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Nonlinear robust control for single-machine infinite-bus power systems with input saturation

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Języki publikacji
EN
Abstrakty
EN
In this paper, a new control scheme is proposed to achieve stability for a single-machine infinite-bus power system. A power system model simultaneously considering input saturation and time-varying uncertainties is presented. A sufficient condition for the system convergence is given and based on this result, a switching excitation control law with auxiliary system is designed. The stability analysis and simulation results all show that the developed controller is effective.
Rocznik
Strony
3--9
Opis fizyczny
Bibliogr. 20 poz., rys., wykr.
Twórcy
autor
  • College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China
Bibliografia
  • [1] P. M. Anderson and A. A. Fouad, Power System Control and Stability, Second Edition, Wiley-IEEE Press, 2002.
  • [2] G. M. Dimirovski, Y.W. Jing,W. L. Li, and X. P. Liu, “Adaptive back-stepping design of tcsc robust nonlinear control for power systems,” Intelligent Automation & Soft Computing 12 (1), 75- 87 (2006).
  • [3] M. Galaz, R. Ortega, A. S. Bazanella, and A.M. Stankovic, “An energy-shaping approach to the design of excitation control of synchronous generators,” Automatica 39 (1), 111-119 (2003).
  • [4] S. Mei, Y. Ni, G. Wang, and S. Wu, “A study of self-organized criticality of power system under cascading failures based on ac-opf with voltage stability margin,” IEEE Transactions on Power Systems, 23 (4), 1719-1726 (2008).
  • [5] P. Pruski and S. Paszek. “Assessment of Polish Power System angular stability based on analysis of different disturbance waveforms,” Bull. Pol. Ac.: Tech 63 (2), 435-441 (2015).
  • [6] A. Isidori, Nonlinear Control Systems, Springer Science&Business Media, 1995.
  • [7] S. Mei, T. Shen, and K. Liu, Modern Robust Control Theory and Application, Beijing: Tsinghua, 2003.
  • [8] L. Y. Sun, S. Tong, and Y. Liu, “Adaptive backstepping sliding mode control of static var compensator,” IEEE Transactions on Control Systems Technology 19 (5), 1178-1185 (2011).
  • [9] Y. Li, T. Li, and X. Jing, “Indirect adaptive fuzzy control for input and output constrained nonlinear systems using a barrier lyapunov function,” International Journal of Adaptive Control and Signal Processing 28 (2), 184-199 (2014).
  • [10] M. Chen, G. Tao, and B. Jiang, “Dynamic surface control using neural networks for a alass of uncertain nonlinear systems with input saturation,” IEEE Transactions on Neural Networks and Learning Systems 26 (9), 2086-2097 (2014).
  • [11] B. Song and J. K. Hedrick, “Simultaneous quadratic stabilization for a class of non-linear systems with input saturation using dynamic surface control,” International Journal of Control 77 (1), 19-26 (2004).
  • [12] S. Boyd, L. El Ghaoui, E. Feron, and V. Balakrishnan, Linear Matrix Inequalities in System and Control Theory, Philadelphia, SIAM, 1994.
  • [13] W. Dib, A. E. Barabanov, R. Ortega, and F. Lamnabhi- Lagarrigue, “An explicit solution of the power balance equations of structure preserving power system models,” IEEE Transactions on Power Systems 24 (2), 759-765 (2009).
  • [14] W. Dib, R. Ortega, A. Barabanov, and F. Lamnabhi-Lagarrigue, “A globally convergent controller for multi-machine power systems using structure-preserving models,” IEEE Transactions on Automatic Control 54 (9), 2179-2185 (2009).
  • [15] M. A. Arjona, R. Escarela-Perez, G. Espinosa-Perez, and J. Alvarez- Ramirez, “Validity testing of third-order nonlinear models for synchronous generators,” Electric Power Systems Research 79 (6), 953-958 (2009).
  • [16] P. V. Kokotovic and P.W. Sauer, “Integral manifold as a tool for reduced-order modeling of nonlinear systems: A synchronous machine case study,” IEEE Transactions on Circuits and Systems 36 (3), 403-410 (1989).
  • [17] T. Shen, S. Mei, Q. Lu, W. Hu, and K. Tamura, “Adaptive nonlinear excitation control with l2 disturbance attenuation for power systems,” Automatica 39 (1), 81-89 (2003).
  • [18] Y.Wan and J. Zhao, “Extended backstepping method for singlemachine infinite-bus power systems with smes,” IEEE Transactions on Control Systems Technology 21 (3), 915-923 (2013).
  • [19] G. Gurrala and I. Sen, “Power system stabilizers design for interconnected power systems,” IEEE Transactions on Power Systems 25 (2), 1042-1051 (2010).
  • [20] X. Jin, “Adaptive fault tolerant control for a class of input and state constrained mimo nonlinear systems,” International Journal of Robust and Nonlinear Control 26 (2), 286-302 (2016).
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
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