DocumentCode :
765109
Title :
Advanced concepts for electromagnetic launcher power supplies incorporating magnetic flux compression
Author :
Driga, M.D. ; Fair, H.D.
Author_Institution :
Texas Univ., Austin, TX, USA
Volume :
27
Issue :
1
fYear :
1991
fDate :
1/1/1991 12:00:00 AM
Firstpage :
350
Lastpage :
355
Abstract :
Advanced concepts of high-energy power supplies for coil launchers are presented. These concepts are designed to produce high inductive compressive ratios and large current and magnetic field multiplication ratios in the range of megamperes of current and gigawatts of active power. As a consequence of the flexibility of multiwinding rotating generators, such designs provide an extensive range of output pulse shaping in single or multiple pulses, enabling optimum operation of the coil launcher. The interaction of different stationary and rotating electrical windings in strong magnetic fields with feedback generated amplification and nonuniform compensation of the armature reaction is the key to providing a large and flexible spectrum of tailored output pulses, eliminating the need for switching and other large external electromagnetic pulse-forming components. Dynamic interactions between the internal impedance of these generators and the induced electromotive forces in various windings, as well as the role of the external passive circuit components introduced in the launcher circuit (such as capacitors and inductors), are discussed and numerically evaluated. Finally, an adaptive finite-element method numerical code is described. This code takes into account the relative motion and is designed to evaluate machines incorporating flux compression
Keywords :
electric generators; electromagnetic launchers; magnetic flux; power supplies to apparatus; pulse generators; pulsed power technology; adaptive finite-element method; amplification; armature reaction; capacitors; coil launchers; compensation; current; designs; electromagnetic launcher power supplies; feedback; impedance; induced electromotive forces; inductors; magnetic field; magnetic flux compression; multiwinding rotating generators; pulsed power technology; Armature; Coils; EMP radiation effects; Electromagnetic launching; Magnetic fields; Output feedback; Power supplies; Pulse amplifiers; Pulse generation; Pulse shaping methods;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.101055
Filename :
101055
Link To Document :
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