DocumentCode
1143781
Title
Analysis and Optimization of Thrust Characteristics of Tubular Linear Electromagnetic Launcher for Space-Use
Author
Baoquan, Kou ; Liyi, Li ; Chengming, Zhang
Author_Institution
Dept. of Electr. Eng., Harbin Inst. of Technol., Harbin
Volume
45
Issue
1
fYear
2009
Firstpage
250
Lastpage
255
Abstract
Release-launch is a fundamental operation in space platform. Not like traditional land-base launcher, space-base launcher is more flexible and more efficient. Tubular linear electromagnetic launcher (TLEML), which provides higher force density, simple structure and no unilateral magnetic force, compared with the flat linear electromagnetic launcher, is more suitable for space platform. It can easily meet the demand such as little volume, light weight and high control precision. This paper analyzes and optimizes the thrust characteristics of tubular linear permanent magnet synchronous motors (TL-PMSM) for electromagnetic launcher, including different topologies, interior permanent magnet (IPM) and surface-mounted permanent magnet (SPM). First, build up the finite element model for the two kinds of TLEML and calculate the magnetic field. Then thrust force fluctuation figures are obtained by finite element analysis considering the pole/arc ratio, the pole pitch and the inner diameter/outer diameter ratio of the stator. The result shows that it can improve the thrust characteristic and decrease the cogging force by optimizing the parameters of the motor.
Keywords
electromagnetic launchers; finite element analysis; linear synchronous motors; permanent magnet motors; cogging force; finite element analysis; flat linear electromagnetic launcher; high control precision; interior permanent magnet; land-base launcher; magnetic field; pole pitch; pole-arc ratio; space-base launcher; stator inner diameter-outer diameter ratio; surface-mounted permanent magnet; thrust characteristic optimization; thrust force fluctuation figures; tubular linear electromagnetic launcher; tubular linear permanent magnet synchronous motors; unilateral magnetic force; Electromagnetic launcher; interior permanent magnet; surface-mounted permanent magnet; tubular linear motor;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2008.2008880
Filename
4773589
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