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On the enhancement of DC-DC converters nonlinear behaviors

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Warianty tytułu
PL
Poprawa właściwości dynamicznych przekształtników DC-DC
Języki publikacji
EN
Abstrakty
EN
Power electronics circuits are rich in nonlinear dynamics. They are characterized by cyclic switching between a finite number of the circuit topologies, which gives rise to a variety of nonlinear behaviors. This paper gives an overview on some chaotic dynamics and bifurcation scenarios that complicate and even make impossible the analysis and the control of such processes. Then a solution, based on optimized PI, is proposed to suppress the occurring nonlinear phenomena in a DC-DC converter.
PL
W artykule zaprezentowano różne scenariusze zakłóceń dynamicznych przekształtników DC-DC. Przedstawiono metody korekcji tych nieliniowych zjawisk dynamicznych.
Rocznik
Strony
45--49
Opis fizyczny
Bibliogr. 18 poz., rys., wykr.
Twórcy
autor
  • University of Djelfa-Algeria
autor
  • CReSTIC–Reims University-France
autor
  • University Amar Telidji Laghouat-Algeria
Bibliografia
  • [1] Erickson R.W., Maksimovic D., Fundamentals of Power Electronics. Kluwer Academic Publishers, Boston, Dordrecht, London, (1999)
  • [2] Soumitro B., Verghese G.C., Nonlinear phenomena in power electronics, Published by John Wiley & Sons, Hoboken, NJ TK7881.15 B36 2001
  • [3] Grebogi C., Yorke J.A., Controlling chaos, Physical Review Letters, pp. 1196-1199, 1990
  • [4] Pyragas K., Continuous control of chaos by self-controlling feedback, Physical Letters A, pp. 421-428, 1992
  • [5] Pyragas K., Control of chaos via an unstable delayed feedback controller, Physics Review Letters, pp. 2265-2268, 2001
  • [6] Fradkov A.L., Evans R.J., Control of chaos: methods and applications in engineering. Annual Review in Control, pp. 33- 56, 2005
  • [7] Kamyar M., Damian G., Bashar Z., Stability Analysis and Control of Nonlinear phenomena in Boost Converters using Model-Based Takagi-Sugeno Fuzzy Approach. IEEE Trans. On Circuits and Systems., pp. 16-23, (2009)
  • [8] Guesmi K., Essounbouli A., Hamzaoui A., Zaytoon J., Manamanni N., Shifting nonlinear phenomena in a DC-DC converter using a fuzzy logic controller, Mathematics and computers in simulation 76 (2008) 398-409
  • [9] Naim R., Weiss G., Ben-Yaakov S., H∞ control applied to boost power converters, IEEE Transactions on Power Electronics, vol. 12, pages 677-683, July 1997
  • [10] Kugi A., Schlacher K., Nonlinear H∞-controller design for a dcto- dc power converter, IEEE Transactions on Control Systems Technology, vol. 7, pages 230-237, March 1999
  • [11] Guesmi K., Contribution a la commande floue d’un convertisseur statique, Thesis of URCA, Reims 01-12-2006
  • [12] Guesmi K. , Essounbouli N., Hamzaoui A., Systematic design approach of fuzzy PID stabilizer for DC-DC converters Elsevier, Energy Conversion and Management, 49(10),2880- 2889, octobre 2008
  • [13] Eberhart R., Kennedy J., A new optimizer using particle swarm theory, in Proc, 6th Int Symp Micro Mach. Human Sci, 1995, pp. 39–43
  • [14] Kennedy J., Eberhart R.C., Particle swarm optimization, Proceedings of IEEE International Conference on Neural Networks IV (1995) 1942–1948
  • [15] Kashif I., Zainal S., Hamed T., Amir S., Maximum Power Point Tracking for PV System under Partial Shading Condition via PSO, IEEE Applied power Electronics Colloquium 2011
  • [16] Kashif I., Zainal S., Hamed T., Amir S., An Improved Particle Swarm Optimization (PSO)–Based MPPT for PV With Reduced Steady-State Oscillation, IEEE Transactions on Power Electronics, vol. 27, no. 8, august 2012
  • [17] Bouallegue S., Haggege J., Ayadin M., Benrejeb M., PID-type fuzzy logic controller tuning based on particle swarm optimization, Engineering Applications of Artificial Intelligence 25 (2012) 484–493
  • [18] Guesmi K., Gozim D., Mahi D., Hamzaoui A., Dynamical ramp for nonlinear phenomena control in DC-DC converter, 3rd international conference on electrical engineering design and technologies, Tunisia, 2009
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-de9ac1a1-3ab8-4967-b27e-1e584af86fac
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