Optimal location of TCSC device for damping oscillation

This paper proposes a residue factor method to obtain the optimal location of the Thyristor Controlled Series Capacitor (TCSC) device to damp out the inter-area mode of oscillations. The residue method is base on the facts that it is the product of the mode’s Observability and controllability index...

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Main Authors: Magaji, Nuraddeen, Mustafa, Mohd. Wazir
Format: Article
Language:English
Published: Asian Research Publishing Network (ARPN) 2009
Subjects:
Online Access:http://eprints.utm.my/11691/1/MohdWazirMustafa2009_OptimalLocationofTCSCDevice.pdf
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author Magaji, Nuraddeen
Mustafa, Mohd. Wazir
author_facet Magaji, Nuraddeen
Mustafa, Mohd. Wazir
author_sort Magaji, Nuraddeen
collection ePrints
description This paper proposes a residue factor method to obtain the optimal location of the Thyristor Controlled Series Capacitor (TCSC) device to damp out the inter-area mode of oscillations. The residue method is base on the facts that it is the product of the mode’s Observability and controllability index of TCSC controllers to the critical mode. The placements of TCSC controllers have been obtained for the base case and for the dynamic critical contingences. Eigen value analyses are used to assess the most appropriate input signals (stabilizing signal) for supplementary damping control of TCSC. The Right-Half Plane zeros (RHP-zeros) and Hankel Singular Value (HSV) is used as tools to select the most receptive signal to a mode of the Interarea oscillation. The effectiveness of the proposed method of placement is demonstrated on practical network of 25 bus south Malaysian Power system.
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spelling utm.eprints-116912011-01-17T09:30:54Z http://eprints.utm.my/11691/ Optimal location of TCSC device for damping oscillation Magaji, Nuraddeen Mustafa, Mohd. Wazir TK Electrical engineering. Electronics Nuclear engineering This paper proposes a residue factor method to obtain the optimal location of the Thyristor Controlled Series Capacitor (TCSC) device to damp out the inter-area mode of oscillations. The residue method is base on the facts that it is the product of the mode’s Observability and controllability index of TCSC controllers to the critical mode. The placements of TCSC controllers have been obtained for the base case and for the dynamic critical contingences. Eigen value analyses are used to assess the most appropriate input signals (stabilizing signal) for supplementary damping control of TCSC. The Right-Half Plane zeros (RHP-zeros) and Hankel Singular Value (HSV) is used as tools to select the most receptive signal to a mode of the Interarea oscillation. The effectiveness of the proposed method of placement is demonstrated on practical network of 25 bus south Malaysian Power system. Asian Research Publishing Network (ARPN) 2009-05 Article PeerReviewed application/pdf en http://eprints.utm.my/11691/1/MohdWazirMustafa2009_OptimalLocationofTCSCDevice.pdf Magaji, Nuraddeen and Mustafa, Mohd. Wazir (2009) Optimal location of TCSC device for damping oscillation. ARPN Journal of Engineering and Applied Sciences, 4 (3). pp. 28-34. ISSN 1819-6608 http://www.arpnjournals.com/jeas/research_papers/rp_2009/jeas_0509_181.pdf
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Magaji, Nuraddeen
Mustafa, Mohd. Wazir
Optimal location of TCSC device for damping oscillation
title Optimal location of TCSC device for damping oscillation
title_full Optimal location of TCSC device for damping oscillation
title_fullStr Optimal location of TCSC device for damping oscillation
title_full_unstemmed Optimal location of TCSC device for damping oscillation
title_short Optimal location of TCSC device for damping oscillation
title_sort optimal location of tcsc device for damping oscillation
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/11691/1/MohdWazirMustafa2009_OptimalLocationofTCSCDevice.pdf
work_keys_str_mv AT magajinuraddeen optimallocationoftcscdevicefordampingoscillation
AT mustafamohdwazir optimallocationoftcscdevicefordampingoscillation