DocumentCode
3091665
Title
An investigation on the effect of line reclosing on transient stability assessment for multi-machine power systems
Author
Bahbah, Amr G. ; Girgis, Adly A.
Author_Institution
Dept. of Electr. & Comput. Eng., Clemson Univ., SC, USA
Volume
2
fYear
1999
fDate
1999
Firstpage
1082
Abstract
This paper investigates the effect of line reclosing on transient stability assessment (TSA) for multi-machine power systems. The critical clearing time (CCT) is selected as the key parameter to estimate the TSA. Line reclosing has a direct effect on increasing the critical clearing time (i.e. improving the relative transient stability) for two-machine equivalent system (using the equal area criterion). However, the effect is not straightforward for a multi-machine system. A three-machine nine-bus system is used to investigate the effect of line reclosing on critical clearing time. The classical model of generators has been used in this study. The characteristics of line reclosure time versus critical clearing time have been studied for 3-phase faults at each end of each line in the power system sample used. The effect is compared with that when line reclosing is not applied. The results show that in some cases, faster line reclosing improves the relative transient stability (increases CCT). However, in some other cases, faster line reclosing may not improve the relative transient stability (decreases CCT) and leaving the line without reclosing may be better than reclosing it at some reclosing times. These cases should be considered in line reclosure time selection. Some explanations for the results are introduced using stability regions and transient energy function method
Keywords
power system faults; power system transient stability; 3-phase faults; critical clearing time; equal area criterion; line reclosing; line reclosure time; multi-machine power systems; relative transient stability; three-machine nine-bus system; transient energy function method; transient stability assessment; two-machine equivalent system; Absorption; Electric shock; Parameter estimation; Power system faults; Power system modeling; Power system restoration; Power system stability; Power system transients; Stability criteria; USA Councils;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Engineering Society Summer Meeting, 1999. IEEE
Conference_Location
Edmonton, Alta.
Print_ISBN
0-7803-5569-5
Type
conf
DOI
10.1109/PESS.1999.787468
Filename
787468
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