Improvement of Dynamical Stability Using Interline Power Flow Controller

This paper presents a novel linearized Phillips-Heffron model of a power system installed with an Interline Power Flow Controller (IPFC) in order to studying power system stability. In addition, a supplementary controller for a novel modeling IPFC to damp low frequency oscillations with considering...

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Main Authors: BANAEI, M. R., KAMI, A.-R.
Format: Article
Language:English
Published: Stefan cel Mare University of Suceava 2010-02-01
Series:Advances in Electrical and Computer Engineering
Subjects:
Online Access:http://dx.doi.org/10.4316/AECE.2010.01007
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author BANAEI, M. R.
KAMI, A.-R.
author_facet BANAEI, M. R.
KAMI, A.-R.
author_sort BANAEI, M. R.
collection DOAJ
description This paper presents a novel linearized Phillips-Heffron model of a power system installed with an Interline Power Flow Controller (IPFC) in order to studying power system stability. In addition, a supplementary controller for a novel modeling IPFC to damp low frequency oscillations with considering four alternative damping controllers is proposed. In this paper selection of effectiveness damping control signal for the design of robust IPFC damping controller to variations in system loading and fault in the power system are discussed. The presented control scheme not only performs damping oscillations but also the independent interline power flow control can be achieved. MATLAB simulation results verify the effectiveness of the IPFC and its control strategy to enhance dynamical stability.
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spelling doaj.art-7d4964d9da07441f8b8dd2652f8ec44c2022-12-22T02:04:50ZengStefan cel Mare University of SuceavaAdvances in Electrical and Computer Engineering1582-74451844-76002010-02-011014249Improvement of Dynamical Stability Using Interline Power Flow ControllerBANAEI, M. R.KAMI, A.-R.This paper presents a novel linearized Phillips-Heffron model of a power system installed with an Interline Power Flow Controller (IPFC) in order to studying power system stability. In addition, a supplementary controller for a novel modeling IPFC to damp low frequency oscillations with considering four alternative damping controllers is proposed. In this paper selection of effectiveness damping control signal for the design of robust IPFC damping controller to variations in system loading and fault in the power system are discussed. The presented control scheme not only performs damping oscillations but also the independent interline power flow control can be achieved. MATLAB simulation results verify the effectiveness of the IPFC and its control strategy to enhance dynamical stability.http://dx.doi.org/10.4316/AECE.2010.01007power system dynamic stabilityPhillips-Heffron modelsupplementary controllerIPFC
spellingShingle BANAEI, M. R.
KAMI, A.-R.
Improvement of Dynamical Stability Using Interline Power Flow Controller
Advances in Electrical and Computer Engineering
power system dynamic stability
Phillips-Heffron model
supplementary controller
IPFC
title Improvement of Dynamical Stability Using Interline Power Flow Controller
title_full Improvement of Dynamical Stability Using Interline Power Flow Controller
title_fullStr Improvement of Dynamical Stability Using Interline Power Flow Controller
title_full_unstemmed Improvement of Dynamical Stability Using Interline Power Flow Controller
title_short Improvement of Dynamical Stability Using Interline Power Flow Controller
title_sort improvement of dynamical stability using interline power flow controller
topic power system dynamic stability
Phillips-Heffron model
supplementary controller
IPFC
url http://dx.doi.org/10.4316/AECE.2010.01007
work_keys_str_mv AT banaeimr improvementofdynamicalstabilityusinginterlinepowerflowcontroller
AT kamiar improvementofdynamicalstabilityusinginterlinepowerflowcontroller