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2009 | Vol. 19, no. 1 | 43-57
Tytuł artykułu

Novel digital PWM strategies of multilevel voltage source inverters

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EN
Abstrakty
EN
In this paper, two novel algorithms of algebraic PWM strategies for seven-level Neutral Point Clamped (NPC) Voltage Source Inverter (VSI) are presented. These algorithms use a control model of the inverter. In the first part, the authors develop a model of this inverter, without assumption on its control, by using design method associated to Petri nets and switching functions. In the second part, knowledge and control models of this converter are reviewed by using respectively instantaneous and continuous equivalent switching functions. In the last part, two algebraic PWM control strategies of the inverter are proposed. The obtained results are full of promise to use these digital strategies to control seven - level NPC VSI used in high voltage and high power applications as electrical traction.
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43-57
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Bibliogr. 15 poz., rys.
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Bibliografia
  • [1] L. M. TOLBERT, F. ZHENG PENG and T.G. HABETLER: Multilevel converters for large electrical drives. IEEE. Trans, on Industrial, bf 35(1), (1999), 36-44.
  • [2] E. M BERKOUK ET.AL.: Knowledge and control models for three-level voltage inverters. Int. J. Systems Analysis Modelling Simulation, 18-19 (1995), 511-521.
  • [3] L. M. TOLBERT, F.Z. PENG and T.G. HABELTER: Multilevel PWM methods at Iow modulation indices. Proc. I4th Applied Power Electronics Conference and ex-position (APEC), Dallas/USA (1999), 1032-1039.
  • [4] A. TALHA, E.M. BERKOUK, M.S. BOUCHERIT and G. MANESSE: Study and control of two two-level PWM rectifier-clamping bridge – seven-level NPC VSI cascade. Application to PMSM speed control. European Transactions on Electrical Power Journal (ETEP) by John Wiley & Sons Ud, 16(1), (2006), 93-107.
  • [5] A. TALHA ET.AL.: Feedback and control cascade using seven-level NPC voltage source inverter. Archives of Control Sciences, 15(2), (2005), 137-152.
  • [6] H. GHERAIA, E.M. BERKOUK and G. MANESSE: Modelling and control of seven levels NPC voltage source inverter. Application to high power induction machinę drive. The European Physical J., (2001), 105-115.
  • [7] J. S. LAI and F.Z. PENG: Multilevel converters - A new breed of power converters. Proc. 13th Intelligent Adaptive Systems (IAS), Orlando/USA, (1995), 2348-2356.
  • [8] A. TALHA, E.M. BERKOUK, M.S. BOUCHERIT and G. MANESSE: Algebraic PWM strategies of seven levels NPC voltages source inverters. Application to the position control of the PMSM. Proc. Int. Conf on Electrical Machines, ICEM’2000, Helsinki, Finland (2000), 1654-1660.
  • [9] H. W. V. D. BROECK, H. SKUDELNY and G.V. STANKE: Analysis and realization of a pulse width modulator based on voltage space vectors. IEEE Trans, on Indus. Application, 24 (1988), 142-150.
  • [10] S. K. MAZUMDER: A novel discrete control strategy for independent stabilization of parallel three-phase boost converters by combining space-vector modulation with variable-structure control. IEEE Trans, on Power Electronics, 18(4), (2003), 1070-1084.
  • [11] F. Z. PENG, J. S. LAI and T. G. HABELTER: Multilevel PWM methods at Iow modulation indices. Proc. 14th Applied Power Electronics Conf. and exposition (APEC), Dallas/USA, (1999), 1032-1039.
  • [12] B. KAKU, I. MIYASHITA and S. SONE: Switching loss minimized space vector PWM method for IGBT three-level irwerter. IEE Proceeding Electric Power Application, 144 (1997), 182-190.
  • [13] H. L. Liu and G. H. CHO: Three-level space vector PWM in Iow index modulation region avoiding narrow pulse problem. IEEE Trans, on Power Electronics, 9(5), (1994), 481-486.
  • [14] F. BLAABJERG, S. FREYSSON, H. H. HANSEN and S. HANSEN: A new opti-mized space-vector modulation strategy for a component-minimized voltage source inverter. IEEE Trans, on Power Electronics, 12(4), (1997), 704-715.
  • [15] L. HUBE and D. BOROJEVIC: Space vector modulated three-phase to three-phase matrix converter with input power factor correction. IEEE Trans, on Indus. Application, 31 (1995), 1234-1246.
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Bibliografia
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bwmeta1.element.baztech-article-BSW3-0061-0003
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