Wang Yifeng
School
School of Electrical and Information Engineering
Professional Title
Associate professor
Administrative Appointments
副教授/博士生导师
Discipline
电气工程/电力电子与电力传动
Contact Information
18522062559
18522062559
wayif@tju.edu.cn
天津大学电气自动化与信息工程学院26教学楼E区615室
Brief Introduction
王议锋,副教授/博士生导师,毕业于哈尔滨工业大学。美国弗吉尼亚理工大学美国电力电子系统研究中心(CPES)访问学者。主要从事高频电力电子变换器拓扑及其控制理论、高频磁性元件及磁集成技术、交直流微电网及分布式可再生能源发电中的现代电能变换与控制技术、特种电源等领域的研究工作。目前已发表SCI/EI检索论文30余篇,申请相关发明专利10余项。担任天津市电源学会秘书长,中国电源学会照明电源专业委员会理事,中国自动化学会电气自动化专业委员会委员等职务。
Education Background
- 弗吉尼亚理工大学美国电力电子系统研究中心(CPES)| 电力电子与电力传动专业| 2017
- Doctoral degree| 哈尔滨工业大学| 电力电子与电力传动专业| 2011
Research Interests
- 特种电源
- 交直流微电网及分布式可再生能源发电中的现代电能变换与控制技术
- 高频磁性元件及磁集成技术
- 高频电力电子变换器拓扑及其控制理论
Courses
Positions & Employments
-
2016.7-2019.12
天津大学电气自动化与信息工程学院 | 天津大学 | 无 | 副教授  -
2011.11-2016.6
天津大学电气自动化与信息工程学院 | 天津大学 | 无 | 讲师 
Academic Achievements
- Papers
- [1] 李微, 王议锋, 韩富强, 陈博.一种隔离型三端口双向LCLC多谐振直流变换器.
- [2] 王议锋, 杨良, 陈博, 韩富强, 周标;一种拓扑变换型多谐振软开关直流变换器.
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- [3] 杨良, 王议锋, 涂世杰, 李国栋, 陈培育.一种用于含谐振零点的多谐振元件软开关直流变换器参数设计方法.
- [4] 韩富强, 王议锋, 杨良, 陈梦颖, 周标.一种输出并联型CLTCL多谐振软开关直流变换器.
- [5] 杨良, 王议锋, 陈博, 郄伟, 钟旭.一种双CLT谐振软开关直流变换器设计与实现.
- [6] 杨良, 王议锋, 孟准. 小型并网风力发电系统控制策略研究.
- [7] 孟准, 王议锋*, 杨良. 一种适用于小功率可再生能源的单相高频双Buck全桥并网逆变器[J]. 电工技术学报, 2017, 32(8):220-228.
- [8] 王成山, 李微, 王议锋*,等. 直流微电网母线电压波动分类及抑制方法综述[J]. 中国电机工程学报, 2017, 37(1):84-97.
- [9] 薛利坤, 王萍, 王议锋*,等. 基于开关电容和耦合电感的交错并联型高电压增益双向DC-DC变换器[J]. 电工技术学报, 2016, 31(24):181-187.
- [10] 杨良, 王议锋*, 孟准. 一种基于储能回路的小型并网风力发电系统[J]. 电工技术学报, 2016, 31(s2):120-130.
- [11] 王议锋,杨良,王成山,孟准. 基于开关电容的三相单开关反激式高增益AC-DC整流变换器. 电工技术学报. 2015, 29(S1): 233-241.
- [12] 王议锋,徐殿国,王懿杰,王斌泽,张相军. CLCL谐振软开关DC-AC变换器. 电工技术学报. 2013, 28(4): 95-103.
- [13] 王议锋,徐殿国,徐博. 图腾柱式无桥零纹波交错并联Boost 功率因数校正器. 电工技术学报. 2011, 26(9): 175-182.
- [14] Bo Chen, Ping Wang, Yifeng Wang*. An improved Analysis method of Loss for the LCLC Multi-Resonant Three-Port Bidirectional DC-DC Converter. APEC 2017.
- [15] Y F Wang, L Yang, G D Li. Parameter Selection method for the Multi-Element Resonant Converters with a Resonant Zero Point. APEC 2017.
- [16] Y F Wang, L Yang, Z Meng. Power loss distribution analysis for a high frequency dual-buck full-bridge inverter. Energies, 2017.
- [17] Wang Y F, Yang L, Han F, et al. A Study of Two Multi-Element Resonant DC-DC Topologies with Loss Distribution Analyses. Energies, 2017, 10(9):1400.
- [18] Chen B, Wang P, Wang Y F*, et al. Comparative Analysis and Optimization of Power Loss Based on the Isolated Series/Multi Resonant Three-Port Bidirectional DC-DC Converter. Energies, 2017, 10(10):1565.
- [19] Wang C S, Li W, Wang Y F*, et al. A High-Efficiency Isolated LCLC Multi-Resonant Three-Port Bidirectional DC-DC Converter. Energies, 2017, 10(7):934.
- [20] Wang C S, Li W, Wang Y F*, et al. An Isolated Three-Port Bidirectional DC-DC Converter with Enlarged ZVS Region for HESS Applications in DC Microgrids. Energies, 2017, 10(4):446.
- [21] Meng Z, Wang Y F*, Yang L, et al. High Frequency Dual-Buck Full-Bridge Inverter Utilizing a Dual-Core MCU and Parallel Algorithm for Renewable Energy Applications. Energies, 2017, 10(3):402.
- [22] Meng Z, Wang Y F*, Yang L, et al. Analysis of Power Loss and Improved Simulation Method of a High Frequency Dual-Buck Full-Bridge Inverter. Energies, 2017, 10(3):311.
- [23] Wang Yi-feng*, Zhang Xiangjun, Xu Dianguo, Xu Zhuang, Yang Chaohui, Ma Ling. Design optimisation of the LCsCp resonant inverter to drive 1kW high-pressure sodium lamps. IET Power Electronics. 2011, 4(4): 374-383.
- [24] Yifeng Wang, Liang Yang*, Chengshan Wang, Yiqiang Zhang. A ZCS Buck excitation converter for electric vehicles with wound rotor synchronous motors. International Journal of Vehicle Design. 2015, 65(1/2/3/4): 50-70.
- [25] Li-Kun Xue, Ping Wang, Yi-Feng Wang*, Tai-Zhou Bei and Hai-Yun Yan. A Four-phase High Voltage Conversion Ratio Bidirectional DC-DC Converter for Battery Applications. Energies. 2015, 8(7): 6399-6426.
- [26] Cheng-Shan Wang, Wei Li, Zhun Meng, Yi-Feng Wang*, Jie-Gui Zhou. Three-Phase High-Power and Zero-Current-Switching OBC for Plug-In Electric Vehicles. Energies. 2015, 8(7): 6672-6704.
- [27] Yi-Feng Wang, Liang Yang*, Cheng-Shan Wang, Wei Li. High Step-Up 3-Phase Rectifier with Fly-Back Cells and Switched Capacitors for Small-Scaled Wind Generation Systems. Energies. 2015, 8(4): 2742-2768.
- [28] Wang C S, Yang L, Wang Y F*, Chen B. A 1kW CLTCL Resonant DC-DC Converter with Restricted Switching Loss and Broadened Voltage Range. Transactions on Power Electronics. 2017.
- [29] Cheng-shan Wang, Liang Yang, Yi-feng Wang*, et al. Circuit Configuration and Control of a Grid-Tie Small-Scale Wind Generation System for Expanded Wind Speed Range. IEEE Transactions on Power Electronics. 2016.
- [30] Yi-feng Wang, Li-kun Xue*, Cheng-shan Wang, Ping Wang, Wei Li. Interleaved High-Conversion-Ratio Bidirectional DC-DC Converter for Distributed Energy Storage Systems - Circuit Generation, Analysis and design. IEEE Transactions on Power Electronics. 2016, 31(8): 5547-5561.