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An estimation of large-signal stability for the bilinear DC-DC converters

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PL
Oszacowanie stabilności przekształtników DC-DC typu Boost dla dużych sygnałów
Języki publikacji
EN
Abstrakty
EN
An approach to the analysis of large-signal stability of a Boost converter via the small-signal loop gains is presented. The large-signal stable region of the small-signal designed bilinear Boost converter is estimated in light of the Input-output stability concept. By doing so, the effects of small-signals on large-signal stability are revealed. The effectiveness of the presented approach is verified by simulations and good agreement is reported.
PL
Zaprezentowano analizę stabilności przekształtnika DC-DC typu Boost dla dużych sygnałów. Porównano pracę dla małych i dużych sygnałów i porównano stabilność układów.
Rocznik
Strony
262--265
Opis fizyczny
Bibliogr. 14 poz., tab., wykr.
Twórcy
autor
  • State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University
autor
  • State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University
autor
  • State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University
Bibliografia
  • [1] Erickson R. W., Cuk S., Middlebrook R. D., Large-signal modelling and analysis of switching regulators, In Proc. 13th Annual IEEE Power Electronics Specialists Conference PESC1982, pages 240-250, 1982.
  • [2] Sanders S. R., Verghese G. C., Lyapunov-based control for switched power converters, IEEE Trans. Power Electron., 7(1992), No. 1, 17-24.
  • [3] Hu T. S., A Nonlinear-System Approach to Analysis and Design of Power-Electronic Converters With Saturation and Bilinear Terms, IEEE Trans. Power Electron., 26(2011), No. 2, 399-410.
  • [4] Sullivan C. J., Sudhoff S. D., Zivi E. L., Zak S. H., Methods of optimal Lyapunov function generation with application to power electronic converters and systems, In Proc. The IEEE Electric Ship Technologies Symposium ESTS 2007, pages 267- 274, 2007.
  • [5] Almer S., U. Jonsson, Kao C. Y., Mari J., Stability analysis of a class of PWM systems, IEEE Transactions on Automatic Control, 52(2007), No. 6, 1072-1078.
  • [6] Mazumder S. K., Acharya K., Multiple Lyapunov function based reaching condition analyses of switching power converters, in Proc. 37th IEEE Power Electronics Specialists Conference PESC2006, pages 1-8, 2006.
  • [7] Garcia F. S., Pomilio J. A., Deaecto G. S., Geromel J. C., Analysis and Control of DC-DC Converters Based on Lyapunov Stability Theory, In Proc. The first IEEE Energy Conversion Congress and Exposition ECCE2009, pages 2920-2927, 2009.
  • [8] Perez M., Ortega R., Espinoza J. R., Passivity-based PI control of switched power converters, IEEE Transactions on Control Systems Technology, vol. 12(2004), No. 6, 881-890.
  • [9] Leyva R., Cid-Pastor A., Alonso C., Queinnec I., Tarbouriech S., Martinez-Salamero L., Passivity-based integral control of a boost converter for large-signal stability, IEE Proceedings- Control Theory and Applications, 153(2006), No. 2, 139-146.
  • [10] Jeltsema D., Scherpen J. M. A., A power-based perspective in modeling and control of switched power converters [Past and Present], Industrial Electronics Magazine, IEEE, 1(2007), No. 1, 7-54.
  • [11] Erickson R. W., Maksimović D., Fundamentals of power electronics, Kluwer Academic, 2001.
  • [12] Chen F., Cai X. S., Design of feedback control laws for switching regulators based on the bilinear large signal model, IEEE Transactions on Power Electronics, 5(1990): 236-240.
  • [13] Zames G., On Input-Output Stability of Time-Varying Nonlinear Feedback Systems .I. Conditions Derived Using Concepts of Loop Gain Conicity and Positivity, IEEE Transactions on Automatic Control, 11(1966), No.2, 228-238.
  • [14] Kittaneh F., Norm inequalities for sums of positive operators, Journal of Operator Theory, 48(2002), No. 1, 95-103.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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