Determination of CCT due to interconnected link tripping using the OMIB and EAC

This paper presents an algorithm to determine the critical clearing time (CCT) due to the effect of interconnected link tripping by applying the one machine infinite bus (OMIB) equivalent system method and equal area criterion (EAC). This paper also proposes the implementation of graphical user inte...

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Main Authors: Salim, Nur Ashida, Jasni, Jasronita, Ab Wahab, Norfishah, Ab Aziz, Nur Fadilah, Rahmat, Nur Azzammudin, Mat Yasin, Zuhaila, Mohamad, Hasmaini
Format: Article
Language:English
Published: Science Publishing Corporation 2018
Online Access:http://psasir.upm.edu.my/id/eprint/72217/1/IJET-22187.pdf
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author Salim, Nur Ashida
Jasni, Jasronita
Ab Wahab, Norfishah
Ab Aziz, Nur Fadilah
Rahmat, Nur Azzammudin
Mat Yasin, Zuhaila
Mohamad, Hasmaini
author_facet Salim, Nur Ashida
Jasni, Jasronita
Ab Wahab, Norfishah
Ab Aziz, Nur Fadilah
Rahmat, Nur Azzammudin
Mat Yasin, Zuhaila
Mohamad, Hasmaini
author_sort Salim, Nur Ashida
collection UPM
description This paper presents an algorithm to determine the critical clearing time (CCT) due to the effect of interconnected link tripping by applying the one machine infinite bus (OMIB) equivalent system method and equal area criterion (EAC). This paper also proposes the implementation of graphical user interface (GUI) to monitor and predict the CCT from time to time. The CCT is defined as the highest time interval by which the fault is expected to be cleared with the aim of maintaining the electricity supply stability. The computation of important numerical development of CCT is deduced from the entails three fault situations, which are; pre-fault, during fault and post-fault situations, with the main focus on pre-fault situation. The CCT becomes significantly shorter whilst transient instability is induced by a three-phase fault occurred at the bus bar next to the substation connected with a sensitive generator. It is sufficient to maintain the transient stability albeit fault occurred at other locations by setting the protection relay with the computed value of CCT. A circuit breaker which is installed and operated before the smallest CCT will not affect the transient instability throughout the occasion of fault. The IEEE Reliability Test System 1979 (IEEE RTS-79) is used to verify the accuracy of the proposed methodology in determining the CCT.
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spelling upm.eprints-722172020-04-13T02:12:30Z http://psasir.upm.edu.my/id/eprint/72217/ Determination of CCT due to interconnected link tripping using the OMIB and EAC Salim, Nur Ashida Jasni, Jasronita Ab Wahab, Norfishah Ab Aziz, Nur Fadilah Rahmat, Nur Azzammudin Mat Yasin, Zuhaila Mohamad, Hasmaini This paper presents an algorithm to determine the critical clearing time (CCT) due to the effect of interconnected link tripping by applying the one machine infinite bus (OMIB) equivalent system method and equal area criterion (EAC). This paper also proposes the implementation of graphical user interface (GUI) to monitor and predict the CCT from time to time. The CCT is defined as the highest time interval by which the fault is expected to be cleared with the aim of maintaining the electricity supply stability. The computation of important numerical development of CCT is deduced from the entails three fault situations, which are; pre-fault, during fault and post-fault situations, with the main focus on pre-fault situation. The CCT becomes significantly shorter whilst transient instability is induced by a three-phase fault occurred at the bus bar next to the substation connected with a sensitive generator. It is sufficient to maintain the transient stability albeit fault occurred at other locations by setting the protection relay with the computed value of CCT. A circuit breaker which is installed and operated before the smallest CCT will not affect the transient instability throughout the occasion of fault. The IEEE Reliability Test System 1979 (IEEE RTS-79) is used to verify the accuracy of the proposed methodology in determining the CCT. Science Publishing Corporation 2018 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/72217/1/IJET-22187.pdf Salim, Nur Ashida and Jasni, Jasronita and Ab Wahab, Norfishah and Ab Aziz, Nur Fadilah and Rahmat, Nur Azzammudin and Mat Yasin, Zuhaila and Mohamad, Hasmaini (2018) Determination of CCT due to interconnected link tripping using the OMIB and EAC. International Journal of Engineering and Technology(UAE), 7 (4 spec. 22). art. no. 22187. 42 - 48. ISSN 2227-524X https://www.sciencepubco.com/index.php/ijet/article/view/22187 10.14419/ijet.v7i4.22.22187
spellingShingle Salim, Nur Ashida
Jasni, Jasronita
Ab Wahab, Norfishah
Ab Aziz, Nur Fadilah
Rahmat, Nur Azzammudin
Mat Yasin, Zuhaila
Mohamad, Hasmaini
Determination of CCT due to interconnected link tripping using the OMIB and EAC
title Determination of CCT due to interconnected link tripping using the OMIB and EAC
title_full Determination of CCT due to interconnected link tripping using the OMIB and EAC
title_fullStr Determination of CCT due to interconnected link tripping using the OMIB and EAC
title_full_unstemmed Determination of CCT due to interconnected link tripping using the OMIB and EAC
title_short Determination of CCT due to interconnected link tripping using the OMIB and EAC
title_sort determination of cct due to interconnected link tripping using the omib and eac
url http://psasir.upm.edu.my/id/eprint/72217/1/IJET-22187.pdf
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