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[1]李靖祎.基于FPGA的空载变压器相控合闸系统设计[J],电气应用,2022,08:30-33+40
[2]段雄英.基于IPM的永磁机构同步控制器设计[A],第一届电器装备及其智能化学术会议,2022,374-382
[3]段雄英.基于IPM的永磁机构同步控制器设计[J],低压电器,2022,7:16-19,49
[4]廖敏夫.基于JPCG算法的真空灭弧室三维电场有限元计算[J],中国电机工程学报,2022,4:108-111
[5]段雄英.基于Hadoop平台的特高压断路器动作时间预测研究[J],高压电器,2022
[6]段雄英.基于ARM的GOOSE通信系统研究[J],电力系统保护与控制,2022,14:130-135
[7]段雄英.基于Spark的高压断路器机械寿命预测评估[J],高压电器,2022,56(9):80-86
[8]刘斌.基于MC68332的同步断路器控制器的设计[J],高压电器,2022,42(6):404-406,409
[9]寇海洋.基于STM32F407的时钟同步系统的实现[J],计算机测量与控制,2022,8:2759-2761
[10]段雄英.基于OPNET的GOOSE双网性能分析[J],黑龙江电力技术,2022,3:198-201
[11]邱红辉.基于LPCT的激光供能电子式电流互感器[J],电工技术学报,2022,4:66-72
[12]黄智宇.基于VLAN技术的电子式互感器数字接口[J],电工技术学报,2022,3:36-40
[13]黄智宇.基于VLAN技术的电子式互感器数字通讯的研究[J],高压电器,2022,41(3):202-205,208
[14]段雄英.基于全响应算法的故障电流相控开断研究[J],高电压技术,2022,8:2264-2270
[15]程显.基于光控真空断路器模块串联的126kV三断口真空断路器设计与试验[J],高电压技术,2022,9:3110-3116
[16]王永兴.基于图像处理技术的真空电弧参数化研究[J],真空科学与技术学报,2022,39(10):864-869
[17]刘涛.基于合闸电阻的变压器励磁涌流相控技术研究[J],高压电器,2022,54(3):109-114
[18]丁富华.基于同步真空断路器的智能无功补偿装置[J],中国电机工程学报,2022,6:30-35
[19]段雄英.基于多元线性回归法的相控开关操作时间的补偿与预测[J],电力自动化设备,2022,7:72-75
[20]邱红辉.基于数据融合的组合结构电子式电流互感器设计[J],电网技术,2022,15:14-20
[21]王永兴,黄智慧,段雄英,邹积岩,刘芮彤,李岚松.基于图像处理技术的真空电弧参数化研究[J],真空科学与技术学报,2019,39(10):864-869
[22]Qian, Xiaohua,Duan, Xiongying,Zou, Jiyan.Effects of different tool microstructures on the precision turning of titanium alloy TC21[J],INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY,2020,106(11-12):5519-5526
[23]Cheng, Xian,Ge, Guowei,Liao, Minfu,Duan, Xiongying,Huang, Zhihui.Research on the Vacuum Arc Commutating Characteristic of Resistive Fault Current Limiters[J],HIGH TEMPERATURE,2019,57(5):628-635
[24]Zhang, Fan,Liu, Zhiheng,Zou, Jiyan,Duan, Xiongying,Liao, Minfu.Statistical analysis of switching overvoltages in UHV transmission lines with a controlled swit...[J],IET GENERATION TRANSMISSION & DISTRIBUTION,2019,13(21):4998-5004
[25]段雄英,张帆,廖敏夫,邹积岩.特高压相控断路器关合性能研究[J],中国电机工程学报,2019,39(17):5271-5278+5308
[26]He, Weiliang,Duan, Xiongying,Liao, Minfu,Zhang, Jie,Jiang, Yi,Su, Dan.Triggered Characteristics of LTVS with Different Mixed Target Materials[A],2018,2:515-518
[27]Liao, Minfu,Chen, Zhanqing,Duan, Xiongying,Zou, Jiyan,Zhao, Tong,Liu, Xu.Time-Delay Characteristics of Laser Triggered Multi-Stage Vacuum Switch[A],2018,2:511-514
[28]Li, Ruifeng,Liu, Hongzheng,Liao, Minfu,Jing, Yugang,Duan, Xiongying,Li, Kuan.Investigation on Transformer Inrush Current Switched by Controlled Vacuum Circuit Breaker[A],2018,2:563-566
[29]Chen, Zhanqing,Duan, Xiongying,Liao, Minfu,Zou, Jiyan,Fan, Zhongxian,Zhao, Tong.Influences of Target Configurations on the Working Performances of Laser Triggered Vacuum Switc...[A],2018,2:507-510
[30]Liu, Xu,Liao, Minfu,Chen, Zhanqing,Duan, Xiongying,Zou, Jiyan,Zhao, Tong.Study on High Frequency Breaking Characteristics of Laser Triggered Vacuum Switch[A],2018,2:519-522
[31]Wang, Dequan,Liao, Minfu,Leng, Tong,Duan, Xiongying,Zou, Jiyan,Zhang, Hao.Research on Even Flow of IGBT Modules for DC Micro-Grid Hybrid Circuit Breakers[A],2018,1:243-246
[32]Ge, Guowei,Cheng, Xian,Liao, Minfu,Duan, Xiongying,Zou, Jiyan.A Review of the Synergy Effect in Multibreak VCBs[J],IEEE TRANSACTIONS ON PLASMA SCIENCE,2019,47(1):671-679
[33]张帆,段雄英,吕洋,刘芮彤,杨滢璇.选相投切对特高压变压器操作冲击绝缘的影响分析[J],电力自动化设备,2018,38(11):204-210
[34]廖敏夫,张晓莉,邢小羽,赵洋洋,段雄英,邹积岩.特高压直流接地极入地电流对金属管道腐蚀研究现状与发展趋势[J],高压电器,2018,07:44-52
[35]Ge, Guowei,Cheng, Xian,Liao, Minfu,Duan, Xiongying,Zou, Jiyan.Vacuum Arcs and Postarc Characteristic of Vacuum Interrupters With External AMF at Current Zero[J],IEEE TRANSACTIONS ON PLASMA SCIENCE,2018,46(4):1003-1009
[36]Liu, Zhiheng,Duan, Xiongying,Liao, Minfu,Ge, Guowei,Zou, Jiyan.A model-based measurement method for intelligent circuit breaker with data communication[J],TRANSACTIONS OF THE INSTITUTE OF MEASUREMENT AND CONTROL,2018,40(6):1854-1862
[37]张帆,段雄英,吕洋,黄荣辉,向真.选相投切特高压线路及对其操作冲击绝缘的影响[J],电工技术学报,2018,33(5):1151-1157
[38]李锐峰,刘洪真,廖敏夫,荆玉刚,段雄英,李宽.Investigation on Transformer Inrush Current Switched[A],2018,563-566
[39]刘涛,颜廷武,卜新良,段雄英,廖敏夫.基于合闸电阻的变压器励磁涌流相控技术研究[J],高压电器,2018,54(3):109-114
[40]Liao, Minfu,Huang, Jinqiang,Ge, Guowei,Duan, Xiongying,Huang, Zhihui,Zou, Jiyan.Vacuum Arc Commutation Characteristics of the DC Microgrid Hybrid Circuit Breakers[J],IEEE TRANSACTIONS ON PLASMA SCIENCE,2017,45(8,SI):2172-2178