任小永
近期热点
资料介绍
个人简历
个人简介:1998 年-2002 年,南京航空航天大学,自动化学院,本科/工学学士2002 年-2005 年,南京航空航天大学,自动化学院,研究生/工学硕士2005 年-2008 年,南京航空航天大学,自动化学院,研究生/工学博士2009 年-2011 年,美国弗吉尼亚理工学院暨州立大学,美国国家电力电子研究中心(CPES),博士后2011 年-现在,南京航空航天大学,自动化学院科研成果获奖及专利:Ø 2013获得中国电源学会科技进步二等奖1项(高功率密度低电压调整率多路输出模块电源);Ø 2017获得江苏省科技进步二等奖1项(高可靠性模块化智能集成储能系统关键技术及应用);Ø 2020获得国防科技进步二等奖1项(飞行器电力作动永磁电机驱动系统关键技术及应用);Ø 指导本科生获得IEEE IFEC(未来能源挑战赛)冠军(2016)、全国大学生电子设计大赛全国一等奖三项、二等奖四项、指导研究生获得中国电源学会2015矽力杰杯高校电力电子应用设计大赛第二名,江苏省大学生电子设计大赛一、二等奖若干项;Ø 指导本科生获得江苏生毕业设计团队优秀1项(2016),江苏省毕业设计优秀论文三等奖1项(2018);Ø 申请发明专利30余项,授权发明专利近30项。承担的科研项目情况:Ø 国家自然科学基金面上项目:基于宽禁带器件的高随动高可靠相控阵雷达供电系统,(52177181)2022.01-2025.12Ø 国家自然科学基金面上项目:宽禁带器件高频航空变换变流拓扑控制与系统集成(51777093)2018.01-2021.12Ø 国家自然科学基金面上项目:基于GaN 功率晶体管的高功率密度分布式电源系统的研究(51377081)2014.01-2017.12Ø 江苏省自然科学青年基金:氮化镓功率晶体管应用技术研究(BK20130801)2013.06-2016.06Ø 光宝科技电力电子科研基金2012.01-2014.12Ø 台达电力电子科教发展基金2012.06-2013.12Ø 江苏省新能源重点实验室开放基金2012.01-2013.12Ø 其他开发项目若干项教育经历2005.4 -- 2008.12南京航空航天大学 电力电子与电力传动 博士研究生毕业 工学博士学位2002.9 -- 2005.4南京航空航天大学 电力电子与电力传动 硕士研究生毕业 工学硕士学位1998.9 -- 2002.6南京航空航天大学 电气工程与自动化 大学本科毕业 工学学士学位1995.9 -- 1998.6江苏省如东中学 普通高中毕业 无学位工作经历2009.5 -- 2011.2弗吉尼亚理工学院暨州立大学2006.2 -- 2006.6伊博电源(杭州)有限公司 科研项目[1] 新能源电动汽车2**W充电机开发设计[2] 电类专业课智慧课堂教学探索[3] 交流发电机电源变换技术研究[4] 专利转让[5] 兼容Vicor-iDC/DC模块电源[6] 光宝电力电子技术科研基金[7] 氮化镓功率晶体管应用技术研究[8] 氮化镓(GaN)功率器件应用技术的研究[9] 铝电解电容器在高频变换器中的应用开发[10] 高频变换器中铝电解电容器应用的研究开发[11] 宽禁带器件高频航空变换变流拓扑控制与系统集成[12] 氮化镓(GaN)功率器件模型及驱动技术研究[13] 氮化镓功率晶体管应用技术研究[14] 基于GaN 功率晶体管的高功率密度分布式电源系统的研究授课信息电力工程 /2020-2021 /春学期 /48课时 /0.0学分 /03204040.07研究领域
电气工程高频功率电子变换技术宽禁带器件(SiC/GaN)应用技术系统建模与控制高功率密度集成"电力电子与电力传动"近期论文
[1]. Shengdong Wang, Haoran Li, Zhiliang Zhang, Mengrui Li, Jingfei Zhang, Xiaoyong Ren, Qianhong Chen, Multi-function Capability of SiC Bidirectional Portable Chargers for Electric Vehicles, IEEE Journal of Emerging and Selected Topics in Power Electronics, Early Access Article[2]. Yu Wu, Qianhong Chen, Xiaoyong Ren, Zhiliang Zhang, Efficiency Optimization Based Parameter Design Method for the Capacitive Power Transfer System, IEEE Transactions on Power Electronics, Early Access Article.[3]. Xinyi Zhu, Haoran Li, Zhiliang Zhang, Zhibin Li, Yong Yang, Zhanbiao Gu, Shengdong Wang, Xiaoyong Ren, Qianhong Chen, A Sensorless Model-Based Digital Driving Scheme for Synchronous Rectification in 1-kV Input 1-MHz GaN LLC Converters, IEEE Transactions on Power Electronics, 2021, 36(7), 8359-8369.[4]. Yu Wu, Xiaoyong Ren, Yuting Zhou, Qianhong Chen, Zhiliang Zhang, Dynamic AC Line Frequency Response Method for LUT-Based Variable On-Time Control in 360–800 Hz CRM Boost PFC Converter, IEEE Transactions on Power Electronics, 2021, 36(6), 6208-6212.[5]. Haoran Li, Shengdong Wang, Zhiliang Zhang, Jingfei Zhang, Mengrui Li, Zhanbiao Gu, Xiaoyong Ren, Qianhong Chen. Bidirectional Synchronous Rectification on-Line Calculation Control for High Voltage Applications in SiC Bidirectional LLC Portable Chargers, IEEE Transactions on Power Electronics, 2021, 36(5), 5557-5568.[6]. Guangjie Ke, Qianhong Chen, Ligang Xu, Xiaoyong Ren, Zhiliang Zhang, Analysis and Optimization of a Double-Sided S-LCC Hybrid Converter for High Misalignment Tolerance, IEEE Transactions on Industrial Electronics, 2021, 68(6), 4870-4881.[7]. Bin Zhang, Qianhong Chen, Guangjie Ke, Ligang Xu, Xiaoyong Ren, Zhiliang Zhang, Coil Positioning Based on DC Pre-excitation and Magnetic Sensing for Wireless Electric Vehicle Charging, IEEE Transactions on Industrial Electronics, 2021, 68(5), 3820-3830.[8]. Zhibin Li, Qianhong Chen, Shuai Zhang, Xiaoyong Ren, Zhiliang Zhang. A Novel Domestic SE-IH with High Induction Efficiency and Compatibility of Non-ferromagnetic Vessels, IEEE Transactions on Industrial Electronics, Early Access[9]. Qi Yang, Mingxie He, Jiahua Xu, Xiang Li, Jing Zhu, Zhiliang Zhang, Zhanbiao Gu, Xiaoyong Ren, Qianhong Chen, Wide Input Voltage DC Electronic Load Architecture With SiC MOSFETs for High Efficiency Energy Recycling, IEEE Transactions on Power Electronics, 2020, 35(12), 13053-13067.[10]. Xiaoyong Ren, Lei Bai, Yu Chen, Zhiliang Zhang, Qianhong Chen, Single-Phase AC–DC Converter With SiC Power Pulsation Buffer for Pulse Load Applications, IEEE Journal of Emerging and Selected Topics in Power Electronics, 2020, 8(1), 517-528.[11]. Xiaoyong Ren, Yuting Zhou, Zhehui Guo, Yu Wu, Zhiliang Zhang, Qianhong Chen, Analysis and Improvement of Capacitance Effects in 360–800 Hz Variable On-Time Controlled CRM Boost PFC Converters, IEEE Transactions on Power Electronics, 2020, 35(7), 7480-7491.[12]. Zhiliang Zhang, Ke Xu, Zhibin Li, Dongdong Ye, Zhiwei Xu, Mingxie He, Xiaoyong Ren, 1-kV Input 1-MHz GaN Stacked Bridge LLC Converters, IEEE Transactions on Industrial Electronics, 2020, 67(11), 9227-9237.[13]. Zhiliang Zhang, Kaiqi Yao, Guangjie Ke, Ke Zhang, Zhesi Gao, Yakun Wang, Xiaoyong Ren, Qianhong Chen, SiC MOSFETs Gate Driver With Minimum Propagation Delay Time and Auxiliary Power Supply With Wide Input Voltage Range for High-Temperature Applications, IEEE Journal of Emerging and Selected Topics in Power Electronics, 2020, 8(1), 417-428.[14]. Xiaoyong Ren, Yu Wu, Zhiliang Zhang, Qianhong Chen, Accurate Operation Analysis Based Variable On-time Control for 360–800 Hz CRM Boost PFC Converters, IEEE Transactions on Industrial Electronics, 2020, 67(8), 6845-6853.[15]. Xiaoyong Ren,Yuting Zhou, Zhehui Guo, Yu Wu, Zhiliang Zhang, Qianhong Chen, Simple Analog-Based Accurate Variable On-Time Control for Critical Conduction Mode Boost Power Factor Correction Converters, IEEE Journal of Emerging and Selected Topics in Power Electronics, 2020, 8(4), 4025-4036.[16]. Haoran Li, Zhiliang Zhang, Shengdong Wang, Jiacheng Tang, Xiaoyong Ren, Qianhong Chen, A 300-kHz 6.6-kW SiC Bidirectional LLC Onboard Charger, IEEE Transactions on Industrial Electronics, 2020, 67(2), 1435-1445.[17]. Ping Shen, Qianhong Chen, Zhiliang Zhang, Xiaoyong Ren, Model Reconstruction for Body-Mounted Solar Arrays of Satellites Based on Limited Information, IEEE Transactions on Energy Conversion, 2019, 34(3), 1276-1286.[18]. Xiaoyong Ren, Zhi-Wei Xu, Zhiliang Zhang, Haoran Li, Mingxie He, Jiachen Tang, Qianhong Chen, A 1-kV Input SiC LLC Converter With Split Resonant Tanks and Matrix Transformers, IEEE Transactions on Power Electronics, 2019, 34(11), 10446-10457.[19]. Zhiliang Zhang, Binghui He, Dong-Dong Hu, Xiaoyong Ren, Qianhong Chen, Multi-Winding Configuration Optimization of Multi-Output Planar Transformers in GaN Active Forward Converters for Satellite Applications, IEEE Transactions on Power Electronics, 2019 , 34(5), 4465-4479.[20]. Guangming He, Qianhong Chen, Xiaoyong Ren, Siu-Chung Wong, Zhiliang Zhang, Modeling and Design of Contactless Sliprings for Rotary Applications, IEEE Transactions on Industrial Electronics, 2019, 66(5), 4130-4140.[21]. Xiaoyong Ren, Zhi-Wei Xu, Ke Xu, Zhiliang Zhang, Qianhong Chen, SiC Stacked-Capacitor Converters for Pulse Applications, IEEE Transactions on Power Electronics, 2019, 34(5), 4450-4464.[22]. Zhiliang Zhang, Binghui He, Dong-Dong Hu, Xiaoyong Ren, Qianhong Chen, Common-Mode Noise Modeling and Reduction for 1-MHz eGaN Multioutput DC–DC Converters, IEEE Transactions on Power Electronics, 2019, 34(4), 3239-3254.[23]. Zhiliang Zhang, Ke Xu, Zhi-Wei Xu, Jiahua Xu, Xiaoyong Ren, Qianhong Chen, GaN VHF Converters With Integrated Air-Core Transformers, IEEE Transactions on Power Electronics, 2019, 34(4), 3504-3515.[24]. Xiaoyong Ren, Yu Wu, Zhehui Guo, Zhiliang Zhang, Qianhong Chen, An Online Monitoring Method of Circuit Parameters for Variable On-Time Control in CRM Boost PFC Converters, IEEE Transactions on Power Electronics, 2019, 34(2), 1786-1797.[25]. Xiaoyong Ren, Zhehui Guo, Yu Wu, Zhiliang Zhang, Qianhong Chen, Adaptive LUT-Based Variable On-Time Control for CRM Boost PFC Converters, IEEE Transactions on Power Electronics, 2018, 33(9), 8123-8136.[26]. Li Zhang, Xinbo Ruan, Xiaoyong Ren, Second-Harmonic Current Reduction for Two-Stage Inverter With Boost-Derived Front-End Converter: Control Schemes and Design Considerations, IEEE Transactions on Power Electronics, 2018, 33(7), 6361-6378.[27]. Li Zhang, Xinbo Ruan, Xiaoyong Ren, One-Cycle Control for Electrolytic Capacitor-Less Second Harmonic Current Compensator, IEEE Transactions on Power Electronics, 2018, 33(2), 1724-1739.[28]. 郝振洋,徐子梁,陈宇,任小永,张之梁.航空Vienna整流器故障诊断与容错控制[J].电工技术学报,2020,35(24):5152-5163.[29]. 任小永,王亚坤,陈宇,张之梁,陈乾宏.基于虚拟阻抗的LLC谐振变换器并联均流控制[J].电工技术学报,2019,34(21):4540-4550.[30]. 任小永,白雷,惠琦,吴羽,李坤奇.一种快速动态响应低电压纹波功率因数校正变换器的控制策略[J].电工技术学报,2019,34(14):2936-2945.[1] 任小永,,等.Characterization of Self-Driven Cascode-Configuration Synchronous Rectifiers.Transactions of Nanjing University of Aeronautics and Astronautics,2019[2] 任小永,,等.A Nonlinear Control Strategy for Vienna Rectifier Unver Unbalanced Input Voltage.Transactions of Nanjing University of Aeronautics and Astronautics,2019[3] 任小永,任小永,任小永等.An Online Monitoring Method of Circuit Parameters for Variable On-Time Control in CRM Boost PFC Converters[4] 任小永,,等.SiC Stacked-Capacitor Converters for Pulse Applications.IEEE Transactions on Power Electronics,2019[5] 任小永,任小永,任小永等.A 1-kV Input SiC LLC Converter with Split Resonant Tanks and Matrix Transformers[6] 任小永,Wang, Yakun,Wang, Yakun等.Parallel Current Sharing Control of LLC Resonant Converter Based on Virtual Impedance.Diangong Jishu Xuebao,2019[7] 任小永,,等.浅析工科专业课程教学中的“做中学”.科教文汇(下旬刊),2019[8] 任小永,任小永,任小永等.Control Strategy of Power Factor Correction Converter for Fast Dynamic Response and Low Output Voltage Ripple.Diangong Jishu Xuebao,2019[9] 任小永,任小永,任小永等.A 1-kV Input SiC LLC converter with split resonant tanks and matrix transformers.IEEE Trans Power Electron,2019[10] 任小永,Zhou, Yuting,Zhou, Yuting等.A More Accurate Variable On-Time Control for CRM Flyback PFC Converters.IEEE Energy Convers. Congr. Expo., ECCE,2018[11] 任小永,Tong, Dan,任小永,任小永等.A nonlinear control strategy to reduce DC bus capacitance in vienna rectifier.Conf Proc IEEE Appl Power Electron Conf Expo APEC,2019[12] 任小永,任小永,任小永等.An Online Monitoring Method of Circuit Parameters for Variable On-Time Control in CRM Boost PFC Converters.IEEE Trans Power Electron,2019[13] 任小永,任小永,任小永等.SiC Stacked-Capacitor Converters for Pulse Applications.IEEE Trans Power Electron,2019[14] 任小永,,等.一种快速动态响应低电压纹波功率因数校正变换器的控制策略.电工技术学报,2018[15] 任小永,,等.Research on current sharing strategy of parallel LLC resonant converter.Conf Proc IEEE Appl Power Electron Conf Expo APEC,2019 相关热点
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