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A 4.8-MJ Pulsed-Power System for Electromagnetic Launcher Experiment.

Authors :
Jin, Yun Sik
Kim, Young Bae
Kim, Jong Soo
Cho, Chuhyun
Yang, Kyung-Seung
Kim, Seong-Ho
Lee, Byungha
An, Sanghyuk
Lee, Young-Hyun
Yoon, Seok Han
Koo, In Su
Baik, Yong Gi
Kwak, Dae-Hwan
Source :
IEEE Transactions on Plasma Science. Oct2015 Part 1, Vol. 43 Issue 10, Part 1, p3369-3373. 5p.
Publication Year :
2015

Abstract

A 4.8-MJ capacitive pulsed-power system (PPS) was designed and fabricated for electromagnetic launcher (EML) experiment. The PPS consists of eight 600-kJ segments, which can be operated independently. In each segment, six 100-kJ capacitor bank modules, a charging power supply, a dump and charge panel, and control circuit were integrated. The capacitor bank modules in the segment are charged at the same voltage up to 10 kV, but the trigger time of each module can be set up differently. The overall PPS system is controlled by a control program, which sets charging voltage and trigger time of each module and monitors the states of system component. All the control signals are transmitted through fiber optic communication. The 48 unit modules are connected in parallel to EML with high-voltage coaxial cables. A current amplitude of more than 1 MA and a pulsewidth of several milliseconds were achieved by the PPS. The PPS has been applied to several tens of firing experiments of EML successfully. The design, fabrication, and the test results of the 4.8-MJ PPS were described in this paper. [ABSTRACT FROM PUBLISHER]

Details

Language :
English
ISSN :
00933813
Volume :
43
Issue :
10, Part 1
Database :
Academic Search Index
Journal :
IEEE Transactions on Plasma Science
Publication Type :
Academic Journal
Accession number :
110255659
Full Text :
https://doi.org/10.1109/TPS.2015.2403860