个人信息Personal Information
出生日期:1994-10-25
入职时间:2022-05-05
学历:博士研究生毕业
学位:工学博士学位
性别:男
在职信息:在岗
毕业院校:浙江大学
所在单位:电气工程学院
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部分论文:
[19] EI期刊:Bo Pang,Xiao Jin,Quanwang Zhang,Yi Tang,Kai Liao*,Jianwei Yang and Zhengyou He.Transient AC Overvoltage Suppression Orientated Reactive Power Control of the Wind Turbine in the LCC-HVDC Sending Grid[J],CES Transactions on Electrical Machines and Systems.Accepted,to be published
[18] SCI期刊:Kai Liao,Bo Pang*,Jianwei Yang,Zhengyou. He.Output Current Quality Improvement for VSC with Capability of Compensating Voltage harmonics[J],IEEE Transactions on Industrial Electronics,2024,71(8),9087 - 9097.(Top期刊)
[17] SCI期刊:Kai Liao,Bo Pang*,Jianwei Yang,Zhengyou. He.Compensation Strategy of Wideband Voltage Harmonics for Doubly-Fed Induction Generator [J],IEEE Transactions on Energy Conversion, 2023,38(1):674- 684.(Top期刊,ESI高被引论文(全球Top1%)自2023年7月至今)
[16] SCI期刊:Bo Pang,Xiaojuan Zhu,Jianwei Yang,Kai Liao*,Bo Chen,Zhengyou He.Voltage Harmonics Optimization for Weak Grid-Tied Doubly-fed Induction Generator with the Capability of Suppressing Current Harmonics[J],IEEE Transactions on Energy Conversion,2023,38(2):1452- 1460.(Top期刊)
[15] SCI期刊:Kai Liao,Bo Pang*,Jianwei Yang,Xiao Jin,Bo Chen,Zhengyou He.Enhanced Compensation Strategy of Voltage Harmonics for Doubly-Fed Induction Generator[J].International Journal of Electrical Power and Energy Systems,2023,148:108924.(JCR1区、中科院2区)
[14] SCI期刊:Bo Pang,Xiao Jin,Xiaojuan Zhu,Kai Liao*,Jianwei Yang,Zhengyou He.High Frequency Oscillation Damping for the VSC-HVDC Connects to A Wind Farm via a Cable Transmission Line,International Journal of Electrical Power and Energy Systems. 2023,147:108845.(JCR1区、中科院2区)
[13] SCI期刊:Xiao Jin,Heng Nian*,Chen Zhao,Bo Pang.Optimal Power Coordinated Control Strategy for DFIG-Based Wind Farm to Increase Transmission Capacity of the LCC-HVDC System Considering Commutation Failure [J].IEEE Journal of Emerging and Selected Topics in Power Electronics, 2022,10(3):3129-3139.(Top期刊)
[12] SCI期刊:Bo Pang,Heng Nian*,Yunyang Xu.Mechanism Analysis and Damping Method for High Frequency Resonance between VSC-HVDC and the Wind Farm[J].IEEE Transactions on Energy Conversion,2021,36(2): 984-994.(Top期刊)
[11] EI期刊:Bo Pang,Heng. Nian*,Guoqing. He,Xiao Jin.High Frequency Resonance Damping Based on Complex Coefficient Controller for the Wind Farm Connected VSC-HVDC [C]. Asia Conference on Power and Electrical Engineering (ACPEE), 2021:915-920.
[10] SCI期刊:Bo Pang,Chao Wu,Heng Nian*,Frede Blaabjerg.Damping Method of High-Frequency Resonance for Stator Current Controlled DFIG System Under Parallel Compensation Grid [J].IEEE Transactions on Power Electronics,2020,35(10):10260-10270.(Top期刊)
[9] SCI期刊:Bo Pang,Heng Nian*.Collaborative Control and Allocation Method of RSC and GSC for DFIG System to Suppress High-Frequency Resonance and Harmonics[J].IEEE Transactions on Industrial Electronics,2020,67(12):10509-10519.(Top期刊)
[8] SCI期刊:Bo Pang,Heng Nian*,Chao Wu,Frede Blaabjerg.Damping Control of High-Frequency Resonance Based on Voltage Feedforward for Voltage Source Converter under A Parallel Compensated Grid [J].IET Power Electronics,2020,13(13):2682-2691.
[7] SCI期刊:Bo Pang,Heng Nian*,Chao Wu,Peng Cheng.Stator Harmonic Current Suppression for DFIG System Considering Integer Harmonics and Inter-harmonics[J].IEEE Transactions on Industrial Electronics,2019,66(9):7001-7011.(Top期刊)
[6] SCI期刊:Bo Pang,Heng Nian*.Active Damping Technique Based on H∞ Controller for VSC under Parallel Compensation Grid [J].IET Electronics Letters,2019,56(3):2682-2691.
[5] SCI期刊:Chao Wu, Heng Nian, Bo Pang and Peng Cheng.Adaptive Repetitive Control of DFIG-DC System Considering Stator Frequency Variation [J].IEEE Transactions on Power Electronics, 2019,34(4),pp:3302-3312.(Top期刊)
[4] SCI期刊:Heng Nian*,Bo Pang.Stability and Power Quality Enhancement Strategy for DFIG System Connected to Harmonic Grid With Parallel Compensation[J].IEEE Transactions on Energy Conversion,2019,34(2):1010-1022.(Top期刊)
[3] EI会议:Bo Pang, Heng Nian and Chao Wu, Improved Operation of DFIG System under Harmonically Distorted Grid Considering Inter-harmonics [C]. IEEE Applied Power Electronics Conference and Exposition (APEC), CA, USA, 2019, pp. 1102-1108.(国际顶会)
[2] EI期刊:年珩*,庞博,许国东,邱纪星.应对并补电网下DFIG系统高频谐振的宽频阻抗重塑策略[J].电力系统自动化,2018,42(18):48-56.
[1] EI期刊:Bo Pang, Heng Nian*, Guodong Xu, Jixing Qiu.Method of eliminating high frequency resonance of DFIG system connected to weak grid [J].The Journal of Engineering,2017,13:1793-1798.