ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA

Unstable electromechanical dynamics, or electromechanical modes, may cause large amplitude oscillations that may lead to system break-ups or partial blackouts. Thus, the monitoring and study of these modes are of prominent importance and can be of great help for system operators and planning enginee...

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Main Author: Bengtsson, Sebastian
Format: Bachelor Thesis
Language:English
Published: KTH, Elektriska energisystem 2011
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-53701
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spelling ftkthstockholm:oai:DiVA.org:kth-53701 2023-05-15T17:09:13+02:00 ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA Bengtsson, Sebastian 2011 application/pdf http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-53701 eng eng KTH, Elektriska energisystem EES Examensarbete / Master Thesis http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-53701 info:eu-repo/semantics/openAccess Engineering and Technology Teknik och teknologier Student thesis info:eu-repo/semantics/bachelorThesis text 2011 ftkthstockholm 2022-08-11T12:31:44Z Unstable electromechanical dynamics, or electromechanical modes, may cause large amplitude oscillations that may lead to system break-ups or partial blackouts. Thus, the monitoring and study of these modes are of prominent importance and can be of great help for system operators and planning engineers. In this thesis ambient data analysis has been applied on both simulated and synchronized phasor data from Phasor Measurement Units (PMUs) installed at the distribution network of the Nordic power system at Tampere, Lund and Luleå to estimate frequencies and damping ratios of electromechanical modes in the systems. Different spectral estimators (Yule-Walker, Multitaper and Welch) have been used and their performance has been evaluated. Damping estimates were obtained using an autoregressive Yule-Walker model and the half-power point method. Emphasis on general handling and preprocessing of PMU data is made throughout the thesis. The performed analysis indicates that within the measurement locations available, two main inter-area modes in the Nordic power system can be estimated at approximately 0.4 Hz and 0.5 Hz. In addition relevant system dynamics in the frequency range of 0.6-1.0 Hz can also be observed. Ambient data analysis techniques have great potential for monitoring electromechanical oscillations in power systems. However, there are issues related to data quality that need to be systematically addressed, especially when it comes to calculating accurate damping estimates, in the presence of undamped low amplitude sinusoids and forced oscillations. Bachelor Thesis Luleå Luleå Luleå Royal Institute of Technology, Stockholm: KTHs Publication Database DiVA
institution Open Polar
collection Royal Institute of Technology, Stockholm: KTHs Publication Database DiVA
op_collection_id ftkthstockholm
language English
topic Engineering and Technology
Teknik och teknologier
spellingShingle Engineering and Technology
Teknik och teknologier
Bengtsson, Sebastian
ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA
topic_facet Engineering and Technology
Teknik och teknologier
description Unstable electromechanical dynamics, or electromechanical modes, may cause large amplitude oscillations that may lead to system break-ups or partial blackouts. Thus, the monitoring and study of these modes are of prominent importance and can be of great help for system operators and planning engineers. In this thesis ambient data analysis has been applied on both simulated and synchronized phasor data from Phasor Measurement Units (PMUs) installed at the distribution network of the Nordic power system at Tampere, Lund and Luleå to estimate frequencies and damping ratios of electromechanical modes in the systems. Different spectral estimators (Yule-Walker, Multitaper and Welch) have been used and their performance has been evaluated. Damping estimates were obtained using an autoregressive Yule-Walker model and the half-power point method. Emphasis on general handling and preprocessing of PMU data is made throughout the thesis. The performed analysis indicates that within the measurement locations available, two main inter-area modes in the Nordic power system can be estimated at approximately 0.4 Hz and 0.5 Hz. In addition relevant system dynamics in the frequency range of 0.6-1.0 Hz can also be observed. Ambient data analysis techniques have great potential for monitoring electromechanical oscillations in power systems. However, there are issues related to data quality that need to be systematically addressed, especially when it comes to calculating accurate damping estimates, in the presence of undamped low amplitude sinusoids and forced oscillations.
format Bachelor Thesis
author Bengtsson, Sebastian
author_facet Bengtsson, Sebastian
author_sort Bengtsson, Sebastian
title ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA
title_short ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA
title_full ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA
title_fullStr ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA
title_full_unstemmed ESTIMATION OF ELECTROMECHANICAL OSCILLATIONS IN THE NORDIC POWER SYSTEM USING SYNCHROPHASOR MEASUREMENT DATA
title_sort estimation of electromechanical oscillations in the nordic power system using synchrophasor measurement data
publisher KTH, Elektriska energisystem
publishDate 2011
url http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-53701
genre Luleå
Luleå
Luleå
genre_facet Luleå
Luleå
Luleå
op_relation EES Examensarbete / Master Thesis
http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-53701
op_rights info:eu-repo/semantics/openAccess
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