DocumentCode :
856899
Title :
Multiple traveling wave electromagnetic rotating power supplies: FEM field modeling
Author :
Hsieh, K.-T. ; Driga, M.D.
Author_Institution :
Inst. for Adv. Technol., Texas Univ., Austin, TX, USA
Volume :
29
Issue :
1
fYear :
1993
fDate :
1/1/1993 12:00:00 AM
Firstpage :
997
Lastpage :
1002
Abstract :
Heteropolar electromechanical structures show strong promise as rotating power supplies for electromagnetic launchers with kinetic energy storage and transient magnetic energy storage that can achieve high power densities and small volumes. Both synchronous and asynchronous variants are based on multiple traveling waves of high-amplitude magnetic fields that have multiple velocities. The authors present a finite element formulation of the diffusion problem for time-harmonic excitation with several different frequencies. In this formulation, phasorial quantities are used and a complex-variable functional treatment is set down to correspond to the electromagnetic partial differential equations. The treatment is applicable to the self-excitation process in fast transient regimes of pulsed discharge of an asynchronous generator in which the nonuniformity (spatial and temporal) of the traveling waves plays an important role. Results are presented for a sample problem
Keywords :
asynchronous generators; electromagnetic field theory; electromagnetic launchers; energy storage; finite element analysis; machine theory; partial differential equations; power supplies to apparatus; pulsed power technology; EM field theory; EM launchers; FEM; asynchronous generator; diffusion problem; electromagnetic launchers; kinetic energy storage; machine theory; multiple velocities; partial differential equations; pulsed discharge; pulsed power technology; rotating power supplies; self-excitation process; time-harmonic excitation; transient magnetic energy storage; travelling EM waves; Electromagnetic launching; Electromagnetic scattering; Electromagnetic transients; Energy storage; Finite element methods; Frequency; Kinetic energy; Magnetic fields; Partial differential equations; Power supplies;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.195715
Filename :
195715
Link To Document :
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