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Tytuł artykułu

Finite element model of a hysteresis motor

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
International Symposium on Electrical Machines SME'07 / sympozjum [XLIII; July 2007; Poznań]
Języki publikacji
EN
Abstrakty
EN
In the paper a two-dimensional time-stepping finite element model of a hysteresis motor with a conducting solid rotor is described. The model incorporates a vector hysteresis model that allows for representation of ferromagnetic hysteresis including major and minor excursions on the BH plane. The equations of the magnetic field are solved using the Fixed-Point technique. The results of calculations are compared to those measured on the prototype machine.
Rocznik
Tom
Strony
123--134
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
  • Opole University of Technology, Institute of Electromechanical Systems and Industrial Electronics, Department of Electrical Engineering, Automatic Control and Computer Science
Bibliografia
  • [1]Bumby J.R., Spooner E., Jagieła M., Equivalent circuit model of solid rotor induction/hysteresis motor, In Proc. of XVI-th Int. Conf. On Electr. Machines, (ICEM’04), 5-8 September, 2004, Cracow, Poland.
  • [2]Dąbrowski M., Gieras J., Induction machines with solid rotor, in Polish, PWN, Poznań, 1976.
  • [3]Dupre L.R., Gyselinck J.J., Melkebeek J.A., Complementary Finite Element Methods in 2d Magnetics Taking into Account a Vector Preisach Model, IEEE Trans. Magn., Vol. 34, No. 5, 1998, pp. 3048-3051.
  • [4]Hodgdon M.L., Applications of a theory of ferromagnetic hysteresis, IEEE Trans. Magn., Vol. 24, No. 1, 1998, pp. 218-221.
  • [5]Hong S.K., Lee S.H., Jung H.K., Voltage source FEA for hysteresis motor using Preisach model, Korean IEE Int. Trans. On Electr. Machinery and Energy Conversion System, Vol. 1 IB, No. 4, 2001, pp. 164-168.
  • [6]Jagieła M., Properties of a sliping surfach technique with a trigonometric interpolation in 2-D finite element models of rotating machines, in Polish, in proc of XLI-st International Symposium of Electr. Machines (SME'05), Opole-Jarnołtówek, 14-17 June 2005, Vol. I, pp. 243-248.
  • [7]Kim H.K., Jung H.K., Hong S.K., Finite element analysis of hysteresis motor using the vector magnetisation-dependent model, IEEE Trans. Magn., Vol. 34, No. 5, 1998, pp. 3495-3498.
  • [8]Mayergoyz I.D., Mathematical models of hysteresis, Springer, New York, 1991.
  • [9]Mazgaj W., The hysteresis motor torque with rial -circumference magnetization In rotor hysteresis layer, In Proc. of XL-th International Symp. of Electr. Machines (SME’2004), Hajnówka, 15-18 June 2004, pp. 274-278.
  • [10]0'Kelly D., Computation of hysteresis motor performance including negative sequence excitation, IEE Proc.-Electr.Power Appl.,Vol. 143, No. 2, 1996, pp. 157-164.
  • [1l]Ossart F., Meunier G., Comparison between various hysteresis models and experimental data, IEEE Trans. Magn.,Vol. 26, No. 5, 1990, pp. 2837-2839.
  • [12]Rahman M.A., Poloujadof M. Jackson R.D., Perard J., Gowda S.D., Improved Algorithm for digital simulation of hysteresis process in semi hard magnetic materials, IEEE Trans. Magn. ,Vol. 17, No. 6, 1981, pp. 3253-3255.
  • [13]Rajagopal K.R., Design of a compact hysteresis motor used in a gyroscope, IEEE Trans. Magn., Vol. 39, No. 5, 2003, pp. 3013-3015.
  • [14]Roters H.C., The hysteresis motor - advances which permit economical fractional horsepower ratings, Trans AIEE, Vol. 66, 1947, pp. 1419-1430.
  • [15]Russell R.L., Norsworthy K.H., Eddy currents and wall losses in screened-rotor induction motor, Proc. IEE, 1958, 105A,pp. 163-175.
  • [16]Saitz J., Newton-Raphson method and fixed point technique in finite element computation of magnetic field problems in media with hysteresis, IEEE Trans. Magn., Vol. 35, No. 3, 1999, pp. 1398-140.
  • [17]Slemon G.R., Jackson R.D., Rahman M.A., Performance predictions for large hysteresis motors, IEEE Trans. Power App. Syst., Vol. 96, No. 6, 1977, pp. 1915-1919.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0081-0073
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