硕士生导师
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所在单位:电气工程学院
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吴翔,男,博士,副教授,硕士生导师。2019年博士毕业于中国矿业大学电气工程专业,师从谭国俊教授;博士毕业后留校任教,现主持国家自然科学基金青年项目1项、江苏省自然科学基金青年基金项目1项、中国矿业大学青年科技基金和人才引进资助项目各1项、企业委托项目5项。发表学术论文40余篇,授权国内外发明专利10项。现为江苏省科技副总,IEEE Member、《电力系统保护与控制》第二届青年学术委员会成员,担任IEEE Transactions on Power Electronics、IEEE Transactions on Industrial Electronics、IEEE Transactions on Industrial Informatics、IEEE Journal of Emerging and Selected Topics in Power Electronics、IET Power Electronics、IET Electric Power Applications等本专业领域高影响力国际期刊的审稿人。
获得奖励:
国产兆瓦级高性能四象限直流PWM调速系统,获得中国煤炭工业科学技术奖二等奖。
主持科研项目:
1 国家自然科学基金青年项目,《面向碳化硅基三电平变频器的相邻四矢量SVPWM及其多目标优化研究》,24万,主持,2021-2023;
2江苏省自然科学基金青年项目,《基于混、扩频PWM的异质功率器件组合型三电平变频器共模电压效应抑制策略研究》,20万,主持,2021-2023;
3中央高校青年科技基金,《电动汽车逆变器共模电压效应及其抑制PWM研究》,2020-2021年,6万,主持;
4中国矿业大学科研起动经费,10万,主持;
5中国矿业大学 青年教师“启航计划,3万,主持;
6 企业项目:大功率永磁同步电机带式输送机调速系统,成功应用于多套煤矿带式输送机;
7 企业项目:中压大功率三电平防爆变频器,成功应用于多套煤矿带式输送机;
8 企业项目:全速域永磁同步电机无位置传感器控制,应用于多种工业现场。
9 企业项目:重型矿卡电驱动系统开发,150万。
10 企业项目:大功率储能变流器系统开发,260万。
11 企业项目:混合功率器件组合型三电平变流器开发,175万。
近年来,主要研究方向集中在永磁同步电机无位置传感器控制与变流器拓扑优化、设计与调制方面(包括多电平变换器、储能变流器、防爆变频器、宽禁带变换器等)
一、永磁同步电机控制领域代表论文:
[1] Sensorless Control of Permanent Magnet Synchronous Motor Based on Double- Cost-Function Finite-Position-Set Phase-Locked Loop, IEEE Transactions on Industrial Electronics,2024(第一作者)
[2] Sensorless Control of IPMSM Equipped With LC Sinusoidal Filter Based on Full-Order Sliding Mode Observer and Feedforward QPLL,IEEE Transactions on Power Electronics, 2024.(第一作者)
[3] 基于改进正交锁相环的永磁同步电机无位置传感器控制,电工技术学报,2023,(第一作者)
[4] 带有LC正弦波滤波器的内置式永磁同步电机电流控制器谐振抑制参数设计,电工技术学报,2023,(第一作者)
[5] A Comparative Study of Sensorless Control of PMSM Realized by SMO, IET Power Electronics, 2020, (通信作者).
[6] Second-Order Lead Compensator-Based Quadrature PLL for Sensorless Interior Permanent Magnet Synchronous Motor Control, IET Power Electronics, 2020, 13(3): 568-575.(通信作者)
[7] An Improved Pulse Voltage Injection Based Initial Rotor Position Estimation Method for PMSM,IEEE Access,2021(第一作者)
[8]Analysis and Robustness Improvement of Finite-Control-Set Model Predictive Current Control for IPMSM With Model Parameter Mismatches,IEEE Access,2022(通信作者)
[9] Sensorless flux adaption DTFC of an IPMSM based on an active flux-based MTPA and an adaptive second-order sliding mode observer, IET Power Electronics, 2020(通信作者)
[10] Finite Position Set-Phase Locked Loop with Low Computational Burden for Sensorless Control of PMSM Drives, IEEE Transactions on Industrial Electronics,2022.
[11] Sensorless Control of PMSM Drives Using Reduced Order Quasi Resonant-Based ESO and Newton–Raphson Method-Based PLL,IEEE Transactions on Power Electronics, 2022.
[12] Optimization Design of PMSM Sensorless Control Using Generalized Integrator, IEEE Transactions on Industrial Electronics, 2023
[13] Sensorless Control of IPMSM Drives Using High-Frequency Pulse Voltage Injection With Random Pulse Sequence for Audible Noise Reduction, IEEE Transactions on Power Electronics,2023
[14] Novel Random High-Frequency Square-Wave and Pulse Voltage Injection Scheme-Based Sensorless Control of IPMSM Drives,
IEEE Journal of Emerging and Selected Topics in Power Electronics, 2023
[15] Design of Double-LCC-Compensated Wireless PMSM System With Variable DC-Link Voltage Considering Efficiency Optimization and Dynamic Improvement, IEEE Transactions on Power Electronics,2024
[16] Accurate Hybrid Flux Observation Based on Improved Voltage Model for Induction Motor, IEEE ACCESS, 2023.
二、变流器拓扑优化、设计与调制方面代表论文
[1] Optimized Common-Mode Voltage Reduction PWM for Three-Phase Voltage-Source Inverters, IEEE Transactions on Power Electronics, 2016, 31(4): 2959-2969.(第一作者)
[2] Virtual-Space-Vector PWM for A Three-Level Neutral-Point-Clamped Inverter With Unbalanced DC-links, IEEE Transactions on Power Electronics, 2018, 33(3):2630-2642.(第一作者)
[3]Fast-Processing Implementation of Current-Ripple-Losses-Optimized Common-mode Voltage Reduction PWM, IEEE Transactions on Power Electronics, 2019, 34(4):3860-3870.(第一作者)
[4] A Hybrid PWM for Three-Level Inverter With Unbalanced DC-links, IEEE Journal of Emerging and Selected Topics in Power Electronics, 2018, 6(1):1-15.(第一作者)
[5] 三相电压源型逆变器的多目标满意优化脉宽调制策略, 中国电机工程学报, 2016, 36(6):1674-1685.(第一作者)
[6] A Generalized Algorithm to Eliminate Spikes of Common-Mode Voltages for CMVRPWM, IEEE Transactions on Power Electronics, 2016, 31(9): 6698-6709.(通信作者)
[7] An Improved Simplified PWM for Three-Level Neutral Point Clamped Inverter Based on Two-Level Common-mode Voltage Reduction PWM, IEEE Transactions on Power Electronics, 2020, (通信作者).
[8] A Simplified PWM Strategy for a Neutral-Point-Clamped (NPC) Three-Level Converter With Unbalanced DC links, IEEE Transactions on Power Electronics, 2016, 31(4): 3227-3238.
[9] Optimized Switching Finite Control Set Model Predictive Control of NPC Single-Phase Three-Level Rectifiers, IEEE Transactions on Power Electronics, 2020.
[10] A Dual-Vector Model Predictive Control Method With Minimum Current THD,IEEE Transactions on Power Electronics, 2021. (通信作者)
[11] An optimal zero-sequence voltage injection-based common-mode voltage reduction pulse-width modulation for the reduction of common-mode voltages in both amplitude and third-order component, IET Power Electronics, 2022,(第一作者)
[12] Neutral-point voltage control of the three-level inverter in permanent magnet synchronous motor based direct-drive belt conveyor , Computers and Electrical Engineering,2023,(第一作者)
[13] Dynamic Improvement and Efficiency Optimization of Wireless Power Transfer Systems Using Improved FCS-MPC and P&O Methods,IEEE Transactions on Power Electronics,2023
[14] Virtual space vector PWM with reduced CMV for three-level inverters under unbalanced DC-links, Journal of power electronics, 2024(第一作者)
[15] Virtual Space Vector Overmodulation Strategy for NPC Three-Level Inverters With Common-Mode Voltage Suppression,IEEE Transactions on Power Electronics,2024
[16] Optimized Asymmetrical Switching Sequences-Based Model-Predictive Control for Three-Level T-Type Inverters,
IEEE Journal of Emerging and Selected Topics in Power Electronics,2023
授权发明专利:
[1] 一种永磁同步电机的鲁棒模型预测电流控制方法及装置,2021,第一发明人
[2] 带LC滤波器的永磁同步电机无位置传感器控制方法及装置、系统,2022,第一发明人
[3] 一种永磁同步电机电流控制器参数整定方法、装置、系统,2022,第一发明人
[4] 一种永磁同步电机的转子初始位置检测装置,2020,第二发明人
[5] 一种大功率永磁同步电机定子电阻离线辨识方法及装置,2022,第一发明人
[6] 碳化硅逆变器共模电压幅值减小的方法和装置,2019,第二发明人
[7] 永磁同步电机的自适应最大转矩电流比控制装置,2019,第二发明人
[8] 一种同时具有电池单体均衡与热管理功能的智能电池组,2017
[9] 一种双馈电机定子合、分闸过电压抑制的控制方法及装置,2023
[10] 一种多电机机群系统保护方法及装置,2022
培养学生获奖情况:多人获得研究生国家奖学金
培养学生就业、升学情况:多名学生升入西安交大、东南大学、哈尔滨工业大学、天津大学等高校就读电气工程专业博士研究生,江苏电网、浙江电网、山东电网、河北电网、汇川、阳光电源、蔚来等知名企业;
指导学生参与竞赛情况:数学建模比赛、大学生创新创业项目、互联网+、电子设计大赛等;
本课题组拥有大功率变频器、大功率永磁同步电机对拖平台、电磁兼容实验室、多电平变换器、储能变流器、六相电机、氮化镓变换器、碳化硅变换器、并网变换器、APF、无功补偿等各类电力电子与电力传动实验平台,欢迎有兴趣的同学报考本课题组研究生,根据学生个人升学或者就业目标制定特色培养方案,尊重学生兴趣爱好,科研和项目灵活选择,既可以专注升学,也可以专注工程技术能力提升,表现优秀者可推荐至电气头部高校攻读博士。本课题组与企业深入合作,可提供企业实习机会和企业补助。
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