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Synchronous motors linear, cylindrical and spherical with permanent magnets or excited

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Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper deals with the problem of electromagnetic field analysis for linear, cylindrical and spherical electrome-chanical converters at synchronous state of work. There are considered synchronous motor with windings on moving part (rotor, carriage) and with permanent magnets thereon. The electromagnetic field is determined analytically with the help of separation method proposed for each problem. The boundary conditions are formulated for electromechanical converters linear, cylindrical and spherically shaped. The results obtained can be used as benchmark for electromagnetic field numerical analysis and force/torque calculations.
Rocznik
Strony
299--311
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
  • Electrical Engineering Faculty, Silesian University of Technology,. 10 Akademicka St., 44-100 Gliwice, Poland, Dariusz.Spalek@polsl.pl
Bibliografia
  • [1] K. Davey, G. Vachtsevanos, and R Powers, "The analysis of fields and torques in spherical induction motors", IEEE Transaction on Magnetics 23 (1), 273-282 (1987).
  • [2] A.C. Ferreira, R Stephan, and M.A. Cruz Moreira, "Long armature linear synchronous motor with NdFeB field winding", Int. Conf on Electrical Machine ICEM, 41 (2002)
  • [3] G. Kaminski, Electric Motors with Rolling Rotors, Publishing House of the Warsaw University of Technology, Warszawa, 2003.
  • [4] T. Lu and A Binder, "Analytical and experimental analysis of losses in inverter-fed permanent magnet high-speed machine with surface-mounted magnets", Int. Conf. on Electrical Machine ICEM, 180 (2002).
  • [5] J. Turowski, K. Zakrzewski, and R. Sikora, Analysis and Synthesis of Electromagnetic Field, Ossolineum, Warszawa, 1990, (in Polish).
  • [6] S.R. Holm, H. Polinder, J.A. Ferreira, M.J. Hoeijmakers, P. van Gelder, and R. Dill, "Analytical calculation of the magnetic field in electrical machines due to the current density in an airgap winding", Int. Conf on Electrical Machine ICEM, 20 (2002).
  • [7] J. Purczyński and L. Kaszycki, "Power losses and electromagnetic torque of spherical induction motor", Electrotechnical Dissertations 34 (3), 819-838 (1988), (in Polish).
  • [8] R.S. Ingarden and A Jamiolkowski, Classical Electrodynamics, Elsevier-PWN, Warszawa, 1985.
  • [9] S. Kästner, Vectors, Tensors and Spinors, Akademie-Verlag, Berlin, 1960, (in German).
  • [10] P. Szulkin and S. Pogorzelski, Fundamentals of Electromagnetic Field Theory, WNT, Warszawa, 1964.
  • [11] A. Demenko, "Finite element analysis of electromagnetic torque saturation harmonics in a squirrel cage machine", COMPEL 18 (4), 619-628 (1999).
  • [12] A.N. Miliach, Principles of Electrodynamical systems with Three Degrees of Freedom of Movement, Ukraine Academy of Sciences, Kiev, 1956, (in Russian).
  • [13] D. Spałek, "Fast analytical model of induction motor for approaching rotor eccentricity", COMPEL Int. J. Computation Mathematics in Electrical and Electronics Engineering 18 (4), 570-586 (1999).
  • [14] W.A. Gaworkow, Electric and Magnetic Field, WNT, Warszawa, 1962, (in Polish).
  • [15] L.D. Landau and KM. Lifszyc, The classical theory offields, Pergamon, New York, 1951.
  • [16] L.D. Landau and KM. Lifszyc, Electrodynamics Continuous Regions, PWN, Warszawa, 1960, (in Polish).
  • [17] D. Spalek, "Anisotropy component of electromagnetic torque in electrical machines", Archives of Electrical Engineering 1, 109-126 (1999).
  • [18] I.E. Tamm, The Fundamentals of Electric Theory, WNT, Warszawa, 1965.
  • [19] K. Bolte and C. Hahlweg, "Analysis of steady-state of high speed induction motors with exterior rotor and conductive layer on the slotted stator", Int. Conf on Electrical Machine ICEM, 41 (2002).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG5-0028-0006
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