OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM

Modern power systems have been operated close to their limits for reasons of economic viability. Consequently, a small increase in the load may lead to the Maximum Loading Point (MLP) of the system resulting in voltage collapse. Under such circumstances, the buses for load-shed have been selected ba...

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Main Authors: R. MAGESHVARAN, T. JAYABARATHI
Format: Article
Language:English
Published: Taylor's University 2015-04-01
Series:Journal of Engineering Science and Technology
Subjects:
Online Access:http://jestec.taylors.edu.my/Vol%2010%20issue%204%20April%202015/Volume%20(10)%20Issue%20(4)%20533-%20551.pdf
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spelling doaj-ee616b7dbe2c426baeedb7130173b88a2020-11-24T23:24:44ZengTaylor's UniversityJournal of Engineering Science and Technology1823-46902015-04-01104533551OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHMR. MAGESHVARAN0T. JAYABARATHI1School of Electrical Engineering, VIT University Vellore - 632014, Tamilnadu, IndiaSchool of Electrical Engineering, VIT University Vellore - 632014, Tamilnadu, IndiaModern power systems have been operated close to their limits for reasons of economic viability. Consequently, a small increase in the load may lead to the Maximum Loading Point (MLP) of the system resulting in voltage collapse. Under such circumstances, the buses for load-shed have been selected based on line voltage stability index and its sensitivities at the operating point. This avoids voltage collapse and improves the system stability. Computational algorithms for minimum load-shed have been developed using the heuristic technique, Harmony search (HS) algorithm. The algorithm proposed in the present paper is implemented on the standard IEEE 14-bus and 25-bus test systems to obtain the optimal load shedding at the selected buses when the systems are operated at their MLP. The effectiveness and efficiency of the proposed method are established by improvements in the line voltage stability index and the bus voltages.http://jestec.taylors.edu.my/Vol%2010%20issue%204%20April%202015/Volume%20(10)%20Issue%20(4)%20533-%20551.pdfOptimal load-shedVoltage stabilityLine voltage stability indexOptimizationHarmony search algorithm
collection DOAJ
language English
format Article
sources DOAJ
author R. MAGESHVARAN
T. JAYABARATHI
spellingShingle R. MAGESHVARAN
T. JAYABARATHI
OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM
Journal of Engineering Science and Technology
Optimal load-shed
Voltage stability
Line voltage stability index
Optimization
Harmony search algorithm
author_facet R. MAGESHVARAN
T. JAYABARATHI
author_sort R. MAGESHVARAN
title OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM
title_short OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM
title_full OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM
title_fullStr OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM
title_full_unstemmed OPTIMAL LOAD SHEDDING BASED ON LINE VOLTAGE STABILITY INDEX USING HARMONY SEARCH ALGORITHM
title_sort optimal load shedding based on line voltage stability index using harmony search algorithm
publisher Taylor's University
series Journal of Engineering Science and Technology
issn 1823-4690
publishDate 2015-04-01
description Modern power systems have been operated close to their limits for reasons of economic viability. Consequently, a small increase in the load may lead to the Maximum Loading Point (MLP) of the system resulting in voltage collapse. Under such circumstances, the buses for load-shed have been selected based on line voltage stability index and its sensitivities at the operating point. This avoids voltage collapse and improves the system stability. Computational algorithms for minimum load-shed have been developed using the heuristic technique, Harmony search (HS) algorithm. The algorithm proposed in the present paper is implemented on the standard IEEE 14-bus and 25-bus test systems to obtain the optimal load shedding at the selected buses when the systems are operated at their MLP. The effectiveness and efficiency of the proposed method are established by improvements in the line voltage stability index and the bus voltages.
topic Optimal load-shed
Voltage stability
Line voltage stability index
Optimization
Harmony search algorithm
url http://jestec.taylors.edu.my/Vol%2010%20issue%204%20April%202015/Volume%20(10)%20Issue%20(4)%20533-%20551.pdf
work_keys_str_mv AT rmageshvaran optimalloadsheddingbasedonlinevoltagestabilityindexusingharmonysearchalgorithm
AT tjayabarathi optimalloadsheddingbasedonlinevoltagestabilityindexusingharmonysearchalgorithm
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