Performance comparison of voltage stability indices for weak bus identification in power systems

Voltage collapse event is identified as complex and localized in nature but its effect is extensive once occurred. The vital effect of voltage collapse would be the total system collapse or blackouts which would cost a large loss to utility companies. Eventually, on- line monitoring of power system...

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Main Authors: Verayiah R., Mohamed A., Shareef H., Abidin I.H.Z.
Other Authors: 26431682500
Format: Conference paper
Published: Institute of Physics Publishing 2023
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spelling my.uniten.dspace-302102023-12-29T15:45:33Z Performance comparison of voltage stability indices for weak bus identification in power systems Verayiah R. Mohamed A. Shareef H. Abidin I.H.Z. 26431682500 57195440511 57189691198 35606640500 Complex networks Electric power systems System stability Voltage control Voltage stabilizing circuits Electric power utilities Fast voltage stability indices Performance comparison Power system networks Power system stability Under voltage load shedding Utility companies Voltage stability index bus transport conference proceeding electrical power electricity industry identification method monitoring system performance assessment Electric load shedding Voltage collapse event is identified as complex and localized in nature but its effect is extensive once occurred. The vital effect of voltage collapse would be the total system collapse or blackouts which would cost a large loss to utility companies. Eventually, on- line monitoring of power system stability has become an important factor for electric power utilities. The last utmost option to avert voltage collapse incident from occurring is by the implementation of under voltage load shedding scheme. The identification of location for load shedding is the main motivation of the study. The weakest bus in a power system is identified as the location for load shedding. This location is obtained using voltage stability index Ld. The performance and effectiveness of Ld index is compared with Fast Voltage Stability Index (FVSI) and Le Index. The results obtained indicate that Ld Index can be used to identify the weak bus in a power system and consequently for the placement of UVLS relays in a power system network. � Published under licence by IOP Publishing Ltd. Final 2023-12-29T07:45:33Z 2023-12-29T07:45:33Z 2013 Conference paper 10.1088/1755-1315/16/1/012022 2-s2.0-84881104051 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84881104051&doi=10.1088%2f1755-1315%2f16%2f1%2f012022&partnerID=40&md5=e94e4c91de1d14711cebf18c662804ce https://irepository.uniten.edu.my/handle/123456789/30210 16 1 12022 All Open Access; Gold Open Access Institute of Physics Publishing Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic Complex networks
Electric power systems
System stability
Voltage control
Voltage stabilizing circuits
Electric power utilities
Fast voltage stability indices
Performance comparison
Power system networks
Power system stability
Under voltage load shedding
Utility companies
Voltage stability index
bus transport
conference proceeding
electrical power
electricity industry
identification method
monitoring system
performance assessment
Electric load shedding
spellingShingle Complex networks
Electric power systems
System stability
Voltage control
Voltage stabilizing circuits
Electric power utilities
Fast voltage stability indices
Performance comparison
Power system networks
Power system stability
Under voltage load shedding
Utility companies
Voltage stability index
bus transport
conference proceeding
electrical power
electricity industry
identification method
monitoring system
performance assessment
Electric load shedding
Verayiah R.
Mohamed A.
Shareef H.
Abidin I.H.Z.
Performance comparison of voltage stability indices for weak bus identification in power systems
description Voltage collapse event is identified as complex and localized in nature but its effect is extensive once occurred. The vital effect of voltage collapse would be the total system collapse or blackouts which would cost a large loss to utility companies. Eventually, on- line monitoring of power system stability has become an important factor for electric power utilities. The last utmost option to avert voltage collapse incident from occurring is by the implementation of under voltage load shedding scheme. The identification of location for load shedding is the main motivation of the study. The weakest bus in a power system is identified as the location for load shedding. This location is obtained using voltage stability index Ld. The performance and effectiveness of Ld index is compared with Fast Voltage Stability Index (FVSI) and Le Index. The results obtained indicate that Ld Index can be used to identify the weak bus in a power system and consequently for the placement of UVLS relays in a power system network. � Published under licence by IOP Publishing Ltd.
author2 26431682500
author_facet 26431682500
Verayiah R.
Mohamed A.
Shareef H.
Abidin I.H.Z.
format Conference paper
author Verayiah R.
Mohamed A.
Shareef H.
Abidin I.H.Z.
author_sort Verayiah R.
title Performance comparison of voltage stability indices for weak bus identification in power systems
title_short Performance comparison of voltage stability indices for weak bus identification in power systems
title_full Performance comparison of voltage stability indices for weak bus identification in power systems
title_fullStr Performance comparison of voltage stability indices for weak bus identification in power systems
title_full_unstemmed Performance comparison of voltage stability indices for weak bus identification in power systems
title_sort performance comparison of voltage stability indices for weak bus identification in power systems
publisher Institute of Physics Publishing
publishDate 2023
_version_ 1806426337860124672
score 13.214268