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Modelling and Simulation of a Synchronous Machine with Power Electronic Systems. / Chen, Zhe; Blaabjerg, Frede.

Proceedings of PELINCEC. 2005.

Publication: ResearchArticle in proceeding

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Chen, Zhe; Blaabjerg, Frede / Modelling and Simulation of a Synchronous Machine with Power Electronic Systems.

Proceedings of PELINCEC. 2005.

Publication: ResearchArticle in proceeding

Bibtex

@inbook{c93465b09c2c11db8ed6000ea68e967b,
title = "Modelling and Simulation of a Synchronous Machine with Power Electronic Systems",
author = "Zhe Chen and Frede Blaabjerg",
year = "2005",
booktitle = "Proceedings of PELINCEC",

}

RIS

TY - GEN

T1 - Modelling and Simulation of a Synchronous Machine with Power Electronic Systems

A1 - Chen,Zhe

A1 - Blaabjerg,Frede

AU - Chen,Zhe

AU - Blaabjerg,Frede

PY - 2005

Y1 - 2005

N2 - This paper reports the modeling and simulation of a synchronous machine with a power electronic interface in direct phase model. The implementation of a direct phase model of synchronous machines in MATLAB/SIMULINK is presented .The power electronic system associated with the synchronous machine is modelled in SIMULINK as well. The resulting model can more accurately represent non-idea situations such as non-symmetrical parameters of the electrical machines and unbalance conditions. The model may be used for both steady state and large-signal dynamic analysis. This is particularly useful in the systems where a detailed study is needed in order to assess the overall system stability. Simulation studies are performed under various operation conditions. It is shown that the developed model could be used for studies of various applications of synchronous machines such as in renewable and DG generation systems.

AB - This paper reports the modeling and simulation of a synchronous machine with a power electronic interface in direct phase model. The implementation of a direct phase model of synchronous machines in MATLAB/SIMULINK is presented .The power electronic system associated with the synchronous machine is modelled in SIMULINK as well. The resulting model can more accurately represent non-idea situations such as non-symmetrical parameters of the electrical machines and unbalance conditions. The model may be used for both steady state and large-signal dynamic analysis. This is particularly useful in the systems where a detailed study is needed in order to assess the overall system stability. Simulation studies are performed under various operation conditions. It is shown that the developed model could be used for studies of various applications of synchronous machines such as in renewable and DG generation systems.

KW - Modelling

KW - Simulation

KW - Power electronics

KW - Synchronous machines

BT - Proceedings of PELINCEC

T2 - Proceedings of PELINCEC

ER -