个人简历
关明杰 博士
性别:男 出生年月:1978年9月
工作单位:厦门理工学院金沙9159游戏入口,教授
Email: mjguan@xmut.edu.cn
关明杰教授近年来一直围绕新能源开发与转换、无线能量传输等领域开展研究;曾主持国家自然科学基金面上项目、青年项目、省市级项目和多个横向项目,在国内外期刊发表SCI收录或EI收录论文30余篇,获授权发明专利7项,软件著作权11项;多次担任国家自然科学基金通讯评委及福建省科学技术厅项目评审专家,以及多个SCI检索期刊的审稿人,还担任福建省电源学会理事等学术兼职;承担课程包括电子技术、数控技术、数字电子技术基础、Solidworks应用技术、科技论文阅读与写作等课程。
教育经历
1. 2003/08-2006/09,香港中文大学,机械及自动化工程系,博士
2. 1999/09-2002/07,厦门大学,机电工程系,硕士
3. 1995/09-1999/07,厦门大学,机电工程系,学士
科研与学术工作经历
1. 2024/06-至今,厦门理工学院,金沙9159游戏入口,教授
2. 2022/12-2024/06,厦门大学,萨本栋微米纳米科学技术研究院,副教授,博导
3. 2016/01-2022/12,厦门大学,航空航天学院,副教授,博导
4. 2014/08-2015/08,新加坡南洋理工大学,访问学者
5. 2009/05-2016/01,厦门大学,物理与机电工程学院,副教授
承担项目
1.国家自然科学基金面上项目,52177222,基于流致振动的海流能压电发电技术基础研究,2022/01-2025/12,主持
2.国家重点研发计划子课题,2022YFB3206605,面向量大面广的多类型车辆智能轮胎示范应用,2022/12-2025/11,参加,牵头单位为厦门金龙联合汽车工业有限公司,排名第二
3.企业项目,电梯物联网终端系统研究,2022/10-2023/04,主持
4.厦门大学航院院长基金项目,面向飞机发动机结构的自供电无线健康监测技术与应用,2021/06-2023/05,主持
5.宁德市厦门大学产学研合作项目,分布式驱动平台化物流车轮毂电机驱动系统,2021/01-2022/12,主持
6.企业项目,自供电式太阳能电池板跟踪系统研究,2020/10-2022/10,主持
7.企业项目,基于压差动力的远程控制自适应水务阀门技术研究,2020/05-2022/04,主持
8.国家自然科学基金面上项目,51777177,电动汽车无线充电机理及关键技术研究,2018/01-2021/12,参加
9.国家自然科学基金青年项目,51707168,电力滤波器选频次谐波补偿关键问题的改进研究,2018/01-2020/12,参加
10.企业项目,基于模块化设计及工业机器人技术的自动包装机械关键技术开发,2019/03-2022/02,主持
11.企业项目,光伏并网逆变器工作参数在线无线数据传输技术研究,2018/01-2019/01,主持
12.企业项目,基于多微处理机及共享总线技术的高速包装机械关键技术开发与应用,2017/04-2020/03,主持
13.福建省2011协创中心项目,轮毂驱动平台化物流车底盘研制,2017/01-2019/06,参加
14.企业项目, 基于PC与EtherCAT总线技术的高速包装机械关键技术开发与应用,2016/07-2017/12,主持
15.国家自然科学基金青年项目,11202176,高能效自调频压电俘能技术研究,2013/01-2015/12,主持
16.国家自然科学基金青年项目,51205331,轮式装载机侧、倾翻动态预测模型及预警系统研究,2013/01-2015/12,参加
17.国家自然科学基金青年项目,61205060,塑料光纤通信中650nm光电集成收发芯片的研究,2013/01-2015/12,参加
18.福建省自然科学基金项目,2011J01364,压电驱动器二维控制在硬盘磁头定位中的应用,2011/04/2014/12,主持
发表论文
1. Mingjie Guan, Jun Chen, Min Jiao and Wei-Hsin Liao(*), An Inertial Piezoelectric Energy Harvester Excited by Flow Induced Vibration in Low-Velocity Flowing Water, Energy, Under revision, 2024.
2. Lin Chen, Daqing Luo, Jianfeng Hong, Mingjie Guan, Wenxiang Chen(*),Self-Oscillating Converter Based on Phase Tracking Closed Loop for Dynamic IPT System,Energies 2024, 17(8), 1814.(SCI & EI 收录)
3. Jun Chen, Min Jiao, Lu Wu, Yunbo Ning, Mingjie Guan(*), A Study on Inertial Piezoelectric Energy Harvester Excited by Flow Induced Vibration in Low-Velocity Water,Proceedings of the 4th International Conference on Vibration and Energy Harvesting Applications, Xiangtan, Hunan, China, Apr 2023.
4. Xiang Zhong, Hengyang Wang, Lin Chen and Mingjie Guan(*), Design and Comparative Study of a Small-Stroke Energy Harvesting Floor Based on a Multi-Layer Piezoelectric Beam Structure, Micromachines 2022, 13, 736. (SCI & EI 收录)
5. Jun Chen, Xiangfu Liu, Hengyang Wang, Sheng Wang and Mingjie Guan(*), Design and Experimental Investigation of a Rotational Piezoelectric Energy Harvester with an Offset Distance from the Rotation Center, Micromachines 2022, 13, 388. (SCI & EI 收录)
6. Xiang Zhong, Sheng Wang, Jun Chen, Xiangfu Liu, Mingjie Guan(*), Lin Chen, Energy Harvesting from A Floor Structure Based on Multiple Piezoelectric Transducer Beams, Ferroelectrics, 2021, 577:1, 181-191 (SCI & EI 收录)
7. Po Li, Ying He, Xia Lin, Mingjie Guan, A practical stable control scheme under end point equivalence modulation for DC power supply converters, IET Power Electronics, 2021;14 (14) , pp.2374-2388 (SCI & EI 收录)
8. Lin Chen, Jianfeng Hong, Zaifa Lin, Daqing Luo, Mingjie Guan(*), Wenxiang Chen, A Converter with Automatic Stage Transition Control for Inductive Power Transfer, Energies, 2020, 13(20): 13205268(SCI & EI 收录)
9. Po Li, Wentao Jin, Ruiyu Li, Mingjie Guan(*), Harmonics Detection via Input Observer with Grid Frequency Fluctuation, Electrical Power and Energy Systems, 2020, 115:10546 (SCI & EI 收录)
10. Jianfeng Hong, Fu Chen, Ming He, Sheng Wang, Wenxiang Chen and Mingjie Guan(*), Study of A Low-power-consumption Piezoelectric Energy Harvesting Circuit Based on Synchronized Switching Technology, Energies, 2019, 12(16): 12163166(SCI & EI 收录)
11. Ming He, Sheng Wang, Xiang Zhong, Mingjie Guan(*), Study of A Piezoelectric Energy Harvesting Floor Structure with Force Amplification Mechanism, Energies, 2019, 12(18): 12183516(SCI & EI 收录)
12. Kunpeng Wang, Mingjie Guan, Fu Chen, and Wei-Hsin Liao, A Low Power Thermoelectric Energy Harvesting System for High Internal Resistance Thermoelectric Generators, Journal of Electronic Materials, 2019, 48(9), 5375-5389 (SCI & EI 收录)
13. Fu Chen, Ming He, Sheng Wang, Xiang Zhong and Mingjie Guan(*), Study of An Inertial Piezoelectric Energy Harvester from A Backpack, Ferroelectrics, 2019, 550(1): 233 - 243(SCI & EI 收录)
14. Po Li, Dazheng Xu, Fu Chen and Mingjie Guan(*), Study of An Adaptive Energy Harvesting System for High Voltage Piezoelectric Generators, Ferroelectrics, 2018, 531(01): 143 - 156(SCI & EI 收录)
15. Mingjie Guan, Kunpeng Wang, Dazheng Xu, and Wei-Hsin Liao(*), Design and Experimental Investigation of a Low-Voltage Thermoelectric Energy Harvesting System for Wireless Sensor Nodes, Energy Conversion and Management, 2017, 138: 30-37(SCI & EI 收录,1区)
16. Mingjie Guan, Kunpeng Wang, Qingyuan Zhu, and Wei-Hsin Liao(*), A High Efficiency Boost Converter with MPPT Scheme for Low Voltage Thermoelectric Energy Harvesting, Journal of Electronic Materials, 2016, 45(11): 5514-5520(SCI & EI 收录)
17. Yang Zhao, Kunpeng Wang, and Mingjie Guan(*), An Adaptive Boost Converter for Low Voltage Piezoelectric Energy Harvesting, Ferroelectrics, 2016, 502:1, 107-118 (SCI & EI 收录)
18. Mingjie Guan, Wei-Hsin Liao(*), Design and Analysis of A Piezoelectric Energy Harvester for Rotational Motion System, Energy Conversion and Management, 2016, 111: 239-244(SCI & EI 收录)
19. Qingyuan Zhu, Yuanhui Liu, Huosheng Hu, Liang Hou, and Mingjie Guan(*), Using Wavelet Denoising in Automatic Online Efficiency Estimation of A Hydraulic Excavator, Transactions of the Institute of Measurement and Control, 2017, 39(8): 1262-1270 (SCI & EI 收录)
20. Mingjie Guan(*), Yingtai Li, and Yang Zhao, A Novel Frequency Tunable Mechanism for Piezoelectric Energy Harvesting System, Ferroelectrics, 2015, 478(1): 96 - 105 (SCI & EI 收录)
21. Qingyuan Zhu, Yingtai Li, Yuanqin He, and Mingjie Guan(*), Piezoelectric Energy Harvesting in Automobiles, Ferroelectrics, 2014, 467(1): 33-41(SCI & EI 收录)
22. Mingjie Guan,Wei-Hsin Liao(*),On the Equivalent Circuit Models of Piezoelectric Ceramics,Ferroelectrics,2009,386(1):77~87(SCI & EI 收录)
23. Mingjie Guan, Wei-Hsin Liao(*). Characteristics of Energy Storage Devices in Piezoelectric Energy Harvesting Systems. Journal of Intelligent Material Systems and Structures, 2008, 19(6):671-680(SCI & EI 收录)
24. Mingjie Guan, Wei-hsin Liao(*). On the Efficiencies of Piezoelectric Energy Harvesting Circuits towards Storage Device Voltages. Smart Materials and Structures, 2007, 16:498-505 (SCI & EI 收录)
25. Kunpeng Wang,Dazheng Xu,Mingjie Guan(*),Design and analysis of an adaptive boost converter for piezoelectric energy harvester,2nd International Workshop on Materials Engineering and Computer Sciences (IWMECS 2015),Jinan,2015(SCI 收录)
26. Yang Zhao,Kunpeng Wang,Yingtai Li,Mingjie Guan(*),An improved tunable piezoelectric energy harvesting Structure Based on d33 Mode Coupling,2014 International Conference on on Sustainable Energy and Environmental Engineering,Shenzhen,2014
27. Mingije Guan,Yingtai Li,Yang Zhao,Study on a Novel Tunable Piezoelectric Energy Harvesting Structure,2013 International Conference on Mechatronics and Information Technology (ICMIT 2013),Guilin,2013(EI 收录)
28. Qingyuan Zhu,Mingjie Guan(*),Yuanqin He,Vibration Energy Harvesting in Automobiles to Power Wireless Sensors,Proceeding of the IEEE International Conference on Information and Automation 2012,Shenyang,2012(EI 收录)
29. Qingyuan Zhu,Wenyi Xie,Liang Hou,Ge Gao,Xiaohui Liu,Mingjie Guan(*),The integrated testing system for performance parameters of the Hydraulic excavator,3rd International Conference on Manufacturing Science and Engineering (ICMSE 2012),Xiamen,2012(EI 收录)
30. Mingjie Guan, Wei-Hsin Liao. Circuit Modeling and Load Analysis for Piezoelectric Energy Harvesting Systems, Proceedings of 18th International Conference on Adaptive Structures and Technologies, 2007(EI 收录)
31. Mingjie Guan, Wei-Hsin Liao. On the Energy Storage Devices in Piezoelectric Energy Harvesting. Proceedings of SPIE Conference on Smart Structures and Materials, 6169, 2006(EI 收录)
32. Mingjie Guan, Wei-Hsin Liao. Comparative Analysis of Piezoelectric Power Harvesting Circuits for Rechargeable Batteries. Proceedings of 2005 IEEE International Conference on Information Acquisition, 1:243-246, 2005(EI 收录)
33. 赵扬,李营泰,关明杰(*), 可调频压电俘能结构研究, 压电与声光, 2014, 36(3):428-431
专利及软件著作权
发明专利
1.关明杰,赵扬,李营泰,运用于压电俘能器的调频阵列式压电悬臂梁俘能方法, 201410220834.3
2.关明杰,李营泰,一种旋转式压电悬臂梁俘能器, 201410630793.5
3.关明杰,陈俊, 一种可远离旋转中心安装的新型旋转式压电俘能器,202210232159.0
4.何良宗,林智乐,关明杰,一种用于多次低频电流纹波抑制的电信号零点检测方法, 113049872B
5.李钷,冯海锋,关明杰,一种降低谐波的单相逆变器电流预测控制方法,201810159697.5
6.李钷,晋文涛,关明杰,一种三相电压源型整流器的少传感器模型预测控制方法,202010090574.8
7.何良宗,徐鑫勇,卢凤旺,关明杰,一种单相Z源升压型变频交流-交流变换器, 202111102009.X
软件著作权
1.关明杰,王昆鹏,李营泰,带休眠警告功能振动参数监测软件,2015SR198485
2.关明杰,徐达政,陈福,基于MSP430的压电能量收集系统控制软件,2018SR169826
3.关明杰,陈福,何铭,应用于P-SSHI的压电能量收集接口电路控制程序,2018SR930414
4.何铭,关明杰,王盛,钟翔,应用于分阶段注入的无线能量传输电路控制程序,2019SR0522194
5.关明杰,钟翔,王盛,陈俊, 刘祥福,基于STM32的步态模拟系统电机控制程序,2020SR1829896
6.关明杰, 王衡阳,陈俊,基于STM32的人体步态采集及模拟步态控制的一体化程序,2022SR0015926
7.关明杰, 刘祥福, 陈俊,基于STM32的低功耗高频振动无线传输程序,2022SR0015902
8.关明杰, 柳治强,基于ESP32的信号采集与无线传输程序,2023SR0573639
9.关明杰,焦敏,吴潞,宁云博,基于STM32的振动模拟及伺服电机控制程序,2023SR1513850
10.关明杰,宁云博,陈俊,沈子乔,基于计算流体力学仿真的多孔材料阻力参数计算验证软件,2024SR0348405
11.关明杰,吴潞,陈俊,宁云博,基于STM32的冲击响应电机平台模拟程序,2024SR0359220
获奖
1.2022年获厦门市科学技术进步奖二等奖
2.2012年获IEEE信息与自动化国际会议最佳论文优胜奖
3.2008年获美国机械工程师协会(ASME)年度最佳论文奖