National high-level talents
Guo Yifei
Published on: May 24, 2023 10:27    Author:    点击:[]




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Relay Protection Research Institute

Academic identity

Professor、Doctoral Supervisor,Selected National High-Level Young Talent Program (2023), selected candidate of Shandong Province High-Level Young Talents Program (2023), Shandong UniversityOutstanding young and middle-aged scholars. serveInternational Journal of Electrical Power & Energy Systems,Applied Energy,Journal of Modern Power Systems and Clean EnergyEditorial board member of other international journals (youth),Member of IEEE PES Task Force on Networked Microgrids in Energy Internet

Main work experience

2024Present, Shandong University, professor

2023-2024, University of Aberdeen, UK, Lecturer

2023,ETH Zurich, Switzerland,Visiting Scholar

2020-2022,Imperial College, UK,Postdoc

2019-2020,Iowa State University, USA,Postdoc

2017-2018,Technical University of Denmark,Visiting Scholar

Personal information

Name:

Guo Yifei

Gender:

Male

Date of birth:

1992.04

Hometown:

Zibo

Professional title:

Professor

Tel:

Email

yfguo.sdu@gmail.com

Personal homepage:



Research Interests

New energy power system operation optimization、Stability control、Protect;Optimization theory、Application of complex network theory in power system

Academic works

Representative papers in recent years:

1.  A. Arjomandi-Nezhad, Y. Guo, B. C. Pal, D. Varagnolo, “A model predictive approach for enhancing transient stability of grid-forming converters,” IEEE Transactions on Power Systems, early access, 2024.

2. R. Luo, H. Gao, F. Peng, Y. Guo, “An adaptive low-Voltage ride-through method for virtual synchronous generators during asymmetrical grid faults,” IEEE Transactions on Sustainable Energy, early access, 2024.

3. Y. Guo, B. C. Pal, and R. A. Jabr, “Model-free optimal control of inverter for dynamic voltage support,” IEEE Transactions on Power Systems, vol. 38, no. 6, pp. 5860–5871, Nov. 2023.

4. Y. Guo, B. C. Pal, R. A. Jabr, and H. Geng, “Global optimality of inverter dynamic voltage support,” IEEE Transactions on Power Systems, vol. 37, no. 5, pp. 3947–3957, Sep. 2022.

5. Y. Guo, B. C. Pal, and R. A. Jabr, “On the optimality of voltage unbalance attenuation by inverters,” IEEE Transactions on Sustainable Energy, vol. 22, no. 3, pp. 1492–1506, July 2022.

6. Peng, H. Gao, J. Huang, Y. Guo, Y. Liu, and Y. Zhang, “Power differential protection for transformer based on fault component network,” IEEE Transactions on Power Delivery, vol. 38, no. 4, pp. 2464-2477, Aug. 2023.

7. R. Cheng, Z. Wang, Y. Guo, and Q. Zhang, “Online voltage control for unbalanced distribution networks using projected Newton method,” IEEE Transactions on Power Systems, vol. 37, no. 6, pp.4747-4760, Nov. 2022.

8. R. Cheng, Z. Wang, and Y. Guo, “An online feedback-based linearized power flow model for unbalanced distribution networks,” IEEE Transactions on Power Systems, vol. 37, no. 5, pp. 3552-3565, Sep. 2022.

9. Y. Guo, Y. Yuan, and Z. Wang, “Distribution grid modeling using smart meter data,” IEEE Transactions on Power Systems, vol. 37, no. 3, May 2022.

10. Y. Guo, Q. Zhang, and Z. Wang, “Cooperative peak shaving and voltage regulation in unbalanced distribution feeders,” IEEE Transactions on Power Systems, vol. 36, no. 6, pp. 5235-5244, Nov. 2021.

11. Q. Zhang, Y. Guo, Z. Wang, and F. Bu, “Distributed optimal conservation voltage reduction in integrated primary-secondary distribution systems,” IEEE Transactions on Smart Grid, vol. 12, no. 5, pp. 3889-3900, Sep. 2021.

12. Y. Yuan, Y. Guo, K. Dehghanpour, Z. Wang, and Y. Wang, “Learning-based real-time event identification using rich real PMU data,” IEEE Transactions on Power Systems, vol. 36, no. 6, pp. 5044-5055, Nov. 2021.

13. F. Bu, K. Dehghanpour, Y. Yuan, Z. Wang, and Y. Guo, “Disaggregating customer-level behind-the-meter PV generation using smart meter data and solar exemplars,” IEEE Transactions on Power Systems, vol. 36, no. 6, pp. 5417-5427, Nov. 2021.

14. Y. Guo, H. Gao, D. Wang, and Q. Wu, “Online optimal voltage regulation of VSC-HVDC connected wind farms using gradient projection: decentralized and asynchronous implementations,” IEEE Transactions on Sustainable Energy, vol. 12, no. 2, pp. 1489-1492, Apr. 2021.

15. Z. Ma, Z. Wang, Y. Guo, Y. Yuan, and H. Chen, “Nonlinear multiple models adaptive secondary voltage control of microgrids,” IEEE Transactions on Smart Grid, vol.12, no.1, pp.227-238, Jan. 2021.

16. Y. Guo, H. Gao, and Z. Wang, “Distributed online voltage control for wind farms using generalized fast dual ascent,” IEEE Transactions on Power Systems, vol.35, no.6, pp.4505-4517, Nov. 2020.

17. D. Wang, M. Hou, and Y. Guo, “Travelling wave fault location of HVAC transmission line based on frequency-dependent characteristic,” IEEE Transactions on Power Delivery, vol. 36, no. 6, pp. 3496-3505, Dec. 2021.

18. Y. Guo and H. Gao, “Data-driven online system equivalent for self-adaptive droop voltage control of wind power plants,” IEEE Transactions on Energy Conversion, vol. 35, no. 1, pp. 302-305, Mar. 2020.

19. S. Huang, Q. Wu, Y. Guo, and F. Rong, “Hierarchical active power control of DFIG wind farm with distributed energy storage based on ADMM,” IEEE Transactions on Sustainable Energy, vol. 11, no. 3, pp. 1528-1538, Jul. 2020.

20. S. Huang, Q. Wu, Y. Guo, X. Chen, B. Zhou, and C. Li, “Distributed voltage control based on ADMM for large-scale wind farm cluster connected to VSC-HVDC,” IEEE Transactions on Sustainable Energy, vol. 11, no. 2, pp. 584-594, Apr. 2020.

21. Y. Guo, Q. Wu, H. Gao, S. Huang, B. Zhou, and C. Li, “Double-time-scale coordinated voltage control in active distribution networks based on MPC,” IEEE Transactions on Sustainable Energy, vol. 11, no. 1, pp. 294-303, Jan. 2020.

22. Y. Guo, Q. Wu, H. Gao, X. Chen, and J. Østergaard, “MPC-based coordinated voltage regulation for distribution networks with distributed generation and energy storage system,” IEEE Transactions on Sustainable Energy, vol. 10, no. 4, pp. 1731-1739, Oct. 2019.

23. Y. Guo, H. Gao, H. Xing, Q. Wu, and Z. Lin, “Decentralized coordinated voltage control of VSC-HVDC connected wind farms based on ADMM,” IEEE Transactions on Sustainable Energy, vol. 10, no. 2, pp. 800-810, Apr. 2019.

24. Y. Guo, H. Gao, Q. Wu, H. Zhao, J. Østergaard, and M. Shahidehpour, “Enhanced voltage control of VSC-HVDC-connected offshore wind farms based on model predictive control,” IEEE Transactions on Sustainable Energy, vol. 9, no. 1, pp. 474-487, Jan. 2018.

25.Y. Guo, H. Gao, and Q. Wu, “A combined reliability model of VSC-HVDC connected offshore wind farms considering wind speed correlation,” IEEE Transactions on Sustainable Energy, vol. 8, no. 4, pp. 1637-1646, Oct. 2017.

Main scientific research projects

1. National High-level Young Talent Project,“Key technology for voltage control of high penetration new energy distribution network”,Host

2. Royal Society Fund, “Optimal Transient Control of Grid-Forming Renewable Energy Under Large Disturbances”, Host

3. Blink Trust Fund, "Maximizing Dynamic Voltage Support of Renewables in Net Zero Power Grids", Host

4. British Engineering and Natural Science Foundation, “Resilient Operation of Sustainable Energy Systems”,Participate

5. U.S. National Science Foundation Distinguished Young Scholars Program, “Learning Smart Meter Data to Enhance Distribution Grid Modeling and Observability”, Participate

6. U.S. Department of Energy Project, “Optimal Operation and Impact Assessment of Distributed Wind for Improving Efficiency and Resilience of Rural Electricity Systems”, Participate

7. National Natural Science Foundation of China,"Based onVSC-HVDCDistributed control and protection of large-scale offshore wind farms connected to the grid”,Participate

8. National Key R&D Program, "Operation Control and Protection of Large-Scale AC-DC Hybrid Power Grid", Participate


Reward status

Outstanding doctoral thesis in Shandong Province (the only one in the electrical field in the same year)

Enrollment Type

Cultivation of academic types、Professional (Master's degree)、Ph.D.) graduate student and postdoctoral fellow,Those with excellent grades can be jointly trained with prestigious overseas schools。Sincerely welcome You Electric、Control、Applied Mathematics、Students and researchers with physics and other related backgrounds join the research group,Explore the unknown world together,If interested, please contact us by email (with resume)。

 

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