DocumentCode :
2140325
Title :
Optimization of high-voltage nanosecond pulse compression
Author :
Ulmascoulov, M.R. ; Shpak, V.G. ; Shunailov, S.A. ; Sharypov, K.A.
Author_Institution :
Inst. of Electrophys., Ekaterinburg, Russia
fYear :
2008
fDate :
6-11 July 2008
Firstpage :
1
Lastpage :
4
Abstract :
The work is directed on an increase in an energy effectiveness of the existing compact devices, intended for the energy compression of the nanosecond time range pulses [1]. Devices consist of high impedance (HL) and forming (FL) lines and high-pressure spark gas discharger. In contrast to the device [1] with a serial discharge circuit of FL, the version of circuit with a parallel discharge for the load of lines HL and FL is proposed. The calculations, which show the energy effectiveness of this scheme, are given. Converter with the parallel discharge circuit on base [1] is developed. The converter with parallel discharge circuit increased peak pulse power additionally on 17% in comparison with serial discharge converter for a case of initial pulse with rise time ~0.5 ns. The voltage amplitude of the initial nanosecond pulse 4 ns was increased from 145 kV to 195 kV (across the load 45 Ohm) with the time compression of pulse to ~0.8 ns. A real increase of the peak power across the load 45 Ohm reached 1.8 when calculated value 2.5. Device, which form two fixed pulse waveforms 210 kV, 0.8 ns and 250 kV, 0.45 ns by converting nanosecond pulse with an amplitude 160 kV and peaked rise time to 0. 3 ns is made.
Keywords :
circuit optimisation; convertors; pulse compression; sparks; compact device; compression; energy compression; energy effectiveness; forming line; high impedance line; high-pressure spark gas discharger; high-voltage nanosecond pulse compression; in; nanosecond time range pulse; optimization; parallel discharge circuit; peak pulse power; serial discharge circuit; serial discharge converter; time 0.45 ns to 4 ns; voltage 1475 kV to 195 kV; voltage 210 kV to 250 kV; Nitrogen; Partial discharges;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Power Particle Beams (BEAMS), 2008 17th International Conference on
Conference_Location :
Xian
Type :
conf
Filename :
6202849
Link To Document :
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