DocumentCode
1356277
Title
Parameters Optimization of Synchronous Induction Coilgun Based on Ant Colony Algorithm
Author
Liu, Wenbiao ; Cao Yanjie ; Zhang, Yuan ; Wang, Jie ; Yang, Dawei
Author_Institution
Naval Aeronaut. & Astronaut. Univ., Yantai, China
Volume
39
Issue
1
fYear
2011
Firstpage
100
Lastpage
104
Abstract
Electrical-to-kinetic energy conversion efficiency of synchronous induction coilguns (SICG) is the main limiting factor of its development. In the system of SICG, the change of any electromagnetic parameters can directly or indirectly affects the electrical-to-kinetic energy conversion efficiency. In order to improve the electrical-to-kinetic energy conversion efficiency of SICG, the electromechanical model of SICG was built at first in this paper. Then, the structural parameters of SICG with 60-mm caliber were optimized with ant colony optimization algorithm. The electrical-to-kinetic energy conversion efficiency of the system was regarded as the target function, while the center-to-center space between the drive coil and the armature, and the structural parameters of the drive coil and the armature were regarded as variables. Results of research indicated that the electrical-to-kinetic energy conversion efficiency of the system was improved through parameter optimization. In order to validate the results of parameter optimization, an experiment was carried out with the first stage of SICG.
Keywords
electromagnetic launchers; optimisation; SICG; ant colony algorithm; drive coil; electrical-to-kinetic energy conversion efficiency; electromagnetic parameters; electromechanical model; parameter optimization; size 60 mm; structural parameters; synchronous induction coilgun; Capacitors; Coilguns; Coils; Electromagnetics; Energy conversion; Optimization; Projectiles; Ant colony optimization algorithm; armature; drive coil; efficiency of synchronous induction coilguns (SICG); energy conversion efficiency;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2010.2076315
Filename
5605668
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