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个人简介

王灿(IEEE S'11-M'15)2007年于山东大学电气工程学院获得工程学士学位,于2010年在北京航空航天大学仪器科学与光电工程学院获得工程硕士学位。2010年,王灿加入加拿大麦吉尔大学电子工程学院电力与电力电子实验室攻读博士学位并担任研究助理, 师从世界著名直流输电专家Boon-Teck Ooi教授。2013年,他在加拿大欧泊实时技术有限公司(Opal-RT Technologies Inc.)实习,担任高压直流系统仿真建模专家。2015年,他于加拿大麦吉尔大学电子工程系获得博士学位。2015-2016年,他在加拿大麦克马斯特大学汽车研究中心(混动,纯电动汽车)做博士后研究员。加入哈工大前,他工作于南方电网科学研究院,主要从事多端直流输电系统的实时仿真建模。现在他工作于哈工大深圳,他的研究领域包括用于电力电子变换器的建模,控制与仿真;电力电子(AC/DC, DC-DC变换器)应用于直流输电系统、微电网等。 教育经历 Education 2003-2007 山东大学 2007-2010 北京航空航天大学 2010-2015 加拿大麦吉尔大学 研究与工作经历 Research & Work Experience 2010-2015 加拿大麦吉尔大学,研究助理 2013 加拿大Opal-RT公司,实习生 2015-2016 加拿大麦克马斯特大学,博士后 2016 南方电网科学研究院,工程师 2016.11-2020.12 哈尔滨工业大学(深圳),助理教授 2021.01-至今 哈尔滨工业大学(深圳),副教授

研究领域

His research interests include modeling, control and simulation of power electronics converters for the power gird application, such as the high voltage direct current (HVDC) transmission system, hybrid microgrid. 高压直流输电,柔性直流输电,交直流微网系统

近期论文

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Journal Paper Can Wang, Jiexiong Xu, Xuewei Pan*, Wenming Gong, Zhe Zhu, Shukai Xu. Impedance Modeling and Analysis of Series-connected Modular Multilevel Converter (MMC) and its Comparative Study with Conventional MMC for HVDC Applications, IEEE Transactions on Power Delivery, Accepted. Yu Zuo, Xuewei Pan*, Can Wang*. A Reconfigurable Bidirectional Isolated LLC Resonant Converter for Ultra-Wide Voltage-gain Range Applications, IEEE Transactions on Industrial Electronics, Accepted. Li Peng, Wang Yi, Wang Can*, Pan Xuewei, Lu Jinghang, Li Xue, Blaabjerg Frede. Flexible power control strategy for elliptical trajectory based dynamic voltage restorer during voltage sags, IET Renewable Power Generation, 2021, 15(13): 2904-2917. Li Peng, Wang Yi, Wang Can*, Lu Jinghang, Pan Xuewei, Blaabjerg Frede. Mitigation of voltage sag for DVR to comply with voltage security protocol via elliptical trajectory compensation, IET Power Electronics, 2021, 14(5): 1044-1058. Xuewei Pan, Fengzhi Yang, Lei Li, Ruihong Zhang, Can Wang*. An Improved Modulation Scheme of Active Commutated Current-Fed Bidirectional DC/DC Converter, IEEE Journal of Emerging and Selected Topics in Power Electronics, 2021, 9(2): 1375-1388. 徐杰雄, 王灿*, 龚文明, 朱喆, 许树楷. 考虑耦合特性的串联型MMC阻抗建模及分析. 高电压技术, 已录用. 王灿, 邓灿, 潘学伟*, 梁亮. 基于线路阻抗补偿的互联变流器控制策略. 电力系统自动化, 2021, 45(18): 141-150. 王灿, 杜船, 徐杰雄. 中高压直流断路器拓扑综述. 电力系统自动化, 2020, 44(09): 187-199. 丘冠新, 朱鹏宇, 王灿*, 杨锐雄, 凌华保, 林桂辉. 负载不平衡条件下MMC-STATCOM补偿策略研究. 电力工程技术, 2020, 39(02): 35-42. Can Wang, Yunming Yang, Zhili Long, Xuewei Pan*. A Novel Series-Connected Asymmetric Hybrid Modular Multilevel Converter for HVDC Tapping Application, IEEE Access, 2019, 7: 41336 - 41348. 林桂辉, 朱鹏宇, 王灿*, 冯伯庚, 廖雁群, 杨锐雄, 甘德树, 吴海雄, 廖石江. 基于Carson理论和EMTP的220 kV多回电缆线路电气参数及不平衡度分析. 电力系统保护与控制, 2019, 47(20): 142-148. 林桂辉, 朱鹏宇, 王灿*, 甘德树, 吴海雄, 陈奕兴. 珠澳电网220 kV电缆线路不平衡度计算与分析. 广东电力, 2019, 32(05): 141-148. 龚文明, 王灿*, 朱喆, 许树楷. 基于LC二值等效开关模型的电力电子系统高效电磁暂态仿真方法. 南方电网技术, 2018, 12(11): 37-43. Quanrui Hao, B.T. Ooi, Feng Gao, Can Wang, Nan Li. Three-phase Series-connected Modular Multilevel Converter for HVDC Application, IEEE Transactions on Power Delivery, 2016, 31(1): 50-58. Can Wang*, Boon-Teck Ooi. Incorporating DEADBEAT and Low Frequency Harmonic Elimination in Modular Multilevel Converters (MMC), IET Generation, Transmission & Distribution, 2015, 9(1): 1-10. Can Wang*, Quanrui Hao, Boon-Teck Ooi. Reduction of Low Frequency Harmonics in Modular Multilevel Converters (MMCs) by Harmonic Function Analysis, IET Generation, Transmission & Distribution, 2014, 8(2): 328-338. 王灿*,刘刚,王志强. 一种永磁无刷直流电机自抗扰-锁相环双模控制方法[J]. 微电机,2010, 43(1): 33-37. Conference Paper Can Deng, Can Wang*. Control Strategy of Interlinking Converter in Hybrid Microgrid based on Line Impedance Compensation, IEEE ECCE Asia 2021, Singapore, 2021 June. Wenming Gong, Jiexiong Xu, Can Wang*. Impedance Modeling of Series-Connected Modular Multilevel Converter Considering Third Harmonic Suppression, IEEE HVDC 2020, China, 2020 Nov. Can Wang*, Can Deng, Juerui Cao. Adaptive Droop Control of ACDC Hybrid Micro-grid Interlinking Converter, IEEE IECON 2020, Singapore, 2020 Nov. Wenming Gong, Zhe Zhu, Shukai Xu, Can Wang*. Modeling and Electromagnetic Transient (EMT) Simulation of a Dual Active Bridge DC-DC Converter, IEEE ECCE Asia 2019, Korea, 2019 May. Can Wang*, Yunming Yang, Pengyu Zhu. A Hybrid Modular Multilevel Converter (MMC) for MVDC Application, IEEE ECCE Asia 2019, Korea, 2019 May. Can Wang*, Yunming Yang, Boon-Teck Ooi. A Series-Connected Hybrid Modular Multilevel Converter for HVDC Tapping Application, IEEE ICIT 2019, Australia, 2019 Jan. Can Wang*, Yunming Yang, Boon-Teck Ooi. Control Strategies for A New Hybrid Modular Multilevel Converter under Fault Conditions, IEEE ICIT 2019, Australia, 2019 Jan. Can Wang*, S.M. Fazeli, W.P. Hew, N.Abd Rahim, B.T. Ooi, Equivalent Circuits of MMC and VSC: Applications, IEEE International Conference of the Industrial Electronics Society (IECON 2015), Yokohama, Japan, 2015.11.9-11.12. Can Wang*, Boon-Teck Ooi, ‘Elimination of Low Frequency Harmonics of Modular Multilevel Converters (MMC): Implications to MMC HVDC and STATCOM', IEEE International Conference of the Industrial Electronics Society (IECON 2013), Vienna, Austria, 2013.11.10-11.14. Can Wang*, Wei Li, Jean Belanger, Real-Time and Faster-Than-Real-Time Simulation of Modular Multilevel Converters using standard multi-core CPU and FPGA Chips, IEEE International Conference of the Industrial Electronics Society (IECON 2013), Vienna, Austria, 2013.11.10-11.14. Can Wang*, Quanrui Hao, Boon-Teck Ooi, Higher DC Voltage Transmission by Series Connection of MMC Stations, CIGRé SC-B4 Meeting and Colloquium, Brasilia, 2013. Can Wang*, B.T. Ooi, Protecting Modular Multilevel Converter (MMC) against AC Fault by Deadbeat Control, IEEE PES Asia-Pacific APPEEC 2013, Kowloon, Hong Kong, 2013. H.H. Jiang, Can Wang, G. Joos, B.T. Ooi, Computationally Efficient Method for Simulating Multi-terminal MMC-HVDC, IEEE PES General Meeting 2015, Denver, USA, 2015.

学术兼职

2020-至今 IET Member 2015-至今 IEEE Member 2013-至今 顶级国际期刊IEEE transactions on Power Electronics, IEEE transactions on Industrial Electronics, IEEE transactions on Power Delivery,IET Power Electronics, IET Generation, Transmission & Distribution,IET Renewable Power Generation等的审稿人

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