Outstanding Talent System of Shandong University
Ding Lei
Release time: September 28, 2016 15:59    Author:    点击:[]


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Research Institute of Relay Protection

Academic identity

Professor,Boader,Qilu Young Scholar。Now IEEE senior member,IEEE PES Jinan Branch Secretary -General,Vice Chairman of the Shandong Electrical Engineering Society,Member of the National Short -circuit current Computing Bid Committee,Chinese Electrical Engineering Society、China Power Society、Member of the Special Committee of the Chinese Automation Society,Cigre B5.57 Working Group、C4/B5.61 Working Group、IEC SC 8A working group expert。SCI Journal int. J. Electr. Power Energy Syst.。

Work experience

2015.9School of Electrical Engineering, Shandong University, professor

2010.4-2015.8 School of Electrical Engineering, Shandong University, associate professor

2009.11-2011.7 The University of Manchester, England, School of Electrical and Electronic Engineering, Research Associate

2008.1-2009.11 Tsinghua University Electrical Engineering and Application Electronic Technology Department,Post -doctoral

Personal information

Name

Ding Lei

Gender

Male

Date of birth

1980.1

Origin

Shandong Linyi

Title

Professor

Job

Dean Deputy Secretary of the Party Committee

Phone

0531-81696111

email

checklei@sdu.edu.cn


Research direction

Low inertial power system operation control,New energy power generation control,Active solution to the power system

Academic works

Some published journal papers are as follows:

[1] ding l, Guo Y, Wall P, et al. Identifying the timing of controlled islanding using a controlling uep base method [J]. IEEE TRANSACTIONS on POWER SYSTEMS, 2018,33 (6): 5913-5922

[2] ding l, MA Z, Wall P, et al. Graph Spectra Based Controlled Islanding for Low Inrtia Power Systems [j]. IEEEEEE TRANSACTIONS on Power Delivery, 2017,32 (1): 302-309

[3] ding l, Guo Y, WALL PERFRFORMANCE and Suitability Assessment of Controlled islanding Methods for Online Wampacation [J]. International Journal of Elect RICAL POWER and Energy Systems,2017,84: 252-260

[4] ding l, Wall P, Terzija V. Constrained Special Clustering Based Controlled Islanding [J]. International Journal Power and Energy Systems, 2014,63: 687-694

[5] ding l, Wall P, Terzija V, et al. TWO-Spectral Clustering Controlled Island ALGORITHM [J] .Ieee Transactions on Power Systems, 2013,28 (1): 75-84.

[6] Faraji R, ding l, Rahimi T, et al. Application of Soft-Switch with Inherent RedundanceS for Enhancing the Roths-BASED DC Converters [J] . IEEE Transactions on Power Electronics, 2021,36 (11): 12342-12354.

[7] Rahimi T, ding l, Faraji R, et al. Performance Improvement of a Three-PHASE InterleaVD DC-DC Converter with Requiring Antisatic for Postfault CONDITINS [J]. IEEE Transactions on Power Electronics,2021,36 (7): 7378-7383.

[8] wang x, ding l, MA Z, et al. Perturbation-based Sensitivity Analysis of Slow Coherency with Variable Power System Inrtia [J]. IEEE Transactions on Power Systems,2021,36 (2): 1121-1129.

[9] kheshti m, ding l, bao w, et al. TOWARD Intelligent Intelligeent Intertial Frequency Participation of Wind Farms for The Grid Frequency Control [J] .Ieee Transactions on Industrial s,2020,16 (11): 6772-6786.

[10] bao w, ding l, liu Z, et al. Analytical Derived FixEd Termination Time for Stepwise Inrtial Control of Wind Turbines — PART I: Analytical Derivation [J]. Internet Journal of Electrical Power and Energy Systems,2020,121.

[11] li x, ding l, zhu g, et al. Transient Instability Detection Method Based on Multi-Source Trajectory Information Energy Systems, 2019,113: 897-905

[12] kheshti m, ding l, Nayeripour m,et al. Active Power Support of Wind Turbines for Grid Frequency Events URIable Power Reference Scheme [J]. Renewable Energy, 2019,139: 1241-1254

[13] liu p, zhu g, ding l, et al. High-Voltage Ride-Through Strategy for Wind Turbine with Fully -lated Converter Based Operation Range [J]. International Journal of Electrical Power & Energy Systems, 2022, 141: 108101.

[14] zhang g, zhang f, ding l, et al. Wind Farm Level Coordination for Optimal Inrtial Control with A Second-Order Cone Predictive Model [J]. IEEE TRANSACTINS on Sustainable Energy.,in Press.

[15] bao w, wu q, ding l,et al. A Hierarchical Inrtial Control Scheme for Multiple Wind Farms with Besss Based on Admm [J].,2021,12 (2): 751-761.

[16] bao w, wu Q, ding l, et al. Synthetic intertial control of Wind Farm with BESS BESED on Model Predictive Control [J]. IET RENEWABLE POWER Generation,2020,14 (13): 2447-2455

[17] Guo Y, Bao W, ding l, 16680_16853 & Energy Systems,2020,121

[18] zhang F, FU A, ding l, 17305_17489, 2020,115.

[19] ZHANG F, FU A, ding l,et al. Optimal Size of ESS For Reducing Agc Payment in a Power System with High PV PENETRATION [J]. Internetal Journal of Electrical Power and E Nergy Systems, 2019,110: 809-818

[20] Phadke a.g, Wall P, ding l, et al. Improving the Performance of Power System Protection Using Wide Area Monitoring Systems[J]. Journal of Modern Power Systems and Clean Energy, 2016,4 (3): 319-331


Some authorized patents have been authorized as follows:

[1] Double -feeder fan virtual inertia frequency dynamic speed protection method and system,ZL201911135568.32020.04.02

[2] Wind -fancy control method and system,ZL201911137050.32020.04.23

[3] Disglement from the wind to participate in the power grid frequency adjustment-Storage-Optimized configuration method and system of gas turbine capacity,ZL201911088121.52020.02.02

[4] SingledqControl structure dual -feeder is positive、Negative sequence rotor current control method and system,ZL202010790352.72020.12.28

[5] The asymmetric fault of the direct drive fan is double -frequency voltage suppression method and system,ZL202010467590.42020.12.21

[6] Wind power unit collaborative frequency adjustment optimal withdrawal time determination method,ZL201610976478.72019.01.04

[7] A dual feeder unit inertial frequency frequency frequency -regulating active speed protection control system and method,ZL201510509286.02017.10.27

[8] Dual feeders combined with simulated inertia and speeding fans have power frequency controllers and methods,ZL201510334000.X2017.03.29

[9] Two stages of active solution methods based on the one -level spectrum cluster and constraint cluster category,ZL201110173468.72014.01.01

[10] Optimization of virtual impedance control methods and systems of dual feeder fault crossing,ZL202010435460.22021.10.22

[11] Optimized magnetic control method and system,ZL202010435455.12021.11.02

[12] Wind Reserve AC Micrological Balance Control Method and System,ZL201910637213.82020.09.25

[13] Methods and devices of non -communications high -speed distance relay in signal transmission lines,ZL201910373023.x2021.12.17

[14] Based onwamsPower systems of the measured trajectory of temporary stability comprehensive judgment methods and systems,ZL201810846533.x2020.07.31

[15] The control method and system of the direct -drive wind motor group coordinated by wind storage,ZL202210221146.3,2022.06.14


undertaking scientific research projects

[1] Power grid failure wind turbine voltage/Frequency temporary active support technology,National Key R & D Plan 2018.7-2021.6

[2] Plan and temporary stability constraints and group special active solution strategy research,National Natural Science Foundation on Face 2015-2018

[3] Active solution to the power system based on spectrum -based method,National Natural Science Foundation Youth Project2012-2014

[4] Research on Power grid frequency coordinated control technology containing high -proportion of renewable energy,State Grid Headquarters Technology Project 2019.6-2021.12

[5] High -proportion new energy access power system decentralized cluster control,State Grid Headquarters Technology Project 2019.1-2021.12


Academic Type

Academic type, professional type

 

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