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个人简介

浙江海宁人,浙江大学电气工程学院副教授。 2000年,毕业于浙江大学应电系,获得学士学位。 2006年,获得浙江大学电力电子与电力传动专业博士学位,同年进入浙江大学电气工程学院从事师资博士后工作。 2008年,博士后出站后留校任教至今,2008年晋升为副教授。 期间2010年~2011年,在美国北卡州立大学的“新能源利用研究中心(FREEDM)”访问学习。 主讲课程: 《现代电力电子装置及系统》 《电力电子系统计算机仿真》 《开关电源设计与调试》 技术专长: 逆变(直流-交流)技术 电力电子数字控制 教学与课程 1.现代电力电子装置及系统 上课时间:大三夏学期 了解电力电子技术的典型应用,了解电力电子装置的基本组成、控制方法和设计思想,能够掌握几种典型电力电子装置的设计过程和方法,从而将电力电子学的理论和技术与工程实际应用紧密联系起来。 学完课程,能够掌握如下技能: 1)根据技术指标选择变换器拓扑,能够说出电力电子装置的基本组成,可以进行主电路的初步设计。 2)对主要电力电子变换器的电路进行计算机仿真。 3)掌握逆变器正弦波调制(SPWM)的原理和实现方式。 4)能够说出功率器件驱动电路的设计要点。 5)能够说出变换器电路中各种电压、电流信号的采样方式。 6)掌握至少一种PI控制器的实现方式,能够根据变换器初步设计PI参数。 7)理解电力电子装置中控制的作用,掌握逆变器电流控制和电压控制的机理。 2.电力电子系统计算机仿真 上课时间:大三夏学期, 以自动控制理论为基础,以电力电子变换器为对象,利用计算机辅助设计,学习电力电子变流器的建模和分析、控制器设计和系统仿真。 学完课程,能够回答以下问题: 1)如何将变换器(如BOOST变换器)变成传递函数? 2)如何画出变换器(如BOOST变换器)的阶跃响应? 3)如何利用根轨迹给变换器(如BOOST变换器)设计PI控制器的参数? 3.开关电源设计与调试(数控逆变器) 上课时间:大三暑假短学期 讲授数字电源的基本原理,数字控制算法的设计、编程、仿真、调试等基本方法。 主要内容有:数字电源的基本组成;模拟采样电路的设计;数字PWM技术的实现;数字控制算法的设计和编程实现;数字电源的系统仿真;实际设计并调试完成一款数字电源的控制软件。 主要科研项目: 1.基于组合拓扑的并网逆变技术研究,国家自然科学基金面上项目 2.基于宽禁带功率器件的新型光伏直流升压变流模块技术,国家重点研发计划子课题 3.基于模块化结构的三端口电力电子变压器及其能量管理技术研究,横向合作项目 4.无位置传感器电机驱动,国际合作项目 研究与成果 主持国家自然科学基金1项,作为主要参与人承担国家自然科学基金重点和面上项目,国家重点研发计划等多项,与美国伊顿集团、中国国家电网等国内外知名企业保持长期合作关系。 已发表学术论文100余篇,其中SCI收录20余篇,已授权专利10余项,其中美国专利3项,曾获得了浙江省科学技术一等奖。

研究领域

1.节能驱动 a.电动汽车用异步电机高性能矢量控制 由于其优异的高速性能,高端电动汽车采用异步电机驱动。其面临的关键问题是零速时转矩脉动,以及极高速时的转矩输出…… b.新型电机驱动的变流器拓扑及控制 能量回馈、高功率因数、准正弦波逆变是对新一代驱动逆变器的要求。 2.新能源发电和智能电网 a.智能电网中的电能变换和管理 新能源发电、电力电子变压器、电力电子断路器将是未来电网中的新元素,也是电力电子技术的崭新应用。 b.基于规模化组合的电力电子变流方法 随着电能利用的越来越普遍,电力电子变流器处理的电压、电流和容量日益增大。探索化整为零的分布式变流技术以及大规模模块化组合变流技术 c.电力电子变换器的柔性控制 DSP控制已然成为电力电子系统的主流控制技术。强大和高速的数字处理能力,使得数字实时控制从“毫秒级”迈向“微妙级”。在线参数辨识、自适应和变模式的控制策略都逐渐成为可能。

近期论文

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1.Yu,H,Chen,B,Yao,Wet al.,Hybrid Seven-Level converter based on T-Type converter and H-Bridge cascaded under SPWM and SVM.IEEE TRANSACTIONS ON POWER ELECTRONICS,2018,33(1):689-702. 2.Liu,W,Jin,H,Yao,Wet al.,An interleaved PWM method with better Voltage-Balancing ability for Half-Bridge Three-Level DC/DC converter.IEEE Transactions on Power Electronics,2018:1. 3.Lee,K,Shen,G,Yao,Wet al.,Performance characterization of random pulse width modulation algorithms in industrial and commercial Adjustable-Speed drives.IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS,2017,53(2):1078-1087. 4.L.,H,F.,C,W.,Yet al.,Flexible mode bridgeless boost PFC rectifier with high efficiency over a wide range of input voltage.IEEE Transactions on Power Electronics,2017,32(5):3513-3524. 5.刘威,姚文熙,吕征宇,半桥三电平llc谐振变换器的调制方法.浙江大学学报(工学版),2017(08):1653-1661. 6.黄羽西,姚文熙,吕征宇et al.,考虑电感寄生参数的有源前端lcl滤波器的设计.机电工程,2017(07):772-777. 7.Lee,K,Yao,W,Carnovale,Det al.,Harmonics performance and system stability evaluation between 18-pulse 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al.,混合导通模式三相三电平vienna整流器控制策略.电工技术学报,2012(12):87-93. 55.杭丽君,李宾,黄龙et al.,一种可再生能源并网逆变器的多谐振pr电流控制技术.中国电机工程学报,2012(12):51-58. 56.刘森森,李宾,杭丽君et al.,一种新型电网三相不平衡时vienna整流器的控制方法.中国电机工程学报,2012(21):54-62. 57.王仕韬,吕征宇,王鹿军et al.,永磁风力发电系统的变拓扑晶闸管整流器控制策略.电力系统自动化,2012(14):160-165. 58.Lee,K,Wenxi,Y,Wenbin,Let al.,Current regulated pulse width modulation controller impact on low speed performances of industrial encoderless adjustable speed drives under sliding mode variable structures.Energy Conversion Congress and Exposition(ECCE),2012 IEEE,Raleigh,NC:2012,2639-2645. 59.Li,B,Yao,W,Hang,Let al.,Robust proportional resonant regulator for grid-connected voltage source inverter(VSI)using direct pole placement design method.IET POWER ELECTRONICS,2012,5(8):1367-1373. 60.严刚,杭丽君,姚文熙et al.,三相四线vienna整流器及其数字控制策略研究.电力电子技术,2011(10):10-11. 61.陈基锋,姚文熙,吕征宇,基于重复控制的三相并网控制系统前馈方法.电力电子技术,2011(06):9-10. 62.王斯然,周霞,姚文熙et al.,锂电池能量回收系统的进网电流优化控制技术.浙江大学学报(工学版),2011(05):809-814. 63.刘森森,杭丽君,姚文熙et 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69.李泉峰,姚文熙,吕征宇,基于plecs的三相隔离buck仿真研究.机电工程,2010(12):110-112. 70.胡海兵,姚文熙,吕征宇,三电平空间矢量调制的fpga实现.电工技术学报,2010(05):116-122. 71.Wang,S,Xia,Z,Jifeng,Cet al.,Investigation of fully digital controlled Li-ion battery power recovery system.Applied Power Electronics Conference and Exposition(APEC),2010 Twenty-Fifth Annual IEEE,Palm Springs,CA:2010,2091-2095. 72.王斯然,姚文熙,周霞et al.,锂电池馈电并网系统的设计与实现.电网技术,2009(16):92-95. 73.姚文熙,王斯然,刘森森et al.,三电平空间矢量调制中的共模分量.电工技术学报,2009(04):108-113. 74.Zhe,D,Wei,C,Wei,Zet al.,A novel ZVZCS asymmetrical dual switch forward converter with an optimized ZCS cell based on active clamp reset technique.Applied Power Electronics Conference and Exposition,2009.APEC 2009.Twenty-Fourth Annual IEEE,Washington,DC:2009,1459-1463. 75.Wei,Z,Wei,C,Wenxi,Yet al.,Analysis on rectifier diode stress issue of the DCM active clamped Dual-Switch forward converter and its solutions.Applied Power Electronics Conference and Exposition,2009.APEC 2009.Twenty-Fourth Annual 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