F. TOURKHANI, P. VIAROUGE, T. MEYNARD, "A Simulation-Optimization System for the Optimal Design of a Multilevel Inverter", IEEE Transactions on Power Electronics, Vol. 14, No. 6, 1999, pp. 1037-1045.
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Titre : F. TOURKHANI, P. VIAROUGE, T. MEYNARD, A Simulation-Optimization System for the Optimal Design of a Multilevel Inverter, IEEE Transactions on Power Electronics, Vol. 14, No. 6, 1999, pp. 1037-1045.

Cité dans :[REVUE404] IEEE Transactions on Power Electronics, Volume 14, Issue 6, November 1999.
Cité dans : [DIV367]  Les revues IEEE Transactions on Power Electronics, août 2013.
Cité dans : [DIV189]  Recherche sur l'auteur Thierry MEYNARD, mai 2003.
Auteur : Tourkhani, F. (Univ of Moncton, NB, Can)
Auteur : Viarouge, P.
Auteur : Meynard, T.A.

Source : IEEE Transactions on Power Electronics
Volume : 14
Numéro : 6
Date : 1999
Pages : 1037 - 1045
CODEN : ITPEE8
ISSN : 0885-8993
Info : Document Type : Journal - Treatment - Code : Theoretical - Language : English
Stockage : Thierry LEQUEU
Lien : private/TOURKHANI2.pdf - 9 pages, 252 Ko.

Abstract :
In this paper, a simulation-optimization system for the optimal design of a multilevel inverter is presented.
This system is a combination of an optimization tool and a simulation program. The optimization tool is used as a powerful procedure for the resolution of the design problem formulated in terms of objective function and constraints.The simulation program is with knowledge of the sequences of operation and is used to compute the inverter steady-state characteristics.An optimal design of the multilevel inverter is performed with the simulation-optimization system.The design constraints include the maximum current ripple in the inductors, maximum voltage ripple in the capacitors, output power, and required efficiency of the inverter.The total weight of the capacitors and the inductors is taken as an objective function to be optimized.The optimal design results of the multilevel inverter are verified by an experimental prototype.The inverter is designed and implemented for a UPS application.(Author abstract)

Accession_Number : 2000(12):1810 COMPENDEX


Bibliographie

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Références : 11 Refs.
[1] : F. Tourkhani, P. Viarouge, and T. A. Meynard, "Optimal design and experimental results of a multilevel inverter for an UPS application," in Proc. IEEE PEDS’96, pp. 340–343.
[2] : T. A. Meynard and H. Foch, "Multilevel choppers for high voltage applications," EPE J., vol. 2, no. 1, pp. 45–50, 1992.
[3] : F. Hamma, T. A. Meynard, F. Tourkhani, and P. Viarouge, "Characteristics and design of multilevel choppers," in Proc. IEEE PESC’95, pp. 1208–1214.
[4] : F. Tourkhani, "Environnement de CAO pour l‘optimization du dimensionnement global des convertisseurs statiques—Application à la CAO d‘un onduleur multiniveaux," Thèse de doctorat, Université Laval, Québec, Canada, 1996.
[5] : F. Tourkhani, P. Viarouge, and T. A. Meynard, "A CAD environment for power converters," SAS J. Math. Model. Simul. Syst. Anal., vol. 18/19, pp. 523–526, 1995.
[6] : P. Viarouge, F. Tourkhani, I. Kamwa, and H. Le-Huy, "Nonlinear optimization techniques for the design of static converters," in IMACS TC1’93, pp. 543–547.
[7] : R. B. Ridley, C. Zhou, and F. C. Y. Lee, "Application of nonlinear design optimization for power converter components," IEEE Trans. Power Electron., vol. 5, pp. 29–40, Jan. 1990.
[8] : New England Electric Wire Corporation, Montgomery Company.
[9] : Linear Ferrite Materials and Components, Philips Company.
[10] : P. E Gill, W. Murray, and M. H. Wright, Practical Optimization. New York: Academic, 1981.
[11] : Condensateurs Pour L'électronique de Puissance, LCC Company.
  [1] :  [PAP158]  -------
  [2] :  [PAP458]  T.A. MEYNARD, H. FOCH, Multilevel choppers for high voltage applications, EPE Journal, Vol. 2, No. 1, pp. 45-50, 1992.


Autres informations

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Source : Power Electronics, IEEE Transactions on
Pages : 1037 - 1045
Date : Nov. 1999
ISSN : 0885-8993
References : 11
CODEN : ITPEE8
Accession_Number : 6427120

Abstract :
In this paper, a simulation-optimization system for the optimal
design of a multilevel inverter is presented. This system is a
combination of an optimization tool and a simulation program. The
optimization tool is used as a powerful procedure for the
resolution of the design problem formulated in terms of objective
function and constraints. The simulation program is with
knowledge of the sequences of operation and is used to compute
the inverter steady-state characteristics. An optimal design of
the multilevel inverter is performed with the
simulation-optimization system. The design constraints include
the maximum current ripple in the inductors, maximum voltage
ripple in the capacitors, output power and required efficiency of
the inverter. The total weight of the capacitors and the
inductors is taken as an objective function to be optimized. The
optimal design results of the multilevel inverter are verified by
an experimental prototype. The inverter is designed and
implemented for a UPS application.

Subject_terms :
invertors; multilevel inverter; simulation-optimization system;
optimal design; computer simulation; objective function;
steady-state characteristics; design constraints; maximum current
ripple; capacitor maximum voltage ripple; UPS application


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