DocumentCode :
1605960
Title :
Generation of a series of pulses of high power for resistive load through the transformer inductive storage and the powerful two-stage opening switch
Author :
Egorov, Oleg G.
Author_Institution :
Atomic Agency, TRINITI, Moscow, Russia
fYear :
2013
Firstpage :
1
Lastpage :
4
Abstract :
Significant advantages of inductive energy storages (IS) over capacitor storage are not only in their low cost and high density of energy. The generators on IS possess some substantial potentials, namely they are capable to generate both a series of single pulses and a series of pulse trains with a gigawatt power and high efficiency of the energy transfer to the load. In a number of works different variants of electric schemes for a high resource switch applicable to various loads in the mode of pulse series generation were proposed. The current work considers the option of the generator at the load with a resistive-dominated component and a vibrating microwave driver (gyrotron) was chosen as an example of the load. Among the problems in using microwave drivers is the thermal effect on the walls of the resonator construction and outlet glass. To solve this problem a method of step-by-step microwave driver switching in the mode of pulse series was offered. For this goal the electric scheme of two-stage opening switch was designed to generate series of pulses on the resistive load gigawatt power of millisecond duration. Features appearing in the scheme of the dc current break are also discussed.
Keywords :
capacitor storage; gyrotrons; inductive energy storage; capacitor storage; dc current break; energy transfer; gigawatt power; gyrotron; microwave driver switching; powerful two-stage opening switch; pulse trains; pulses series generation; resistive load; resistive-dominated component; resonator construction; transformer inductive storage; vibrating microwave driver; Capacitors; Generators; Interrupters; Microwave oscillators; Microwave theory and techniques; Switches; generation of series pulses; inductive storage; microwave source; pulsed power;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Fusion Engineering (SOFE), 2013 IEEE 25th Symposium on
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4799-0169-2
Type :
conf
DOI :
10.1109/SOFE.2013.6635382
Filename :
6635382
Link To Document :
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