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Minimization current error area of the DC/AC inverter controlled by predictive current control method

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Języki publikacji
EN
Abstrakty
EN
The predictive current controller of the DC/AC converter is presented in the article. The new expected converter current vector's locations can be evaluated due to the possibility of predicting the current vector's change directions. An original method for the converter control was developed basing on the current vector changes analysis presented in this paper. This method enables to minimize the current vector error area and decrease the mean switching frequency. One of the advantages of the proposed control method is the possibility of the realization of the controller in the look-up table controller form. The results of laboratory tests proved the effectiveness of the proposed control method.
Rocznik
Strony
279--285
Opis fizyczny
Bibliogr. 13 poz., 10 rys.
Twórcy
autor
  • Electrical Engineering Department, Technical University of BiaIystok, 45D Wiejska St., 15-351 Bialystok, Poland, ruszczyk@pb.bialystok.pl
Bibliografia
  • [1] K.B. Bose, “Power electronics and variable frequency drives: technology and applications”, Piscataway IEEE Press, 590–592 (1997).
  • [2] M.P. Kaźmierkowski, R Krishan., and F. Blaabjerg, Control in Power Electronics – Selected Problems, Amsterdam: Academic Press, 2002.
  • [3] J. Holtz; “Pulsewidth modulation - a survey”, IEEE Transactions on Industrial Electronics 39 (5), 410–420 (1992).
  • [4] M.P. Kaźmierkowski, “Control strategies for PWM rectifier/inverter – fed induction motors”, 9th Int. Conf. on Power Electronics and Motion Control, EPE-PEMC’2000 1, 69–78 (2000).
  • [5] I. Nagy, “Control algorithm of a three phase voltage sourced reversible rectifier”, 4th Eur. Conf. on Power Electronics and Application 3, Firenze, Italy, 287–292 (1991).
  • [6] A. Sikorski, “Problems connected with the minimization of switching losses in AC/DC/AC - PWM converter feeding the induction machine”, Scientific Debates 58, Technical University of Bialystok Press, Białystok, 1998, (in Polish).
  • [7] J. Holtz and S. Stadtfeld, “A predictive controller for the stator current vector of AC-machines fed from a switched voltage source”, Conf. Record IPEC Tokyo 2, 1665–1675 (1983).
  • [8] J. Holtz and S. Stadtfeld, “A PWM inverter drive system with on-line optimized pulse patterns”, First Eur. Conf. on Power Electronics and Application 3, 21–25 (1985).
  • [9] R. Kennel and D. Schröder, “Predictive control strategy for converters”, Proc. of the Third IFAC Symposium, Lausanne, 415–422 (1983).
  • [10] E. Aldabas, J.L. Romeral, A. Arias, and M.R. Chekkouri, “Digital current controller with a very simple null-vector voltage strategy”, Proc. 9th Eur. Conf. on Power Electronics and Application, EPE Association, 1–8 (2001).
  • [11] A. Ruszczyk and A. Sikorski, “Control of DC/AC inverter current to minimize the current error vector”, 9th Int. Conf. on Power Electronics and Motion Control, EPE-PEMC’2000 7, 174–180 (2000).
  • [12] A. Sikorski and A. Ruszczyk, “The control of DC/AC converter with the minimization of an area of a current vector error”,VI Symposium on on Energoelectronics in Science and Didactics, Kielce, 81–90 (2000), (in Polish).
  • [13] A. Ruszczyk, “New predictive algorithms of AC/DC and DC/AC inverters current control”, Ph.D. Thesis, Technical University of Bialystok Press, Białystok, 2005, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG5-0014-0084
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