Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations

Abstract In this paper, a novel flexible AC transmission system (FACTS) device named generalized optimal unified power flow controller (GOUPFC) is introduced to control the power flows in multi transmission lines and to regulate the voltages and angles at the load buses. The detailed power injection...

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Main Authors: K. V. Kumar Kavuturu, K. N. V. Sai Tejaswi, Varaprasad Janamala
Format: Article
Language:English
Published: SpringerOpen 2022-08-01
Series:Journal of Electrical Systems and Information Technology
Subjects:
Online Access:https://doi.org/10.1186/s43067-022-00057-y
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author K. V. Kumar Kavuturu
K. N. V. Sai Tejaswi
Varaprasad Janamala
author_facet K. V. Kumar Kavuturu
K. N. V. Sai Tejaswi
Varaprasad Janamala
author_sort K. V. Kumar Kavuturu
collection DOAJ
description Abstract In this paper, a novel flexible AC transmission system (FACTS) device named generalized optimal unified power flow controller (GOUPFC) is introduced to control the power flows in multi transmission lines and to regulate the voltages and angles at the load buses. The detailed power injection modeling of GOUPFC is presented in this paper. The optimal location of GOUPFC is determined based on line collapse proximity indicator (LCPI). A multi-objective function is framed in terms of average voltage deviation (AVDI), real power loss (P loss) and average line collapse proximity indicator (LCPIavg) to test the effectiveness of the proposed device. The simulation studies are performed on standard IEEE 57-bus test system under single line contingency and considering various renewable energy source (RES) penetrations. The control parameters of GOUPFC are optimized by using whale optimization (WO-BAT) algorithm, by hybridizing WOA and BAT algorithms, and the superiority of WO-BAT is observed in minimizing the proposed objective function and enhancing the voltage profile.
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spelling doaj.art-db19ab55af2843298ac9c7c7ef8ea98e2022-12-22T01:35:40ZengSpringerOpenJournal of Electrical Systems and Information Technology2314-71722022-08-019112410.1186/s43067-022-00057-yPerformance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrationsK. V. Kumar KavuturuK. N. V. Sai TejaswiVaraprasad Janamala0Department of Electrical and Electronics Engineering, School of Engineering and Technology, Christ (Deemed to be University)Abstract In this paper, a novel flexible AC transmission system (FACTS) device named generalized optimal unified power flow controller (GOUPFC) is introduced to control the power flows in multi transmission lines and to regulate the voltages and angles at the load buses. The detailed power injection modeling of GOUPFC is presented in this paper. The optimal location of GOUPFC is determined based on line collapse proximity indicator (LCPI). A multi-objective function is framed in terms of average voltage deviation (AVDI), real power loss (P loss) and average line collapse proximity indicator (LCPIavg) to test the effectiveness of the proposed device. The simulation studies are performed on standard IEEE 57-bus test system under single line contingency and considering various renewable energy source (RES) penetrations. The control parameters of GOUPFC are optimized by using whale optimization (WO-BAT) algorithm, by hybridizing WOA and BAT algorithms, and the superiority of WO-BAT is observed in minimizing the proposed objective function and enhancing the voltage profile.https://doi.org/10.1186/s43067-022-00057-yAverage voltage deviation (AVDI)Generalized unified power flow controller (GUPFC)Phase shifting transformer (PST)Optimal power flow (OPF)Whale optimization-BAT (WO-BAT)
spellingShingle K. V. Kumar Kavuturu
K. N. V. Sai Tejaswi
Varaprasad Janamala
Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
Journal of Electrical Systems and Information Technology
Average voltage deviation (AVDI)
Generalized unified power flow controller (GUPFC)
Phase shifting transformer (PST)
Optimal power flow (OPF)
Whale optimization-BAT (WO-BAT)
title Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
title_full Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
title_fullStr Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
title_full_unstemmed Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
title_short Performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
title_sort performance and security enhancement using generalized optimal unified power flow controller under contingency conditions and renewable energy penetrations
topic Average voltage deviation (AVDI)
Generalized unified power flow controller (GUPFC)
Phase shifting transformer (PST)
Optimal power flow (OPF)
Whale optimization-BAT (WO-BAT)
url https://doi.org/10.1186/s43067-022-00057-y
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AT knvsaitejaswi performanceandsecurityenhancementusinggeneralizedoptimalunifiedpowerflowcontrollerundercontingencyconditionsandrenewableenergypenetrations
AT varaprasadjanamala performanceandsecurityenhancementusinggeneralizedoptimalunifiedpowerflowcontrollerundercontingencyconditionsandrenewableenergypenetrations