DocumentCode :
64504
Title :
Modeling and Circuit Analysis of an Electromagnetic Launcher System for a Transient Current
Author :
Seong-Ho Kim ; Sanghyuk An ; Byungha Lee ; Young-Hyun Lee ; Kyung-Seung Yang
Author_Institution :
Inst. of Defense Adv. Technol. Res., Agency for Defense Dev., Daejeon, South Korea
Volume :
43
Issue :
5
fYear :
2015
fDate :
May-15
Firstpage :
1362
Lastpage :
1367
Abstract :
An electromagnetic launcher with a 4.8-MJ pulsed power supply has been fabricated, and experimental tests were started. Through the experiments and calculations, the factors influencing the electrical properties and the performance of the launcher have been investigated. The pulse-forming inductors of the power supply and the rails of the launcher are made of massive conductors showing a prominent skin effect for a transient current. The circuit analysis using constant impedance values has a difficulty in the calculation of the correct voltages between the terminals of the conductors. In addition, the frictional force between the rails and the armature should be considered for a better estimation of the armature motion. To obtain the calculated solutions close to the measured ones, the diffusion of the magnetic flux or current was considered, and the history of the armature motion was reflected in the electrical modeling of the rails. These effects were implemented as voltage correction terms in the circuit equations with the help of the electromagnetic responses to a step-function current. In the equation of the armature motion, a reasonable form of the frictional force was modeled considering the velocity skin effect and the structural analysis. In this paper, the application of the voltage correction method into the rails of an electromagnetic launcher was introduced in detail, and the comparison of the results between the experiments and modified calculations for the constructed launcher system was described.
Keywords :
electromagnetic launchers; friction; magnetic flux; circuit analysis; conductors; electrical modeling; electromagnetic launcher system; electromagnetic responses; energy 4.8 MJ; frictional force; pulse-forming inductors; step-function current; structural analysis; transient current; velocity skin effect; voltage correction; Current measurement; Equations; Inductors; Mathematical model; RLC circuits; Rails; Resistance; Circuit transient analysis; pulse power systems; railgun; skin effect; skin effect.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2015.2398428
Filename :
7041215
Link To Document :
بازگشت