DocumentCode :
868906
Title :
Physical Scale Model Alternators as a Pulsed-Power Source Simulator
Author :
Shepard, Nathan ; Chen, Y. Yvonne ; Mallick, John
Author_Institution :
Inst. for Adv. Technol., Univ. of Texas, Austin, TX
Volume :
43
Issue :
1
fYear :
2007
Firstpage :
265
Lastpage :
269
Abstract :
Pulsed alternators configured as counter-rotating pairs are being considered as a potential pulsed-power source for electromagnetic launchers. The Institute for Advanced Technology is interested in studying the electrical and mechanical characteristics of such a pair of counter-rotating pulsed alternators; however, implementation and experimentation have only been attempted on a single subscale alternator machine that requires extensive laboratory support for operation. As a first step toward testing the electromechanical effects of counter-rotating alternators, two iron-core wound field alternators driven by dc motor prime movers were obtained and implemented as a scale model pulsed-power source simulator. These alternators were originally designed and fabricated at the Massachusetts Institute of Technology as physical scale models of 900-MVA utility alternators, which exhibit the same per-unit reactance and time constants as the full-scale machines. A digital signal processor was integrated into a real-time control system designed to maintain the two generators as an electrically coupled, counter-rotating generator pair. This paper documents the control system design, the incorporated control algorithm, and the automated test setup implemented for experimental data collection
Keywords :
DC motor drives; alternators; control system synthesis; digital signal processing chips; electromagnetic launchers; machine control; pulsed power supplies; 900 MVA; DC motor prime mover drives; alternator machines; control system design; counter rotating pairs; digital signal processors; electric generators; electromagnetic launchers; electromechanical effects; iron core wound field alternators; physical scale model alternators; pulsed power source simulator; real-time control system design; Alternators; Automatic control; Control systems; DC motors; EMP radiation effects; Electromagnetic launching; Laboratories; Signal generators; Testing; Wounds; Counter-rotating alternator; physical scale model; pulsed alternator; pulsed-power simulator;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2006.887673
Filename :
4033108
Link To Document :
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