Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics

This paper investigates the impact of synchronous generator’s damper windings on small-signal stability and dynamic behavior of power systems in the presence of time and space harmonics. A Distorted Single Machine Infinite Bus (DSMIB) system is used for the analysis. A nonlinear model of the synchro...

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Main Authors: Ladjavardi, Marjan, Masoum, Mohammad, Islam, Syed
Other Authors: Not known
Format: Conference Paper
Published: University of Calgary 2008
Online Access:http://hdl.handle.net/20.500.11937/11388
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author Ladjavardi, Marjan
Masoum, Mohammad
Islam, Syed
author2 Not known
author_facet Not known
Ladjavardi, Marjan
Masoum, Mohammad
Islam, Syed
author_sort Ladjavardi, Marjan
building Curtin Institutional Repository
collection Online Access
description This paper investigates the impact of synchronous generator’s damper windings on small-signal stability and dynamic behavior of power systems in the presence of time and space harmonics. A Distorted Single Machine Infinite Bus (DSMIB) system is used for the analysis. A nonlinear model of the synchronous generator (SG) in the Harmonic Domain (HD) is used to include space harmonics. The nonlinear effects of power system components and loads are included as voltage timeharmonics at the terminals of the infinite bus. The state space, HD and eigenvalue analysis are used to model the dynamic behavior of the distorted power system and examine its stability. Simulations are used to highlight the impact of damper windings and harmonics on the stability and power oscillations of the system. It is shown that for some harmonic spectra, power system experiences instability problems.
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format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T06:54:46Z
publishDate 2008
publisher University of Calgary
recordtype eprints
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spelling curtin-20.500.11937-113882017-01-30T11:24:27Z Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics Ladjavardi, Marjan Masoum, Mohammad Islam, Syed Not known This paper investigates the impact of synchronous generator’s damper windings on small-signal stability and dynamic behavior of power systems in the presence of time and space harmonics. A Distorted Single Machine Infinite Bus (DSMIB) system is used for the analysis. A nonlinear model of the synchronous generator (SG) in the Harmonic Domain (HD) is used to include space harmonics. The nonlinear effects of power system components and loads are included as voltage timeharmonics at the terminals of the infinite bus. The state space, HD and eigenvalue analysis are used to model the dynamic behavior of the distorted power system and examine its stability. Simulations are used to highlight the impact of damper windings and harmonics on the stability and power oscillations of the system. It is shown that for some harmonic spectra, power system experiences instability problems. 2008 Conference Paper http://hdl.handle.net/20.500.11937/11388 University of Calgary restricted
spellingShingle Ladjavardi, Marjan
Masoum, Mohammad
Islam, Syed
Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics
title Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics
title_full Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics
title_fullStr Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics
title_full_unstemmed Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics
title_short Impact of SG Damper Windings on Small-Signal Stability of a Distorted SMIB Including Time and Space Harmonics
title_sort impact of sg damper windings on small-signal stability of a distorted smib including time and space harmonics
url http://hdl.handle.net/20.500.11937/11388