DocumentCode :
29380
Title :
Testing of Reactor Switching for UHV Circuit Breakers
Author :
Heiermeier, Helmut
Author_Institution :
ABB, Baden, Switzerland
Volume :
30
Issue :
3
fYear :
2015
fDate :
Jun-15
Firstpage :
1172
Lastpage :
1178
Abstract :
Reactor switching is a test duty for circuit breakers (CBs) in special locations. This duty is characterized by a relatively low current but the CB is stressed with high voltages. Furthermore, this is a stress which will appear frequently in breakers used for switching voltage-control elements. The different international standards define test procedures, which should be used to determine the CB characteristic and the withstand capability for the corresponding operating voltages. Usually, HV CBs need to be tested in synthetic test circuits. Due to the strong interaction between CBs and network synthetic test circuits, it is not possible to be used for inductive switching. Also, the direct test circuit may not be available due to the necessary short-circuit power and the required test voltages. Therefore, a test method has been developed to obtain the necessary information in a multistep method combining testing and calculation. Using the proposed method will enable smaller testing stations to give judgment on CB capabilities. For other very high requirements where even no test possibilities may exist, it will provide some evidence avoiding field tests. A validation of the presented multistep method is given in this paper.
Keywords :
circuit breakers; high-voltage engineering; switching systems (control); voltage control; HV CB; UHV circuit breakers; direct test circuit; inductive switching; international standards; network synthetic test circuits; reactor switching; short-circuit power; test procedures; testing stations; voltage-control elements; Circuit breakers; Inductors; Standards; Stress; Surges; Switching circuits; Testing; Chopping overvoltages; current chopping; dynamic dielectric withstand; inductive switching; reignition; test limitations;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2015.2394238
Filename :
7015610
Link To Document :
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