作者:聚创清华考研网-小厦老师 点击量: 430 发布时间: 2015-05-18 13:58 【微信号:扫码加咨询】
个人简介
孙凯
工作职位:清华大学 电机系 副教授
研究方向:新能源发电与微电网系统中的电力电子技术,新型功率器件应用技术
办公地址:北京市海淀区清华大学电机系西主楼3区310
邮政编码:100084
工作邮箱:sun-kai@mail.tsinghua.edu.cn
办公电话:010-62781402
2000年7月于清华大学电机系本科毕业,获工学学士学位,清华大学优秀毕业生;2006年1月于清华大学电机系博士毕业,后留校任教。2013年获“中达青年学者奖”。目前主要从事电力电子与电力传动学科的教学和研究工作,研究兴趣包括新能源发电电力电子技术、微电网系统、新型功率器件应用技术等。
个人简历
2011.12~,清华大学电机系,副教授
2009.9~2010.8,丹麦奥尔堡大能源技术系,访问学者
2008.2~2011.11,清华大学电机系,助理研究员
2006.4~2008.1,清华大学电机系,博士后
个人荣誉与获奖
1、个人获奖
2013年中达青年学者奖
2013年入选北京高校青年英才计划
2007年清华大学优秀博士后
2000年清华大学优秀毕业生
2、科研成果获奖
2013年中国电工技术学会科学技术一等奖
2014年国际电机与系统会议(ICEMS2014)Best Paper Award
3、教学成果获奖
2014年度清华大学教学成果二等奖
2012年度清华大学实验技术成果一等奖
2012年度清华大学实验技术成果二等奖
教学情况
1、本科生课程:
电力电子技术基础(双语),2010-2014五届,32课时,电机系本科生必修课
电力传动系统设计,2010-2014五届,18学时,电机系本科生选修课
电力传动与控制,2011-2014四届,5学时,电机系本科生选修课
电力电子专题,2010-2014五届,2学时,电机系本科生选修课
电气工程技术发展讲座,2012-2014三届,2学时,电机系本科生选修课
2、研究生课程:
储能技术及其在新能源系统中的应用,2013一届,14课时,深圳研究生院新能源专业研究生
论文、专著与专利
出版专著1部,发表论文100余篇,其中SCI收录20余篇,EI收录100余篇,在Web of Science中他引累计超过230次。Google Scholar H指数17。
1、专著
1) 孙凯,周大宁,梅杨. 矩阵变换器技术及其应用, 机械工业出版社, 2007.9
2、国际期刊论文选(2010以来)
1) Li, Zhang, Kai Sun, Yan Xing, Jinquan Zhao. Parallel operation of modular single-phase transformerless grid-tied PV inverters with common DC bus and AC bus. IEEE Journal of Emerging and Selected Topics in Power Electronics. (accepted, in press)
2) Junjun Zhang, Hongfei Wu, Kai Sun, Yan Xing, Feng Cao. A novel dual-input Boost-Buck converter with coupled inductors for distributed thermoelectric generation system. Journal of Power Electronics. (accepted, in press)
3) Xiaonan Lu, Kai Sun, Josep M. Guerrero, Juan C. Vasquez, Lipei Huang. Double-quadrant state-of-charge based droop control method for distributed energy storage systems in autonomous DC microgrids. IEEE Transactions on Smart Grid. (accepted, in press)
4) Hongfei Wu, Chengan Wan, Kai Sun, Yan Xing. A high step-down multiple output converter with wide input voltage range based-on quasi two-stage architecture and dual-output LLC resonant converter. IEEE Power Electronics Letters. (accepted, in press)
5) Kai Sun, Hongfei Wu, Juejing Lu, Yan Xing, Lipei Huang. Improved modeling of medium voltage SiC MOSFET within wide temperature range. IEEE Transactions on Power Electronics, v 29, n 5, p 2229-2237, May 2014.
6) Li Zhang, Kai Sun, Yan Xing, Mu Xing. H6 transformerless full-bridge PV grid-tied inverters. IEEE Transactions on Power Electronics, v 29, n 3, p 1229-1238, March 2014.
7) Li Zhang, Kai Sun, Haibing Hu, Yan Xing. A system-level control strategy of photovoltaic grid-tied generation systems for European efficiency enhancement. IEEE Transactions on Power Electronics, v 29, n 7, p 3445-3453, July 2014.
8) Xiaonan Lu, Kai Sun, Josep M. Guerrero, Juan C. Vasquez, Lipei Huang. State-of-charge balance using adaptive droop control for distributed energy storage systems in DC microgrid applications. IEEE Transactions on Industrial Electronics, v 61, n 6, p 2804-2815, June 2014.
9) Xiaonan Lu, Josep M. Guerrero, Kai Sun, Juan C. Vasquez, Remus Teodorescu, Lipei Huang. Hierarchical control of parallel AC-DC converter interfaces for hybrid microgrids. IEEE Transactions on Industrial Electronics. IEEE Transactions on Smart Grid, v 5, n 2, p 683-692, March 2014.
10) Xiaonan Lu, J.M. Guerrero, Kai Sun, J.C. Vasquez, J.C. An improved droop control method for DC microgrids based on low bandwidth communication with DC bus voltage restoration and enhanced current sharing accuracy. IEEE Transactions on Power Electronic, v 29, n 4, p 1880-1812, April 2014.
11) Li Zhang, Kai Sun, Lanlan Feng, Hongfei Wu, Yan Xing. A family of neutral point clamped full-bridge topologies for transformerless photovoltaic grid-tied inverters. IEEE Transactions on Power Electronics, v 28, n 2, p 730-739, February 2013.
12) Hongfei Wu, Kai Sun, Shun Ding, Yan Xing. Topology Derivation of Nonisolated Three-Port DC–DC Converters From DIC and DOC. IEEE Transactions on Power Electronics, v 28, n 7, p 3297-3307, July 2013.
13) Hongfei Wu, Kai Sun, Runruo Chen, Haibing Hu, Yan Xing. Full-bridge three-port converters with wide input voltage range for renewable power systems. IEEE Transactions on Power Electronic, v 27, n 9, p 3965-3974, September 2012.
14) Yuchao Shi, Kai Sun, Lipei Huang, Yongdong Li. Online identification of permanent magnet flux based on extended Kalman filter for IPMSM drive with position sensorless control. IEEE Transactions on Industrial Electronics, v 59, n 11, p 4169-4178, November 2012.
15) Kai Sun, Li Zhang, Yan Xing, Josep M. Guerrero. A distributed control strategy based on DC bus signaling for modular photovoltaic generation systems with battery energy storage. IEEE Transactions on Power Electronics, v 26, n 10, p 3032-3045, October 2011.
16) Li Zhang, Kai Sun, Yan Xing, Lanlan Feng, Hongjuan Ge. A modular grid-connected photovoltaic generation system based on DC bus. IEEE Transactions on Power Electronics, v 26, n 2, p 523-531, February 2011.
17) Kai Sun, Qing Wei, Lipei Huang, Kouki Matsuse. An over-modulation method for PWM inverter fed IPMSM drive with single current sensor. IEEE Transactions on Industrial Electronics, v 57, n 10, p 3395-3404, October 2010.
18) Kai Sun, Longxian Ni, Min Chen, Hongfei Wu, Yan Xing, Lasse Rosendahl. Evaluation of high step-up power electronics stages in thermoelectric generator systems. Journal of Electronic Materials, v 42, n 7, p 2157-2164, July 2013.
19) Kai Sun, Hongfei Wu, Yan Cai, Yan Xing. A power conditioning stage based on analog-circuit MPPT control and Superbuck converter for thermoelectric generator in space craft power systems. Journal of Electronic Materials, v 43, n 6, p 2287-2292, June 2014.
20) Hongfei Wu, Kai Sun, Junjun Zhang, Yan Xing. A TEG efficiency Booster with Buck-Boost conversion. Journal of Electronic Materials, v 42, n 7, p 1737-1744, July 2013.
21) Junling Gao, Kai Sun, Longxian Ni, Min Chen, Zhengdong Kang, Li Zhang, Yan Xing, Jianzhong Zhang. A thermoelectric generation system and its power electronics stage. Journal of Electronic Materials, v 41, n 6, p 1043-1050, June 2012.
22) Hongfei Wu, Kai Sun, Min Chen, Yan Xing. Evaluation of power conditioning architectures for energy production enhancement in thermoelectric generator systems. Journal of Electronic Materials, v 43, n 6, p 1567-1573, June 2014.
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