Redefining a new-formed average model for three-phase boost rectifiers/voltage source inverters

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

7 Scopus citations

Abstract

Average model of three-phase PWM converters is important in both theory and practical engineering. To remedy defects possessed by the existing average models of three-phase boost rectifiers and voltage source inverters (VSI), this paper proposes and derives another new-formed models that are easyto-use and more suitable for computer simulation. During establishing switching models, the number of independent state variables as well as independent state equations are definitely determined to avoid redundant equations when dealing with circuits that contain cut set purely consisting of inductors or voltage loop purely consisting of capacitors; during deriving average models, redundant variables are properly introduced and added into models, which makes the models easy to be understood and easy to be used. Inductor currents are taken directly as state variables. No extra assumptions are made except relying only on KCL and KVL. Requirements to three-phase ac voltages are effectively removed; therefore the models are suitable for any input/output voltage waveforms, regardless whether they are sinusoidal or non-sinusoidal, balanced or unbalanced, symmetrical or asymmetrical. Simulation examples are provided to verify the models' validity.

Original languageEnglish
Title of host publication24th Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2009
Pages1680-1686
Number of pages7
DOIs
StatePublished - 2009
Event24th Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2009 - Washington, DC, United States
Duration: 15 Feb 200919 Feb 2009

Publication series

NameConference Proceedings - IEEE Applied Power Electronics Conference and Exposition - APEC

Conference

Conference24th Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2009
Country/TerritoryUnited States
CityWashington, DC
Period15/02/0919/02/09

Keywords

  • Circuit simulation
  • Power converters
  • Power supply circuits
  • Simulation model
  • ac-dc
  • dc-ac

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