Electrothermal Model of Coupled Inductors with Nanocrystalline Cores

Author:

Detka Kalina,Górecki KrzysztofORCID

Abstract

The paper proposes a new electrothermal model of a coupled inductor containing a nanocrystalline core dedicated to the analysis of electrical energy conversion systems. The formulated model has a form of a subcircuit for SPICE. The model takes into account the influence of direct current, frequency, skin effect, temperature, self-heating, and mutual thermal couplings on the parameters and characteristics of the coupled inductors. The form of the developed model and the method of model parameter estimation are presented. The applied measuring system is presented. The results of measurements and calculations made with the use of the proposed model are presented and commented on.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference42 articles.

1. Energoelektronika Elementy Podzespoły Układy;Barlik,2014

2. High-Frequency Magnetic Components;Kazimierczuk,2014

3. Power Electronic Handbook;Rashid,2007

4. Switch-Mode Power Supply Handbook;Billings,2011

5. Fundamentals of Power Electronics;Ericson,2001

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