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王勃
2023-05-10 20:00
  • 王勃
  • 王勃 - 副教授 博导-哈尔滨工业大学-电气工程及自动化学院-个人资料

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资料介绍

个人简历


王勃,工学博士,从事交流电机驱动技术研究。
入选哈尔滨工业大学“青年拔尖人才选聘计划-副教授”,黑龙江省优秀青年基金获得者,哈尔滨工业大学“优秀博士学位论文”获得者。
主持国家自然科学基金青年项目、中国博士后基金特别和一等资助、黑龙江省博士后基金、哈尔滨工业大学科研创新基金、哈尔滨工业大学重点实验室开放基金,参与多项国家重点研发计划、国家科技支撑计划、企业科技合作等项目。
累计发表学术论文40余篇,以第一作者/通讯作者在电气工程领域顶级期刊《IEEE Transactions on Industrial Electronics》(IF=7.515)和《IEEE Transactions on Power Electronics》(IF=6.373)上发表论文12篇。分别于2014年、2018年、2019年三次荣获IEEE电机及系统领域三大国际会议之一ICEMS“Best Paper Award”。
IEEE Member,并担任《IEEE Transactions on Industrial Electronics》、《IEEE Transactions on Power Electronics》等多个顶级SCI期刊审稿人。
2016年11月至2017年2月赴美国克利夫兰州立大学进行访学,进行自抗扰控制及其电机驱动应用研
招生信息
招生计划:博士生1名/年,硕士生3名/年,本科生3名/年
欢迎加入PEED,我们一起做快乐科研,共同建设变频驱动与控制技术方向!
对申请者的要求:主动学习,敢于提问,划重点:对科研感兴趣!
所需材料:个人详细简历,成绩单(包括英语成绩),说明读研原因,划重点:不要表决心和喊口号!
欢迎电子邮件联系:wangbohit@hit.edu.cn
我相信“态度决定一切”,也相信“细节决定成败”,更相信“追求卓越才能进步”
工作经历
2020年7月-至今, 哈尔滨工业大学, 电气工程, 博士生导师
2019年12月-至今, 哈尔滨工业大学, 电气工程, 副教授
2019年05月-2020年7月, 哈尔滨工业大学, 电气工程, 硕士生导师
2017年11月-2019年12月, 哈尔滨工业大学, 电气工程, 讲师
教育经历
2007年09月-2011年07月, 西北工业大学, 电气工程, 本科
2011年09月-2013年07月, 哈尔滨工业大学, 电气工程, 硕士
2013年09月-2017年10月, 哈尔滨工业大学, 电气工程, 博士
2016年11月-2017年02月, 美国克利夫兰州立大学, 电气工程, 访问学者
荣誉称号
2020年 黑龙江省优秀青年基金获得者
2020年 哈尔滨工业大学“青年拔尖人才选聘计划-副教授”
2019年 哈尔滨工业大学第二十一届“优秀博士学位论文”
2019年 “Best Paper Award” IEEE ICEMS 2019(电机及系统三大国际会议之一)
2018年 “Best Paper Award” IEEE ICEMS 2018(电机及系统三大国际会议之一)
2017年 哈尔滨工业大学优秀博士毕业生
2015年 博士研究生国家奖学金
2015年 哈尔滨工业大学电气学院博士生论坛“金奖论文”
2014年 “Best Paper Award” IEEE ICEMS2014(电机及系统三大国际会议之一)
出版物名称
《Control of Power Electronic Converters and Systems》-Chapter 12
科研项目
极端工况与多重约束下变频器无差拍直接转矩控制研究
数控机床用超高速感应电机矢量控制技术研究
基于SiC功率器件的高效高可靠性电力电子系统研究
高功率密度电机系统服役规律与可靠运行机制
感应电机高速弱磁技术研究
变频调速系统极端转速控制策略研究
伺服驱动及电机测试规范、标准研究与测试平台
大功率港口起重专用变频器的关键技术开发与应用
变频调速系统的多目标故障诊断与容错控制
讲授课程
本科生课程:《自动控制理论》

研究领域


"感应电机无传感器驱动技术:超高速弱磁控制;极低速/零频控制;过调制策略
永磁同步电机无传感器驱动技术:超高速弱磁控制;低载波比控制;动态性提升
交流电机在线参数辨识技术:电阻在线辨识;电感在线辨识;转动惯量在线辨识
电机驱动系统故障诊断与容错控制技术:位置传感器;电流传感器;功率开关管
现代控制理论及其在电机控制中的应用:滑模控制;预测控制;自抗扰控制"

近期论文


2020年论文
[1] Wang Bo, Zhang Jing, Yu Yong*, Zhang Xu, Xu Dianguo. Unified Complex Vector Field-Weakening Control for Induction Motor High-Speed Drives. IEEE Transactions on Power Electronics, 2020, Early Access. (中科院一区SCI,影响因子:6.373)
[2] Wang Bo, Huo Zhixin, Yu Yong*, Luo Cheng, Sun Wei, Xu Dianguo. Stability and Dynamic Performance Improvement of Speed Adaptive Full-Order Observer for Sensorless Induction Motor Ultralow Speed Operation. IEEE Transactions on Power Electronics, 2020, 35(11): 12522-12532. (中科院一区SCI,影响因子:6.373)
[3] Zhang Xu, Wang Bo*, Yu Yong*, Zhang Jing, Dong Jiaxin, Xu Dianguo. Circular Arc Voltage Trajectory Method for Smooth Transition in Induction Motor Field-Weakening Control. IEEE Transactions on Industrial Electronics, 2020, Early Access. (中科院一区SCI,影响因子:7.515)
[4] Luo Cheng, Wang Bo*, Yu Yong*, Zhu Yangming, Xu Dianguo. Enhanced Low Frequency Ride-Through for Speed-Sensorless Induction Motor Drives with Adaptive Observable Margin. IEEE Transactions on Industrial Electronics, 2020, Early Access. (中科院一区SCI,影响因子:7.515)
[5] Luo Cheng, Wang Bo*, Yu Yong*, Chen Chuang, Huo Zhixin, Xu Dianguo. Operating-Point Tracking Method for Sensorless Induction Motor Stability Enhancement in Low-Speed Regenerating Mode. IEEE Transactions on Industrial Electronics, 2020, 67(5): 3386-3397. (中科院一区SCI,影响因子:7.515)
[6] Zhang Xu, Wang Bo, Yu Yong*, Zhang Jing, Dong Jiaxin, Xu Dianguo. Analysis and Optimization of Current Dynamic Control in Induction Motor Field-Weakening Region. IEEE Transactions on Power Electronics, 2020, 35(9): 8860-8866. (中科院一区SCI,影响因子:6.373)
[7] Luo Cheng, Wang Bo, Yu Yong*, Chen Chuang, Huo Zhixin, Xu Dianguo. Decoupled Stator Resistance Estimation for Speed-Sensorless Induction Motor Drives Considering Speed and Load Torque Variations. IEEE Journal of Emerging and Selected Topics in Power Electronics, 2020, 8(2):1193-1207. (JCR一区SCI,影响因子:4.728)
[8] Sun Wei*, Wang Zhenyu, Xu Dianguo, Wang Bo. Robust Stability Improvement for Speed Sensorless Induction Motor Drive at Low Speed Range by Virtual Voltage Injection. IEEE Transactions on Industrial Electronics, 2020, 67(4): 2642 - 2654. (中科院一区SCI,影响因子:7.515)
[9] 王勃, 王天擎, 于泳*, 罗成, 徐殿国. 感应电机电流环非线性积分滑模控制策略. 电工技术学报, 2020. (已录用, EI检索)
[10] 陈闯, 王勃, 于泳*, 霍峙昕, 徐殿国. 基于改进指数趋近律的感应电机滑模转速观测器研究. 电工技术学报, 2020, 035(0z1):155-163. (EI检索)
2019年论文
[1] Wang Bo, Zhang Xu, Yu Yong*, Zhang Jing, Xu Dianguo. Maximum Torque Analysis and Extension in Six-Step Mode-Combined Field-Weakening Control for Induction Motor Drives. IEEE Transactions on Industrial Electronics, 2019, 66(12): 9129-9138. (中科院一区SCI,影响因子:7.515)
[2] Dong Zhen, Wang Bo*, Yu Yong, Zhang Xu, Zhang Jing, Xu Dianguo, Ding Zhengtao. Operating Point Selected Flux-Weakening Control of Induction Motor for Torque-Improved High-Speed Operation under Multiple Working Conditions. IEEE Transactions on Power Electronics, 2019, 34(12):12011-12023. (中科院一区SCI,影响因子:6.373)
2018年论文
[1] Wang Bo*, Luo, Cheng, Yu Yong, Wang Gaolin, Xu Dianguo. Anti-Disturbance Speed Control for Induction Machine Drives Using High-Order Fast Terminal Sliding-Mode Load Torque Observer. IEEE Transactions on Power Electronics, 2018, 33(9):7927-7937. (中科院一区SCI,影响因子:6.737)
[2] Wang Bo*, Dong Zhen, Yu Yong, Wang Gaolin, Xu Dianguo. Static-Errorless Deadbeat Predictive Current Control Using Second-Order Sliding-Mode Disturbance Observer for Induction Machine Drives. IEEE Transactions on Power Electronics, 2018, 33(3):2395-2403. (中科院一区SCI,影响因子:6.373)
[3] Yu Yong*, Zhao Yongzheng, Wang Bo, Huang Xiaolei, Xu Dianguo. Current sensor fault diagnosis and tolerant control for VSI-based induction motor drives. IEEE Transactions on Power Electronics, 2018, 33(5): 4238-4248. (中科院一区SCI,影响因子:6.373)
[4] Dong Zhen, Yu, Yong*, Li Wenshuang, Wang Bo, Xu Dianguo. Flux-weakening Control for Induction Motor in Voltage Extension Region: Torque Analysis and Dynamic Performance Improvement. IEEE Transactions on industrial electronics, 2018, 65(5):3740-3751. (中科院一区SCI,影响因子:7.515)
2017年论文
[1] Wang Bo*, Chen Xianle, Yu Yong, Wang Gaolin, Xu Dianguo. Robust Predictive Current Control with Online Disturbance Estimation for Induction Machine Drives. IEEE Transactions on Power Electronics, 2017, 32(6):4663-4674. (中科院一区SCI,影响因子:6.373)
2016年论文
[1] Wang Bo*, Zhao Yongzheng, Yu Yong, Wang Gaolin, Xu Dianguo, Dong Zhen. Speed-Sensorless Induction Machine Control in the Field-Weakening Region Using Discrete Speed-Adaptive Full-Order Observer. IEEE Transactions on Power Electronics, 2016, 31(8):5759-5773. (中科院一区SCI,影响因子:6.373)
会议论文
[1] Wang Bo, Zhang Jing, Yu Yong, Zhang Xu, Xu Dianguo. Speed Adaptive Voltage Closed-Loop Field-Weakening Control for Induction Motor Drives. IEEE Energy Conversion Congress and Exposition, 2019. (EI检索)
[2] Wang Bo, Zhang Xu, Yu Yong, Zhang Jing, Cai Honye, Xu Dianguo. Voltage Redistribution-Based Anti-Windup Scheme for Induction Motor Current Controller in the Field-Weakening Region. Applied Power Electronics Conference and Expositio, 2019. (EI检索)
[3] Wang Bo, Chen Xianle, Yu Yong, Wang Chunying, Li Binbin, Xu Dianguo. Robust Predictive Current Control for Induction Motor in Synchronous Rotating Frame. IET International Conference on Power Electronics, Machines and Drives. 2016. (EI检索)
[4] Wang Bo, Yu Yong, Sun Wei, Wang Gaolin, Xu Dianguo. A Modified Discretization Method for Discrete Full-Order Flux Observer of Induction Motor. IEEE European Conference on Power Electronics and Applications. 2015. (EI检索)
[5] Wang Bo, Wang Hongbo, Yu Yong, Lv Xin, Wang Gaolin, Xu Dianguo. Sensorless Robust Predictive Current Control for Induction Motor Using a Speed Adaptive Full-Order Observer. IEEE International Conference on Power Electronics and Ecce Asia. 2015:1149-1154. (EI检索)
[6] Wang Bo, Yu Yong, Wang Gaolin, Xu Dianguo. High Performance Field-Weakening Control Algorithm of Sensorless Induction Motor Using Speed Adaptive Full-Order Observer. IEEE International Conference on Electrical Machines and Systems. 2014:2964-2968. (EI检索)
[6] Wang Tianqing, Wang Bo, Yu Yong, Zhu Yangming, Xu Dianguo. Discrete Super-Twisting Sliding Mode Current Controller for Induction Motor Drives. 2020 22nd European Conference on Power Electronics and Applications. 2020:2964-2968. (EI检索)
[7] Luo Cheng, Wang Bo, Yu Yong, Chuang Chen, Zhixin Huo and Dianguo Xu. Rotor Resistance Estimation for Sensorless Induction Motor Drives with A Torque Ripple Reduction Method. IEEE Energy Conversion Congress and Exposition, 2019. (EI检索)
[8] Zhang Jing, Wang Bo, Yu Yong, Cai Honye, Zhang Xu, Xu Dianguo. Angle Compensation-Based Voltage Redistribution for Induction Motor Drives in the Field-Weakening Windup Region. IEEE International Conference on Electrical Machines and Systems, 2019. (EI检索)
[9] Huo Zhixin, Wang Bo, Yu Yong, Wang Tianqing, Luo Cheng, and Xu Dianguo. An Extended Speed Adaptive Observer with Auxiliary Variables for Sensorless Induction Motor Low-Speed Operation. IEEE International Conference on Electrical Machines and Systems, 2019. (EI检索)
[10] Tian Minghe, Wang Bo, Yu Yong, Ma Xing, Dong Qinghua, and Xu Dianguo. Proportional Resonant-Based Active Disturbance Rejection Control for Speed Fluctuation Suppression of PMSM Drives. IEEE International Conference on Electrical Machines and Systems, 2019. (EI检索)
[11] Luo Cheng, Wang Bo, Yu Yong, Zhang Guoqiang, Xu Dianguo. A Novel Speed Adaptive Scheme-Based Full-Order Observer for Sensorless Induction Motor Drives in Low Speed Regenerating Operation Range. IEEE International Conference on Electrical Machines and Systems. 2018. (EI检索)
[12] Zhang Xu, Wang Bo, Yu Yong, Dong Zhen, Zhang Guoqiang, Xu Dianguo. Maximum Torque Increase and Performance Optimization for Induction Motor Field-Weakening Control. IEEE International Conference on Electrical Machines and Systems. 2018. (EI检索)
哈尔滨工业大学英才学院2018级三班班主任
IEEE Member
IEEE Power Electronics Society Member
中国电工技术学会会员
中国电源学会会员
国际期刊审稿人:《IEEE Transactions on Industrial Electronics》(SCI, IF=7.503)、《IEEE Transactions on Power Electronics》(SCI, IF=7.224)、《IEEE Transactions on Industrial Informatics》(SCI, IF=8.82)、《IEEE Journal of Emerging and Selected Topics in Power Electronics》(SCI, IF=5.972)、《IEEE Transactions on Energy Conversion》(SCI, IF=5.6)、《Journal of Power Electronics》(SCI, IF=1.23)
国内期刊审稿人:《中国电机工程学报》、《电工技术学报》、《电力系统自动化》、《电源技术》

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