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Six-phase motor drive supplied by four voltage source inverters with synchronized space-vector PWM

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Języki publikacji
EN
Abstrakty
EN
Novel method of space-vector-based pulsewidth modulation (PWM) has been disseminated for synchronous control of four inverters feeding six-phase drive based on asymmetrical induction motor which has two sets of windings spatially shifted by 30 electrical degrees. Basic schemes of synchronized PWM, applied for control of four separate voltage source inverters, allow both continuous phase voltages synchronization in the system and required power sharing between DC-sources. Simulations show a behavior of six-phase system with continuous and discontinuous versions of synchronized PWM.
Rocznik
Strony
445--458
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
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autor
autor
Bibliografia
  • [1] Levi E., Bojoi R., Profumo F. et al., Multiphase induction motor drives – a technology status review. IET Electrical Power Applications 1(4): 489-516 (2007).
  • [2] Bojoi R., Farina F., Profumo F., Tenconi A., Dual-three phase induction machine drive control – a survey. IEEJ Transactions on Industry Applications 126(4): 420-429 (2006).
  • [3] Grandi G., Serra G., Tani A., General analysis of multiphase systems based on space vector approach. Proc. of the IEEE-EPE Power Electronics and Motion Control Conference (EPE-PEMC’ 2006), pp. 834-840 (2006).
  • [4] Levi E., Multiphase electric machines for variable speed applications. IEEE Transactions on Industrial Electronics 55(5): 1893-1909 (2008).
  • [5] Oleschuk V., Griva G., Synchronized space-vector modulation for six-phase automotive drive with controlled switching frequency. International Review of Electrical Engineering (IREE) 4(1): 50-56 (2009).
  • [6] Grandi G., Tani A., Sanjeevkumar P., Ostojic D., Multi-phase multi-level AC motor drive based on four three-phase two-level inverters. Proc. of the IEEE International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM’2010), pp. 1768-1775 (2010).
  • [7] Holtz J., Pulsewidth modulation for electric power conversion. Proceedings of IEEE 82(8): 1194-1213 (1994).
  • [8] Mohan N., Undeland T.M., Robbins W.P., Power electronics. 3rd ed., John Wiley & Sons (2003).
  • [9] Jardan R.K., Stumpf P., Bartal P. et al., A novel approach in studying the effects of subharmonics on ultrahigh speed AC motor drives. IEEE Transactions on Industrial Electronics 58: 8 (2011).
  • [10] Oleschuk V., Blaabjerg F., Direct synchronized PWM techniques with linear control functions for adjustable speed drives. Proc. of the IEEE Applied Power Electronics Conference (APEC’2002), pp. 76-82 (2002).
  • [11] Oleschuk V., Blaabjerg F., Bose B.K., Analysis and comparison of algebraic and trigonometric methods of synchronous PWM for inverter drives. Proc. of the IEEE Power Electronics Specialists Conference (PESC’02), pp. 1439-1444 (2002).
  • [12] Oleschuk V., Bojoi R., Profumo F. et al. Multifunctional six-phase motor drives with algorithms of synchronized PWM. Proc. of the IEEE Industrial Electronics Conference (IECON’2006), pp. 1293-1300 (2006).
  • [13] Oleschuk V., Profumo F., Tenconi A., Five-phase inverters with synchronized pulsewidth modulation. International Review of Electrical Engineering (IREE) 2(2): 123-129 (2007).
  • [14] Oleschuk V., Bojoi R., Griva G., Profumo F., Dual inverter-fed traction drive with DC sources power balancing based on synchronized PWM. Proc. of the IEEE International Electrical Machines and Drives Conference (IEMDC’2007), pp. 260-265 (2007).
  • [15] Oleschuk V., Profumo F., Tenconi A. Analysis of operation of symmetrical dual three-phase converters with hybrid schemes of synchronised PWM. International Review of Electrical Engineering (IREE) 2(6): 793-802 (2007).
  • [16] Oleschuk V., Griva G., Simulation of processes in synchronized cascaded inverters for photovoltaic application. International Review of Electrical Engineering (IREE) 4(5) (A): 928-936 (2009).
  • [17] Oleschuk V., Griva G. Spertino F., Dual neutral-point-clamped converters with synchronized PWM for photovoltaic installations. International Review of Electrical Engineering (IREE) 5(1)(A): 55-63 (2010).
  • [18] Stemmler H., P. Guggenbach, Configurations of high power voltage source inverter drives. Proc. of the European Power Electronics Conference (EPE’93), pp. 7-12 (1993).
  • [19] Shivakumar E.G., Gopakumar K., Sinha S.K. et al., Space vector PWM control of dual inverter fed open-end winding induction motor drive. Proc. of the IEEE Applied Power Electronics Conference (APEC’2001), pp. 399-405 (2001).
  • [20] Malinowski M., Gopakumar K., Rodriguez J., Pérez M.A., A survey on cascaded multilevel inverters. IEEE Transactions on Industrial Electronics 57(7): 2197-2206 (2010).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0063-0049
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