Power system stability enhancement using flux control for excitation system

This paper proposes a new controller for the excitation system to improve rotor angle stability. The proposed controller uses energy function to predict desired flux for the generator to achieve improved first swing stability and enhanced system damping. The controller is designed through predicting...

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Main Authors: Goldoost-Soloot, R., Mishra, Y., Ledwich, G., Ghosh, Arindam, Palmer, E.
Other Authors: -
Format: Conference Paper
Published: Institute of Electrical and Electronics Engineers ( IEEE ) 2013
Online Access:http://hdl.handle.net/20.500.11937/35119
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author Goldoost-Soloot, R.
Mishra, Y.
Ledwich, G.
Ghosh, Arindam
Palmer, E.
author2 -
author_facet -
Goldoost-Soloot, R.
Mishra, Y.
Ledwich, G.
Ghosh, Arindam
Palmer, E.
author_sort Goldoost-Soloot, R.
building Curtin Institutional Repository
collection Online Access
description This paper proposes a new controller for the excitation system to improve rotor angle stability. The proposed controller uses energy function to predict desired flux for the generator to achieve improved first swing stability and enhanced system damping. The controller is designed through predicting the desired value of flux for the future step of the system and then obtaining appropriate supplementary control input for the excitation system. The simulations are performed on Single-Machine-Infinite-Bus system and the results verify the efficiency of the controller. The proposed method facilitates the excitation system with a feasible and reliable controller for severe disturbances.
first_indexed 2025-11-14T08:39:56Z
format Conference Paper
id curtin-20.500.11937-35119
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T08:39:56Z
publishDate 2013
publisher Institute of Electrical and Electronics Engineers ( IEEE )
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-351192017-02-28T01:51:17Z Power system stability enhancement using flux control for excitation system Goldoost-Soloot, R. Mishra, Y. Ledwich, G. Ghosh, Arindam Palmer, E. - This paper proposes a new controller for the excitation system to improve rotor angle stability. The proposed controller uses energy function to predict desired flux for the generator to achieve improved first swing stability and enhanced system damping. The controller is designed through predicting the desired value of flux for the future step of the system and then obtaining appropriate supplementary control input for the excitation system. The simulations are performed on Single-Machine-Infinite-Bus system and the results verify the efficiency of the controller. The proposed method facilitates the excitation system with a feasible and reliable controller for severe disturbances. 2013 Conference Paper http://hdl.handle.net/20.500.11937/35119 Institute of Electrical and Electronics Engineers ( IEEE ) restricted
spellingShingle Goldoost-Soloot, R.
Mishra, Y.
Ledwich, G.
Ghosh, Arindam
Palmer, E.
Power system stability enhancement using flux control for excitation system
title Power system stability enhancement using flux control for excitation system
title_full Power system stability enhancement using flux control for excitation system
title_fullStr Power system stability enhancement using flux control for excitation system
title_full_unstemmed Power system stability enhancement using flux control for excitation system
title_short Power system stability enhancement using flux control for excitation system
title_sort power system stability enhancement using flux control for excitation system
url http://hdl.handle.net/20.500.11937/35119