DocumentCode :
1348116
Title :
Analysis of generator-driven linear induction launchers
Author :
Liao, M. ; Zabar, Z. ; Levi, E. ; Birenbaum, L.
Author_Institution :
Polytechnic Univ., Brooklyn, NY, USA
Volume :
33
Issue :
1
fYear :
1997
fDate :
1/1/1997 12:00:00 AM
Firstpage :
184
Lastpage :
189
Abstract :
This paper deals with the analysis and design of high-speed, multi-section, generator-driven, polyphase, linear-induction-type electromagnetic launchers. During a launch, steady state is never reached. Hence, a transient simulation model, based on lumped-circuit parameters, was developed, for purposes of analysis, in earlier work with capacitor-driven launchers. This model, as well as its related computer code, is also applicable to generator-driven launchers. From earlier work, we found that simultaneous energizing of the three phases of generator-driven launchers gives rise to DC current components in the barrel-coils that can cause strong braking forces, especially at the transitions between sections. In this paper, an alternate energizing mode, in which the three phases of the barrel coils are switched on in sequence, phase by phase, with the appropriate phase shifts, is investigated. Numerical results of the transient simulation show that the initial position of the projectile at a section transition at switch-on time, and the switch-on phase angle, significantly influence the performance. With some poorly-chosen initial positions or phase angles, DC components of the currents in the armature can produce very large retarding forces, thus resulting in actual deceleration of the projectile. On the basis of the transient model, simulations were done to search for the optimal switch-on phase angles and initial positions of the projectile. The results show that smoother transitions between sections and higher muzzle velocities can be achieved with these optimal phase angles and initial positions
Keywords :
electromagnetic induction; electromagnetic launchers; simulation; transient analysis; DC current components; armature; barrel-coils; braking forces; coilgun; computer code; electromagnetic launchers; energizing mode; generator-driven induction launchers; high-speed multisection type; linear induction launchers; lumped-circuit parameters; muzzle velocities; polyphase type; projectile deceleration; projectile position; retarding forces; switch-on phase angle; transient simulation model; Analytical models; Computational modeling; DC generators; Electromagnetic analysis; Electromagnetic launching; Electromagnetic transients; Induction generators; Projectiles; Steady-state; Transient analysis;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.559942
Filename :
559942
Link To Document :
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