个人简介
唐超,四川自贡人,博士,教授。重庆市电机工程学会青年理事,重庆市石油与天然气学会理事、专家库专家,重庆市机器人学会会员,IEEE CEIDP国际会议Session Chair及Technical Program Committee成员,工程技术学院电气工程系系主任,电气工程及其自动化本科专业负责人,重庆市江北区高层次创业创新人才。分别于2004、2007、2010年在重庆大学电气工程学院取得电气工程专业学士、硕士、博士学位。英国南安普顿大学联合培养博士(2008-2009)、访问学者(2013,2015-2016)。
获奖情况:
2013年获得西南大学首届青年教师成才奖(自然科学类五人)
2017年获得西南大学第三届教育教学成果奖一等奖(排名第二)
2017年获得重庆市第五届高等学校教育教学成果奖三等奖(排名第三)
获2010年度中国石油和化工自动化行业科学技术奖三等奖(排名第一)
获重庆市电机工程学会2015年度“先进个人”
2016年度“杰出青年工程师”称号
研究领域
主要研究方向:
(1)电气设备在线监测、故障诊断及状态评价技术;
(2)电介质材料改性、建模仿真技术;
(3)智能电网(配网)及电力新技术。
近期论文
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[1] Tang C, Zhang S, Li X, et al. Experimental analyses and molecular simulation of the thermal aging of transformer insulation paper[J]. IEEE Transactions on Dielectrics & Electrical Insulation, 2015, 22(6):3608-3616. (SCI二区,IF=1.306)
[2] Hao J, Tang C, Fu J, et al. Influence of oil aging on the space charge dynamics of oil-immersed paper insulation under a DC electric field[J]. IEEJ Transactions on Electrical and Electronic Engineering, 2015, 10(1): 1-11. (SCI四区,IF=0.261)
[3] Tang C, Huang B, Hao M, et al. Progress of Space Charge Research on Oil-Paper Insulation Using Pulsed Electroacoustic Techniques[J]. Energies, 2016, 9(1):53. (SCI三区,IF=2.262,invited featured article)
[4] Tang C, Zhang S, Li X, et al. Molecular dynamics simulations of the effect of shape and size of SiO2 nanoparticle dopants on insulation paper cellulose[J]. AIP Advances, 2016, 6(12):125106. (SCI三区,IF=1.444)
[5] Zhang S, Tang C, Xie J, et al. Improvement of thermal stability of insulation paper cellulose by modified polysiloxane grafting[J]. Applied Physics Letters, 2016, 109(17):1565. (SCI二区,IF=3.142)
[6] Xie J, Tang C, Li X, et al. Force Field Properties in Molecular Dynamics Simulation of Amorphous Region in Cellulose Insulation Material [J]. OXIDATION COMMUNICATIONS, 2016, 39(1 A): 1236-1246. (SCI四区,IF=0.489)
[7] Tang C, Zhang S, Wang Q, et al. Thermal Stability of Modified Insulation Paper Cellulose Based on Molecular Dynamics Simulation[J]. Energies, 2017, 10(3). (SCI三区,IF=2.262)
[8] Tang C, Zhang S, Xie J Y, et al. Molecular Simulation and Experimental Analysis of Al2O3-Nanoparticle-Modified Insulation Paper Cellulose[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2017, 24(2): 1018-1026. (SCI四区,IF=2.115)
[9] Tang C, Li X, Yin F, et al. The Performance Improvement of Aramid Insulation Paper by Nano-SiO2 Modification[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2017, 24(4): 2400-2409. (SCI四区,IF=2.115)
[10] Chao Tang, Xu Li, Zhiwei Li and Jian HaoInterfacial Hydrogen Bonds and Their Influence Mechanism on Increasing the Thermal Stability of Nano-SiO2-Modified Meta-Aramid Fibres[J]. Polymers. 2017, 9(10), 504. (SCI二区,IF=3.364)
[11] Tang, C; Zhang, S; Wang, XB; Hao, J. Enhanced mechanical properties and thermal stability of cellulose insulation paper achieved by doping with melamine-grafted nano-SiO2[J]. CELLULOSE, 2018, 25(6): 3619-3633. (SCI一区,IF=3.809)
[12] Wang X, Tang C, Wang Q, et al. Selection of Optimal Polymerization Degree and Force Field in the Molecular Dynamics Simulation of Insulating Paper Cellulose[J]. Energies, 2017, 10(9):1377. (SCI三区,IF=2.262)
[13] Zhang S, Tang C, Hao J, et al. Thermal stability and dielectric properties of nano-SiO2-doped cellulose[J]. Applied Physics Letters, 2017, 111(1). (SCI二区,IF=3.411)
[14] Yin F, Tang C, Li X, et al. Effect of Moisture on Mechanical Properties and Thermal Stability of Meta-Aramid Fiber Used in Insulating Paper[J]. Polymers, 2017, 9(10). (SCI二区,IF=3.364)
[15] Xiaobo Wang, Chao Tang, Bo Huang, Jian Hao, George Chen. Review of Research Progress on the Electrical Properties and Modification of Mineral Insulating Oils Used in Power Transformers[J]. Energies, 2018, 11(3), 487. (SCI三区,IF=2.676)
[16] Fei Yin, Chao Tang, Qian Wang, Xiong Liu, Yujing Tang. Molecular Dynamics Simulations on the Thermal Decomposition of Meta-Aramid Fibers[J]. Polymers, 2018, 10(7):691. (SCI二区,IF=2.937)