TELKOMNIKA Telecommunication, Computing, Electronics and Control
FLC based on static var compensator for power system transient stability enhancement
Dublin Core
Title
TELKOMNIKA Telecommunication, Computing, Electronics and Control
FLC based on static var compensator for power system transient stability enhancement
FLC based on static var compensator for power system transient stability enhancement
Subject
Fuzzy logic, Power system, SVC, Transient stability
Description
Transient Stability is the capability of a system to be able to return to its
normal state after experiencing large disturbances. The static var
compensator (SVC) is a shunt device of the flexible AC transmission systems (FACTS) family using power electronics to improve transient stability in power system. For the SVC control, it is usually used a PI controller, although PI controller is simpler and cheaper but not suitable when power system is subjected to transient stability since power system become non-linear system. In order to overcome this problem, the PI controller combined with Fuzzy controller is designed. Two types of faults were considered for this study to examine the effect of the fuzzy-SVC controller on system transient stability, the proposed fault types are single line to ground fault and three lines to ground fault. The performance and behavior of the designed fuzzy controller compared with that of the conventional PI controller in term of terminal voltage, rotor angle, and transmission line active power.
normal state after experiencing large disturbances. The static var
compensator (SVC) is a shunt device of the flexible AC transmission systems (FACTS) family using power electronics to improve transient stability in power system. For the SVC control, it is usually used a PI controller, although PI controller is simpler and cheaper but not suitable when power system is subjected to transient stability since power system become non-linear system. In order to overcome this problem, the PI controller combined with Fuzzy controller is designed. Two types of faults were considered for this study to examine the effect of the fuzzy-SVC controller on system transient stability, the proposed fault types are single line to ground fault and three lines to ground fault. The performance and behavior of the designed fuzzy controller compared with that of the conventional PI controller in term of terminal voltage, rotor angle, and transmission line active power.
Creator
Mojeebalrhman M. A. Hassan, Xiuyun Sun, Abdelrahim Ate
Source
DOI: 10.12928/TELKOMNIKA.v18i5.15605
Publisher
Universitas Ahmad Dahlan
Date
October 2020
Contributor
Sri Wahyuni
Rights
ISSN: 1693-6930
Relation
http://journal.uad.ac.id/index.php/TELKOMNIKA
Format
PDF
Language
English
Type
Text
Coverage
TELKOMNIKA Telecommunication, Computing, Electronics and Control
Files
Collection
Citation
Mojeebalrhman M. A. Hassan, Xiuyun Sun, Abdelrahim Ate, “TELKOMNIKA Telecommunication, Computing, Electronics and Control
FLC based on static var compensator for power system transient stability enhancement,” Repository Horizon University Indonesia, accessed March 10, 2025, https://repository.horizon.ac.id/items/show/4087.
FLC based on static var compensator for power system transient stability enhancement,” Repository Horizon University Indonesia, accessed March 10, 2025, https://repository.horizon.ac.id/items/show/4087.