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http://yadda.icm.edu.pl:80/baztech/element/bwmeta1.element.baztech-article-BPS2-0059-0020

Czasopismo

Archives of Electrical Engineering

Tytuł artykułu

Coupling electromagnetic (FE) models to multidomain simulator to analyse eletrical drives and complex control systems

Autorzy Jagieła, M.  Garbiec, T. 
Treść / Zawartość
Warianty tytułu
Języki publikacji EN
Abstrakty
EN This work presents the co-simulation approach to the analysis of control systems containing detailed models of electromagnetic and electromechanical converters. In this method of analysis the attention is paid to the whole system and not only to its electromagnetic part. The latter is described by equations resulted from the two-dimensional finite element discretisation of the Maxwell equations, and is coupled weakly with the remaining part of the system. The simulation is carried out in Matlab/Simulink environment wherein the coupling is realised through the S-function. Example results regarding simulation of the operation of the control system of an electrical machine and the operation of a power electronic converter are presented and compared with available reference data.
Słowa kluczowe
PL symulacja wspólna   napęd elektryczny   modelowanie matematyczne   metoda elementów skończonych  
EN co-simulation   electrical drives   electromagnetic systems   mathematical modelling   finite element method  
Wydawca Polish Academy of Sciences, Electrical Engineering Committee
Czasopismo Archives of Electrical Engineering
Rocznik 2010
Tom Vol. 59, nr 3-4
Strony 189--201
Opis fizyczny Bibliogr. 14 poz., rys.
Twórcy
autor Jagieła, M.
autor Garbiec, T.
  • Faculty of Electrical Engineering, Automatic Control and Computer Science, Opole University of Technology, ul. Luboszycka 7, 45-036 Opole, m.jagiela@po.opole.pl
Bibliografia
[1] Kanerva S., Simulation of electrical machines, circuits and control systems using finite element method and system simulator. Ph. D. Diss., Helsinki University of Technology, TKK Dissertations 2, Espoo, Finland, 2005.
[2] Kanerva S., Data transfer methodology between a FEA program and a system simulator. Proc. of Vth International IEEE Conference on Electrical Machines and Systems (ICEMS): 1121-1124 (2001).
[3] Zhou, P., Lin, D., Fu et al. A general co-simulation approach for coupled field-circuit problems. IEEE Trans. Magn. 42(4): 1051-1054 (2006).
[4] Jabbar M.A., Phyu H.N., Liu, Z.J. Analysis of the starting process of a disk drive spindle motor by time stepping finite element method. IEEE Trans. Magn. 40(4): 3204-3206 (2004).
[5] Nowak L., Radziuk K., Dynamics of an electromagnetic linear actuator operating in error actuated control system. COMPEL - The International Journal for Computation and Mathematics in Electrical and Electronic Engineering 26(4): 941-951 (2007).
[6] Fu W.N. Zhou P., Lin D., Modeling of Solid Conductors in Two-Dimensional Transient Finite-Element Analysis and its Application to Electric Machines. IEEE Trans. Magn. 40(2): 426-434 (2004).
[7] Hameyer K., Belmans R., Numerical modeling and design of electrical machines and devices, WITT Press, Southampton, 1999.
[8] Jagiela M., Analysis of performance of special induction machines using a field-circuit approach. (in Polish), Opole Univ. of Technology 205, Opole 2007; electronic version available after request.
[9] Rodger D., Lai H.C., Leonard P.J., Coupled elements for problems involving movement. IEEE Trans. Magn. 26(2): 548-550 (1990).
[10] Perrinbit R., Coulomb J.L., A three dimensional finite-element mesh interconnection for problems involving movement. IEEE Trans. Magn. 31(3): 1920-1923 (1995).
[11] Simulink, Version 7, Developing S-functions, Mathworks Inc. (2010).
[12] Roberts P.C., Flack T.J., Maciejowski J.M., McMahon R., Two stabilising control strategies for the brushless doubly-fed machine (BDFM). Proc. of Intern. Conf. Power Electronics, Machines and Drives (PEMD’02), 4-7 June 2002, Bath, United Kingdom: 341-346.
[13] Garbiec T., Modeling the switched mode power supply using a field approach. (in Polish), M.Sc. Thesis, Opole University of Technology, Opole 2009.
[14] PLECS Version 3.0 - Circuit simulation at system level, User Manual, Plexim GmbH, Switzerland 2010.
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