Article : [PAP267]
Info : ANSWER 3, le 15/05/2001.
Titre : F. TOURKHANI, Ph. VIAROUGE, T. MEYNARD, R. GAGNON, New approach to simplify the steady-state computation problem of a power converter, PESC'99.
Cité dans : [CONF012] PESC, Power Electronics Specialists Conference, PELS Society, juin 2007. Cité dans : [DIV189] Recherche sur l'auteur Thierry MEYNARD, mai 2003.Auteur : Tourkhani, Faouzi (Univ of Moncton, Moncton, NB, Can)
Meeting : Proceedings of the 1999 30th Annual IEEE Power Electronics Specialists Conference (PESC'99).
Info : organization : IEEE Power Electronics Society
Location : Charleston, SC, USA
Date : 27 Jun 1999-01 Jul 1999
Source : PESC Record - IEEE Annual Power Electronics Specialists Conference v 2 1999.p 1050-1055
CODEN : PRICDT
ISSN : 0275-9306
Année : 1999
Meeting_Number : 56170
Info : Document Type : Journal - Treatment Code : General Review - Language : English
Stockage : Thierry LEQUEU
Lien : private/TOURKHANI1.pdf - 9 pages, 1355 Ko.
Abstract :
A new technique for simplifying the computation steady-state problem of a power converter is presented. This technique, which will lead to the concept of the steady-state variables, uses a topological analysis of the converter network as a systematic way of reducing the number of variables and constraints in the steady-state equation.The implementation of this technique is achieved with a simulation tool and an algorithm of direct computation of the steady-state solution. The computation of the steady-state solution of several power converters is presented to illustrate the method and to validate its performance.(Author abstract) 9 Refs.
Accession_Number : 2000(15):3661 COMPENDEX
Autres informations |
Abstract :
A new technique for simplifying the computation steady-state
problem of a power converter is presented. This technique, which
will lead to the concept of the steady-state variables, uses a
topological analysis of the converter network as a systematic way
of reducing the number of variables and constraints in the
steady-state equation. The implementation of this technique is
achieved with a simulation tool and an algorithm of direct
computation of the steady-state solution. The computation of the
steady-state solution of several power converters is presented to
illustrate the method and to validate its performance.
Subject_terms :
power convertors; steady-state computation problem; power
converter; steady-state variables; variables reduction;
steady-state equation; simulation tool; computer based method
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