Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller
In this paper a novel non-linear optimization problem is formulated to maximize the social welfare in restructured environment with generalized unified power flow controller (GUPFC). This paper presents a methodology to optimally allocate the reactive power by minimizing voltage deviation at load bu...
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doaj-a16958780a214074a7f1c0d5ce14002b2020-11-25T03:29:34ZengPolish Academy of SciencesArchives of Electrical Engineering2300-25062015-09-0164340542610.2478/aee-2015-0032aee-2015-0032Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controllerSuresh Chintalapudi Venkata0Sivangaraju Sirigiri1Department of Electrical and Electronics Engineering, Jawaharlal Nehru Technological University Kakinada, Kakinada Andhra Pradesh, 533 003, IndiaDepartment of Electrical and Electronics Engineering, Jawaharlal Nehru Technological University Kakinada, Kakinada Andhra Pradesh, 533 003, IndiaIn this paper a novel non-linear optimization problem is formulated to maximize the social welfare in restructured environment with generalized unified power flow controller (GUPFC). This paper presents a methodology to optimally allocate the reactive power by minimizing voltage deviation at load buses and total transmission power losses so as to maximize the social welfare. The conventional active power generation cost function is modified by combining costs of reactive power generated by the generators, shunt capacitors and total power losses to it. The formulated objectives are optimized individually and simultaneously as multi-objective optimization problem, while satisfying equality, in-equality, practical and device operational constraints. A new optimization method, based on two stage initialization and random distribution processes is proposed to test the effectiveness of the proposed approach on IEEE-30 bus system, and the detailed analysis is carried out.http://www.degruyter.com/view/j/aee.2015.64.issue-3/aee-2015-0032/aee-2015-0032.xml?format=INTgeneralized unified power flow controlleroptimal reactive power dispatchsocial welfaremulti-objective optimization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Suresh Chintalapudi Venkata Sivangaraju Sirigiri |
spellingShingle |
Suresh Chintalapudi Venkata Sivangaraju Sirigiri Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller Archives of Electrical Engineering generalized unified power flow controller optimal reactive power dispatch social welfare multi-objective optimization |
author_facet |
Suresh Chintalapudi Venkata Sivangaraju Sirigiri |
author_sort |
Suresh Chintalapudi Venkata |
title |
Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller |
title_short |
Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller |
title_full |
Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller |
title_fullStr |
Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller |
title_full_unstemmed |
Multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller |
title_sort |
multi-objective optimal reactive power dispatch to maximize power system social welfare in the presence of generalized unified power flow controller |
publisher |
Polish Academy of Sciences |
series |
Archives of Electrical Engineering |
issn |
2300-2506 |
publishDate |
2015-09-01 |
description |
In this paper a novel non-linear optimization problem is formulated to maximize the social welfare in restructured environment with generalized unified power flow controller (GUPFC). This paper presents a methodology to optimally allocate the reactive power by minimizing voltage deviation at load buses and total transmission power losses so as to maximize the social welfare. The conventional active power generation cost function is modified by combining costs of reactive power generated by the generators, shunt capacitors and total power losses to it. The formulated objectives are optimized individually and simultaneously as multi-objective optimization problem, while satisfying equality, in-equality, practical and device operational constraints. A new optimization method, based on two stage initialization and random distribution processes is proposed to test the effectiveness of the proposed approach on IEEE-30 bus system, and the detailed analysis is carried out. |
topic |
generalized unified power flow controller optimal reactive power dispatch social welfare multi-objective optimization |
url |
http://www.degruyter.com/view/j/aee.2015.64.issue-3/aee-2015-0032/aee-2015-0032.xml?format=INT |
work_keys_str_mv |
AT sureshchintalapudivenkata multiobjectiveoptimalreactivepowerdispatchtomaximizepowersystemsocialwelfareinthepresenceofgeneralizedunifiedpowerflowcontroller AT sivangarajusirigiri multiobjectiveoptimalreactivepowerdispatchtomaximizepowersystemsocialwelfareinthepresenceofgeneralizedunifiedpowerflowcontroller |
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1724578231112171520 |