西北工业大学

葛乐飞

发布日期:2024-04-06 浏览次数:

个人经历 personal experience 工作经历 教育经历 2020.9-至今,    西北工业大学,自动化学院,副教授, 硕士生导师    办公室:自动化学院楼302室2021.3-至今, 陕西航空电气有限责任公司,兼职博士后, 合作导师:蒙海鹰研究员(公司技术副总),刘卫国教授 2016.09-2020.08  德国亚琛工业大学(世界顶尖理工大学,电气工程专业德国第一,世界前30),电气与电子信息学院,博士研究生,电气工程  (师从德国工程院院士、IEEE Fellow Rik.W. De doncker教授)2013.09-2016.04  西北工业大学,自动化学院,硕士研究生,电气工程 (专业第一保研,导师:宋受俊教授)2009.09-2013.07  西北工业大学,自动化学院,学士/本科, 测控技术与仪器(卓越工程师班)

教育教学

教育教学 Education and teaching 教育教学 招生信息 电机学 本科生 55学时新型电机控制原理  本科生  32 学时 以学生为核心的全方位能力提升发展指导,亲自辅助编程以及Ansys, Magnet, Matlab, Flux, lnkscape等软件的熟练使用,合作发表国际顶级期刊!与618所,陕西航空电气有限责任公司,林泉电机,北京33所等单位有密切合作,可推荐相关院所就业;与德国亚琛工业大学,英国谢菲尔德大学,约克大学,丹麦奥尔堡大学等国外著名高校有密切联系,可推荐至相关学校继续深造。欢迎对航空航天电机系统,起动/发电一体化电机系统,电动汽车电机系统,新能源发电系统等方向有兴趣的同学报考我的研究生!提供丰厚的助研费,包括基本(即可满足生活需求)+ 奖励 (视完成工作情况而定)。手机:18792439306 (微信同号);邮箱:lge@nwpu.edu.cn。 每年招收硕士研究生4名/年,指导本科毕业设计4~6名/年,指导课程设计/科研训练1~3名/年。2022年指导的本科毕业设计中,获陕西省普通高校电类专业优秀毕业设计特等奖,一等奖以及三等奖各一项。 招生学科:1. 电气工程(一级学科)- 电机与电器、电力电子与电力传动(二级学科)2. 能源动力 - 电气工程方向(专硕)  在读硕士生:2021级黄佳乐 177958389252022级樊子祯郭继轩沈煜钖张东鹏

荣誉获奖

荣誉获奖 Awards Information 2023年 陕西省高等学校科技一等奖2022年 陕西省电源学会青年学术贡献奖2022年 陕西省电源协会优秀学术论文一等奖2项2022年 陕西省高层次人才计划青年项目 2022年 西安市科协青年托举人才计划 2018年 陕西省航空学会科学技术一等奖,陕西省科学技术二等奖, 陕西省高等学校科技二等奖2016年 硕士研究生国家奖学金,西北工业大学学术之星,优秀毕业生,全国研究生数学建模竞赛三等奖2015年 硕士研究生国家奖学金,吴亚军奖学金,全国大学生智能设计竞赛三等奖

科学研究

科学研究 Scientific Research 主要研究方向:航空航天电机系统,起动/发电一体化电机系统,电动汽车电机系统,新能源发电系统,振动与噪声分析,无位置传感器控制技术 主持科研项目:[1]  国家自然科学基金青年项目,[2] 国家级纵向子课题[3] 陕西省高层次人才计划青年项目[4] 陕西省重点研发计划[5]  中国博士后科学基金面上项目[6]  中央高校基本科研业务费[7] 西安市科协青年人才托举计划[8] 航空科学基金[9] 重庆市自然科学基金面上项目 长期从事电机优化设计及控制等工作,涉及到多电飞机、高铁系统、新能源发电以及电动汽车等领域。(1) 新能源发电博士课题即为高速大功率开关磁阻备用发电机的性能提升,它是德国“未来能源供应系统”项目的子课题。总项目涉及到德国数个高校,十多亿欧元,是“德国工业4.0”战略的重要部分。负责备用电机设计的子课题,设计并实验验证了一个200kW的开关磁阻备用发电机的样机,并验证了太阳能电网与备用发电系统切换问题。主要研究如何在高速、大功率下,通过设计方法提高电机的功率密度以及电机效率。相关研究成果可以对我国的新能源发电事业起到积极的推动作用,符合国家的重大发展战略。(2)高铁系统博士导师De Doncker教授是德国高铁ICE动力系统的设计者。曾参与西门子高速列车牵引系统大转矩驱动电机设计项目,主要负责150kW,900Nm大起动转矩的开关磁阻电机设计工作。主要研究如何在保持电机高速性能的同时,提高电机的起动转矩。相关研究成果为德国高铁电机类型的选择提供了参考。(3)多电飞机参与空客公司的多电飞机用高速开关磁阻电机的设计项目,为空客公司提供了750kW开关磁阻电机初始设计方案,并给出了电机最优设计转速。相关研究成果为空客下一代多电飞机起动/发电系统的研究提供了研究基础。

学术成果

学术成果 Academic Achievements 代表性成果总结  (1)出版专著1部,发表论文40余篇,其中SCI收录17篇,13篇发在IEEE Transactions上,中科院JCR一区TOP期刊论文9篇,二区2篇,申请发明专利20余项,已授权4项,其中3项已获得专利转化,转化金额为72万元;  (2)主持国家自然基金青年项目、国家级纵向子课题(300万元)、航空科学基金、中国博士后基金等多个国家以及省部级项目,入选陕西省高层次人才计划青年项目以及西安市科协青年托举人才计划;  (3)研究成果“开关磁阻电机优化设计及集成驱动研究与应用”获得陕西省科学技术二等奖;研究成果“开关磁阻电机优化设计及集成驱动理论与方法”获得陕西高等学校科学技术二等奖;研究成果“航空发动机开关磁阻一体化起动/发电一体化技术研究”获得陕西航空科技一等奖; (4)博士论文得到Rik. W. De doncker教授、Kay Hameyer教授、Christoph Jungemann教授与Ziqiang Zhu教授等四位IEEE Fellow的高度评价,并被评为优秀。所做工作被IEEE Fellow、IEEE电力电子协会主席、IEEE工业应用汇刊副主编、IEEE工业电子协会电机委员会主席、英国皇家工程院院士、英国皇家工程院电机学部主席等学者的多篇SCI收录论文作为代表性工作或其研究的基础正面引用; (5)IEEE会员,担任SCI期刊Electrical Engineering 编委及副编辑,以及一区期刊 IEEE Transaction on Industrial Electronics,IEEE Transaction on Power Electronics审稿人。 专著[1] Lefei Ge, Performance Enhancement of Switched Reluctance Machines for High-speed Backup Generators. Aachener Beitraege des ISEA出版社, 亚琛, 德国. ISBN: 1437-675X, Band 151, 152页, 2020年.论文SCI 索引论文[1] Lefei Ge, Jixi Zhong, Qiyuan Cheng, Zizhen Fan, Shoujun Song, Rik. W. De doncker, Model Predictive Control of Switched Reluctance Machines for Suppressing Torque and Source Current Ripples under Bus Voltage Fluctuation, IEEE Transactions on Industrial  Electronics, 2022,  10.1109/TIE.2022.3229341.(SCI 一区, Top期刊)[2]L. Ge, J. Zhong, J. Huang, N. Jiao, S. Song and R. W. De Doncker, "A Novel Model Predictive Torque Control of SRMs With Low Measurement Effort," IEEE Transactions on Industrial Electronics, vol. 70, no. 4, pp. 3561-3570, April 2023., doi: 10.1109/TIE.2022.3179564.(SCI 一区, Top期刊)[3]L. Ge, J. Zhong, C. Bao, S. Song and R. W. De Doncker, "Continuous Rotor Position Estimation for SRM Based on Transformed Unsaturated Inductance Characteristic," in IEEE Transactions on Power Electronics, vol. 37, no. 1, pp. 37-41, Jan. 2022, doi: 10.1109/TPEL.2021.3096738. (SCI 一区, Top期刊)[4] L. Ge, H. Xu, Z. Guo, S. Song and R. W. De Doncker, "An Optimization-Based Initial Position Estimation Method for Switched Reluctance Machines," in IEEE Transactions on Power Electronics, vol. 36, no. 11, pp. 13285-13292, Nov. 2021., doi: 10.1109/TPEL.2021.3081618. (SCI 一区, Top期刊)[5]  Lefei Ge, Bernhard Burkhart, Rik W. De Doncker, “ Fast Iron Loss and Thermal Prediction Method for Power Density and Efficiency Improvement in Switched Reluctance Machines”, IEEE Transactions on Industrial Electronics, vol. 67, no. 6, pp. 4463-4473, June 2020, doi: 10.1109/TIE.2019.2922937. (SCI 一区, Top期刊,获2022年陕西省电源学会优秀学术论文一等奖)[6] Lefei Ge, Iliya Ralev, Annegret Klein-Hesling, Shoujun Song, Rik W. De Doncker, “A Simple Reluctance Calibration Strategy to Obtain the Flux-linkage Characteristics of Switched Reluctance Machines”, IEEE Transactions on Power Electronics, vol. 35, no. 3, pp. 2787-2798, March 2020, doi: 10.1109/TPEL.2019.2925656. (SCI 一区, Top期刊,获2022年陕西省电源学会优秀学术论文一等奖)[7]  Shoujun Song, Lefei Ge, Zhihui Zhang, “Accurate position estimation of SRM based on optimal interval selection and linear regression analysis,” IEEE Transactions on Industrial Electronics, 63(6): 3467-3478, 2016. (SCI一区, Top期刊)[8]  Song Shoujun, Lefei Ge, Man Zhang, “Data-reconstruction-based modeling of SRM with few flux linkage samples from torque-balanced measurement,” IEEE Transactions on Energy Conversion, 31(2): 424-435, 2016. (SCI二区, Top期刊)[9] Shoujun Song, Man Zhang, Lefei Ge, “A new fast method for obtaining flux-linkage characteristics of SRM,” IEEE Transactions on Industrial Electronics, 62(7): 4105-4117, 2015. (SCI一区, Top期刊)[10] S. Song, J. Liu, Y. Zhao, L. Ge, R. Ma and W. Liu, "High Dynamic Four-Quadrant Speed Adjustment of Switched Reluctance Machine With Torque Predictive Control," IEEE Transactions on Industrial Electronics. doi: 10.1109/TIE.2021.3108707. (SCI一区, Top期刊)[11] Shoujun Song, Lefei Ge, Shaojie Ma, “Accurate measurement and detailed evaluation of static electromagnetic characteristics of switched reluctance machines,”IEEE Transactions on Instrumentation and Measurement, 64(3): 704-714, 2015. (SCI二区, Top期刊)[12] Shoujun Song, Lefei Ge, Shaojie Ma, Man Zhang, “Accurate modeling of switched reluctance machine based on hybrid trained WNN,” AIP Advances, 4(4): 1-9, 2014. [13] Shoujun Song, Man Zhang, Lefei Ge, “A new decoupled analytical modeling method for switched reluctance machine,” IEEE Transactions on Magnetics, 51(3): 1-4, 2015. [14] Shoujun Song, Man Zhang, Lefei Ge, Lusheng Wang,“Multiobjective optimal design of switched reluctance linear launcher,” IEEE Transactions on Plasma Science, 43(5): 1339-1345, 2015.     [15] Li, X., Liu, J., Lefei Ge*. et al. Sensorless Control of the Switched Reluctance Motor Based on the  Sliding-Mode Observer. J. Electr. Eng. Technol. (2022). https://doi.org/10.1007/s42835-022-01350-6.EI索引论文[1]  Lefei Ge, B. Burkhart and R. W. De Doncker, "Fast iron loss prediction method in the pre-design stage of SRMs," The Journal of Engineering, vol. 2019, no. 17, pp. 3677-3681, 6 2019. (EI索引)[2] Lefei Ge, B. Burkhart, A. Klein-Hessling, H. Xu and R. W. De Doncker, "Comprehensive Performance Comparison and Optimization of Single-Pulse Controlled SRGs for Renewable Electrical Grids," 2019 IEEE Applied Power Electronics Conference and Exposition (APEC), Anaheim, CA, USA, 2019, pp. 2632-2637. (EI索引)[3]   Song, Shoujun, and Lefei Ge. "Modeling of switched reluctance machine with few samples based on chaotic fuzzy neural network." 18th International Conference on Electrical Machines and Systems (ICEMS). IEEE, 2015. (EI索引) [4]  Shoujun Song, Man Zhang, Lefei Ge. Multi-Objective Optimal Design of Switched Reluctance Linear Launcher. In Proceedings of 17th Electromagnetic Launch Technology Symposium. (EI索引)[5]  Shoujun Song, Man Zhang, Lefei Ge. A New Analytical Model for Switched Reluctance Machine. In Proceedings of 16th Biennial IEEE Conference on Electromagnetic Field Computation. (EI索引)[6]  宋受俊, 葛乐飞, 刘虎成, 刘卫国, “开关磁阻电机设计及多目标优化方法,” 电工技术学报, 29(5): 197-204, 2014. EI收录. [7]  宋受俊, 葛乐飞, 张蔓, “开关磁阻电机多目标协同优化设计,” 电机与控制学报, 19(1): 68-75, 2015. EI收录. [8] 宋受俊, 葛乐飞, 蒋艳玲, “基于文化粒子群算法的开关磁阻电机多目标优化设计,” 西北工业大学学报, 32(1): 111-117, 2014. EI收录. [9]  L. Ge, R. Yuan, Q. Cheng, J. Zhong, C. Bao and S. Song, "Model Predictive Torque and Force Control of an Switched Reluctance Machine," 2021 IEEE International Conference on Predictive Control of Electrical Drives and Power Electronics (PRECEDE), Jinan, China, 2021, pp. 280-284.[10]  L. Ge, J. Zhong, J. Huang and S. Song, "Model Predictive Torque Control of Switched Reluctance Machine based on Torque-balanced Measurement and Flux-based Torque Estimation," 2021 24th International Conference on Electrical Machines and Systems (ICEMS), Gyeongju, Korea, Republic of, 2021, pp. 867-872.[11]  X. Li, L. Ge*, J. Zhong, J. Huang, Y. Zhao and S. Song, "Sensorless Control of Switched Reluctance Motor Based on the Flux-Linkage Characteristics from Finite Element Method," 2021 24th International Conference on Electrical Machines and Systems (ICEMS), Gyeongju, Korea, Republic of, 2021, pp. 890-895. [12] J. Zhong, Q. Cheng, S. Song, L. Ge et al. "Control of Aircraft Rudder Servo System Based on Optimization of Parameters," 2021 24th International Conference on Electrical Machines and Systems (ICEMS), Gyeongju, Korea, Republic of, 2021, pp. 971-975.[13] S. Song, J. Zhong, L. Ge, X. Zhao, R. Ma and W. Liu, "Sensorless Control of Switched Reluctance Machines Based on Active Phase Inductance Threshold," 2021 24th International Conference on Electrical Machines and Systems (ICEMS), Gyeongju, Korea, Republic of, 2021, pp. 132-135.[14] R. Yuan, Q. Cheng, S. Song, L. Ge et al., "A Method of Torque Ripple Suppression of SRM based on Model Predictive Control," 2021 IEEE International Conference on Predictive Control of Electrical Drives and Power Electronics (PRECEDE), Jinan, China, 2021, pp. 229-234.[15] J. Huang, J. Liu, L. Ge*, Q. Zhao, X. Duan and H. Meng, "Optimal Design of Double-Stator Switched Reluctance Machine with Solution Database Method," 2022 IEEE Transportation Electrification Conference & Expo (ITEC), Anaheim, CA, USA, 2022, pp. 80-85.[16] G. Sun, S. Song, J. Jiang, L. Ge and W. Liu, "Characteristics Testing and Torque Control of Switched Reluctance Machine in Aero-engine Shaft-Line-Embedded Starter/Generator," 2022 IEEE Industry Applications Society Annual Meeting (IAS), Detroit, MI, USA, 2022, pp. 1-6.[17] L. Ge, D. Zhang, J. Huang and S. Song, "SMO-based Sensorless Control of Switched Reluctance Machines with Closed-loop Flux-linkage Observer," 2022 25th International Conference on Electrical Machines and Systems (ICEMS), Chiang Mai, Thailand, 2022, pp. 1-4.[18] L. Ge, J. Huang, D. Zhang and S. Song, "Sensorless Control of Switched Reluctance Machines Based on Adaptive Sliding Mode Observer," 2022 25th International Conference on Electrical Machines and Systems (ICEMS), Chiang Mai, Thailand, 2022, pp. 1-5.[19] Z. Fan, L. Ge*, J. Huang and S. Song, "Power Regulation and Efficiency Optimization of Switched Reluctance Generator for More Electric Aircraft," 2022 25th International Conference on Electrical Machines and Systems (ICEMS), Chiang Mai, Thailand, 2022, pp. 1-6.[20] L. Ge, J. Guo, J. Huang and S. Song, "Research on the Smooth Switching Strategy of Switched Reluctance Starter/ Generator for More Electric Aircraft," 2022 25th International Conference on Electrical Machines and Systems (ICEMS), Chiang Mai, Thailand, 2022, pp. 1-6.[21] L. Ge, Z. Fan, J. Huang and S. Song, "A Novel Performance Enhancement Process for Single-pulse Controlled Switched Reluctance Generators," 2022 25th International Conference on Electrical Machines and Systems (ICEMS), Chiang Mai, Thailand, 2022, pp. 1-6.[22] L. Ge, D. Zhang and Y. Sun, "Online Phase Resistance Identification Strategy for Position Sensorless SRM Drives," 2022 5th International Conference on Power and Energy Applications (ICPEA), Guangzhou, China, 2022, pp. 221-225. 专利[1]葛乐飞,钟继析,宋受俊, 一种基于有限元方法的开关磁阻电机初始位置检测方法, 2021.1.11, 202110028028.6,专利.(已转化,10万元)[2] 葛乐飞,钟继析,鲍崇,宋受俊,蒙海鹰, 一种基于线性电感转化法的开关磁阻电机无位置传感器控制方法,2021.4.20, 202110421334.6,专利. [3] 葛乐飞,程启原,钟继析,刘海洋,宋受俊,一种基于动静态测试的开关磁阻电机建模方法,2021.7.09, 2021070902194050,专利. [4] 葛乐飞,钟继析,黄佳乐,宋受俊,一种基于傅里叶级数模型的开关磁阻电机转矩控制方法,2021.8.25, 202110993028X,专利.(已转化,50万元)[5]葛乐飞,钟继析,刘海洋,宋受俊,一种开关磁阻电机模型预测转矩和径向力控制方法,2021.8.20,2021109618175;[6] 葛乐飞,钟继析,黄佳乐,张东鹏,宋受俊,一种开关磁阻电机多物理场优化设计方法,2021.10.26,20211124385834;[7] 葛乐飞,钟继析,刘家羽,高靖博,谢晨阳,宋受俊,一种开关磁阻电机转矩脉动和母线电流脉动抑制方法,2022.3.24,2022102912321.[8] 葛乐飞,张东鹏,黄佳乐,钟继析,宋受俊,一种基于增益优化滑模观测器的开关磁阻电机无位置传感器控制方法,2022.4.4,ZLTA2022040713.[9]葛乐飞, 张东鹏, 钟继析, 宋受俊, 窦满峰, 刘卫国, 带有磁链观测器的开关磁阻电机无位置传感器控制方法, 2022.06.13, 2022106658777.[10]葛乐飞,张东鹏, 宋受俊, 窦满峰, 刘卫国,一种基于多项式傅里叶级数的开关磁阻电机建模方法,2022.06.07,2022106526481.[11]葛乐飞,沈煜钖,黄佳乐,宋受俊,窦满峰,运用于混动汽车领域的开关磁阻电机五电平功率变换器,2022.05.31, 2022106293532.[12]葛乐飞,郭继轩,刘家羽,宋受俊,窦满峰, 一种基于角度优化控制的开关磁阻电机模式平稳切换方法, 2022.05.22, 2022105591553. [13]葛乐飞,樊子祯,宋受俊,窦满峰, 离线在线相结合的开关磁阻电机功率调节与效率优化方法, 2022.05.14, 2022105250332. [14]葛乐飞,张东鹏,宋受俊,窦满峰, 一种基于滑模观测器的开关磁阻电机相电阻在线辨识方法, 2022.05.15, 2022105335951. [15]葛乐飞,沈煜钖,张东鹏,黄佳乐,宋受俊, 一种基于多电平功率变换器的开关磁阻电机模型预测转矩控制方法, 2022.07.11, 202210815318.X. [16] 宋受俊, 张蔓, 葛乐飞, 夏泽坤, 一种考虑互感耦合的快速获取三相12/8极SRM磁链特性的方法,2017.03.22,ZL201410553519.2,专利. [17] 宋受俊, 葛乐飞, 杨阳, 一种基于线性磁链模型和线性回归分析的SRM位置预估方法, 2019.02.26, CN201610851091.9A,专利.  (已转化,12万元)软件著作权:[1] 葛乐飞,孙艺昕,基于数据库的开关磁阻电机优化设计软件V1.0,2023SR0376342.

综合介绍

社会兼职 Social Appointments IEEE Member 陕西省电源学会理事 the 6th PRECEDE SS Chair (模型预测会议分会主席) 国际期刊审稿人:IEEE Transactions on Industrial ElectronicsIEEE Transactions on Power ElectronicsIEEE Transactions on Transportation ElectrificationIEEE Transactions on Industry ApplicationsIEEE Transactions on MagneticsIET Power Electronics

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