A Quantification Index for Power Systems Transient Stability

In order to assess the reliability of power systems, transient stability simulations must be conducted in addition to steady state study. The transient stability component of reliability studies usually involves extensive simulations generating large amounts of data to be analyzed. Conventional stab...

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Main Authors: Shengen Chen, Amamihe Onwuachumba, Mohamad Musavi, Paul Lerley
Format: Article
Language:English
Published: MDPI AG 2017-07-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/10/7/984
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spelling doaj-4d3e3aba51234fd786e845f63e561e642020-11-24T22:16:36ZengMDPI AGEnergies1996-10732017-07-0110798410.3390/en10070984en10070984A Quantification Index for Power Systems Transient StabilityShengen Chen0Amamihe Onwuachumba1Mohamad Musavi2Paul Lerley3Department of Electrical & Computer Engineering, University of Maine, Orono, ME 04469, USARLC Engineering LLC., Hallowell, ME 04347, USADepartment of Electrical & Computer Engineering, University of Maine, Orono, ME 04469, USARLC Engineering LLC., Hallowell, ME 04347, USAIn order to assess the reliability of power systems, transient stability simulations must be conducted in addition to steady state study. The transient stability component of reliability studies usually involves extensive simulations generating large amounts of data to be analyzed. Conventional stability analysis relies on a visual examination of selected simulation data plots to classify the severity of disturbances. This conventional examination, which aims to compare the simulations results to established performance criteria, is not comprehensive, is time consuming and prone to subjective interpretation. This paper presents a quantification method for power system performance evaluation. It applies a range of criteria such as rotor angle separation, loss of source, damping, and voltage sag directly to the simulation data files to achieve a more efficient and objective stability assessment. By using stability modules, the proposed method evaluates the performance of every fault location, numerically, by providing a local stability index, as well as an overall global stability index. The method also provides an evaluation of dispatches and their impacts on system stability. The IEEE 39-bus test system and the Northeast Interconnection Power System were used to show the results of this method. This method will free engineers from tedious, time-consuming and error-susceptible offline visual analysis and yield significantly quantified results.https://www.mdpi.com/1996-1073/10/7/984dampingloss of sourcequantificationtransient stabilitystability indexsystem separationvoltage sag
collection DOAJ
language English
format Article
sources DOAJ
author Shengen Chen
Amamihe Onwuachumba
Mohamad Musavi
Paul Lerley
spellingShingle Shengen Chen
Amamihe Onwuachumba
Mohamad Musavi
Paul Lerley
A Quantification Index for Power Systems Transient Stability
Energies
damping
loss of source
quantification
transient stability
stability index
system separation
voltage sag
author_facet Shengen Chen
Amamihe Onwuachumba
Mohamad Musavi
Paul Lerley
author_sort Shengen Chen
title A Quantification Index for Power Systems Transient Stability
title_short A Quantification Index for Power Systems Transient Stability
title_full A Quantification Index for Power Systems Transient Stability
title_fullStr A Quantification Index for Power Systems Transient Stability
title_full_unstemmed A Quantification Index for Power Systems Transient Stability
title_sort quantification index for power systems transient stability
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2017-07-01
description In order to assess the reliability of power systems, transient stability simulations must be conducted in addition to steady state study. The transient stability component of reliability studies usually involves extensive simulations generating large amounts of data to be analyzed. Conventional stability analysis relies on a visual examination of selected simulation data plots to classify the severity of disturbances. This conventional examination, which aims to compare the simulations results to established performance criteria, is not comprehensive, is time consuming and prone to subjective interpretation. This paper presents a quantification method for power system performance evaluation. It applies a range of criteria such as rotor angle separation, loss of source, damping, and voltage sag directly to the simulation data files to achieve a more efficient and objective stability assessment. By using stability modules, the proposed method evaluates the performance of every fault location, numerically, by providing a local stability index, as well as an overall global stability index. The method also provides an evaluation of dispatches and their impacts on system stability. The IEEE 39-bus test system and the Northeast Interconnection Power System were used to show the results of this method. This method will free engineers from tedious, time-consuming and error-susceptible offline visual analysis and yield significantly quantified results.
topic damping
loss of source
quantification
transient stability
stability index
system separation
voltage sag
url https://www.mdpi.com/1996-1073/10/7/984
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