095-4239.2017.0157. LI Shusheng, LIU Ping, FU Yongling, et al. Research on disturbance analysis and detection method for the magnetically suspended flywheel-based PMSM system[J]. Energy Storage Science and Technology, 2018:doi:10.12028/j.issn.2095-4239.2017.0157.
[6] 张超平, 戴兴建, 苏安平, 等. 石油钻机动力系统飞轮储能调峰试验研究[J]. 石油机械, 2013, 41(5):3-6. ZHANG Chaoping, DAI Xingjian, SU Anping, et al. Experimental study of flywheel energy storage and peak regulation of rig power system[J]. China Peroleum Machinery, 2013, 41(5):3-6.
[7] 魏鲲鹏, 汪勇, 戴兴建. 飞轮储能系统在风力发电中应用研究进展[J]. 储能科学与技术, 2015, 4(2):141-146. WEI Kunpeng, WANG Yong, DAI Xingjian. Review of flywheel energy storage system for wind power applications[J]. Energy Storage Science and Technology, 2015, 4(2):141-146.
[8] 毕文俊. 基于飞轮储能的地铁再生制动能量利用研究[D]. 成都:西南交通大学, 2016. BI Wenjun. The study of subway braking energy utilization based on flywheel energy storage[D]. Chengdu:Southwest Jiaotong University, 2016.
[9] TOMMASO A, ADA F, MARCO M, et al. Distribute UPS control systems reliability analysis[J]. Measurement, 2017, 110:275-283.
[10] 于玮, 徐德鸿, 周朝阳. 并联UPS系统均流控制[J]. 中国电机工程学报, 2008, 28(21):63-67. YU wei, XU Dehong, ZHOU Chaoyang. Control strategy of paralleled UPS system[J]. Proceedings of the CSEE, 2008, 28(21):63-67.
[11] 韩峰, 王代华. 分布式UPS蓄电池远程监测系统[J]. 现代电子技术, 2018, 41(8):163-168. HAN Feng, WANG Daihua. Distribute remote online monitoring for UPS battery[J]. Modern Electrical Technology, 2018, 41(8):163-168.
[12] 刘海. 德国PILLER动态UPS简介[J]. 军民两用技术与应用, 2004(6):7-8. LIU Hai. Introduction of Germany PILLER dynamic UPS[J]. Aerospace Technology and Civilian Products, 2004(6):7-8.
[13] 李树胜, 付永领, 刘平, 等. 磁悬浮飞轮储能UPS系统集成应用及充放电控制方法研究[J]. 中国电机工程学报, 2017, 37(1):170-176. LI Shusheng, FU Yongling, LIU ping, et al. Research on integrated application and charging-discharging control method for the magnetically suspended flywheel storage-based UPS system[J]. Proceedings of the CSEE, 2017, 37(1):170-176.
[14] WANG Gengji, WANG Ping. Rotor loss analysis of PMSM in flywheel energy storage system as uninterruptable power supply[J]. IEEE Transactions on Applied Superconductivity, 2017, 26(7):1-7.
[15] LI Shusheng, FU Yongling, LIU Ping. Research on problem of the transient charging-discharging switching for the magnetically suspended flywheel-based PMSM system[J]. Sensors, 2018, 18(8):1-17. |