新型电力系统研究中心

姓名:张利东

出生年月: 1969年03月

职称: 教授

职务: 特聘教授

Email: m13810028043@163.com

电话: 13810028043

系所与团队:

电气工程学院, 新型电力系统研究中心


学术身份:

教授,博导,国家级海外高层次人才。 现为IEEE高级会员, CIGRE B4.57工作组 和·JWG C4.B4.C1工作组 成员 IEC SC22F 工作组召集人。


主要工作经历:

2023年6月–2026年6月 在南方电网科学研究院工作,任战略级专家,广州

2021年5月– 2023年5月 在日立能源研究院工作,任主任研究员,北京

2010年7月– 2021年4月 在ABB合作研究中心工作,任主任研究员,瑞典维斯特罗斯

1999年11月– 2007年6月 在ABB电力系统公司工作,任高级工程师,瑞典路德维卡

1996年1月– 1997年2 月 在隆德大学工作,任研究助理,瑞典隆德

1991年8月– 1995年12月 在华北电力大学工作,任讲师,北京


研究方向:

直流输电和电力电子

构网控制技术

大规模新能源接入电网的安全和稳定


学术著作:

代表性论文

[1]L. Zhang,Q Zhu, H. Xiao“ Topology, control, and applications of MMC withy embedded energy storage:A brief review”, Electronics, 2025.

[2]H. Xiao, H. He,L. Zhangand T. Liu, “Adaptive Grid-Synchronization Based Grid-Forming Control for Voltage Source Converters,”in IEEE Transactions on Power Systems, vol. 39, no. 2, pp. 4763-4766, March 2024.

[3]L. Zhang, "Grid-Forming Control for VSC-HVDC Links Connected to Weak Grids – a Comparison Study to Vector Current Control," 2024 Energy Conversion Congress & Expo Europe (ECCE Europe), Darmstadt, Germany, 2024.

[4]A. Bolzoni, J. Pan,L. Zhang, M. Larsson, P. Holmberg, Y. Hafner, P. Roy, “Comparison between HVAC-HVDC solutions for offshore wind plants integration”, 22nd Wind & Solar Integration Workshop, Copenhagen, Denmark, 26 – 28 September 2023.

[5]L. Harnefors andL. Zhang, etc. “Robust Analytic Design of Power-Synchronization Control”,IEEE Transactions onIndustrial Electronics,vol. 66, no. 8, pp. 5810 – 5819, August 2019.

[6]L. Harnefors and N. Johansson andL. Zhang, “Impact on Interarea Modes of Fast HVDC Primary Frequency Control”,IEEE Trans. Power Systems, vol. 32, no.2, pp. 1350-1358, March 2017.

[7]A. Bidadfar, H.-P. Nee ,L. Zhang, L. Harnefors, S. Namayantavana, M. Abedi, “Power System Stability Analysis Using Feedback Control System Modeling Including HVDC Transmission Links”,IEEE Trans. Power Systems, vol. 31, no.1, pp. 116-124, March 2015.

[8]L. Harnefors, N. Johansson,L. Zhangand B. Berggren, “Interarea Oscillation Damping Using Active-Power Modulation of Multiterminal HVDC Transmissions,”IEEE Trans.on Power Systems, vol. 29, no. 5, pp. 2529-2538, Sept. 2014.

[9]P. Mitra andL. Zhangand L. Harnefors, “Offshore Wind Integration to a Weak Grid by VSC-HVDC Links Using Power-Synchronization Control: A Case Study”,IEEE Trans. on Power Delivery,vol. 29, no. 1, pp. 453 - 461, February 2014.

[10]L.Zhangand H.-P. Nee and L. Harnefors, “Analysis of stability limitations of a VSC-HVDC link using power-synchronization control”,IEEE Trans. Power Systems, vol. 26, no.3, pp. 1326-1337, August 2011.

[11]L. Zhangand L. Harnefors and H.-P. Nee, “Modeling and Control of VSC-HVDC links Connected to Island Systems”,IEEE Trans. Power Systems, vol. 26, no.2, pp. 783-793, May 2011.

[12]L. Zhangand L. Harnefors and H.-P. Nee, “Interconnection of two very weak ac systems by VSC-HVDC links using power-synchronization control”,IEEE Trans. Power Systems, vol. 26, no.1, pp. 344-355, Feb. 2011.

[13]L. Zhangand L. Harnefors and H.-P. Nee, “Power-synchronization control of grid-connected voltage-source converters”,IEEE Trans. Power Systems, vol. 25, no.2, pp. 809-820, May 2010.

[14]L. Harnefors,L. Zhangand M. Bongiorno, “Frequency-domain passivity-based current controller design”,IET Power Electron.,vol. 1, no. 4, pp. 455-465, 2008.

[15]M. H. J. Bollen andL. Zhang, “Analysis of voltage tolerance of adjustable-speed drives for three phase balanced and unbalanced sags”,IEEE Trans. on Industry Application, vol.36, no.3, pp.904-910, May/June 2000.

[16]L. Zhangand M. H. J. Bollen, “Characteristics of voltage dips (sags) in power systems”,IEEE Trans. on Power Delivery, vol.15, no.2, pp.827-832, April 2000.

[17]L. Zhangand L. Döfnäs, “A novel method to mitigate commutation failures in HVDC systems”, International Conference on Power System Technology, Kunming, China, October 2002.

[18]L. Zhangand H.-P. Nee, “Multivariable feedback design of VSC-HVDC connected to weak ac systems”, in PowerTech 2009, Bucharest, Romania, 2009.

代表性专利

[1]US patent 2023/0132007 A1, “Power Transfer Between MV Feeders in a Power Distribution Network”, issued on Jan. 2, 2024

[2]US patent 2022/0337051 A1, “Restoration of fault insulated feeder”, issued on Nov. 07, 2023

[3]WO 2021/139897 A1, “Power transfer between mv feeders in a power distribution network”, issued on July 15, 2021

[4]WO 2020/232714 A1, “Combined switch device for overvoltage protection”, issued on Nov. 26, 2020

[5]EUROPEAN PATENT EP 362586 B1, “Determining setpoint parameters for controlling an hvdc link”, issued on Mar. 25, 2020

[6]US patent 2019 / 0157870 A1 , “Method And Control System For Controlling A Voltage Source Converter Using Power-Synchronization Control”, issued on May 23, 2019

[7]WO 2018/188725 A1, “Power transmission system and a method in a power transmission system”, issued on Oct. 18, 2018

[8]WO 2018/076329 A1, “Hvdc converter system and control method therefor and hvdc system using the same”, issued on May 3, 2018

[9]WO 2017/210892 A1, “Line-commutated converter control system and method”, issued on Dec. 14, 2017

[10]WO 2017/190292 A1, “Power conversion circuit, power system and method therefor”, issued on Nov. 09, 2017

[11]Swedish Patent SE539580 C2, “Improved frequency control of an alternating current power system”, issued on Oct. 17, 2017

[12]Swedish Patent SE1500417 A1, “Robust controllers for power oscillation damping (POD) for HVDC grids”, issued on Oct. 22, 2015

[13]WO 2015/049005 A1, “Method and apparatus for damping oscillations in a power system”, issued on April 4, 2015

[14]EUROPEAN PATENT EP 2684268 B1, “A dc grid and a method of limiting the effects of a fault in a dc grid”, issued on Mar. 11, 2013

[15]EUROPEAN PATENT EP 2684267B1, “A current limitation system for limiting the effects of a fault in a dc grid and a method of operating a current limitation system”, issued on Mar. 11, 2013

[16]Swedish Patent SE1200606 A1, “Power synchronization control of a single-phase voltage-rigid inverter”, issued on Oct. 10, 2012


主要科研项目:

[1]直流网阻尼和频率控制,ABB 合作研究中心科技项目

[2]嵌入式直流,ABB 合作研究中心科技项目

[3]直流超大城市供电,ABB 合作研究中心科技项目

[4]增强型STATCOM,日立能源研究员科技项目

[5]海上风电对系统稳定的影响,日立能源研究院科技项目,

[6]异构多源经柔性直流并网系统小信号分块互联建模及分析软件包开发 ,南方电网科技项目

[7]连接远海风电场的柔直系统构网控制技术及其稳定性研究,南方电网科技项目

[8]新能源场站构网/跟网型变流器动态交互机理与配置方法, 国家自然科学基金委员会,联合基金项目

[9]超大城市电网柔性多端互联示范工程,课题2:提高城市电网灵活性和安全性的柔性互联控制技术 ,智能电网国家科技重大专项

[10]高压直挂构网型储能优化配置与融合调度控制关键技术,课题1:高压直挂构网型储能主动支撑作用机理、优化配置和量化评价技术,南方电网科技项目


奖励情况:

[1]由于在构网控制理论所做基础性贡献,入选2016年马奎斯世界名人录。其中,“Power-synchronization control of grid-connected voltage-source converters”是构网控制的一篇经典论文,至今已被1500多篇学术论文引用。

[2]参与开发“一种适用于光伏逆变器的新型构网控制方法”,获得”第九届直流输电与电力电子创新杯大赛决赛一等奖”。

[3]构网型STATCOM的技术研发,获得ABB 2020年度技术研发一等奖。


招生类型:

招收学术型、专业型(硕、博)研究生

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