DocumentCode :
1363954
Title :
Reduced-Order Modeling of High-Fidelity Magnetic Equivalent Circuits
Author :
Davoudi, Ali ; Chapman, Patrick L. ; Jatskevich, Juri ; Khaligh, Alireza
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois, Urbana, IL, USA
Volume :
24
Issue :
12
fYear :
2009
Firstpage :
2847
Lastpage :
2855
Abstract :
Magnetic components, such as inductors and transformers, enable short-term energy storage and transfer and are essential for many power electronic converters. Physics-based models of magnetic systems, such as finite element-based models and/or high-fidelity magnetic equivalent circuit (HFMEC) models, accurately represent the magnetic device. However, these models are computationally intensive and hard to formulate. In this paper, an HFMEC approach for laminated and solid magnetic cores is set forth that avoids conventional geometrical simplifications and assumptions of uniform flux density. The proposed dynamic HFMEC model accurately captures the effects of magnetic saturation, high-frequency eddy currents, corner effects, and 3-D effects. The resulting full-order HFMEC models introduce a large set of state variables. Automated linear and nonlinear order-reduction techniques are introduced to extract the desired essential system dynamics, thus preserving both model accuracy and computational efficiency. The resulting reduced-order models are validated with hardware measurements and the original full-order HFMECs in both time and frequency domains.
Keywords :
eddy currents; equivalent circuits; magnetic circuits; magnetic cores; magnetic devices; power convertors; 3D effects; HFMEC approach; automated linear order-reduction techniques; corner effects; finite element-based models; frequency domains; high-fidelity magnetic equivalent circuit model; high-frequency eddy currents; inductors; laminated magnetic cores; magnetic components; magnetic device; magnetic saturation; magnetic systems; nonlinear order-reduction techniques; physics-based models; power electronic converters; reduced-order modeling; short-term energy storage; solid magnetic cores; time domains; transformers; uniform flux density; Magnetic circuits; magnetic cores; magnetic devices; modeling; reduced-order systems; simulation;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2009.2031436
Filename :
5232886
Link To Document :
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