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Optimization of a two-phase transverse flux switched reluctance motor with an outer rotor

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Języki publikacji
EN
Abstrakty
EN
This paper presents optimization results for a two-phase, modular transverse flux switched reluctance motor (TFSRM) with an outer rotor. In particular, the main disadvantage of the considered motor structure, that is the zero starting torque in some rotor positions, is eliminated by construction optimization. A numerical model of the motor developed in the Flux3D program is coupled with a Matlab-based evolutionary algorithm for optimization of construction parameters of the magnetic circuit. The elaboratem algorithm is also connected with a database to limit the computation costs. Three objective functions are taken into account for the motor integral parameter improvement. The fundamental role of a type of an optimization criterion function is comparatively analyzed and a new effective criterion function is introduced.
Rocznik
Strony
567--578
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
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autor
Bibliografia
  • [1] Amreiz H.M., Mecrow B.C., Wiener C., Switched reluctance machines with simple hoop windings. IEE Power Electronics, Machines and Drives Conf., Publ. 487: 522-526 (2002).
  • [2] Arshad W.M., Thelin P., Bäckström T., Sadarangani C., Use of transverse-flux machines in a freepistongenerator. IEEE Trans. Ind. Appl. 40(4): 1092-1100 (2004).
  • [3] Babazadeh A., Parspour N., Hanifi A., Transverse flux machine for direct drive robots: Modellingand analysis. IEEE Conference on Robotics, Automation and Mechatronics, Singapore, 1: 376-380 (2004).
  • [4] Babazadeh A., Parspour N., Analysis of shifted transverse flux reluctance motor. International Conference on Optimization of Electrical and Electronic Equipment, Bravos, Romania, pp. 53-58 (2004).
  • [5] Dubois M.R., Dehlinger N., Polinder H., Massicotte D., Clawpole transverse-flux machine withhybrid stator. International Conference on Electrical Machines (ICEM), Chania, Crete Island, Greece, PSA, pp. 4-11 (2006).
  • [6] De Jong K.A., Evolutionary computation: a unified approach. MIT Press, Cambridge MA (2006).
  • [7] Hall R., Jack A.G., Mecrow B.C., Mitcham A.J., Design and initial testing of an outer rotating segmentedrotor switched reluctance machine for an aero-engine shaft-line-embedded starter/generator. IEEE International Conference on Electric Machines and Drives, pp. 1870-1877 (2005).
  • [8] El-Kharashi E.A., Mecrow B.C., Finch J.W., Jack A.G., Switched reluctance motors with segmentalrotors. IEE Proceedings, Electric Power Applications 149(Issue: 4): 245-254 (2002).
  • [9] Fonseca C.M., Gandibleux X., Hao J.K., Sevaux M., (Eds.), Evolutionary Multi-Criterion Optimization. Proc. 5th International Conference, EMO 2009, Nantes, France, Series: Lecture Notes in Computer Science 5467 (2009).
  • [10] Isastia V., Bellucci M., A new configuration of a TFPM machine for a wheel motor. ICEM 2004, Cracow 1: 139-140 (2004).
  • [11] Kastinger G., Design of a novel transverse flux machine. ICEM 2002, Brugge, (conf. CD) (2002).
  • [12] Kołodziej J., Analysis dynamic and steady transverse flux motor work states. (in Polish). Ph.D. thesis, Opole University of Technology, Opole (2011).
  • [13] Kołodziej J., Kowol M., Łukaniszyn M., Modelling and optimization of the two-module switchedreluctance motor. Przegląd Elektrotechniczny (Electrotechnical Survey) 11:100-105 (2011).
  • [14] Kowol M., Łukaniszyn M., Latawiec K., Modeling and construction optimization of modular TFMwith outer rotor. Electrical Engg. 92(3): 111-118 (2010).
  • [15] Laurenceau J., Meaux M., Montagnac M., Sagaut P., Comparison of Gradient-Based and Gradient-Enhanced Response-Surface-Based Optimizers. AIAA Journal 48(5): 981-994 (2010).
  • [16] Łukaniszyn M., Kowol M., Influence of construction modification on the electromechanical parametersof the modular reluctance motor with outer rotor. (in Polish), Przegląd Elektrotechniczny (Electrotechnical Survey) 82(11): 43-45 (2006).
  • [17] Łukaniszyn M., Kowol M., Optimization of magnetic circuit of a modular reluctance motor with anouter rotor. Poznań University of Technology Academic Journals, Electrical Engineering, pp. 157-166 (2007).
  • [18] Viorel I., Jufer M., Crivii M., Viorel A., Scaling procedure applied to the transverse flux motor. ICEM 2004, Cracow (Poland), pp. PS2-20, (2004).
  • [19] Wang X., Du J., Ren N., Liu Z., Tang R., Optimization of stator structure of transverse flux motor. Journal of Iron and Steel Research International 13(Supplement 1): 466-470 (2006).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS4-0003-0058
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