Enhancement of ATC with FACTS devices using Real-code Genetic Algorithm

► We focus on the impact of FACTS devices to maximize Available Transfer Capability. ► Enhancement of ATC is more with TCSC when compared to SVC. ► Implementation of the proposed Real-code Genetic Algorithm gives good result. ► Installing SVC will improve voltage profile as well as resulting ATC enh...

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Published inInternational journal of electrical power & energy systems Vol. 43; no. 1; pp. 1276 - 1284
Main Authors Nireekshana, T., Kesava Rao, G., Siva Naga Raju, S.
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 01.12.2012
Elsevier
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ISSN0142-0615
1879-3517
DOI10.1016/j.ijepes.2012.06.041

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Abstract ► We focus on the impact of FACTS devices to maximize Available Transfer Capability. ► Enhancement of ATC is more with TCSC when compared to SVC. ► Implementation of the proposed Real-code Genetic Algorithm gives good result. ► Installing SVC will improve voltage profile as well as resulting ATC enhancement. ► TCSC can improve ATC in both thermal dominant case and voltage dominant case. Determination and enhancement of Available Transfer Capability (ATC) are important issues in deregulated operation of power systems. This paper investigates the use of FACTs devices, like SVC and TCSC, to maximize power transfer transactions during normal and contingency situations. ATC is computed using Continuation Power Flow (CPF) method considering both thermal limits and voltage profile. Real-code Genetic Algorithm (RGA) is used as an optimization tool to determine the location and controlling parameters of SVC and TCSC. The suggested methodology is tested on IEEE 14-bus system and also on IEEE 24-bus reliability test system for normal and different contingency cases.
AbstractList Determination and enhancement of Available Transfer Capability (ATC) are important issues in deregulated operation of power systems. This paper investigates the use of FACTs devices, like SVC and TCSC, to maximize power transfer transactions during normal and contingency situations. ATC is computed using Continuation Power Flow (CPF) method considering both thermal limits and voltage profile. Real-code Genetic Algorithm (RGA) is used as an optimization tool to determine the location and controlling parameters of SVC and TCSC. The suggested methodology is tested on IEEE 14-bus system and also on IEEE 24-bus reliability test system for normal and different contingency cases.
► We focus on the impact of FACTS devices to maximize Available Transfer Capability. ► Enhancement of ATC is more with TCSC when compared to SVC. ► Implementation of the proposed Real-code Genetic Algorithm gives good result. ► Installing SVC will improve voltage profile as well as resulting ATC enhancement. ► TCSC can improve ATC in both thermal dominant case and voltage dominant case. Determination and enhancement of Available Transfer Capability (ATC) are important issues in deregulated operation of power systems. This paper investigates the use of FACTs devices, like SVC and TCSC, to maximize power transfer transactions during normal and contingency situations. ATC is computed using Continuation Power Flow (CPF) method considering both thermal limits and voltage profile. Real-code Genetic Algorithm (RGA) is used as an optimization tool to determine the location and controlling parameters of SVC and TCSC. The suggested methodology is tested on IEEE 14-bus system and also on IEEE 24-bus reliability test system for normal and different contingency cases.
Author Nireekshana, T.
Kesava Rao, G.
Siva Naga Raju, S.
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Issue 1
Keywords ATC improvement
TCSC
SVC
Continuation Power Flow
Real-code Genetic Algorithm
Deregulation
Flexible AC transmission systems
Power transmission
Power system economics
Optimization
Load flow
Bus system
Trade
Electrical network
Genetic algorithm
Power flow
Static VAr compensators
Available transfer capability
Contingency table
Thyristor controlled series capacitor
Power markets
IEEE standards
Reliability
Energy transfer
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  article-title: Optimal location of multi-type FACTS devices in a power system by means of genetic algorithms
  publication-title: IEEE Trans Power Sys
  doi: 10.1109/59.932292
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  article-title: Available transfer capability calculations
  publication-title: IEEE Trans Power Sys
  doi: 10.1109/59.736300
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Snippet ► We focus on the impact of FACTS devices to maximize Available Transfer Capability. ► Enhancement of ATC is more with TCSC when compared to SVC. ►...
Determination and enhancement of Available Transfer Capability (ATC) are important issues in deregulated operation of power systems. This paper investigates...
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StartPage 1276
SubjectTerms Applied sciences
ATC improvement
Contingency
Continuation Power Flow
Deregulation
Devices
Disturbances. Regulation. Protection
Electric power generation
Electrical engineering. Electrical power engineering
Electrical power engineering
Exact sciences and technology
Genetic algorithms
Miscellaneous
Operation. Load control. Reliability
Optimization
Power networks and lines
Real-code Genetic Algorithm
SVC
TCSC
Voltage
Title Enhancement of ATC with FACTS devices using Real-code Genetic Algorithm
URI https://dx.doi.org/10.1016/j.ijepes.2012.06.041
https://www.proquest.com/docview/1671552958
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