Dynamic performance of a Skystream wind turbine: A bond graph approach

The modelling in bond graph of a Skystream wind turbine composed by the blades, a permanent magnet synchronous generator (PMSG), three-phase rectifier, Boost converter and an inverter which is classified as a small-scale system is presented. Bond graphs permit to model systems formed by different en...

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Autores principales: Gilberto Gonzalez-A, Noe Barrera-G, Gerardo Ayala, J. Aaron Padilla, David Alvarado-Z
Formato: article
Lenguaje:EN
Publicado: Taylor & Francis Group 2019
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Acceso en línea:https://doaj.org/article/aeded7fbf6824f1f90a6cd523c130f8a
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spelling oai:doaj.org-article:aeded7fbf6824f1f90a6cd523c130f8a2021-11-04T15:51:57ZDynamic performance of a Skystream wind turbine: A bond graph approach2331-191610.1080/23311916.2019.1709361https://doaj.org/article/aeded7fbf6824f1f90a6cd523c130f8a2019-01-01T00:00:00Zhttp://dx.doi.org/10.1080/23311916.2019.1709361https://doaj.org/toc/2331-1916The modelling in bond graph of a Skystream wind turbine composed by the blades, a permanent magnet synchronous generator (PMSG), three-phase rectifier, Boost converter and an inverter which is classified as a small-scale system is presented. Bond graphs permit to model systems formed by different energy domains. The Skystream turbine is a good case study to show that the bond graph model is presented in a unified representation approach. The electric power generation system based on this turbine is three-phase, the use of multibond graphs to model the PMSG, three-phase rectifier and inverter are proposed. However, the blades and Boost converter are modelled by single bond graphs. The mathematical representation of a section of a blade and the PMSG are obtained. In order to validate the simulation results obtained by bond graph models, an experimental study of the Skystream is compared with the complete simulation of the turbine. The motivation to develop these models in a bond graph approach is to design and build a low-cost wind turbine similar to the Skystream. Thus, the main contributions of this paper are: a bond graph model of the Skystream wind turbine, the PMSG, rectifier and inverter is modelled by multibond graphs.Gilberto Gonzalez-ANoe Barrera-GGerardo AyalaJ. Aaron PadillaDavid Alvarado-ZTaylor & Francis Grouparticlebond graphskystreambladespmsgrecti.erboost converterinverterEngineering (General). Civil engineering (General)TA1-2040ENCogent Engineering, Vol 6, Iss 1 (2019)
institution DOAJ
collection DOAJ
language EN
topic bond graph
skystream
blades
pmsg
recti.er
boost converter
inverter
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle bond graph
skystream
blades
pmsg
recti.er
boost converter
inverter
Engineering (General). Civil engineering (General)
TA1-2040
Gilberto Gonzalez-A
Noe Barrera-G
Gerardo Ayala
J. Aaron Padilla
David Alvarado-Z
Dynamic performance of a Skystream wind turbine: A bond graph approach
description The modelling in bond graph of a Skystream wind turbine composed by the blades, a permanent magnet synchronous generator (PMSG), three-phase rectifier, Boost converter and an inverter which is classified as a small-scale system is presented. Bond graphs permit to model systems formed by different energy domains. The Skystream turbine is a good case study to show that the bond graph model is presented in a unified representation approach. The electric power generation system based on this turbine is three-phase, the use of multibond graphs to model the PMSG, three-phase rectifier and inverter are proposed. However, the blades and Boost converter are modelled by single bond graphs. The mathematical representation of a section of a blade and the PMSG are obtained. In order to validate the simulation results obtained by bond graph models, an experimental study of the Skystream is compared with the complete simulation of the turbine. The motivation to develop these models in a bond graph approach is to design and build a low-cost wind turbine similar to the Skystream. Thus, the main contributions of this paper are: a bond graph model of the Skystream wind turbine, the PMSG, rectifier and inverter is modelled by multibond graphs.
format article
author Gilberto Gonzalez-A
Noe Barrera-G
Gerardo Ayala
J. Aaron Padilla
David Alvarado-Z
author_facet Gilberto Gonzalez-A
Noe Barrera-G
Gerardo Ayala
J. Aaron Padilla
David Alvarado-Z
author_sort Gilberto Gonzalez-A
title Dynamic performance of a Skystream wind turbine: A bond graph approach
title_short Dynamic performance of a Skystream wind turbine: A bond graph approach
title_full Dynamic performance of a Skystream wind turbine: A bond graph approach
title_fullStr Dynamic performance of a Skystream wind turbine: A bond graph approach
title_full_unstemmed Dynamic performance of a Skystream wind turbine: A bond graph approach
title_sort dynamic performance of a skystream wind turbine: a bond graph approach
publisher Taylor & Francis Group
publishDate 2019
url https://doaj.org/article/aeded7fbf6824f1f90a6cd523c130f8a
work_keys_str_mv AT gilbertogonzaleza dynamicperformanceofaskystreamwindturbineabondgraphapproach
AT noebarrerag dynamicperformanceofaskystreamwindturbineabondgraphapproach
AT gerardoayala dynamicperformanceofaskystreamwindturbineabondgraphapproach
AT jaaronpadilla dynamicperformanceofaskystreamwindturbineabondgraphapproach
AT davidalvaradoz dynamicperformanceofaskystreamwindturbineabondgraphapproach
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