DocumentCode :
1461255
Title :
High-current vacuum switching devices for power energy storages
Author :
Alferov, Dmitrii F. ; Ivanov, Valerii P. ; Sidorov, Vladimir A.
Author_Institution :
All-Russian Electrotech. Inst., Moscow, Russia
Volume :
35
Issue :
1
fYear :
1999
fDate :
1/1/1999 12:00:00 AM
Firstpage :
323
Lastpage :
327
Abstract :
The series of new vacuum switching devices for the commutation of power energy storage has been developed. To provide reliable and fast commutation of capacitor type energy storages a new type of triggered vacuum switch (TVS) of sealed off design has been developed-the RVU-43. This switch provides commutation of current pulses with peak value up to 250 kA at working voltage up to 25 kV, with transferred charge in a pulse up to 120 C. Wide range of operating voltage and low switching voltage level permit to use RVU-43 in the crowbar operation mode to apply mono-polar pulses in the inductance load. Small straggling of triggering delay time provides synchronous parallel switching of TVS on a load, and also series connection of TVSs. Results of TVS tests are presented. The opportunity to increase its limit parameters is discussed. Several types of DC vacuum circuit-breakers were developed to provide commutation of power inductive energy storages with switched currents up to 50 kA with voltage 30-100 kV. Possibility of series and parallel connections of DC circuit-breakers were investigated
Keywords :
circuit-breaking arcs; inductive energy storage; switchgear testing; vacuum arcs; vacuum switches; 25 kV; 250 kA; 30 to 100 kV; 50 kA; DC vacuum circuit-breakers; commutation; crowbar operation mode; high-current vacuum switching devices; inductance load; mono-polar pulses; operating voltage range; power inductive energy storage applications; sealed-off design; switching voltage level; synchronous parallel switching; triggered vacuum switch; triggering delay time; Capacitors; Circuit testing; Electrodes; Elementary particle vacuum; Energy storage; Pulsed power supplies; Switches; Switching circuits; Vacuum arcs; Voltage;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.738425
Filename :
738425
Link To Document :
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