DocumentCode
1132291
Title
Dynamic Modeling of Brushless dc Motors for Aerospace Actuation
Author
Demerdash, N.A. ; Nehl, T.W.
Author_Institution
Virginia Polytechnic Institute and State University
Issue
6
fYear
1980
Firstpage
811
Lastpage
821
Abstract
A discrete time model for simulation of the dynamics of samarium cobalt-type permanent magnet brushless dc machines is presented. The similation model includes modeling of the interaction between these machines and their attached power conditioners. These are transistorized conditioner units. This model is part of an overall discrete-time analysis of the dynamic performance of electromechanical actuators, which was conducted as part of prototype development of such actuators studied and built for NASA-Johnson Space Center as a prospective alternative to hydraulic actuators presently used in shuttle orbiter applications. The resulting numerical simulations of the various machine and power conditioner current and voltage waveforms gave excellent correlation to the actual waveforms collected from actual hardware experimental testing. These results, numerical and experimental, are presented here for machine motoring, regeneration and dynamic braking modes. Application of the resulting model to the determination of machine current and torque profiles during closed-loop actuator operation were also analyzed and the results are given here. These results are given in light of an overall view of the actuator system components. The applicability of this method of analysis to design optimization and trouble-shooting in such prototype development is also discussed in light of the results at hand.
Keywords
Aerodynamics; Brushless DC motors; DC machines; Hydraulic actuators; Magnetic analysis; Performance analysis; Permanent magnets; Prototypes; Samarium; Space shuttles;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.1980.309005
Filename
4102410
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