Calculated based on number of publications stored in Pure and citations from Scopus
20162024

Research activity per year

Personal profile

Personal profile

Zhang Yulong Job Title: Special Associate Researcher E-mail: ylzhang3@bit.edu.cn
Master tutor, engaged in distributed parameter system control theory and application research. At present, he has published more than ten academic papers in international journals of cybernetics and applied mathematics such as Automatica, IEEE Transactions on Automatic Control and Systems & Control Letters. He is currently hosting a National Natural Science Foundation youth project and participating in a national science and technology major special basic research project.
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Research Interests

Research on mathematical control theory:
1. Non-parity control of unstable partial differential systems;
2. Stabilization control of partial differential systems with uncertain interference;
3. Accurate controllability of partial differential control system.

Education

2012.09-2018.06, Beijing Institute of Technology, School of Mathematics and Statistics, Applied Mathematics, Ph. D., Supervisor: Junmin Wang
2007.08-2011.07, Lanzhou University, School of Mathematics and Statistics, Applied Mathematics, Bachelor

Professional Experience

2020.08-present, Special Associate Researcher, School of Mathematics and Statistics, Beijing Institute of Technology
2018.07-2020.07, Postdoctoral Fellow, Department of Energy and Power Engineering, Tsinghua University, Co-supervisor: Donghai Li

Research Achievement

Journals
[1] Zhang, Y.L. and Wang, J.M. (2022): Static feedback stabilization of a rotating disk-cable system with measurements from each boundary, Automatica, in press.
[2] Lu, L., Zhang, Y.L., Wang, J.M. and Zhao, D.X. (2022): Stabilization of a coupled ODE-wave system with disturbances, International Journal of Control, Automation and Systems, in press.
[3] Zhang, Y.L. and Wang, J.M. (2022): Boundary tracking control of an unstable cascaded heat system with a non-collocated feedback, IET Control Theory & Applications, online.
[4] Liu, S.J., Zhang, Y.L., Xue, W.C., Shi, G.J., Zhu, M. and Li, D.H. (2022): Frequency response-based decoupling tuning for feedforward compensation ADRC of distributed parameter systems, Control Engineering Practice, 126, 105265, 11pp.
[5] Zhang, Y.L., Zhu, M., Li, D.H. and Wang, J.M. (2022): Stabilization of two coupled wave equations with joint anti-damping and non-collocated control, Automatica, 135, 109995, 9pp.
[6] Zhang, Y.L., Zhu, M., Li, D.H. and Wang, J.M. (2021): Static boundary feedback stabilization of an anti-stable wave equation with both collocated and non-collocated measurements, Systems & Control Letters, 154, 104967, 10pp.
[7] Zhang, Y.L., Wang, J.M. and Li, D.H. (2020): Input-to-state stabilization of an ODE-wave system with disturbances, Mathematics of Control, Signals, and Systems, 32, 489–515.
[8] Zhang, Y.L., Zhu, M., Li, D.H. and Wang, J.M. (2020): ADRC dynamic stabilization of an unstable heat equation, IEEE Transactions on Automatic Control, 65(10), 4424-4429.
[9] Zhang, Y.L., Zhu, M., Li, D.H. and Wang, J.M. (2020): Dynamic feedback stabilization of an unstable wave equation, Automatica, 121, 109165, 9pp.
[10] Zhang, Y.L. and Wang, J.M. (2019): Exact controllability of a micro beam with boundary bending moment, International Journal of Control, 92(6), 1335-1343.
[11] Zhang, Y.L., Wang, J.M. and Guo, Y.P. (2019): Input-to-State stability of an ODE-heat cascade system with disturbances, IET Control Theory and Applications, 13(2), 191-202.
[12] Zhang, Y.L. and Wang, J.M. (2018): Moment approach to the boundary exact controllability of an active constrained layer beam, Journal of Mathematical Analysis and Applications, 465(1), 643-657.
Proceedings
[1] Zhang, Y.L. and Wang, J.M. (2021): Tracking control of a wave equation with boundary disturbance: Combining ADRC and differential flatness, Proceedings of the 40th Chinese Control Conference (CCC) in Shanghai, China, July 26-28, 897-902.
[2] Zhang, Y.L. and Wang, J.M. (2016): Stabilization of one-dimensional wave equation with pointwise dissipation and external disturbance, Proceedings of the 2016 IEEE Multi-Conference on Systems and Control (MSC) in Buenos Aires, Argentina, September 19-22, 743-748.

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