芦铭辉

职称: 304永利集团官网入口青年首席教授、博导

研究方向电力电子系统,电力系统分析,及构网型变流器建模、控制与稳定性分析

Email: minghui.lu@seu.edu.cn

办公电话: 152-5183-6283


个人简介:

芦铭辉,工学博士、304永利集团官网入口青年首席教授、博士生导师、国家级高层次青年人才。研究工作聚焦于构建稳定和可靠的高比例可再生能源接入的新型电力系统,研究方向包括电力电子系统,电力系统分析,及构网型变流器建模、控制与稳定性分析等。2026年加入304永利集团官网入口,具有丰富的海外高校及科研机构工作与科研经历。作为项目负责人主持了国家级青年人才项目、多项美国能源部资助的重点研发项目。已在包括IEEE TPELTEC等顶刊和顶会发表学术论文数十篇,在多个国际高水平SCI学术期刊担任副主编(Associate Editor)和评审专家。入IEEE高级会员,连续多年入选斯坦福大学全球前2%顶尖科学家榜单。曾获IEEE电力电子学会20232025IEEE TPEL最佳期刊论文奖、IEEE电力与能源学会2024IEEE TEC最佳期刊论文奖等学术荣誉与奖励。

教育背景:

  • 丹麦奥尔堡大学,电气工程,博士,2017

  • 华中科技大学,电气工程,硕士,2014

  • 哈尔滨工业大学,电气工程及其自动化,学士,2011

工作背景:

  • 2023-2025,太平洋西北国家实验室,长聘高级工程师

  • 2022-2023,德州大学奥斯汀分校,副研究员

  • 2018-2022,华盛顿大学,博士后研究员

学术兼职:

  • 2024-至今IEEE TEC副主编

  • 2024-至今IEEE PESL副主编

  • 2024-至今IEEE高级会员

代表论著:       

[1]M. Lu, W. Cai, S. Dhople, B. Johnson, “Large-signal Stability of Phase-balanced Equilibria in Single-phase Grid-forming Inverter Systems,”IEEE Transactions on Power Electronics, vol.39, no. 3, pp. 3623-3636, Mar. 2024.

[2]M. Lu, “Virtual Oscillator Grid-forming Inverters: State of the Art, Modeling, and Stability,”IEEE Transactions on Power Electronics, vol. 37, no. 10, pp. 11579-11591, Oct. 2022.

[3] M. Lu, S. Dhople, D. Zimmanck, B. Johnson, “Spontaneous Phase Balancing in Delta Connected Single-phase Grid-forming Inverters,”IEEE Transactions on Power Electronics, vol. 37, no.12, pp. 14115-14125, Dec. 2022.

[4]M. Lu, S. Dhople, B. Johnson, “Benchmarking Nonlinear Oscillators for Grid-forming Inverter Control,”IEEE Transactions on Power Electronics, vol. 37, no. 9, pp. 10250-10266, Sept. 2022.

[5]M. Lu, S. Dutta, B. Johnson, “Self-synchronizing Cascaded Inverters with Virtual Oscillator Control,”IEEE Transactions on Power Electronics, vol. 37, no. 6, pp. 6424-6436, June 2022.

[6] M. Lu, “An Inrush Current Limiting Strategy for Virtual-oscillator-controlled Grid-forming Inverters,”IEEE Transactions on Energy Conversion, vol. 38, no. 3, pp. 1501-1510, Sept. 2023.

[7]M. Lu, Y. Yang, B. Johnson, F. Blaabjerg, “An Interaction-Admittance Model for Multi-Inverter Grid-Connected Systems,”IEEE Transactions on Power Electronics, vol. 34, no. 08, pp. 7542-7557, Nov. 2018.

[8]M. Lu, F. Blaabjerg, et al, “Benchmarking Stability and Robustness against Grid Impedance Variation for LCL-Filtered Grid-Interfacing Inverters,”IEEE Transactions on Power Electronics, vol. 33, no. 10, pp. 9033-9046, Oct. 2018.

[9]M. Lu, X. Wang, P.C. Loh, F. Blaabjerg, “Graphical Evaluation of Time Delay Compensation Techniques for Digitally Controlled Converters,”IEEE Transactions on Power Electronics, vol. 33, no. 03, pp. 2601-2614, Mar. 2017.

[10]M. Lu, X. Wang, P.C. Loh, F. Blaabjerg, “Resonance Interaction of Multi-Parallel Grid-Connected Inverters with LCL-Filter,”IEEE Transactions on Power Electronics, vol. 32, no. 2, pp.894-899, Feb. 2016.

[11]M. Lu, S. Duan, et al, “Research on Parallel Operation of Power Storage System Based on Standalone PV System,” Power Electronics, vol. 03, pp. 105-111, Mar. 2013.

[12] N. Baeckeland, D. Chatterjee,M. Lu, B. Johnson, G. Seo, “Overcurrent Limiting in Grid-Forming Inverters: A Comprehensive Review and Discussion,”IEEE Transactions on Power Electronics, vol. 39, no. 11, pp. 14493-14517, Nov. 2024.

[13] O. Ajala,M. Lu, S. Dhople, B. Johnson, “Model Reduction for Inverters with Current Limiting and Dispatchable Virtual Oscillator Control,”IEEE Transactions on Energy Conversion, vol.37, no. 4, pp. 2250-2259, Dec. 2022.

[14]M. Lu, B. Johnson, “A Grid-compatible Virtual Oscillator Controller: Analysis and Design,” in the IEEE Energy Conversion Congress and Exposition 2019, Baltimore, MD, US.

[15]M. Lu, B. Ross, “An Analogy of Frequency Droop Control for Grid-forming Sources," in the 2025 IEEE Power & Energy Society General Meeting, Austin, TX.

科研项目:

[1]国家高层次青年人才项目:面向涵盖源---储的构网型关键技术研究,主持,在研2026-2029

[2]国家实验室与组织合作技术改进计划: Modular, Multifunction, Multiport and Medium-voltage Utility-scale SiC PV Inverter,主持,结题2025

[3]国家实验室指导研究与开发基金:Inverter Technology for Grid-scale Battery Testing,主持,结题2025

[4]国家实验室指导研究与开发基金:Towards a Fully Distributed Architecture of Modular Multilevel Converters in HVDC,主持,结题2024

教学:

[1]德州大学奥斯汀分校,EE462L-电力电子系统与实验,客座讲师,2022秋。

招生/招聘:

团队面向电力电子、先进电力系统控制及新能源电力系统等相关方向,诚邀优秀青年学者和学生加入。每年计划招收硕士生23名、博士生12名,欢迎电气工程、自动化、控制科学与工程等相关专业的优秀本科生、硕士生报考。可为优秀学生提供赴海外顶尖高校交流访问、联合培养及进一步深造的机会,支持学生拓展国际学术视野和提升科研创新能力。