Title :
Reduced-Order Dynamic Modeling of Multiple-Winding Power Electronic Magnetic Components
Author :
Davoudi, Ali ; Chapman, Patrick L. ; Jatskevich, Juri ; Behjati, Hamid
Author_Institution :
Dept. of Electr. Eng., Univ. of Texas at Arlington, Arlington, TX, USA
fDate :
5/1/2012 12:00:00 AM
Abstract :
Dynamic high-fidelity magnetic equivalent circuits (HFMEC) are viable tool for accurate, physics-based modeling of magnetic components. However, such model formulation typically requires hundreds or thousands of state variables to accurately represent the eddy current dynamics. A reduced-order HFMEC modeling approach has been recently introduced for single-winding systems, e.g., inductors. This letter extends the HFMEC approach to multiple-winding power-electronic transformers. First, a general full-order HFMEC model of the multiple-winding system is developed that incorporates magnetic saturation and the eddy current dynamics. Then, multiple-input/multiple-output linear and nonlinear order-reduction techniques are used to extract the desired essential system dynamics while preserving the model accuracy and gaining computational efficiency. The proposed methodology is validated on a typical power electronic transformer with both pulse width modulation and sinusoidal excitations using numerical simulations and experimental measurements.
Keywords :
MIMO systems; eddy currents; magnetic circuits; magnetic devices; power electronics; power engineering computing; reduced order systems; windings; dynamic high fidelity magnetic equivalent circuit; eddy current dynamics; magnetic saturation; multiple winding power electronic magnetic components; multiple winding power electronic transformer; multiple-input multiple-output linear technique; nonlinear order reduction technique; reduced order HFMEC modeling; reduced order dynamic modeling; Integrated circuit modeling; Magnetic circuits; Magnetic cores; Magnetic domains; Magnetic flux; Saturation magnetization; Windings; Dynamics; eddy currents; magnetic circuits; reduced-order systems; saturable cores; transformers;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2011.2179317