DocumentCode :
2468500
Title :
Nonlinear order reduction in dynamic magnetic equivalent circuits of electromechanic actuators: Incorporating relative motion and back EMF
Author :
Davoudi, Ali ; Chapman, Patrick L. ; Jatskevich, Juri J.
Author_Institution :
Electr. & Comput. Eng., Univ. of Illinois at Urbana-Champaign, Urbana, IL
fYear :
2008
fDate :
15-19 June 2008
Firstpage :
3992
Lastpage :
3995
Abstract :
Physics-based modeling of electromechanical actuators driven by power electronics converters is highly desired for precise dynamics representations of magnetic components. In this paper, a very detailed dynamic magnetic-equivalent circuit of an actuator is set forth that is based on geometrical and material characteristics, and avoids conventional geometrical simplifications and uniform flux-density assumptions. In general, the presence of eddy currents in dynamic physics-based models significantly increases the model order. The computational intensity is further pronounced when considering the nonlinearity associated with relative motion. Automated linear and nonlinear order-reduction techniques are introduced to numerically extract the essential system dynamics in the desired bandwidth, thus preserving both dynamic accuracy and computational efficiency. In particular, the original high-order model is replaced with piecewise linear reduced- order models that are expressed as numerical functions of the mechanical position and speed. The model order is successfully reduced from 300 to only 5 state variables, thus significantly cutting the execution time. The resulting reduced-order model is verified with the original full-order model in predicting time-domain transients as well as frequency-domain characteristics, which is important for converter-driven actuators.
Keywords :
electric actuators; electromagnetic forces; equivalent circuits; magnetic circuits; nonlinear systems; power convertors; reduced order systems; back EMF; converter-driven actuators; dynamic magnetic equivalent circuits; eddy currents; electromechanic actuators; frequency-domain characteristics; nonlinear order reduction; piecewise linear reduced- order models; power electronics converters; relative motion; time-domain transients; Actuators; Bandwidth; Computational efficiency; Eddy currents; Equivalent circuits; Magnetic circuits; Magnetic materials; Nonlinear dynamical systems; Piecewise linear techniques; Power electronics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Specialists Conference, 2008. PESC 2008. IEEE
Conference_Location :
Rhodes
ISSN :
0275-9306
Print_ISBN :
978-1-4244-1667-7
Electronic_ISBN :
0275-9306
Type :
conf
DOI :
10.1109/PESC.2008.4592578
Filename :
4592578
Link To Document :
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