Power System Research Institute
Ye Hua
Published: September 28, 2016 15:59    Author:    点击:[]

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Power System Research Institute

Academic Identity

Doctoral Supervisor, Taishan Scholar Young Expert,Qilu Young Scholars, IEEE   Member, Power system protection and control》JournalYouth editorial board member, Associate Editor of Protection and   Control of Modern Power Systems (PCMP)

Work experience

[Learning experience]

1999.9-2003.7  Undergraduate study at the School of Electrical Engineering, Shandong University, Bachelor's degree

2003.9-2009.7  Master and PhD program in School of Electrical Engineering, Shandong University, Received a doctorate degree

[Work experience]

2009.7-2011.7  School of Control Science and Engineering, Shandong University, Postdoctoral fellow

2009.7-2011.11  School of Electrical Engineering, Shandong University, Lecturer

2011.12-2017.9  School of Electrical Engineering, Shandong University, Associate Professor

2017. 10 Present  School of Electrical Engineering, Shandong University, Professor

2016.7 Present   School of Electrical Engineering, Shandong University, doctoral supervisor

2022.1Present  Deputy Dean, School of Electrical Engineering, Shandong University

[Visit experience]

2009.11-2010.1 Department of Electrical Engineering, Hong Kong Polytechnic University, Visiting scholar

2014.4-2015.5  Department of Electrical and Computer Engineering, University of Connecticut, USA, Visiting scholar

Personal information

Name

Ye Hua

Gender

Male

Date of birth

1981.7

Place of Origin

Suizhou, Hubei

Professional title

Professor

Position

Vice Dean

Tel

0531-81696118

Email

yehua@email.sdu.edu.cn

 Research direction

Power system stability analysis and control, Cyber-physical integrated power system, Flexible DC Grid

Academic works

[Monograph]

[1] Ye Hua, Liu Yutian. Calculation of eigenvalues ​​of large-scale time-delay power systems (Second Edition). Beijing: Science Press, 2023. (700,000 words)

[2] Ye Hua, Liu Yutian. Calculation of eigenvalues ​​of large-scale time-delay power systems. Beijing: Science Press, 2018. (350,000 words)

[3] Liu Yutian, Wang Hongtao, Ye Hua. Power System Restoration Theory and Technology. Beijing: Science Press, 2014. (340,000 words)

[Technology Rewards]

[1] Key technologies and applications of large-scale time-delay power system oscillation analysis and control, Second Prize of Shandong Province Science and Technology Progress Award 2021, Ranked 1.

[Last five yearsHigh-level journal articles]

[1] Guanqun Li, Hua Ye, Junru Chen, Qianying Mou. Transient stability analysis and enhancement of wind farm integrated MMC-HVDC system. CSEE Journal of Power and Energy Systems, in press.

[2] Hua Ye, Xiaofan Jia, Muyang Liu, Yutian Liu, Sicong Zhang. Partial solution operator discretization-based methods for efficiently computing least-damped eigenvalues ​​of large time delayed power system. CSEE Journal of Power and Energy Systems, in press.

[3] Guanqun Li, Hua Ye, Zijun Bin. High-frequency oscillation mechanism analysis of wind-farm side MMC station considering converter transformer stray capacitance. International Journal of Electrical Power and Energy Systems, 2023, 153(1), 109179.

[4] Hua Ye, Shilin Gao, Guanqun Li, Yutian Liu. An efficient and general method for estimating short-circuit current in MTDC grid. IEEE Transactions on Industrial Electronics, 2021, 68(1): 258-269.

[5] Shilin Gao, Hua Ye, Yutian Liu. Accurate and efficient estimation of short-circuit current for MTDC grids considering MMC control. IEEE Transactions on Power Delivery, 2020, 35(3): 1541-1552.

[6] Hua Ye, Tairan Li, Yutian Liu. Time integration-based IGD methods for eigen-analysis of large delayed cyber-physical power system. IEEE Transactions on Power Systems, 2020, 35(2): 1376-1388.

[7] Qianying Mou, Hua Ye, Yutian Liu. Enabling highly efficient eigen-analysis of large delayed cyber-physical power systems by partial spectral discretization. IEEE Transactions on Power Systems, 35(2): 1499-1508.

[8] Hua Ye, Kehan ​​Liu, Qianying Mou, Yutian Liu. Modeling and formulation of DCPPS for small signal stability analysis and control. IEEE Transactions on Power Systems, 2019, 34(3): 2419-2432.

[9] Qianying Mou, Hua Ye, Yutian Liu. Nonsmooth optimization-based WADC tuning in large delayed cyber-physical power system by interarea modes tracking and gradient sampling. IEEE Transactions on Power Systems, 2019, 34(1): 668-679.

[10] Hua Ye, Qianying Mou, Xinlei Wang, Yutian Liu. Eigen-analysis of large delayed cyber-physical power system by time integration-based solution operator discretization methods. IEEE Transactions on Power Systems, 2018, 33(6): 5968-5978.

[11] Hua Ye, Qianying Mou, Yutian Liu. Calculation of critical oscillation modes for large delayed cyber-physical power system using pseudo-spectral discretization of solution operator. IEEE Transactions on Power Systems, 2017, 32(6): 4464-4476.

[12] Hua Ye, Qianying Mou, Yutian Liu. Enabling highly efficient spectral discretization-based eigen-analysis methods by Kronecker product. IEEE Transactions on Power Systems, 2017, 32(5): 4148-4150.

[13] Hua Ye, Yutian Liu, Peng Zhang, Zhengchun Du. Analysis and detection of forced oscillation in power system. IEEE Transactions on Power Systems, 2017, 32(2): 1149-1160.

[14] Hua Ye, Yutian Liu, Peng Zhang. Efficient eigen-analysis for large delayed cyber-physical power system using explicit infinitesimal generator discretization. IEEE Transactions on Power Systems, 2016, 31(3): 2361-2370.

[15] Guanqun Li, Hua Ye, Shilin Gao, Yutian Liu, Lei Gao. Modeling and simulation of large power system with inclusion of bipolar MTDC grid. International Journal of Electrical Power & Energy Systems, 2020, 116(1), 105565.

[16] Hua Ye, Jiahong Li, Min He, Yutian Liu, Lei Gao, Yanling Du, Haitao Liu. Power shift-based optimal corrective control for bipolar multi-terminal HVDC grid. IET Generation, Transmission & Distribution, 2019, 13(13): 2711-2720.

[17] Qianying Mou, Hua Ye, Yutian Liu, Lei Gao. Applications of matrix perturbation theory to delayed cyber-physical power system. International Journal of Electrical Power & Energy Systems, 2019, 107(1): 507-515.

[18] Li Guanqun, Ye Hua, Bin Zijun. V/fControlMMCMechanism analysis of high-frequency oscillation in no-load charging of converter transformer. Power system automation, 2023, 47(11): 50-59.

[19] Chen Junru, Li Guanqun, Liu Muyang, Ye Hua. The influence mechanism of grid impedance ratio on the synchronization stability of the grid converter. Chinese Journal of Electrical Engineering, 2023, 43(6): 2331-2338.

[20] Jia Xiaofan, Ye Hua, Liu Yutian, Liu Muyang. Part-basedIGD-IRK's efficient calculation method for time-delay power system eigenvalues. Power system automation, 2023, 47(12): 95-102.

Undertake scientific research projects

[1] High inertia energy storage synchronous condenser damping control technology to improve small disturbance stability, National Key R&D Program Project, Project number: 2023YFB2406803, 6.16 million, Responsible person, 2023.11-2026.10.

[2] Research on the interaction mechanism and active control technology of grid-based/follow-grid new energy power generation, State Grid Headquarters Technology Project, 1.82 million, Project Leader, 2023.7-2025.12.

[3] Key technologies for adaptive grid connection and active synchronization of extremely high penetration distributed photovoltaic power generation, National Key R&D Plan Project Sub-topic, Project number: 2022YFB2402904, 1.28 million, Responsible person, 2022.11-2025.10.

[4] Research on the small interference stable region of large-scale power systems taking into account communication time delays and controller parameter uncertainties, National Natural Science Foundation of China General Project, Approval number: 52077126, 580,000, Project Leader, 2021~2024.

[5] Research on uncertainty-oriented distributed probabilistic prediction-assisted state estimation of active power distribution system, National Natural Science Foundation of China General Project, Approval number: 52077125, 580,000, No. 2, 2021~2024.

Academic Type

PhD candidate

Master’s degree students: academic, professional

 

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