Research on traction drive with permanent magnet synchronous motor

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dc.contributor.author Šimánek, Jiří
dc.contributor.author Černý, Ondřej
dc.contributor.author Doleček, Radovan
dc.date.accessioned 2009-12-08T14:13:25Z
dc.date.available 2009-12-08T14:13:25Z
dc.date.issued 2007
dc.identifier Univerzitní knihovna (studovna) cze
dc.identifier.issn 1211-6610
dc.identifier.uri http://hdl.handle.net/10195/35212
dc.description.abstract The paper deals with the description of our research in the field of the traction drive control. The aim of the research is the robust control algorithm for traction drive with permanent magnet synchronous motor (PMSM). The first chapter of the paper deals with the description of a workplace where the research is performed. The workplace contains a testing stand with PMSM, loading asynchronous motor, frequency converter and auxiliary systems. The testing stand contains the low speed PMSM, tram wheel and rotary rail. The wheel is powered by the PMSM directly without any gearings. The PMSM with nominal power of 58 kW was made by VÚES Brno (Research Institute of Electric Machines Brno) like prototype tram traction motor. Due this stand our experiments are applied to the drive with parameters similar to real traction drive of trams. Next chapter is focused on theory of PMSM control. The control is oriented on current space vector position and magnitude. The orthogonality of current space vector and rotor flux vector is the aim of the control. The description of two designed control algorithms is in this chapter, too. The first algorithm is called phase current control which is based on the sinusoidal commutation algorithm of DC brushless motor. Due the several improvements this algorithm has better behavior at higher motor speed than original algorithm. The second algorithm is field oriented control. Both of the algorithms were simulated and the first algorithm was applied to the real drive. The chapter 4 brings results of the simulation. The MATLAB Simulink software has been used for the simulations. The comparison of behavior of both algorithms is mentioned at the end of this chapter. The last chapter brings comparison of simulation results and results from experiments on testing stand. Only the phase current control algorithm was applied to the stand until now, therefore the chapter does not bring any comparison of results of field oriented control with real measurement yet. eng
dc.format s. 37-50 cze
dc.format p. 37-50 eng
dc.language.iso eng
dc.publisher Univerzita Pardubice cze
dc.relation.ispartof Scientific papers of the University of Pardubice. Series B, The Jan Perner Transport Faculty. 12 (2006) eng
dc.rights Bez omezení cze
dc.subject robustní regulační struktura cze
dc.subject trakční pohony cze
dc.subject synchronní motory cze
dc.subject permanentní magnety cze
dc.subject regulace fázových proudů cze
dc.title Research on traction drive with permanent magnet synchronous motor eng
dc.title.alternative Regulační struktury pro trakční pohon se synchronním motorem s permanentními magnety cze
dc.type Article eng
dc.description.abstract-translated Článek popisuje výzkum robustní regulační struktury pro trakční pohon s PMSM. Jsou zde popsány dvě navrhované struktury. První ze struktur je regulace fázových proudů, která je založena na regulaci okamžité hodnoty proudu ve všech fázích motoru. Druhou ze struktur je regulace fázových proudů v dq osách. V článku jsou uvedené struktury porovnávány a jsou zde uvedeny výsledky ze simulací obou struktur. Dále jsou zde uvedeny dílčí výsledky z měření na trakčním pohonu s PMSM o výkonu 58 kW, na kterém byla aplikována regulace fázových proudů. cze
dc.identifier.signature 47578-12
dc.peerreviewed yes eng
dc.publicationstatus published eng


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